{"id":"pinus-halepensis","license":"CC-BY-4.0","data":{"scientificName":"Pinus halepensis","commonNames":["Aleppo pine"],"taxonRank":"species","acceptedName":"Pinus halepensis","family":"Pinaceae","ids":{"usdaSymbol":"PIHA7","gbifKey":5285604,"itisTsn":506601,"wikidataQid":"Q211457","inatTaxonId":82722},"states":["CA"],"invasiveIn":[{"state":"L48","status":"invasive-reported","source":"us-riis"}],"statusAssertions":[{"status":"invasive","channel":"ecological","geography":{"grain":"aggregate-region","regions":["L48"]},"source":"us-riis-v2","sourceRecordId":"USRIIS-L48-Plantae9833","sourceVersion":"2.0 (November 2022)","asOf":"2022-10-23T00:00:00.000Z","sourceModified":"2017-11-21T00:00:00.000Z","sourceTaxon":{"name":"Pinus halepensis","rank":"species","rawRank":"Species"},"sourceDesignation":{"code":"D2","label":"invasive (category D2)"},"associatedReferences":["USDA Natural Resources Conservation Service (NRCS) PLANTS Database (2021dqv), https://plants.usda.gov/home/plantProfile?symbol=PIHA7"],"taxonProjection":{"basis":"exact-taxon","notes":"exact source identifier, rank, family, and scientific/accepted name"}}],"plantForm":"tree","photo":{"file":"/images/plants/pinus-halepensis.jpg","sourceUrl":"https://www.inaturalist.org/photos/96462436","observationUrl":"https://www.inaturalist.org/observations/60332338","license":"cc0","attribution":"no rights reserved","fetchedOn":"2026-08-23T00:00:00.000Z"},"evidence":[{"source":"valette-1990","verdict":"avoid","verdictRaw":"INRA inflammability note 4 of 5 (July-September maximum)","score":{"value":4,"scale":"inra-0-5"},"claims":"Monthly inflammability notes May-April: 0, 1, 3, 4, 4, 3, 5, 5, 5, 5, 5, 5 (epiradiator tests, INRA Avignon).","claimOriginal":"hautement inflammable","plantPart":"shoot","edition":"1990","url":"https://hal.inrae.fr/hal-03426210","accessedOn":"2026-08-23T00:00:00.000Z"},{"source":"gva-valencia","verdict":"avoid","verdictRaw":"named among the most flammable species","claims":"Named in the guide's flammable-species warning: pino carrasco — accumulates dry material.","claimOriginal":"las especies más inflamables","edition":"2019","url":"https://www.leliana.es/sites/www.leliana.es/files/files/Jardineria%20de%20baja%20inflamabilidad.pdf","accessedOn":"2026-08-23T00:00:00.000Z"},{"source":"dehane-2017-cork-oak-companions","verdict":"avoid","verdictRaw":"Author-named highly flammable group","claims":"The abstract identifies this species as highly flammable from its combustibility and sustainability across fresh and dried-fuel analysis.","plantPart":"shoot","edition":"2017","url":"https://hal.science/hal-02976554/document","documentDate":"2017-08-04T00:00:00.000Z","accessedOn":"2026-08-24T00:00:00.000Z"},{"source":"molina-2017-ignition-index","verdict":"avoid","verdictRaw":"Extremely flammable (Valette 5)","score":{"value":5,"scale":"valette-0-5-live-leaf"},"claims":"Table 2 reports 107.14% foliar moisture, 8.4 s mean time to ignition, and 14.7 s mean flame duration across 200 live-leaf samples.","plantPart":"leaf","condition":"green","edition":"2017","url":"https://helvia.uco.es/xmlui/bitstream/10396/27022/3/","documentDate":"2017-01-01T00:00:00.000Z","accessedOn":"2026-08-24T00:00:00.000Z"},{"source":"girona-pirojardineria-2020","verdict":"avoid","verdictRaw":"MUY DESACONSEJADA","claims":"Pinus halepensis is rated “MUY DESACONSEJADA” by the guide's qualitative IUF garden-suitability method. The method assumes species-specific care and integrates fire evidence with fuel structure, maintenance, origin, invasiveness, and expert fire-service experience.","sourcePlacement":{"value":"not suitable inside or outside the 25-metre maximum-risk zone","scheme":"girona-2020-iuf-25m-suitability"},"edition":"2020 Spanish edition","url":"https://interior.gencat.cat/web/.content/home/030_arees_dactuacio/bombers/foc_forestal/publicacions_tecniques_i_normativa/guies_tecniques/prevencio_i_extincio/2020_Guia_de_pirojardineria_es.pdf","documentDate":"2020-01-01T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"henaoui-cistus-tlemcen","verdict":"avoid","verdictRaw":"High flammability — note 3","score":{"value":3,"scale":"henaoui-2013-flammability-note-1-3"},"claims":"Table 1 classifies Pinus halepensis at flammability note 3; the paper prints its stratum as Tree.","condition":"green","sourcePlacement":{"value":"Table 1","scheme":"henaoui-2013-fresh-material-flammability"},"edition":"European Scientific Journal 9(29)","url":"https://eujournal.org/index.php/esj/article/download/1917/1917/0","documentDate":"2013-10-30T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"temperature at smoke (°C): 141.08","score":{"value":141.08,"scale":"FLAMITS — temperature at smoke (°C)"},"claims":"FLAMITS record 71; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Alessio2008b-1; sampling ND. Primary study Alessio2008a: Alessio, G. A., Peñuelas, J., De Lillis, M., & Llusià, J. (2008). Implications of foliar terpene content and hydration on leaf flammability of Quercus ilex and Pinus halepensis. Plant Biology, 10, 123-128.","plantPart":"leaf","original":"Alessio2008a","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"temperature at smouldering (°C): 371.67","score":{"value":371.67,"scale":"FLAMITS — temperature at smouldering (°C)"},"claims":"FLAMITS record 72; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Alessio2008b-1; sampling ND. Primary study Alessio2008a: Alessio, G. A., Peñuelas, J., De Lillis, M., & Llusià, J. (2008). Implications of foliar terpene content and hydration on leaf flammability of Quercus ilex and Pinus halepensis. Plant Biology, 10, 123-128.","plantPart":"leaf","original":"Alessio2008a","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"temperature at flaming (°C): 485.44","score":{"value":485.44,"scale":"FLAMITS — temperature at flaming (°C)"},"claims":"FLAMITS record 73; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Alessio2008b-1; sampling ND. Primary study Alessio2008a: Alessio, G. A., Peñuelas, J., De Lillis, M., & Llusià, J. (2008). Implications of foliar terpene content and hydration on leaf flammability of Quercus ilex and Pinus halepensis. Plant Biology, 10, 123-128.","plantPart":"leaf","original":"Alessio2008a","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to smoke (s): 145.74","score":{"value":145.74,"scale":"FLAMITS — time to smoke (s)"},"claims":"FLAMITS record 74; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Alessio2008b-1; sampling ND. Primary study Alessio2008a: Alessio, G. A., Peñuelas, J., De Lillis, M., & Llusià, J. (2008). Implications of foliar terpene content and hydration on leaf flammability of Quercus ilex and Pinus halepensis. Plant Biology, 10, 123-128.","plantPart":"leaf","original":"Alessio2008a","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"smouldering duration (s): 350.69","score":{"value":350.69,"scale":"FLAMITS — smouldering duration (s)"},"claims":"FLAMITS record 75; Sustainability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Alessio2008b-1; sampling ND. Primary study Alessio2008a: Alessio, G. A., Peñuelas, J., De Lillis, M., & Llusià, J. (2008). Implications of foliar terpene content and hydration on leaf flammability of Quercus ilex and Pinus halepensis. Plant Biology, 10, 123-128.","plantPart":"leaf","original":"Alessio2008a","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 421.81","score":{"value":421.81,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 76; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Alessio2008b-1; sampling ND. Primary study Alessio2008a: Alessio, G. A., Peñuelas, J., De Lillis, M., & Llusià, J. (2008). Implications of foliar terpene content and hydration on leaf flammability of Quercus ilex and Pinus halepensis. Plant Biology, 10, 123-128.","plantPart":"leaf","original":"Alessio2008a","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"smouldering duration (s): 449.8","score":{"value":449.8,"scale":"FLAMITS — smouldering duration (s)"},"claims":"FLAMITS record 180; Sustainability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Alessio2008a-1; sampling november. Primary study Alessio2008b: Alessio, G. A., Peñuelas, J., Llusià, J., Ogaya, R., Estiarte, M., & De Lillis, M. (2008). Influence of water and terpenes on flammability in some dominant Mediterranean species. International Journal of Wildland Fire, 17, 274.","plantPart":"leaf","original":"Alessio2008b","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"smouldering duration (s): 349.67","score":{"value":349.67,"scale":"FLAMITS — smouldering duration (s)"},"claims":"FLAMITS record 181; Sustainability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Alessio2008a-1; sampling february. Primary study Alessio2008b: Alessio, G. A., Peñuelas, J., Llusià, J., Ogaya, R., Estiarte, M., & De Lillis, M. (2008). Influence of water and terpenes on flammability in some dominant Mediterranean species. International Journal of Wildland Fire, 17, 274.","plantPart":"leaf","original":"Alessio2008b","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"smouldering duration (s): 310.11","score":{"value":310.11,"scale":"FLAMITS — smouldering duration (s)"},"claims":"FLAMITS record 182; Sustainability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Alessio2008a-1; sampling may. Primary study Alessio2008b: Alessio, G. A., Peñuelas, J., Llusià, J., Ogaya, R., Estiarte, M., & De Lillis, M. (2008). Influence of water and terpenes on flammability in some dominant Mediterranean species. International Journal of Wildland Fire, 17, 274.","plantPart":"leaf","original":"Alessio2008b","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"smouldering duration (s): 352.54","score":{"value":352.54,"scale":"FLAMITS — smouldering duration (s)"},"claims":"FLAMITS record 183; Sustainability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Alessio2008a-1; sampling june. Primary study Alessio2008b: Alessio, G. A., Peñuelas, J., Llusià, J., Ogaya, R., Estiarte, M., & De Lillis, M. (2008). Influence of water and terpenes on flammability in some dominant Mediterranean species. International Journal of Wildland Fire, 17, 274.","plantPart":"leaf","original":"Alessio2008b","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"smouldering duration (s): 355.09","score":{"value":355.09,"scale":"FLAMITS — smouldering duration (s)"},"claims":"FLAMITS record 184; Sustainability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Alessio2008a-1; sampling august. Primary study Alessio2008b: Alessio, G. A., Peñuelas, J., Llusià, J., Ogaya, R., Estiarte, M., & De Lillis, M. (2008). Influence of water and terpenes on flammability in some dominant Mediterranean species. International Journal of Wildland Fire, 17, 274.","plantPart":"leaf","original":"Alessio2008b","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"temperature at smouldering (°C): 376.32","score":{"value":376.32,"scale":"FLAMITS — temperature at smouldering (°C)"},"claims":"FLAMITS record 200; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Alessio2008a-1; sampling november. Primary study Alessio2008b: Alessio, G. A., Peñuelas, J., Llusià, J., Ogaya, R., Estiarte, M., & De Lillis, M. (2008). Influence of water and terpenes on flammability in some dominant Mediterranean species. International Journal of Wildland Fire, 17, 274.","plantPart":"leaf","original":"Alessio2008b","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"temperature at smouldering (°C): 378.39","score":{"value":378.39,"scale":"FLAMITS — temperature at smouldering (°C)"},"claims":"FLAMITS record 201; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Alessio2008a-1; sampling february. Primary study Alessio2008b: Alessio, G. A., Peñuelas, J., Llusià, J., Ogaya, R., Estiarte, M., & De Lillis, M. (2008). Influence of water and terpenes on flammability in some dominant Mediterranean species. International Journal of Wildland Fire, 17, 274.","plantPart":"leaf","original":"Alessio2008b","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"temperature at smouldering (°C): 218.57","score":{"value":218.57,"scale":"FLAMITS — temperature at smouldering (°C)"},"claims":"FLAMITS record 202; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Alessio2008a-1; sampling may. Primary study Alessio2008b: Alessio, G. A., Peñuelas, J., Llusià, J., Ogaya, R., Estiarte, M., & De Lillis, M. (2008). Influence of water and terpenes on flammability in some dominant Mediterranean species. International Journal of Wildland Fire, 17, 274.","plantPart":"leaf","original":"Alessio2008b","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"temperature at smouldering (°C): 371.61","score":{"value":371.61,"scale":"FLAMITS — temperature at smouldering (°C)"},"claims":"FLAMITS record 203; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Alessio2008a-1; sampling june. Primary study Alessio2008b: Alessio, G. A., Peñuelas, J., Llusià, J., Ogaya, R., Estiarte, M., & De Lillis, M. (2008). Influence of water and terpenes on flammability in some dominant Mediterranean species. International Journal of Wildland Fire, 17, 274.","plantPart":"leaf","original":"Alessio2008b","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"temperature at smouldering (°C): 353.17","score":{"value":353.17,"scale":"FLAMITS — temperature at smouldering (°C)"},"claims":"FLAMITS record 204; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Alessio2008a-1; sampling august. Primary study Alessio2008b: Alessio, G. A., Peñuelas, J., Llusià, J., Ogaya, R., Estiarte, M., & De Lillis, M. (2008). Influence of water and terpenes on flammability in some dominant Mediterranean species. International Journal of Wildland Fire, 17, 274.","plantPart":"leaf","original":"Alessio2008b","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"temperature at smoke (°C): 149.26","score":{"value":149.26,"scale":"FLAMITS — temperature at smoke (°C)"},"claims":"FLAMITS record 225; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Alessio2008a-1; sampling november. Primary study Alessio2008b: Alessio, G. A., Peñuelas, J., Llusià, J., Ogaya, R., Estiarte, M., & De Lillis, M. (2008). Influence of water and terpenes on flammability in some dominant Mediterranean species. International Journal of Wildland Fire, 17, 274.","plantPart":"leaf","original":"Alessio2008b","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"temperature at smoke (°C): 145.27","score":{"value":145.27,"scale":"FLAMITS — temperature at smoke (°C)"},"claims":"FLAMITS record 226; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Alessio2008a-1; sampling february. Primary study Alessio2008b: Alessio, G. A., Peñuelas, J., Llusià, J., Ogaya, R., Estiarte, M., & De Lillis, M. (2008). Influence of water and terpenes on flammability in some dominant Mediterranean species. International Journal of Wildland Fire, 17, 274.","plantPart":"leaf","original":"Alessio2008b","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"temperature at smoke (°C): 107.83","score":{"value":107.83,"scale":"FLAMITS — temperature at smoke (°C)"},"claims":"FLAMITS record 227; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Alessio2008a-1; sampling may. Primary study Alessio2008b: Alessio, G. A., Peñuelas, J., Llusià, J., Ogaya, R., Estiarte, M., & De Lillis, M. (2008). Influence of water and terpenes on flammability in some dominant Mediterranean species. International Journal of Wildland Fire, 17, 274.","plantPart":"leaf","original":"Alessio2008b","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"temperature at smoke (°C): 154.44","score":{"value":154.44,"scale":"FLAMITS — temperature at smoke (°C)"},"claims":"FLAMITS record 228; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Alessio2008a-1; sampling june. Primary study Alessio2008b: Alessio, G. A., Peñuelas, J., Llusià, J., Ogaya, R., Estiarte, M., & De Lillis, M. (2008). Influence of water and terpenes on flammability in some dominant Mediterranean species. International Journal of Wildland Fire, 17, 274.","plantPart":"leaf","original":"Alessio2008b","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"temperature at smoke (°C): 151.77","score":{"value":151.77,"scale":"FLAMITS — temperature at smoke (°C)"},"claims":"FLAMITS record 229; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Alessio2008a-1; sampling august. Primary study Alessio2008b: Alessio, G. A., Peñuelas, J., Llusià, J., Ogaya, R., Estiarte, M., & De Lillis, M. (2008). Influence of water and terpenes on flammability in some dominant Mediterranean species. International Journal of Wildland Fire, 17, 274.","plantPart":"leaf","original":"Alessio2008b","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to smoke (s): 143.84","score":{"value":143.84,"scale":"FLAMITS — time to smoke (s)"},"claims":"FLAMITS record 250; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Alessio2008a-1; sampling november. Primary study Alessio2008b: Alessio, G. A., Peñuelas, J., Llusià, J., Ogaya, R., Estiarte, M., & De Lillis, M. (2008). Influence of water and terpenes on flammability in some dominant Mediterranean species. International Journal of Wildland Fire, 17, 274.","plantPart":"leaf","original":"Alessio2008b","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to smoke (s): 101.14","score":{"value":101.14,"scale":"FLAMITS — time to smoke (s)"},"claims":"FLAMITS record 251; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Alessio2008a-1; sampling february. Primary study Alessio2008b: Alessio, G. A., Peñuelas, J., Llusià, J., Ogaya, R., Estiarte, M., & De Lillis, M. (2008). Influence of water and terpenes on flammability in some dominant Mediterranean species. International Journal of Wildland Fire, 17, 274.","plantPart":"leaf","original":"Alessio2008b","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to smoke (s): 75.05","score":{"value":75.05,"scale":"FLAMITS — time to smoke (s)"},"claims":"FLAMITS record 252; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Alessio2008a-1; sampling may. Primary study Alessio2008b: Alessio, G. A., Peñuelas, J., Llusià, J., Ogaya, R., Estiarte, M., & De Lillis, M. (2008). Influence of water and terpenes on flammability in some dominant Mediterranean species. International Journal of Wildland Fire, 17, 274.","plantPart":"leaf","original":"Alessio2008b","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to smoke (s): 112.06","score":{"value":112.06,"scale":"FLAMITS — time to smoke (s)"},"claims":"FLAMITS record 253; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Alessio2008a-1; sampling june. Primary study Alessio2008b: Alessio, G. A., Peñuelas, J., Llusià, J., Ogaya, R., Estiarte, M., & De Lillis, M. (2008). Influence of water and terpenes on flammability in some dominant Mediterranean species. International Journal of Wildland Fire, 17, 274.","plantPart":"leaf","original":"Alessio2008b","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to smoke (s): 96.11","score":{"value":96.11,"scale":"FLAMITS — time to smoke (s)"},"claims":"FLAMITS record 254; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Alessio2008a-1; sampling august. Primary study Alessio2008b: Alessio, G. A., Peñuelas, J., Llusià, J., Ogaya, R., Estiarte, M., & De Lillis, M. (2008). Influence of water and terpenes on flammability in some dominant Mediterranean species. International Journal of Wildland Fire, 17, 274.","plantPart":"leaf","original":"Alessio2008b","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 4367.59","score":{"value":4367.59,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 424; Combustibility measurement; plant part leaves; fuel dead; predrying no; device calorimeter; site Bartoli2011-1; sampling ND. Primary study Bartoli2011: Bartoli, P., Simeoni, A., Biteau, H., Torero, J. L., & Santoni, P. A. (2011). Determination of the main parameters influencing forest fuel combustion dynamics. Fire Safety Journal, 46, 27-33.","plantPart":"leaf","original":"Bartoli2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 121.38","score":{"value":121.38,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 427; Sustainability measurement; plant part leaves; fuel dead; predrying no; device calorimeter; site Bartoli2011-1; sampling ND. Primary study Bartoli2011: Bartoli, P., Simeoni, A., Biteau, H., Torero, J. L., & Santoni, P. A. (2011). Determination of the main parameters influencing forest fuel combustion dynamics. Fire Safety Journal, 46, 27-33.","plantPart":"leaf","original":"Bartoli2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 58.13","score":{"value":58.13,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 430; Ignitability measurement; plant part leaves; fuel dead; predrying no; device calorimeter; site Bartoli2011-1; sampling ND. Primary study Bartoli2011: Bartoli, P., Simeoni, A., Biteau, H., Torero, J. L., & Santoni, P. A. (2011). Determination of the main parameters influencing forest fuel combustion dynamics. Fire Safety Journal, 46, 27-33.","plantPart":"leaf","original":"Bartoli2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 141.7","score":{"value":141.7,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 431; Ignitability measurement; plant part leaves; fuel dead; predrying no; device calorimeter; site Bartoli2011-1; sampling ND. Primary study Bartoli2011: Bartoli, P., Simeoni, A., Biteau, H., Torero, J. L., & Santoni, P. A. (2011). Determination of the main parameters influencing forest fuel combustion dynamics. Fire Safety Journal, 46, 27-33.","plantPart":"leaf","original":"Bartoli2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"energy release rate (kW): 3.9","score":{"value":3.9,"scale":"FLAMITS — energy release rate (kW)"},"claims":"FLAMITS record 432; Combustibility measurement; plant part leaves; fuel dead; predrying no; device calorimeter; site Bartoli2011-1; sampling ND. Primary study Bartoli2011: Bartoli, P., Simeoni, A., Biteau, H., Torero, J. L., & Santoni, P. A. (2011). Determination of the main parameters influencing forest fuel combustion dynamics. Fire Safety Journal, 46, 27-33.","plantPart":"leaf","original":"Bartoli2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"energy release rate (kW): 4.88","score":{"value":4.88,"scale":"FLAMITS — energy release rate (kW)"},"claims":"FLAMITS record 435; Combustibility measurement; plant part leaves; fuel dead; predrying no; device calorimeter; site Bartoli2011-1; sampling ND. Primary study Bartoli2011: Bartoli, P., Simeoni, A., Biteau, H., Torero, J. L., & Santoni, P. A. (2011). Determination of the main parameters influencing forest fuel combustion dynamics. Fire Safety Journal, 46, 27-33.","plantPart":"leaf","original":"Bartoli2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 6.6","score":{"value":6.6,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 2293; Ignitability measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Dehane2017-1; sampling september. Primary study Dehane2017: Dehane, B., Hernando, C., Guijarro, M., & Madrigal, J. (2017). Flammability of some companion species in cork oak (Quercus suber L.) forests. Annals of Forest Science, 74, 60.","plantPart":"leaf","original":"Dehane2017","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 3379.66","score":{"value":3379.66,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 2303; Combustibility measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Dehane2017-1; sampling september. Primary study Dehane2017: Dehane, B., Hernando, C., Guijarro, M., & Madrigal, J. (2017). Flammability of some companion species in cork oak (Quercus suber L.) forests. Annals of Forest Science, 74, 60.","plantPart":"leaf","original":"Dehane2017","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum energy flux (kW/m²): 311.07","score":{"value":311.07,"scale":"FLAMITS — maximum energy flux (kW/m²)"},"claims":"FLAMITS record 2313; Combustibility measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Dehane2017-1; sampling september. Primary study Dehane2017: Dehane, B., Hernando, C., Guijarro, M., & Madrigal, J. (2017). Flammability of some companion species in cork oak (Quercus suber L.) forests. Annals of Forest Science, 74, 60.","plantPart":"leaf","original":"Dehane2017","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 94.4","score":{"value":94.4,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 2323; Consumability measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Dehane2017-1; sampling september. Primary study Dehane2017: Dehane, B., Hernando, C., Guijarro, M., & Madrigal, J. (2017). Flammability of some companion species in cork oak (Quercus suber L.) forests. Annals of Forest Science, 74, 60.","plantPart":"leaf","original":"Dehane2017","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 86","score":{"value":86,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 2333; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Dehane2017-1; sampling september. Primary study Dehane2017: Dehane, B., Hernando, C., Guijarro, M., & Madrigal, J. (2017). Flammability of some companion species in cork oak (Quercus suber L.) forests. Annals of Forest Science, 74, 60.","plantPart":"leaf","original":"Dehane2017","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 401.17","score":{"value":401.17,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 2343; Combustibility measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Dehane2017-1; sampling september. Primary study Dehane2017: Dehane, B., Hernando, C., Guijarro, M., & Madrigal, J. (2017). Flammability of some companion species in cork oak (Quercus suber L.) forests. Annals of Forest Science, 74, 60.","plantPart":"leaf","original":"Dehane2017","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum energy flux (kW/m²): 162.17","score":{"value":162.17,"scale":"FLAMITS — maximum energy flux (kW/m²)"},"claims":"FLAMITS record 2353; Combustibility measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Dehane2017-1; sampling september. Primary study Dehane2017: Dehane, B., Hernando, C., Guijarro, M., & Madrigal, J. (2017). Flammability of some companion species in cork oak (Quercus suber L.) forests. Annals of Forest Science, 74, 60.","plantPart":"leaf","original":"Dehane2017","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 96.21","score":{"value":96.21,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 2363; Consumability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Dehane2017-1; sampling september. Primary study Dehane2017: Dehane, B., Hernando, C., Guijarro, M., & Madrigal, J. (2017). Flammability of some companion species in cork oak (Quercus suber L.) forests. Annals of Forest Science, 74, 60.","plantPart":"leaf","original":"Dehane2017","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"temperature at flaming (°C): 402.37","score":{"value":402.37,"scale":"FLAMITS — temperature at flaming (°C)"},"claims":"FLAMITS record 2374; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site DeLillis2009-1; sampling june to september. Primary study DeLillis2009: De Lillis, M., Bianco, P. M., & Loreto, F. (2009). The influence of leaf water content and isoprenoids on flammability of some Mediterranean woody species. International Journal of Wildland Fire, 18, 203-212.","plantPart":"leaf","original":"DeLillis2009","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"temperature at flaming (°C): 397.38","score":{"value":397.38,"scale":"FLAMITS — temperature at flaming (°C)"},"claims":"FLAMITS record 2375; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site DeLillis2009-1; sampling june to september. Primary study DeLillis2009: De Lillis, M., Bianco, P. M., & Loreto, F. (2009). The influence of leaf water content and isoprenoids on flammability of some Mediterranean woody species. International Journal of Wildland Fire, 18, 203-212.","plantPart":"leaf","original":"DeLillis2009","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"temperature at flaming (°C): 399.4","score":{"value":399.4,"scale":"FLAMITS — temperature at flaming (°C)"},"claims":"FLAMITS record 2376; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site DeLillis2009-1; sampling june to september. Primary study DeLillis2009: De Lillis, M., Bianco, P. M., & Loreto, F. (2009). The influence of leaf water content and isoprenoids on flammability of some Mediterranean woody species. International Journal of Wildland Fire, 18, 203-212.","plantPart":"leaf","original":"DeLillis2009","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"temperature at smoke (°C): 202.33","score":{"value":202.33,"scale":"FLAMITS — temperature at smoke (°C)"},"claims":"FLAMITS record 2396; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site DeLillis2009-1; sampling june to september. Primary study DeLillis2009: De Lillis, M., Bianco, P. M., & Loreto, F. (2009). The influence of leaf water content and isoprenoids on flammability of some Mediterranean woody species. International Journal of Wildland Fire, 18, 203-212.","plantPart":"leaf","original":"DeLillis2009","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"temperature at smoke (°C): 195.01","score":{"value":195.01,"scale":"FLAMITS — temperature at smoke (°C)"},"claims":"FLAMITS record 2397; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site DeLillis2009-1; sampling june to september. Primary study DeLillis2009: De Lillis, M., Bianco, P. M., & Loreto, F. (2009). The influence of leaf water content and isoprenoids on flammability of some Mediterranean woody species. International Journal of Wildland Fire, 18, 203-212.","plantPart":"leaf","original":"DeLillis2009","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"temperature at smoke (°C): 145.75","score":{"value":145.75,"scale":"FLAMITS — temperature at smoke (°C)"},"claims":"FLAMITS record 2398; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site DeLillis2009-1; sampling june to september. Primary study DeLillis2009: De Lillis, M., Bianco, P. M., & Loreto, F. (2009). The influence of leaf water content and isoprenoids on flammability of some Mediterranean woody species. International Journal of Wildland Fire, 18, 203-212.","plantPart":"leaf","original":"DeLillis2009","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 20.23","score":{"value":20.23,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 2978; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Dimitrakopoulos2011-1; sampling summer. Primary study Dimitrakopoulos2011: Dimitrakopoulos, A. P., Mitsopoulos, I. D., & Kaliva, A. (2011). Short communication. Comparing flammability traits among fire-stricken (low elevation) and non fire- stricken (high elevation) conifer forest species of Europe: a test of the Mutch hypothesis. Forest Systems, 22, 134-137.","plantPart":"leaf","original":"Dimitrakopoulos2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 4595.6","score":{"value":4595.6,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 2988; Combustibility measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Dimitrakopoulos2011-1; sampling summer. Primary study Dimitrakopoulos2011: Dimitrakopoulos, A. P., Mitsopoulos, I. D., & Kaliva, A. (2011). Short communication. Comparing flammability traits among fire-stricken (low elevation) and non fire- stricken (high elevation) conifer forest species of Europe: a test of the Mutch hypothesis. Forest Systems, 22, 134-137.","plantPart":"leaf","original":"Dimitrakopoulos2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"temperature at flaming (°C): 206.25","score":{"value":206.25,"scale":"FLAMITS — temperature at flaming (°C)"},"claims":"FLAMITS record 2998; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Dimitrakopoulos2011-1; sampling summer. Primary study Dimitrakopoulos2011: Dimitrakopoulos, A. P., Mitsopoulos, I. D., & Kaliva, A. (2011). Short communication. Comparing flammability traits among fire-stricken (low elevation) and non fire- stricken (high elevation) conifer forest species of Europe: a test of the Mutch hypothesis. Forest Systems, 22, 134-137.","plantPart":"leaf","original":"Dimitrakopoulos2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 5404","score":{"value":5404,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 3031; Combustibility measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Doat1981-1; sampling ND. Primary study Doat1981: Doat, J., Valette, J. C., Askri, D., Caumartin, L., Bettachini, M., & Moro, M. (1981). Le pouvoir calorifique supérieur d'espèces forestières méditerranéennes. Annales des Sciences forestières, 38, 469-486.","plantPart":"leaf","original":"Doat1981","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 5419","score":{"value":5419,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 3032; Combustibility measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Doat1981-1; sampling ND. Primary study Doat1981: Doat, J., Valette, J. C., Askri, D., Caumartin, L., Bettachini, M., & Moro, M. (1981). Le pouvoir calorifique supérieur d'espèces forestières méditerranéennes. Annales des Sciences forestières, 38, 469-486.","plantPart":"leaf","original":"Doat1981","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 5530","score":{"value":5530,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 3033; Combustibility measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Doat1981-1; sampling ND. Primary study Doat1981: Doat, J., Valette, J. C., Askri, D., Caumartin, L., Bettachini, M., & Moro, M. (1981). Le pouvoir calorifique supérieur d'espèces forestières méditerranéennes. Annales des Sciences forestières, 38, 469-486.","plantPart":"leaf","original":"Doat1981","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 5510","score":{"value":5510,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 3034; Combustibility measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Doat1981-1; sampling ND. Primary study Doat1981: Doat, J., Valette, J. C., Askri, D., Caumartin, L., Bettachini, M., & Moro, M. (1981). Le pouvoir calorifique supérieur d'espèces forestières méditerranéennes. Annales des Sciences forestières, 38, 469-486.","plantPart":"leaf","original":"Doat1981","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 5310","score":{"value":5310,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 3035; Combustibility measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Doat1981-1; sampling ND. Primary study Doat1981: Doat, J., Valette, J. C., Askri, D., Caumartin, L., Bettachini, M., & Moro, M. (1981). Le pouvoir calorifique supérieur d'espèces forestières méditerranéennes. Annales des Sciences forestières, 38, 469-486.","plantPart":"leaf","original":"Doat1981","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 5295","score":{"value":5295,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 3036; Combustibility measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Doat1981-1; sampling ND. Primary study Doat1981: Doat, J., Valette, J. C., Askri, D., Caumartin, L., Bettachini, M., & Moro, M. (1981). Le pouvoir calorifique supérieur d'espèces forestières méditerranéennes. Annales des Sciences forestières, 38, 469-486.","plantPart":"leaf","original":"Doat1981","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 5439","score":{"value":5439,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 3037; Combustibility measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Doat1981-1; sampling ND. Primary study Doat1981: Doat, J., Valette, J. C., Askri, D., Caumartin, L., Bettachini, M., & Moro, M. (1981). Le pouvoir calorifique supérieur d'espèces forestières méditerranéennes. Annales des Sciences forestières, 38, 469-486.","plantPart":"leaf","original":"Doat1981","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 5464","score":{"value":5464,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 3038; Combustibility measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Doat1981-1; sampling ND. Primary study Doat1981: Doat, J., Valette, J. C., Askri, D., Caumartin, L., Bettachini, M., & Moro, M. (1981). Le pouvoir calorifique supérieur d'espèces forestières méditerranéennes. Annales des Sciences forestières, 38, 469-486.","plantPart":"leaf","original":"Doat1981","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 5393","score":{"value":5393,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 3039; Combustibility measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Doat1981-1; sampling ND. Primary study Doat1981: Doat, J., Valette, J. C., Askri, D., Caumartin, L., Bettachini, M., & Moro, M. (1981). Le pouvoir calorifique supérieur d'espèces forestières méditerranéennes. Annales des Sciences forestières, 38, 469-486.","plantPart":"leaf","original":"Doat1981","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 5393","score":{"value":5393,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 3040; Combustibility measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Doat1981-1; sampling ND. Primary study Doat1981: Doat, J., Valette, J. C., Askri, D., Caumartin, L., Bettachini, M., & Moro, M. (1981). Le pouvoir calorifique supérieur d'espèces forestières méditerranéennes. Annales des Sciences forestières, 38, 469-486.","plantPart":"leaf","original":"Doat1981","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 5139","score":{"value":5139,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 3041; Combustibility measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Doat1981-1; sampling ND. Primary study Doat1981: Doat, J., Valette, J. C., Askri, D., Caumartin, L., Bettachini, M., & Moro, M. (1981). Le pouvoir calorifique supérieur d'espèces forestières méditerranéennes. Annales des Sciences forestières, 38, 469-486.","plantPart":"leaf","original":"Doat1981","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 5129","score":{"value":5129,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 3042; Combustibility measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Doat1981-1; sampling ND. Primary study Doat1981: Doat, J., Valette, J. C., Askri, D., Caumartin, L., Bettachini, M., & Moro, M. (1981). Le pouvoir calorifique supérieur d'espèces forestières méditerranéennes. Annales des Sciences forestières, 38, 469-486.","plantPart":"leaf","original":"Doat1981","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 5116","score":{"value":5116,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 3043; Combustibility measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Doat1981-1; sampling ND. Primary study Doat1981: Doat, J., Valette, J. C., Askri, D., Caumartin, L., Bettachini, M., & Moro, M. (1981). Le pouvoir calorifique supérieur d'espèces forestières méditerranéennes. Annales des Sciences forestières, 38, 469-486.","plantPart":"leaf","original":"Doat1981","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 5115","score":{"value":5115,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 3044; Combustibility measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Doat1981-1; sampling ND. Primary study Doat1981: Doat, J., Valette, J. C., Askri, D., Caumartin, L., Bettachini, M., & Moro, M. (1981). Le pouvoir calorifique supérieur d'espèces forestières méditerranéennes. Annales des Sciences forestières, 38, 469-486.","plantPart":"leaf","original":"Doat1981","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 5195","score":{"value":5195,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 3045; Combustibility measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Doat1981-1; sampling ND. Primary study Doat1981: Doat, J., Valette, J. C., Askri, D., Caumartin, L., Bettachini, M., & Moro, M. (1981). Le pouvoir calorifique supérieur d'espèces forestières méditerranéennes. Annales des Sciences forestières, 38, 469-486.","plantPart":"leaf","original":"Doat1981","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 5185","score":{"value":5185,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 3046; Combustibility measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Doat1981-1; sampling ND. Primary study Doat1981: Doat, J., Valette, J. C., Askri, D., Caumartin, L., Bettachini, M., & Moro, M. (1981). Le pouvoir calorifique supérieur d'espèces forestières méditerranéennes. Annales des Sciences forestières, 38, 469-486.","plantPart":"leaf","original":"Doat1981","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 5223","score":{"value":5223,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 3047; Combustibility measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Doat1981-1; sampling ND. Primary study Doat1981: Doat, J., Valette, J. C., Askri, D., Caumartin, L., Bettachini, M., & Moro, M. (1981). Le pouvoir calorifique supérieur d'espèces forestières méditerranéennes. Annales des Sciences forestières, 38, 469-486.","plantPart":"leaf","original":"Doat1981","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 5198","score":{"value":5198,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 3048; Combustibility measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Doat1981-1; sampling ND. Primary study Doat1981: Doat, J., Valette, J. C., Askri, D., Caumartin, L., Bettachini, M., & Moro, M. (1981). Le pouvoir calorifique supérieur d'espèces forestières méditerranéennes. Annales des Sciences forestières, 38, 469-486.","plantPart":"leaf","original":"Doat1981","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 5481","score":{"value":5481,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 3049; Combustibility measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Doat1981-1; sampling ND. Primary study Doat1981: Doat, J., Valette, J. C., Askri, D., Caumartin, L., Bettachini, M., & Moro, M. (1981). Le pouvoir calorifique supérieur d'espèces forestières méditerranéennes. Annales des Sciences forestières, 38, 469-486.","plantPart":"leaf","original":"Doat1981","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 5510","score":{"value":5510,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 3050; Combustibility measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Doat1981-1; sampling ND. Primary study Doat1981: Doat, J., Valette, J. C., Askri, D., Caumartin, L., Bettachini, M., & Moro, M. (1981). Le pouvoir calorifique supérieur d'espèces forestières méditerranéennes. Annales des Sciences forestières, 38, 469-486.","plantPart":"leaf","original":"Doat1981","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 5307","score":{"value":5307,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 3051; Combustibility measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Doat1981-1; sampling ND. Primary study Doat1981: Doat, J., Valette, J. C., Askri, D., Caumartin, L., Bettachini, M., & Moro, M. (1981). Le pouvoir calorifique supérieur d'espèces forestières méditerranéennes. Annales des Sciences forestières, 38, 469-486.","plantPart":"leaf","original":"Doat1981","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 5147","score":{"value":5147,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 3052; Combustibility measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Doat1981-1; sampling ND. Primary study Doat1981: Doat, J., Valette, J. C., Askri, D., Caumartin, L., Bettachini, M., & Moro, M. (1981). Le pouvoir calorifique supérieur d'espèces forestières méditerranéennes. Annales des Sciences forestières, 38, 469-486.","plantPart":"leaf","original":"Doat1981","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 5162","score":{"value":5162,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 3053; Combustibility measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Doat1981-1; sampling ND. Primary study Doat1981: Doat, J., Valette, J. C., Askri, D., Caumartin, L., Bettachini, M., & Moro, M. (1981). Le pouvoir calorifique supérieur d'espèces forestières méditerranéennes. Annales des Sciences forestières, 38, 469-486.","plantPart":"leaf","original":"Doat1981","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 12.54","score":{"value":12.54,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 3757; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Ganteaume2021a-1; sampling january to februaty and april to may. Primary study Ganteaume2021a: Ganteaume, A., Romero, B., Fernandez, C., Ormeño, E., & Lecareux, C. (2021). Volatile and semi-volatile terpenes impact leaf flammability: differences according to the level of terpene identification. Chemoecology, 31, 259-275.","plantPart":"leaf","original":"Ganteaume2021a","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 538.09","score":{"value":538.09,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 3761; Combustibility measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Ganteaume2021a-1; sampling january to februaty and april to may. Primary study Ganteaume2021a: Ganteaume, A., Romero, B., Fernandez, C., Ormeño, E., & Lecareux, C. (2021). Volatile and semi-volatile terpenes impact leaf flammability: differences according to the level of terpene identification. Chemoecology, 31, 259-275.","plantPart":"leaf","original":"Ganteaume2021a","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 13.26","score":{"value":13.26,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 3765; Sustainability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Ganteaume2021a-1; sampling january to februaty and april to may. Primary study Ganteaume2021a: Ganteaume, A., Romero, B., Fernandez, C., Ormeño, E., & Lecareux, C. (2021). Volatile and semi-volatile terpenes impact leaf flammability: differences according to the level of terpene identification. Chemoecology, 31, 259-275.","plantPart":"leaf","original":"Ganteaume2021a","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"temperature at flaming (°C): 305.81","score":{"value":305.81,"scale":"FLAMITS — temperature at flaming (°C)"},"claims":"FLAMITS record 3769; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Ganteaume2021a-1; sampling january to februaty and april to may. Primary study Ganteaume2021a: Ganteaume, A., Romero, B., Fernandez, C., Ormeño, E., & Lecareux, C. (2021). Volatile and semi-volatile terpenes impact leaf flammability: differences according to the level of terpene identification. Chemoecology, 31, 259-275.","plantPart":"leaf","original":"Ganteaume2021a","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 12.4","score":{"value":12.4,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 3773; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Ganteaume2021b-1; sampling winter. Primary study Ganteaume2021b: Ganteaume, A., Romero, B., Ormeño, E., Lecareux, C., & Fernandez, C. (2021). Does Seasonality of Leaf Terpene Content and Moisture Content Trigger Leaf Flammability Seasonal Variation? in review, preprint.","plantPart":"leaf","original":"Ganteaume2021b","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 10.02","score":{"value":10.02,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 3774; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Ganteaume2021b-1; sampling spring. Primary study Ganteaume2021b: Ganteaume, A., Romero, B., Ormeño, E., Lecareux, C., & Fernandez, C. (2021). Does Seasonality of Leaf Terpene Content and Moisture Content Trigger Leaf Flammability Seasonal Variation? in review, preprint.","plantPart":"leaf","original":"Ganteaume2021b","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 12.8","score":{"value":12.8,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 3775; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Ganteaume2021b-1; sampling summer. Primary study Ganteaume2021b: Ganteaume, A., Romero, B., Ormeño, E., Lecareux, C., & Fernandez, C. (2021). Does Seasonality of Leaf Terpene Content and Moisture Content Trigger Leaf Flammability Seasonal Variation? in review, preprint.","plantPart":"leaf","original":"Ganteaume2021b","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 519.44","score":{"value":519.44,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 3794; Combustibility measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Ganteaume2021b-1; sampling winter. Primary study Ganteaume2021b: Ganteaume, A., Romero, B., Ormeño, E., Lecareux, C., & Fernandez, C. (2021). Does Seasonality of Leaf Terpene Content and Moisture Content Trigger Leaf Flammability Seasonal Variation? in review, preprint.","plantPart":"leaf","original":"Ganteaume2021b","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 553.12","score":{"value":553.12,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 3795; Combustibility measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Ganteaume2021b-1; sampling spring. Primary study Ganteaume2021b: Ganteaume, A., Romero, B., Ormeño, E., Lecareux, C., & Fernandez, C. (2021). Does Seasonality of Leaf Terpene Content and Moisture Content Trigger Leaf Flammability Seasonal Variation? in review, preprint.","plantPart":"leaf","original":"Ganteaume2021b","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 555.03","score":{"value":555.03,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 3796; Combustibility measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Ganteaume2021b-1; sampling summer. Primary study Ganteaume2021b: Ganteaume, A., Romero, B., Ormeño, E., Lecareux, C., & Fernandez, C. (2021). Does Seasonality of Leaf Terpene Content and Moisture Content Trigger Leaf Flammability Seasonal Variation? in review, preprint.","plantPart":"leaf","original":"Ganteaume2021b","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 12.98","score":{"value":12.98,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 3806; Sustainability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Ganteaume2021b-1; sampling winter. Primary study Ganteaume2021b: Ganteaume, A., Romero, B., Ormeño, E., Lecareux, C., & Fernandez, C. (2021). Does Seasonality of Leaf Terpene Content and Moisture Content Trigger Leaf Flammability Seasonal Variation? in review, preprint.","plantPart":"leaf","original":"Ganteaume2021b","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 12.27","score":{"value":12.27,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 3807; Sustainability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Ganteaume2021b-1; sampling spring. Primary study Ganteaume2021b: Ganteaume, A., Romero, B., Ormeño, E., Lecareux, C., & Fernandez, C. (2021). Does Seasonality of Leaf Terpene Content and Moisture Content Trigger Leaf Flammability Seasonal Variation? in review, preprint.","plantPart":"leaf","original":"Ganteaume2021b","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 14.74","score":{"value":14.74,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 3808; Sustainability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Ganteaume2021b-1; sampling summer. Primary study Ganteaume2021b: Ganteaume, A., Romero, B., Ormeño, E., Lecareux, C., & Fernandez, C. (2021). Does Seasonality of Leaf Terpene Content and Moisture Content Trigger Leaf Flammability Seasonal Variation? in review, preprint.","plantPart":"leaf","original":"Ganteaume2021b","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 5409.86","score":{"value":5409.86,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 3929; Combustibility measurement; plant part litter; fuel live; predrying yes; device calorimeter; site Gillon1997-1; sampling june to september. Primary study Gillon1997: Gillon, D., Hernando, C., Valette, J.-C., & Joffre, R. (1997). Fast estimation of the calorific values of forest fuels by near infrared-reflectance spectroscopy. Canadian Journal of Forest Research, 27, 760-765.","plantPart":"litter","original":"Gillon1997","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 0.51","score":{"value":0.51,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 4648; Ignitability measurement; plant part litter; fuel all; predrying no; device burning bench; site Guijarro2002-1; sampling ND. Primary study Guijarro2002: Guijarro, M., Hernando, C., Díez, C., Martínez, E., Madrigal, J., Lampin-Cabaret, C., ... Vega, J. (2002). Flammability of some fuel beds common in the South-European ecosystems.  IV International Conference Forest Fire Research. Coimbra, Portugal.","plantPart":"litter","original":"Guijarro2002","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"rate of burning spread (cm/s): 0.23","score":{"value":0.23,"scale":"FLAMITS — rate of burning spread (cm/s)"},"claims":"FLAMITS record 4661; Sustainability measurement; plant part litter; fuel all; predrying no; device burning bench; site Guijarro2002-1; sampling ND. Primary study Guijarro2002: Guijarro, M., Hernando, C., Díez, C., Martínez, E., Madrigal, J., Lampin-Cabaret, C., ... Vega, J. (2002). Flammability of some fuel beds common in the South-European ecosystems.  IV International Conference Forest Fire Research. Coimbra, Portugal.","plantPart":"litter","original":"Guijarro2002","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"ignition frequency (%): 45","score":{"value":45,"scale":"FLAMITS — ignition frequency (%)"},"claims":"FLAMITS record 4671; Ignitability measurement; plant part litter; fuel all; predrying no; device burning bench; site Guijarro2002-1; sampling ND. Primary study Guijarro2002: Guijarro, M., Hernando, C., Díez, C., Martínez, E., Madrigal, J., Lampin-Cabaret, C., ... Vega, J. (2002). Flammability of some fuel beds common in the South-European ecosystems.  IV International Conference Forest Fire Research. Coimbra, Portugal.","plantPart":"litter","original":"Guijarro2002","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 4.51","score":{"value":4.51,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 4679; Ignitability measurement; plant part litter; fuel all; predrying no; device burning bench; site Guijarro2002-1; sampling ND. Primary study Guijarro2002: Guijarro, M., Hernando, C., Díez, C., Martínez, E., Madrigal, J., Lampin-Cabaret, C., ... Vega, J. (2002). Flammability of some fuel beds common in the South-European ecosystems.  IV International Conference Forest Fire Research. Coimbra, Portugal.","plantPart":"litter","original":"Guijarro2002","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"rate of burning spread (cm/s): 0.23","score":{"value":0.23,"scale":"FLAMITS — rate of burning spread (cm/s)"},"claims":"FLAMITS record 4687; Sustainability measurement; plant part litter; fuel all; predrying no; device burning bench; site Guijarro2002-1; sampling ND. Primary study Guijarro2002: Guijarro, M., Hernando, C., Díez, C., Martínez, E., Madrigal, J., Lampin-Cabaret, C., ... Vega, J. (2002). Flammability of some fuel beds common in the South-European ecosystems.  IV International Conference Forest Fire Research. Coimbra, Portugal.","plantPart":"litter","original":"Guijarro2002","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 8.2","score":{"value":8.2,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 4718; Ignitability measurement; plant part twigs; fuel live; predrying no; device epiradiator; site Hachmi2011-1; sampling ND. Primary study Hachmi2011: Hachmi, M. H., Sesbou, A., Benjelloun, H., El Handouz, N., & Bouanane, F. (2011). A Simple Technique to Estimate the Flammability Index of Moroccan Forest Fuels. Journal of Combustion, 2011, 1-11.","plantPart":"shoot","original":"Hachmi2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 12","score":{"value":12,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 4771; Combustibility measurement; plant part twigs; fuel live; predrying no; device epiradiator; site Hachmi2011-1; sampling ND. Primary study Hachmi2011: Hachmi, M. H., Sesbou, A., Benjelloun, H., El Handouz, N., & Bouanane, F. (2011). A Simple Technique to Estimate the Flammability Index of Moroccan Forest Fuels. Journal of Combustion, 2011, 1-11.","plantPart":"shoot","original":"Hachmi2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 14.3","score":{"value":14.3,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 4772; Sustainability measurement; plant part twigs; fuel live; predrying no; device epiradiator; site Hachmi2011-1; sampling ND. Primary study Hachmi2011: Hachmi, M. H., Sesbou, A., Benjelloun, H., El Handouz, N., & Bouanane, F. (2011). A Simple Technique to Estimate the Flammability Index of Moroccan Forest Fuels. Journal of Combustion, 2011, 1-11.","plantPart":"shoot","original":"Hachmi2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 28.17","score":{"value":28.17,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 4891; Combustibility measurement; plant part twigs; fuel live; predrying yes; device infrared burner; site Henaoui2013-1; sampling spring. Primary study Henaoui2013: Henaoui, S. E. -A., Bouazza, M., & Amara, M. (2013). The fire risk of the plant groupings with Cistus in the area of Tlemcen (Western Algeria). European Scientific Journal, 9, 84-103.","plantPart":"shoot","original":"Henaoui2013","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 50.98","score":{"value":50.98,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 4929; Ignitability measurement; plant part twigs; fuel live; predrying yes; device infrared burner; site Henaoui2013-1; sampling spring. Primary study Henaoui2013: Henaoui, S. E. -A., Bouazza, M., & Amara, M. (2013). The fire risk of the plant groupings with Cistus in the area of Tlemcen (Western Algeria). European Scientific Journal, 9, 84-103.","plantPart":"shoot","original":"Henaoui2013","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 109.85","score":{"value":109.85,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 4967; Sustainability measurement; plant part twigs; fuel live; predrying yes; device infrared burner; site Henaoui2013-1; sampling spring. Primary study Henaoui2013: Henaoui, S. E. -A., Bouazza, M., & Amara, M. (2013). The fire risk of the plant groupings with Cistus in the area of Tlemcen (Western Algeria). European Scientific Journal, 9, 84-103.","plantPart":"shoot","original":"Henaoui2013","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 13","score":{"value":13,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 5240; Ignitability measurement; plant part leaves; fuel all; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 32","score":{"value":32,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 5241; Sustainability measurement; plant part leaves; fuel all; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"energy flux (kW/m²): 457","score":{"value":457,"scale":"FLAMITS — energy flux (kW/m²)"},"claims":"FLAMITS record 5242; Combustibility measurement; plant part leaves; fuel all; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 4780.11","score":{"value":4780.11,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 5243; Combustibility measurement; plant part leaves; fuel all; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 11","score":{"value":11,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 5244; Ignitability measurement; plant part leaves; fuel all; predrying yes; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 26","score":{"value":26,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 5245; Sustainability measurement; plant part leaves; fuel all; predrying yes; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"energy flux (kW/m²): 483","score":{"value":483,"scale":"FLAMITS — energy flux (kW/m²)"},"claims":"FLAMITS record 5246; Combustibility measurement; plant part leaves; fuel all; predrying yes; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 5019.12","score":{"value":5019.12,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 5247; Combustibility measurement; plant part leaves; fuel all; predrying yes; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 12","score":{"value":12,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 5248; Ignitability measurement; plant part leaves; fuel all; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 16","score":{"value":16,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 5249; Sustainability measurement; plant part leaves; fuel all; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"energy flux (kW/m²): 625","score":{"value":625,"scale":"FLAMITS — energy flux (kW/m²)"},"claims":"FLAMITS record 5250; Combustibility measurement; plant part leaves; fuel all; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 5019.12","score":{"value":5019.12,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 5251; Combustibility measurement; plant part leaves; fuel all; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 12","score":{"value":12,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 5252; Ignitability measurement; plant part leaves; fuel all; predrying yes; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 18","score":{"value":18,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 5253; Sustainability measurement; plant part leaves; fuel all; predrying yes; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"energy flux (kW/m²): 682","score":{"value":682,"scale":"FLAMITS — energy flux (kW/m²)"},"claims":"FLAMITS record 5254; Combustibility measurement; plant part leaves; fuel all; predrying yes; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 5497.13","score":{"value":5497.13,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 5255; Combustibility measurement; plant part leaves; fuel all; predrying yes; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 11","score":{"value":11,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 5256; Ignitability measurement; plant part leaves; fuel dead; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 25","score":{"value":25,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 5257; Sustainability measurement; plant part leaves; fuel dead; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"energy flux (kW/m²): 472","score":{"value":472,"scale":"FLAMITS — energy flux (kW/m²)"},"claims":"FLAMITS record 5258; Combustibility measurement; plant part leaves; fuel dead; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 4780.11","score":{"value":4780.11,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 5259; Combustibility measurement; plant part leaves; fuel dead; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 9","score":{"value":9,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 5260; Ignitability measurement; plant part leaves; fuel dead; predrying yes; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 21","score":{"value":21,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 5261; Sustainability measurement; plant part leaves; fuel dead; predrying yes; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"energy flux (kW/m²): 347","score":{"value":347,"scale":"FLAMITS — energy flux (kW/m²)"},"claims":"FLAMITS record 5262; Combustibility measurement; plant part leaves; fuel dead; predrying yes; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 5019.12","score":{"value":5019.12,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 5263; Combustibility measurement; plant part leaves; fuel dead; predrying yes; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 13","score":{"value":13,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 5264; Ignitability measurement; plant part leaves; fuel dead; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 18","score":{"value":18,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 5265; Sustainability measurement; plant part leaves; fuel dead; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"energy flux (kW/m²): 632","score":{"value":632,"scale":"FLAMITS — energy flux (kW/m²)"},"claims":"FLAMITS record 5266; Combustibility measurement; plant part leaves; fuel dead; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 5019.12","score":{"value":5019.12,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 5267; Combustibility measurement; plant part leaves; fuel dead; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 12","score":{"value":12,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 5268; Ignitability measurement; plant part leaves; fuel dead; predrying yes; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 13","score":{"value":13,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 5269; Sustainability measurement; plant part leaves; fuel dead; predrying yes; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"energy flux (kW/m²): 457","score":{"value":457,"scale":"FLAMITS — energy flux (kW/m²)"},"claims":"FLAMITS record 5270; Combustibility measurement; plant part leaves; fuel dead; predrying yes; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 5736.14","score":{"value":5736.14,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 5271; Combustibility measurement; plant part leaves; fuel dead; predrying yes; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 15.28","score":{"value":15.28,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 5272; Ignitability measurement; plant part leaves; fuel dead; predrying yes; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 18.08","score":{"value":18.08,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 5273; Ignitability measurement; plant part leaves; fuel dead; predrying yes; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 15.12","score":{"value":15.12,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 5278; Sustainability measurement; plant part leaves; fuel dead; predrying yes; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 6.86","score":{"value":6.86,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 5279; Sustainability measurement; plant part leaves; fuel dead; predrying yes; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"energy flux (kW/m²): 233.69","score":{"value":233.69,"scale":"FLAMITS — energy flux (kW/m²)"},"claims":"FLAMITS record 5284; Combustibility measurement; plant part leaves; fuel dead; predrying yes; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"energy flux (kW/m²): 343.19","score":{"value":343.19,"scale":"FLAMITS — energy flux (kW/m²)"},"claims":"FLAMITS record 5285; Combustibility measurement; plant part leaves; fuel dead; predrying yes; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 59","score":{"value":59,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 5308; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 30","score":{"value":30,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 5309; Sustainability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"energy flux (kW/m²): 252","score":{"value":252,"scale":"FLAMITS — energy flux (kW/m²)"},"claims":"FLAMITS record 5310; Combustibility measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 2629.06","score":{"value":2629.06,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 5311; Combustibility measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 13","score":{"value":13,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 5312; Ignitability measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 24","score":{"value":24,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 5313; Sustainability measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"energy flux (kW/m²): 323","score":{"value":323,"scale":"FLAMITS — energy flux (kW/m²)"},"claims":"FLAMITS record 5314; Combustibility measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 5736.14","score":{"value":5736.14,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 5315; Combustibility measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 63","score":{"value":63,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 5316; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 34","score":{"value":34,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 5317; Sustainability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"energy flux (kW/m²): 212","score":{"value":212,"scale":"FLAMITS — energy flux (kW/m²)"},"claims":"FLAMITS record 5318; Combustibility measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 2151.05","score":{"value":2151.05,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 5319; Combustibility measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 17","score":{"value":17,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 5320; Ignitability measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 14","score":{"value":14,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 5321; Sustainability measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"energy flux (kW/m²): 468","score":{"value":468,"scale":"FLAMITS — energy flux (kW/m²)"},"claims":"FLAMITS record 5322; Combustibility measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 4780.11","score":{"value":4780.11,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 5323; Combustibility measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 14.12","score":{"value":14.12,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 5338; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 12.08","score":{"value":12.08,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 5339; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 12.85","score":{"value":12.85,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 5340; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 9.93","score":{"value":9.93,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 5341; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 10.95","score":{"value":10.95,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 5342; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 10.88","score":{"value":10.88,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 5343; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 12","score":{"value":12,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 5344; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 11.49","score":{"value":11.49,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 5345; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 13.32","score":{"value":13.32,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 5346; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 8.26","score":{"value":8.26,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 5351; Sustainability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 14.09","score":{"value":14.09,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 5352; Sustainability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 25.14","score":{"value":25.14,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 5353; Sustainability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 42.16","score":{"value":42.16,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 5354; Sustainability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 49.88","score":{"value":49.88,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 5355; Sustainability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 56.36","score":{"value":56.36,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 5356; Sustainability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 88.09","score":{"value":88.09,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 5357; Sustainability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 24.57","score":{"value":24.57,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 5372; Sustainability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 16.86","score":{"value":16.86,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 5373; Sustainability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"energy flux (kW/m²): 170.92","score":{"value":170.92,"scale":"FLAMITS — energy flux (kW/m²)"},"claims":"FLAMITS record 5378; Combustibility measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"energy flux (kW/m²): 337.54","score":{"value":337.54,"scale":"FLAMITS — energy flux (kW/m²)"},"claims":"FLAMITS record 5379; Combustibility measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"energy flux (kW/m²): 386.53","score":{"value":386.53,"scale":"FLAMITS — energy flux (kW/m²)"},"claims":"FLAMITS record 5380; Combustibility measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"energy flux (kW/m²): 428.43","score":{"value":428.43,"scale":"FLAMITS — energy flux (kW/m²)"},"claims":"FLAMITS record 5381; Combustibility measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"energy flux (kW/m²): 481.42","score":{"value":481.42,"scale":"FLAMITS — energy flux (kW/m²)"},"claims":"FLAMITS record 5382; Combustibility measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"energy flux (kW/m²): 506.86","score":{"value":506.86,"scale":"FLAMITS — energy flux (kW/m²)"},"claims":"FLAMITS record 5383; Combustibility measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"energy flux (kW/m²): 492.45","score":{"value":492.45,"scale":"FLAMITS — energy flux (kW/m²)"},"claims":"FLAMITS record 5384; Combustibility measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum energy flux (kW/m²): 457.12","score":{"value":457.12,"scale":"FLAMITS — maximum energy flux (kW/m²)"},"claims":"FLAMITS record 5399; Combustibility measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum energy flux (kW/m²): 619.36","score":{"value":619.36,"scale":"FLAMITS — maximum energy flux (kW/m²)"},"claims":"FLAMITS record 5400; Combustibility measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 4058.31","score":{"value":4058.31,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 5405; Combustibility measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 3398.66","score":{"value":3398.66,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 5406; Combustibility measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 3496.65","score":{"value":3496.65,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 5407; Combustibility measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 2569.31","score":{"value":2569.31,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 5408; Combustibility measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 2600.38","score":{"value":2600.38,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 5409; Combustibility measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 1826","score":{"value":1826,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 5410; Combustibility measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 1101.81","score":{"value":1101.81,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 5411; Combustibility measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 4237.57","score":{"value":4237.57,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 5426; Combustibility measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 4720.36","score":{"value":4720.36,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 5427; Combustibility measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 2760.51","score":{"value":2760.51,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 5428; Combustibility measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 3260.03","score":{"value":3260.03,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 5429; Combustibility measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Jervis2012-1; sampling spring. Primary study Jervis2012: Jervis, F. X. (2012). Application of fire calorimetry to understand factors affecting flammability of cellulosic material: Pine needles, tree leaves and chipboard. PhD. Dissertation. University of Edinburgh.","plantPart":"leaf","original":"Jervis2012","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 7.07","score":{"value":7.07,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 5559; Ignitability measurement; plant part litter; fuel all; predrying no; device epiradiator; site Kauf2014-1; sampling may. Primary study Kauf2014: Kauf, Z., Fangmeier, A., Rosavec, R., & panjol, . (2014). Testing Vegetation Flammability: The Problem of Extremely Low Ignition Frequency and Overall Flammability Score. Journal of Combustion, 2014, 1-10.","plantPart":"litter","original":"Kauf2014","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 550","score":{"value":550,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 5567; Combustibility measurement; plant part litter; fuel all; predrying no; device epiradiator; site Kauf2014-1; sampling may. Primary study Kauf2014: Kauf, Z., Fangmeier, A., Rosavec, R., & panjol, . (2014). Testing Vegetation Flammability: The Problem of Extremely Low Ignition Frequency and Overall Flammability Score. Journal of Combustion, 2014, 1-10.","plantPart":"litter","original":"Kauf2014","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"temperature at flaming (°C): 396.6","score":{"value":396.6,"scale":"FLAMITS — temperature at flaming (°C)"},"claims":"FLAMITS record 5575; Ignitability measurement; plant part litter; fuel all; predrying no; device epiradiator; site Kauf2014-1; sampling may. Primary study Kauf2014: Kauf, Z., Fangmeier, A., Rosavec, R., & panjol, . (2014). Testing Vegetation Flammability: The Problem of Extremely Low Ignition Frequency and Overall Flammability Score. Journal of Combustion, 2014, 1-10.","plantPart":"litter","original":"Kauf2014","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 39.13","score":{"value":39.13,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 5583; Sustainability measurement; plant part litter; fuel all; predrying no; device epiradiator; site Kauf2014-1; sampling may. Primary study Kauf2014: Kauf, Z., Fangmeier, A., Rosavec, R., & panjol, . (2014). Testing Vegetation Flammability: The Problem of Extremely Low Ignition Frequency and Overall Flammability Score. Journal of Combustion, 2014, 1-10.","plantPart":"litter","original":"Kauf2014","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 46.21","score":{"value":46.21,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 5591; Sustainability measurement; plant part litter; fuel all; predrying no; device epiradiator; site Kauf2014-1; sampling may. Primary study Kauf2014: Kauf, Z., Fangmeier, A., Rosavec, R., & panjol, . (2014). Testing Vegetation Flammability: The Problem of Extremely Low Ignition Frequency and Overall Flammability Score. Journal of Combustion, 2014, 1-10.","plantPart":"litter","original":"Kauf2014","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 551.65","score":{"value":551.65,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 5598; Combustibility measurement; plant part litter; fuel all; predrying no; device epiradiator; site Kauf2015-1; sampling may, july, september and october. Primary study Kauf2015: Kauf, Z., Fangmeier, A., Rosavec, R., & panjol, . (2015). Seasonal and local differences in leaf litter flammability of six Mediterranean tree species. environmental management, 55, 687-701.","plantPart":"litter","original":"Kauf2015","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"temperature at flaming (°C): 400.49","score":{"value":400.49,"scale":"FLAMITS — temperature at flaming (°C)"},"claims":"FLAMITS record 5604; Ignitability measurement; plant part litter; fuel all; predrying no; device epiradiator; site Kauf2015-1; sampling may, july, september and october. Primary study Kauf2015: Kauf, Z., Fangmeier, A., Rosavec, R., & panjol, . (2015). Seasonal and local differences in leaf litter flammability of six Mediterranean tree species. environmental management, 55, 687-701.","plantPart":"litter","original":"Kauf2015","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 9.87","score":{"value":9.87,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 5615; Ignitability measurement; plant part litter; fuel all; predrying no; device epiradiator; site Kauf2015-1; sampling may, july, september and october. Primary study Kauf2015: Kauf, Z., Fangmeier, A., Rosavec, R., & panjol, . (2015). Seasonal and local differences in leaf litter flammability of six Mediterranean tree species. environmental management, 55, 687-701.","plantPart":"litter","original":"Kauf2015","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 9.53","score":{"value":9.53,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 5616; Ignitability measurement; plant part litter; fuel all; predrying no; device epiradiator; site Kauf2015-2; sampling may, july, september and october. Primary study Kauf2015: Kauf, Z., Fangmeier, A., Rosavec, R., & panjol, . (2015). Seasonal and local differences in leaf litter flammability of six Mediterranean tree species. environmental management, 55, 687-701.","plantPart":"litter","original":"Kauf2015","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 7.87","score":{"value":7.87,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 5617; Ignitability measurement; plant part litter; fuel all; predrying no; device epiradiator; site Kauf2015-3; sampling may, july, september and october. Primary study Kauf2015: Kauf, Z., Fangmeier, A., Rosavec, R., & panjol, . (2015). Seasonal and local differences in leaf litter flammability of six Mediterranean tree species. environmental management, 55, 687-701.","plantPart":"litter","original":"Kauf2015","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 35.45","score":{"value":35.45,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 5631; Sustainability measurement; plant part litter; fuel all; predrying no; device epiradiator; site Kauf2015-1; sampling may, july, september and october. Primary study Kauf2015: Kauf, Z., Fangmeier, A., Rosavec, R., & panjol, . (2015). Seasonal and local differences in leaf litter flammability of six Mediterranean tree species. environmental management, 55, 687-701.","plantPart":"litter","original":"Kauf2015","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 37.78","score":{"value":37.78,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 5632; Sustainability measurement; plant part litter; fuel all; predrying no; device epiradiator; site Kauf2015-2; sampling may, july, september and october. Primary study Kauf2015: Kauf, Z., Fangmeier, A., Rosavec, R., & panjol, . (2015). Seasonal and local differences in leaf litter flammability of six Mediterranean tree species. environmental management, 55, 687-701.","plantPart":"litter","original":"Kauf2015","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 40.02","score":{"value":40.02,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 5633; Sustainability measurement; plant part litter; fuel all; predrying no; device epiradiator; site Kauf2015-3; sampling may, july, september and october. Primary study Kauf2015: Kauf, Z., Fangmeier, A., Rosavec, R., & panjol, . (2015). Seasonal and local differences in leaf litter flammability of six Mediterranean tree species. environmental management, 55, 687-701.","plantPart":"litter","original":"Kauf2015","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 45.53","score":{"value":45.53,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 5647; Sustainability measurement; plant part litter; fuel all; predrying no; device epiradiator; site Kauf2015-1; sampling may, july, september and october. Primary study Kauf2015: Kauf, Z., Fangmeier, A., Rosavec, R., & panjol, . (2015). Seasonal and local differences in leaf litter flammability of six Mediterranean tree species. environmental management, 55, 687-701.","plantPart":"litter","original":"Kauf2015","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 47.28","score":{"value":47.28,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 5648; Sustainability measurement; plant part litter; fuel all; predrying no; device epiradiator; site Kauf2015-2; sampling may, july, september and october. Primary study Kauf2015: Kauf, Z., Fangmeier, A., Rosavec, R., & panjol, . (2015). Seasonal and local differences in leaf litter flammability of six Mediterranean tree species. environmental management, 55, 687-701.","plantPart":"litter","original":"Kauf2015","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 47.18","score":{"value":47.18,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 5649; Sustainability measurement; plant part litter; fuel all; predrying no; device epiradiator; site Kauf2015-3; sampling may, july, september and october. Primary study Kauf2015: Kauf, Z., Fangmeier, A., Rosavec, R., & panjol, . (2015). Seasonal and local differences in leaf litter flammability of six Mediterranean tree species. environmental management, 55, 687-701.","plantPart":"litter","original":"Kauf2015","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 5302.34","score":{"value":5302.34,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 6551; Combustibility measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Liodakis2002-1; sampling january. Primary study Liodakis2002: Liodakis, S., Bakirtzis, D., & Lois, E. (2002). TG and autoignition studies on forest fuels. Journal of Thermal Analysis and Calorimetry, 69, 519-528.","plantPart":"leaf","original":"Liodakis2002","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 45","score":{"value":45,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6556; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2002-1; sampling january. Primary study Liodakis2002: Liodakis, S., Bakirtzis, D., & Lois, E. (2002). TG and autoignition studies on forest fuels. Journal of Thermal Analysis and Calorimetry, 69, 519-528.","plantPart":"leaf","original":"Liodakis2002","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 35","score":{"value":35,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6557; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2002-1; sampling january. Primary study Liodakis2002: Liodakis, S., Bakirtzis, D., & Lois, E. (2002). TG and autoignition studies on forest fuels. Journal of Thermal Analysis and Calorimetry, 69, 519-528.","plantPart":"leaf","original":"Liodakis2002","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 30","score":{"value":30,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6558; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2002-1; sampling january. Primary study Liodakis2002: Liodakis, S., Bakirtzis, D., & Lois, E. (2002). TG and autoignition studies on forest fuels. Journal of Thermal Analysis and Calorimetry, 69, 519-528.","plantPart":"leaf","original":"Liodakis2002","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 30","score":{"value":30,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6559; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2002-1; sampling january. Primary study Liodakis2002: Liodakis, S., Bakirtzis, D., & Lois, E. (2002). TG and autoignition studies on forest fuels. Journal of Thermal Analysis and Calorimetry, 69, 519-528.","plantPart":"leaf","original":"Liodakis2002","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 24","score":{"value":24,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6560; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2002-1; sampling january. Primary study Liodakis2002: Liodakis, S., Bakirtzis, D., & Lois, E. (2002). TG and autoignition studies on forest fuels. Journal of Thermal Analysis and Calorimetry, 69, 519-528.","plantPart":"leaf","original":"Liodakis2002","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 24","score":{"value":24,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6561; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2002-1; sampling january. Primary study Liodakis2002: Liodakis, S., Bakirtzis, D., & Lois, E. (2002). TG and autoignition studies on forest fuels. Journal of Thermal Analysis and Calorimetry, 69, 519-528.","plantPart":"leaf","original":"Liodakis2002","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 14","score":{"value":14,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6562; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2002-1; sampling january. Primary study Liodakis2002: Liodakis, S., Bakirtzis, D., & Lois, E. (2002). TG and autoignition studies on forest fuels. Journal of Thermal Analysis and Calorimetry, 69, 519-528.","plantPart":"leaf","original":"Liodakis2002","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 14","score":{"value":14,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6563; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2002-1; sampling january. Primary study Liodakis2002: Liodakis, S., Bakirtzis, D., & Lois, E. (2002). TG and autoignition studies on forest fuels. Journal of Thermal Analysis and Calorimetry, 69, 519-528.","plantPart":"leaf","original":"Liodakis2002","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 14","score":{"value":14,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6564; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2002-1; sampling january. Primary study Liodakis2002: Liodakis, S., Bakirtzis, D., & Lois, E. (2002). TG and autoignition studies on forest fuels. Journal of Thermal Analysis and Calorimetry, 69, 519-528.","plantPart":"leaf","original":"Liodakis2002","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 12","score":{"value":12,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6565; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2002-1; sampling january. Primary study Liodakis2002: Liodakis, S., Bakirtzis, D., & Lois, E. (2002). TG and autoignition studies on forest fuels. Journal of Thermal Analysis and Calorimetry, 69, 519-528.","plantPart":"leaf","original":"Liodakis2002","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 10","score":{"value":10,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6566; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2002-1; sampling january. Primary study Liodakis2002: Liodakis, S., Bakirtzis, D., & Lois, E. (2002). TG and autoignition studies on forest fuels. Journal of Thermal Analysis and Calorimetry, 69, 519-528.","plantPart":"leaf","original":"Liodakis2002","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 10","score":{"value":10,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6567; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2002-1; sampling january. Primary study Liodakis2002: Liodakis, S., Bakirtzis, D., & Lois, E. (2002). TG and autoignition studies on forest fuels. Journal of Thermal Analysis and Calorimetry, 69, 519-528.","plantPart":"leaf","original":"Liodakis2002","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 9.5","score":{"value":9.5,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6568; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2002-1; sampling january. Primary study Liodakis2002: Liodakis, S., Bakirtzis, D., & Lois, E. (2002). TG and autoignition studies on forest fuels. Journal of Thermal Analysis and Calorimetry, 69, 519-528.","plantPart":"leaf","original":"Liodakis2002","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 67.41","score":{"value":67.41,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 6668; Consumability measurement; plant part leaves; fuel live; predrying yes; device thermal analyzer; site Liodakis2002-1; sampling january. Primary study Liodakis2002: Liodakis, S., Bakirtzis, D., & Lois, E. (2002). TG and autoignition studies on forest fuels. Journal of Thermal Analysis and Calorimetry, 69, 519-528.","plantPart":"leaf","original":"Liodakis2002","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 77.43","score":{"value":77.43,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 6677; Consumability measurement; plant part leaves; fuel live; predrying yes; device thermal analyzer; site Liodakis2002-1; sampling january. Primary study Liodakis2002: Liodakis, S., Bakirtzis, D., & Lois, E. (2002). TG and autoignition studies on forest fuels. Journal of Thermal Analysis and Calorimetry, 69, 519-528.","plantPart":"leaf","original":"Liodakis2002","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 430","score":{"value":430,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 6681; Combustibility measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2005-1; sampling ND. Primary study Liodakis2005: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2005). A method for measuring the relative particle fire hazard properties of forest species. Thermochimica Acta, 437, 150-157.","plantPart":"leaf","original":"Liodakis2005","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"temperature at flaming (°C): 239","score":{"value":239,"scale":"FLAMITS — temperature at flaming (°C)"},"claims":"FLAMITS record 6687; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2005-1; sampling ND. Primary study Liodakis2005: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2005). A method for measuring the relative particle fire hazard properties of forest species. Thermochimica Acta, 437, 150-157.","plantPart":"leaf","original":"Liodakis2005","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 2736","score":{"value":2736,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 6693; Sustainability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2005-1; sampling ND. Primary study Liodakis2005: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2005). A method for measuring the relative particle fire hazard properties of forest species. Thermochimica Acta, 437, 150-157.","plantPart":"leaf","original":"Liodakis2005","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 26280","score":{"value":26280,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6699; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2005-1; sampling ND. Primary study Liodakis2005: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2005). A method for measuring the relative particle fire hazard properties of forest species. Thermochimica Acta, 437, 150-157.","plantPart":"leaf","original":"Liodakis2005","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 5185.94","score":{"value":5185.94,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 6705; Combustibility measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Liodakis2005-1; sampling ND. Primary study Liodakis2005: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2005). A method for measuring the relative particle fire hazard properties of forest species. Thermochimica Acta, 437, 150-157.","plantPart":"leaf","original":"Liodakis2005","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 4584","score":{"value":4584,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 6740; Combustibility measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Liodakis2006b-1; sampling ND. Primary study Liodakis2006b: Liodakis, S., & Kakardakis, T. (2006b). Measuring the Particle Flammability of Forest Species from Wildland/Urban Inter-face (WUI) near Athens by Thermal Analysis. First International Symposium on Environment Identities and Mediterranean Area. Corte-Ajaccio, France","plantPart":"leaf","original":"Liodakis2006b","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 1686","score":{"value":1686,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6747; Ignitability measurement; plant part leaves; fuel live; predrying yes; device thermal analyzer; site Liodakis2006b-1; sampling ND. Primary study Liodakis2006b: Liodakis, S., & Kakardakis, T. (2006b). Measuring the Particle Flammability of Forest Species from Wildland/Urban Inter-face (WUI) near Athens by Thermal Analysis. First International Symposium on Environment Identities and Mediterranean Area. Corte-Ajaccio, France","plantPart":"leaf","original":"Liodakis2006b","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 311.9","score":{"value":311.9,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 6754; Combustibility measurement; plant part leaves; fuel live; predrying yes; device thermal analyzer; site Liodakis2006b-1; sampling ND. Primary study Liodakis2006b: Liodakis, S., & Kakardakis, T. (2006b). Measuring the Particle Flammability of Forest Species from Wildland/Urban Inter-face (WUI) near Athens by Thermal Analysis. First International Symposium on Environment Identities and Mediterranean Area. Corte-Ajaccio, France","plantPart":"leaf","original":"Liodakis2006b","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 300","score":{"value":300,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 6761; Sustainability measurement; plant part leaves; fuel live; predrying yes; device thermal analyzer; site Liodakis2006b-1; sampling ND. Primary study Liodakis2006b: Liodakis, S., & Kakardakis, T. (2006b). Measuring the Particle Flammability of Forest Species from Wildland/Urban Inter-face (WUI) near Athens by Thermal Analysis. First International Symposium on Environment Identities and Mediterranean Area. Corte-Ajaccio, France","plantPart":"leaf","original":"Liodakis2006b","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 460","score":{"value":460,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 6768; Combustibility measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 479","score":{"value":479,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 6769; Combustibility measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 477","score":{"value":477,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 6770; Combustibility measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 397","score":{"value":397,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 6771; Combustibility measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 504","score":{"value":504,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 6772; Combustibility measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 476","score":{"value":476,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 6773; Combustibility measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 440","score":{"value":440,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 6774; Combustibility measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 400","score":{"value":400,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 6775; Combustibility measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 448","score":{"value":448,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 6776; Combustibility measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 454","score":{"value":454,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 6777; Combustibility measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 416","score":{"value":416,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 6778; Combustibility measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 447","score":{"value":447,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 6779; Combustibility measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 401","score":{"value":401,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 6780; Combustibility measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 429","score":{"value":429,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 6781; Combustibility measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 446","score":{"value":446,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 6782; Combustibility measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 486","score":{"value":486,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 6783; Combustibility measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 457","score":{"value":457,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 6784; Combustibility measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 482","score":{"value":482,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 6785; Combustibility measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 398","score":{"value":398,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 6786; Combustibility measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 401","score":{"value":401,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 6787; Combustibility measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 454","score":{"value":454,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 6788; Combustibility measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 416","score":{"value":416,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 6789; Combustibility measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 368","score":{"value":368,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 6790; Combustibility measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 370","score":{"value":370,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 6791; Combustibility measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 456","score":{"value":456,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 6792; Combustibility measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 413","score":{"value":413,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 6793; Combustibility measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 445","score":{"value":445,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 6794; Combustibility measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 415","score":{"value":415,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 6795; Combustibility measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 366","score":{"value":366,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 6796; Combustibility measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 25308","score":{"value":25308,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6797; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 25452","score":{"value":25452,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6798; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 25488","score":{"value":25488,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6799; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 26352","score":{"value":26352,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6800; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 25776","score":{"value":25776,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6801; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 25776","score":{"value":25776,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6802; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 25596","score":{"value":25596,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6803; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 25668","score":{"value":25668,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6804; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 25884","score":{"value":25884,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6805; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 25632","score":{"value":25632,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6806; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 25308","score":{"value":25308,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6807; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 25560","score":{"value":25560,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6808; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 25812","score":{"value":25812,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6809; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 26208","score":{"value":26208,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6810; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 26244","score":{"value":26244,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6811; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 25668","score":{"value":25668,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6812; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 26028","score":{"value":26028,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6813; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 25740","score":{"value":25740,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6814; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 26496","score":{"value":26496,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6815; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 25920","score":{"value":25920,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6816; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 25704","score":{"value":25704,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6817; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 25344","score":{"value":25344,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6818; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 26352","score":{"value":26352,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6819; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 26388","score":{"value":26388,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6820; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 26136","score":{"value":26136,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6821; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 25704","score":{"value":25704,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6822; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 25632","score":{"value":25632,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6823; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 25992","score":{"value":25992,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6824; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 26532","score":{"value":26532,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6825; Ignitability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 1956","score":{"value":1956,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 6826; Sustainability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 1866","score":{"value":1866,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 6827; Sustainability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 1758","score":{"value":1758,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 6828; Sustainability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 1938","score":{"value":1938,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 6829; Sustainability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 1392","score":{"value":1392,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 6830; Sustainability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 1614","score":{"value":1614,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 6831; Sustainability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 1530","score":{"value":1530,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 6832; Sustainability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 1674","score":{"value":1674,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 6833; Sustainability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 1404","score":{"value":1404,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 6834; Sustainability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 1488","score":{"value":1488,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 6835; Sustainability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 1920","score":{"value":1920,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 6836; Sustainability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 2106","score":{"value":2106,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 6837; Sustainability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 1338","score":{"value":1338,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 6838; Sustainability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 1152","score":{"value":1152,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 6839; Sustainability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 780","score":{"value":780,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 6840; Sustainability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 1800","score":{"value":1800,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 6841; Sustainability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 1212","score":{"value":1212,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 6842; Sustainability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 1098","score":{"value":1098,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 6843; Sustainability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 1764","score":{"value":1764,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 6844; Sustainability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 1536","score":{"value":1536,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 6845; Sustainability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 1530","score":{"value":1530,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 6846; Sustainability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 1650","score":{"value":1650,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 6847; Sustainability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 282","score":{"value":282,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 6848; Sustainability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 720","score":{"value":720,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 6849; Sustainability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 1260","score":{"value":1260,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 6850; Sustainability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 1296","score":{"value":1296,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 6851; Sustainability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 1062","score":{"value":1062,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 6852; Sustainability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 1608","score":{"value":1608,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 6853; Sustainability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 1734","score":{"value":1734,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 6854; Sustainability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 96.52","score":{"value":96.52,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 6855; Consumability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 89.1","score":{"value":89.1,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 6856; Consumability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 91.82","score":{"value":91.82,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 6857; Consumability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 88.8","score":{"value":88.8,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 6858; Consumability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 88.2","score":{"value":88.2,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 6859; Consumability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 83.9","score":{"value":83.9,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 6860; Consumability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 86.7","score":{"value":86.7,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 6861; Consumability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 87.8","score":{"value":87.8,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 6862; Consumability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 85.6","score":{"value":85.6,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 6863; Consumability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 87.8","score":{"value":87.8,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 6864; Consumability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 97","score":{"value":97,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 6865; Consumability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 96.32","score":{"value":96.32,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 6866; Consumability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 92.06","score":{"value":92.06,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 6867; Consumability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 86.6","score":{"value":86.6,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 6868; Consumability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 84.7","score":{"value":84.7,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 6869; Consumability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 89.5","score":{"value":89.5,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 6870; Consumability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 87.2","score":{"value":87.2,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 6871; Consumability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 90.64","score":{"value":90.64,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 6872; Consumability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 95.82","score":{"value":95.82,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 6873; Consumability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 90.72","score":{"value":90.72,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 6874; Consumability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 87.5","score":{"value":87.5,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 6875; Consumability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 90.97","score":{"value":90.97,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 6876; Consumability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 87.9","score":{"value":87.9,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 6877; Consumability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 85.1","score":{"value":85.1,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 6878; Consumability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 91.62","score":{"value":91.62,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 6879; Consumability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 90.3","score":{"value":90.3,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 6880; Consumability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 88.3","score":{"value":88.3,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 6881; Consumability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 90.12","score":{"value":90.12,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 6882; Consumability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 83","score":{"value":83,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 6883; Consumability measurement; plant part leaves; fuel live; predrying yes; device muffle furnace; site Liodakis2006c-1; sampling august. Primary study Liodakis2006c: Liodakis, S., Vorisis, D., & Agiovlasitis, I. (2006). Testing the retardancy effect of various inorganic chemicals on smoldering combustion of Pinus halepensis needles. Thermochimica Acta, 444, 157-165.","plantPart":"leaf","original":"Liodakis2006c","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 8.48","score":{"value":8.48,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6884; Ignitability measurement; plant part leaves; fuel live; predrying yes; device burning bench; site Liodakis2011-1; sampling all seasons. Primary study Liodakis2011: Liodakis, S., Agiovlasitis, I.P., Kakardakis, T., Tzamtzis, N., Vorisis, D., & Lois, E. (2011). Determining hazard risk indices for Mediterranean forest species based on particle flammability properties. Fire Safety Journal, 46, 116-124.","plantPart":"leaf","original":"Liodakis2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame intensity (kW/m): 438.01","score":{"value":438.01,"scale":"FLAMITS — flame intensity (kW/m)"},"claims":"FLAMITS record 6891; Combustibility measurement; plant part leaves; fuel live; predrying yes; device burning bench; site Liodakis2011-1; sampling all seasons. Primary study Liodakis2011: Liodakis, S., Agiovlasitis, I.P., Kakardakis, T., Tzamtzis, N., Vorisis, D., & Lois, E. (2011). Determining hazard risk indices for Mediterranean forest species based on particle flammability properties. Fire Safety Journal, 46, 116-124.","plantPart":"leaf","original":"Liodakis2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 295.83","score":{"value":295.83,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 6897; Sustainability measurement; plant part leaves; fuel live; predrying yes; device burning bench; site Liodakis2011-1; sampling all seasons. Primary study Liodakis2011: Liodakis, S., Agiovlasitis, I.P., Kakardakis, T., Tzamtzis, N., Vorisis, D., & Lois, E. (2011). Determining hazard risk indices for Mediterranean forest species based on particle flammability properties. Fire Safety Journal, 46, 116-124.","plantPart":"leaf","original":"Liodakis2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 80.45","score":{"value":80.45,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 6903; Consumability measurement; plant part leaves; fuel live; predrying yes; device burning bench; site Liodakis2011-1; sampling all seasons. Primary study Liodakis2011: Liodakis, S., Agiovlasitis, I.P., Kakardakis, T., Tzamtzis, N., Vorisis, D., & Lois, E. (2011). Determining hazard risk indices for Mediterranean forest species based on particle flammability properties. Fire Safety Journal, 46, 116-124.","plantPart":"leaf","original":"Liodakis2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"rate of burning spread (cm/s): 0.07","score":{"value":0.07,"scale":"FLAMITS — rate of burning spread (cm/s)"},"claims":"FLAMITS record 6909; Sustainability measurement; plant part leaves; fuel live; predrying yes; device burning bench; site Liodakis2011-1; sampling all seasons. Primary study Liodakis2011: Liodakis, S., Agiovlasitis, I.P., Kakardakis, T., Tzamtzis, N., Vorisis, D., & Lois, E. (2011). Determining hazard risk indices for Mediterranean forest species based on particle flammability properties. Fire Safety Journal, 46, 116-124.","plantPart":"leaf","original":"Liodakis2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 6.9","score":{"value":6.9,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 6915; Combustibility measurement; plant part leaves; fuel live; predrying yes; device burning bench; site Liodakis2011-1; sampling all seasons. Primary study Liodakis2011: Liodakis, S., Agiovlasitis, I.P., Kakardakis, T., Tzamtzis, N., Vorisis, D., & Lois, E. (2011). Determining hazard risk indices for Mediterranean forest species based on particle flammability properties. Fire Safety Journal, 46, 116-124.","plantPart":"leaf","original":"Liodakis2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 3.9","score":{"value":3.9,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6921; Ignitability measurement; plant part leaves; fuel live; predrying yes; device burning bench; site Liodakis2011-1; sampling all seasons. Primary study Liodakis2011: Liodakis, S., Agiovlasitis, I.P., Kakardakis, T., Tzamtzis, N., Vorisis, D., & Lois, E. (2011). Determining hazard risk indices for Mediterranean forest species based on particle flammability properties. Fire Safety Journal, 46, 116-124.","plantPart":"leaf","original":"Liodakis2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"rate of burning spread (cm/s): 0.14","score":{"value":0.14,"scale":"FLAMITS — rate of burning spread (cm/s)"},"claims":"FLAMITS record 6927; Sustainability measurement; plant part leaves; fuel live; predrying yes; device burning bench; site Liodakis2011-1; sampling all seasons. Primary study Liodakis2011: Liodakis, S., Agiovlasitis, I.P., Kakardakis, T., Tzamtzis, N., Vorisis, D., & Lois, E. (2011). Determining hazard risk indices for Mediterranean forest species based on particle flammability properties. Fire Safety Journal, 46, 116-124.","plantPart":"leaf","original":"Liodakis2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 190.03","score":{"value":190.03,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 6933; Sustainability measurement; plant part leaves; fuel live; predrying yes; device burning bench; site Liodakis2011-1; sampling all seasons. Primary study Liodakis2011: Liodakis, S., Agiovlasitis, I.P., Kakardakis, T., Tzamtzis, N., Vorisis, D., & Lois, E. (2011). Determining hazard risk indices for Mediterranean forest species based on particle flammability properties. Fire Safety Journal, 46, 116-124.","plantPart":"leaf","original":"Liodakis2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 7.1","score":{"value":7.1,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 6939; Combustibility measurement; plant part leaves; fuel live; predrying yes; device burning bench; site Liodakis2011-1; sampling all seasons. Primary study Liodakis2011: Liodakis, S., Agiovlasitis, I.P., Kakardakis, T., Tzamtzis, N., Vorisis, D., & Lois, E. (2011). Determining hazard risk indices for Mediterranean forest species based on particle flammability properties. Fire Safety Journal, 46, 116-124.","plantPart":"leaf","original":"Liodakis2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame intensity (kW/m): 376.02","score":{"value":376.02,"scale":"FLAMITS — flame intensity (kW/m)"},"claims":"FLAMITS record 6945; Combustibility measurement; plant part leaves; fuel live; predrying yes; device burning bench; site Liodakis2011-1; sampling all seasons. Primary study Liodakis2011: Liodakis, S., Agiovlasitis, I.P., Kakardakis, T., Tzamtzis, N., Vorisis, D., & Lois, E. (2011). Determining hazard risk indices for Mediterranean forest species based on particle flammability properties. Fire Safety Journal, 46, 116-124.","plantPart":"leaf","original":"Liodakis2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 82","score":{"value":82,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 6951; Consumability measurement; plant part leaves; fuel live; predrying yes; device burning bench; site Liodakis2011-1; sampling all seasons. Primary study Liodakis2011: Liodakis, S., Agiovlasitis, I.P., Kakardakis, T., Tzamtzis, N., Vorisis, D., & Lois, E. (2011). Determining hazard risk indices for Mediterranean forest species based on particle flammability properties. Fire Safety Journal, 46, 116-124.","plantPart":"leaf","original":"Liodakis2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 3.94","score":{"value":3.94,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 6957; Ignitability measurement; plant part leaves; fuel live; predrying yes; device burning bench; site Liodakis2011-1; sampling all seasons. Primary study Liodakis2011: Liodakis, S., Agiovlasitis, I.P., Kakardakis, T., Tzamtzis, N., Vorisis, D., & Lois, E. (2011). Determining hazard risk indices for Mediterranean forest species based on particle flammability properties. Fire Safety Journal, 46, 116-124.","plantPart":"leaf","original":"Liodakis2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"rate of burning spread (cm/s): 0.16","score":{"value":0.16,"scale":"FLAMITS — rate of burning spread (cm/s)"},"claims":"FLAMITS record 6963; Sustainability measurement; plant part leaves; fuel live; predrying yes; device burning bench; site Liodakis2011-1; sampling all seasons. Primary study Liodakis2011: Liodakis, S., Agiovlasitis, I.P., Kakardakis, T., Tzamtzis, N., Vorisis, D., & Lois, E. (2011). Determining hazard risk indices for Mediterranean forest species based on particle flammability properties. Fire Safety Journal, 46, 116-124.","plantPart":"leaf","original":"Liodakis2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 164.2","score":{"value":164.2,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 6969; Sustainability measurement; plant part leaves; fuel live; predrying yes; device burning bench; site Liodakis2011-1; sampling all seasons. Primary study Liodakis2011: Liodakis, S., Agiovlasitis, I.P., Kakardakis, T., Tzamtzis, N., Vorisis, D., & Lois, E. (2011). Determining hazard risk indices for Mediterranean forest species based on particle flammability properties. Fire Safety Journal, 46, 116-124.","plantPart":"leaf","original":"Liodakis2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 100","score":{"value":100,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 6975; Combustibility measurement; plant part leaves; fuel live; predrying yes; device burning bench; site Liodakis2011-1; sampling all seasons. Primary study Liodakis2011: Liodakis, S., Agiovlasitis, I.P., Kakardakis, T., Tzamtzis, N., Vorisis, D., & Lois, E. (2011). Determining hazard risk indices for Mediterranean forest species based on particle flammability properties. Fire Safety Journal, 46, 116-124.","plantPart":"leaf","original":"Liodakis2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame intensity (kW/m): 525.01","score":{"value":525.01,"scale":"FLAMITS — flame intensity (kW/m)"},"claims":"FLAMITS record 6981; Combustibility measurement; plant part leaves; fuel live; predrying yes; device burning bench; site Liodakis2011-1; sampling all seasons. Primary study Liodakis2011: Liodakis, S., Agiovlasitis, I.P., Kakardakis, T., Tzamtzis, N., Vorisis, D., & Lois, E. (2011). Determining hazard risk indices for Mediterranean forest species based on particle flammability properties. Fire Safety Journal, 46, 116-124.","plantPart":"leaf","original":"Liodakis2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 79.9","score":{"value":79.9,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 6987; Consumability measurement; plant part leaves; fuel live; predrying yes; device burning bench; site Liodakis2011-1; sampling all seasons. Primary study Liodakis2011: Liodakis, S., Agiovlasitis, I.P., Kakardakis, T., Tzamtzis, N., Vorisis, D., & Lois, E. (2011). Determining hazard risk indices for Mediterranean forest species based on particle flammability properties. Fire Safety Journal, 46, 116-124.","plantPart":"leaf","original":"Liodakis2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flammability value: 2","score":{"value":2,"scale":"FLAMITS — flammability value"},"claims":"FLAMITS record 6993; Ignitability measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Liodakis2011-1; sampling spring. Primary study Liodakis2011: Liodakis, S., Agiovlasitis, I.P., Kakardakis, T., Tzamtzis, N., Vorisis, D., & Lois, E. (2011). Determining hazard risk indices for Mediterranean forest species based on particle flammability properties. Fire Safety Journal, 46, 116-124.","plantPart":"leaf","original":"Liodakis2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flammability value: 5","score":{"value":5,"scale":"FLAMITS — flammability value"},"claims":"FLAMITS record 7000; Ignitability measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Liodakis2011-1; sampling summer. Primary study Liodakis2011: Liodakis, S., Agiovlasitis, I.P., Kakardakis, T., Tzamtzis, N., Vorisis, D., & Lois, E. (2011). Determining hazard risk indices for Mediterranean forest species based on particle flammability properties. Fire Safety Journal, 46, 116-124.","plantPart":"leaf","original":"Liodakis2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flammability value: 2","score":{"value":2,"scale":"FLAMITS — flammability value"},"claims":"FLAMITS record 7007; Ignitability measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Liodakis2011-1; sampling autumn. Primary study Liodakis2011: Liodakis, S., Agiovlasitis, I.P., Kakardakis, T., Tzamtzis, N., Vorisis, D., & Lois, E. (2011). Determining hazard risk indices for Mediterranean forest species based on particle flammability properties. Fire Safety Journal, 46, 116-124.","plantPart":"leaf","original":"Liodakis2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flammability value: 2","score":{"value":2,"scale":"FLAMITS — flammability value"},"claims":"FLAMITS record 7014; Ignitability measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Liodakis2011-1; sampling all seasons. Primary study Liodakis2011: Liodakis, S., Agiovlasitis, I.P., Kakardakis, T., Tzamtzis, N., Vorisis, D., & Lois, E. (2011). Determining hazard risk indices for Mediterranean forest species based on particle flammability properties. Fire Safety Journal, 46, 116-124.","plantPart":"leaf","original":"Liodakis2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flammability value: 3","score":{"value":3,"scale":"FLAMITS — flammability value"},"claims":"FLAMITS record 7021; Ignitability measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Liodakis2011-1; sampling all seasons. Primary study Liodakis2011: Liodakis, S., Agiovlasitis, I.P., Kakardakis, T., Tzamtzis, N., Vorisis, D., & Lois, E. (2011). Determining hazard risk indices for Mediterranean forest species based on particle flammability properties. Fire Safety Journal, 46, 116-124.","plantPart":"leaf","original":"Liodakis2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flammability value: 4","score":{"value":4,"scale":"FLAMITS — flammability value"},"claims":"FLAMITS record 7028; Ignitability measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Liodakis2011-1; sampling all seasons. Primary study Liodakis2011: Liodakis, S., Agiovlasitis, I.P., Kakardakis, T., Tzamtzis, N., Vorisis, D., & Lois, E. (2011). Determining hazard risk indices for Mediterranean forest species based on particle flammability properties. Fire Safety Journal, 46, 116-124.","plantPart":"leaf","original":"Liodakis2011","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 5.66","score":{"value":5.66,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 7270; Ignitability measurement; plant part leaves; fuel dead; predrying no; device calorimeter; site Madrigal2009-1; sampling ND. Primary study Madrigal2009: Madrigal, J., Hernando, C., Guijarro, M., Diez, C., Marino, E., & De Castro, A. (2009). Evaluation of forest fuel flammability and combustion properties with an adapted mass loss calorimeter device. Journal of Fire Sciences, 27, 323-342.","plantPart":"leaf","original":"Madrigal2009","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 4600.17","score":{"value":4600.17,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 7274; Combustibility measurement; plant part leaves; fuel dead; predrying no; device calorimeter; site Madrigal2009-1; sampling ND. Primary study Madrigal2009: Madrigal, J., Hernando, C., Guijarro, M., Diez, C., Marino, E., & De Castro, A. (2009). Evaluation of forest fuel flammability and combustion properties with an adapted mass loss calorimeter device. Journal of Fire Sciences, 27, 323-342.","plantPart":"leaf","original":"Madrigal2009","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum energy flux (kW/m²): 488.02","score":{"value":488.02,"scale":"FLAMITS — maximum energy flux (kW/m²)"},"claims":"FLAMITS record 7278; Combustibility measurement; plant part leaves; fuel dead; predrying no; device calorimeter; site Madrigal2009-1; sampling ND. Primary study Madrigal2009: Madrigal, J., Hernando, C., Guijarro, M., Diez, C., Marino, E., & De Castro, A. (2009). Evaluation of forest fuel flammability and combustion properties with an adapted mass loss calorimeter device. Journal of Fire Sciences, 27, 323-342.","plantPart":"leaf","original":"Madrigal2009","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"total heat release (MJ/m²): 19.26","score":{"value":19.26,"scale":"FLAMITS — total heat release (MJ/m²)"},"claims":"FLAMITS record 7282; Combustibility measurement; plant part leaves; fuel dead; predrying no; device calorimeter; site Madrigal2009-1; sampling ND. Primary study Madrigal2009: Madrigal, J., Hernando, C., Guijarro, M., Diez, C., Marino, E., & De Castro, A. (2009). Evaluation of forest fuel flammability and combustion properties with an adapted mass loss calorimeter device. Journal of Fire Sciences, 27, 323-342.","plantPart":"leaf","original":"Madrigal2009","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 99.42","score":{"value":99.42,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 7286; Consumability measurement; plant part leaves; fuel dead; predrying no; device calorimeter; site Madrigal2009-1; sampling ND. Primary study Madrigal2009: Madrigal, J., Hernando, C., Guijarro, M., Diez, C., Marino, E., & De Castro, A. (2009). Evaluation of forest fuel flammability and combustion properties with an adapted mass loss calorimeter device. Journal of Fire Sciences, 27, 323-342.","plantPart":"leaf","original":"Madrigal2009","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum energy flux (kW/m²): 495","score":{"value":495,"scale":"FLAMITS — maximum energy flux (kW/m²)"},"claims":"FLAMITS record 7290; Combustibility measurement; plant part litter; fuel dead; predrying no; device calorimeter; site Madrigal2011a-1; sampling ND. Primary study Madrigal2011a: Madrigal, J., Guijarro, M., Hernando, C., Díez, C., & Marino, E. (2011a). Effective Heat of Combustion for Flaming Combustion of Mediterranean Forest Fuels. Fire Technology, 47, 461-474.","plantPart":"litter","original":"Madrigal2011a","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"total heat release (MJ/m²): 25.8","score":{"value":25.8,"scale":"FLAMITS — total heat release (MJ/m²)"},"claims":"FLAMITS record 7296; Combustibility measurement; plant part litter; fuel dead; predrying no; device calorimeter; site Madrigal2011a-1; sampling ND. Primary study Madrigal2011a: Madrigal, J., Guijarro, M., Hernando, C., Díez, C., & Marino, E. (2011a). Effective Heat of Combustion for Flaming Combustion of Mediterranean Forest Fuels. Fire Technology, 47, 461-474.","plantPart":"litter","original":"Madrigal2011a","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 4","score":{"value":4,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 7302; Ignitability measurement; plant part litter; fuel dead; predrying no; device calorimeter; site Madrigal2011a-1; sampling ND. Primary study Madrigal2011a: Madrigal, J., Guijarro, M., Hernando, C., Díez, C., & Marino, E. (2011a). Effective Heat of Combustion for Flaming Combustion of Mediterranean Forest Fuels. Fire Technology, 47, 461-474.","plantPart":"litter","original":"Madrigal2011a","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 60","score":{"value":60,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 7308; Sustainability measurement; plant part litter; fuel dead; predrying no; device calorimeter; site Madrigal2011a-1; sampling ND. Primary study Madrigal2011a: Madrigal, J., Guijarro, M., Hernando, C., Díez, C., & Marino, E. (2011a). Effective Heat of Combustion for Flaming Combustion of Mediterranean Forest Fuels. Fire Technology, 47, 461-474.","plantPart":"litter","original":"Madrigal2011a","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"mass loss rate (g/s): 0.07","score":{"value":0.07,"scale":"FLAMITS — mass loss rate (g/s)"},"claims":"FLAMITS record 7314; Combustibility measurement; plant part litter; fuel dead; predrying no; device calorimeter; site Madrigal2011a-1; sampling ND. Primary study Madrigal2011a: Madrigal, J., Guijarro, M., Hernando, C., Díez, C., & Marino, E. (2011a). Effective Heat of Combustion for Flaming Combustion of Mediterranean Forest Fuels. Fire Technology, 47, 461-474.","plantPart":"litter","original":"Madrigal2011a","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 65","score":{"value":65,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 7335; Sustainability measurement; plant part twigs; fuel live; predrying no; device calorimeter; site Madrigal2011a-1; sampling ND. Primary study Madrigal2011a: Madrigal, J., Guijarro, M., Hernando, C., Díez, C., & Marino, E. (2011a). Effective Heat of Combustion for Flaming Combustion of Mediterranean Forest Fuels. Fire Technology, 47, 461-474.","plantPart":"shoot","original":"Madrigal2011a","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum energy flux (kW/m²): 356","score":{"value":356,"scale":"FLAMITS — maximum energy flux (kW/m²)"},"claims":"FLAMITS record 7355; Combustibility measurement; plant part twigs; fuel live; predrying no; device calorimeter; site Madrigal2011a-1; sampling ND. Primary study Madrigal2011a: Madrigal, J., Guijarro, M., Hernando, C., Díez, C., & Marino, E. (2011a). Effective Heat of Combustion for Flaming Combustion of Mediterranean Forest Fuels. Fire Technology, 47, 461-474.","plantPart":"shoot","original":"Madrigal2011a","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 4","score":{"value":4,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 7375; Ignitability measurement; plant part twigs; fuel live; predrying no; device calorimeter; site Madrigal2011a-1; sampling ND. Primary study Madrigal2011a: Madrigal, J., Guijarro, M., Hernando, C., Díez, C., & Marino, E. (2011a). Effective Heat of Combustion for Flaming Combustion of Mediterranean Forest Fuels. Fire Technology, 47, 461-474.","plantPart":"shoot","original":"Madrigal2011a","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"mass loss rate (g/s): 0.06","score":{"value":0.06,"scale":"FLAMITS — mass loss rate (g/s)"},"claims":"FLAMITS record 7395; Combustibility measurement; plant part twigs; fuel live; predrying no; device calorimeter; site Madrigal2011a-1; sampling ND. Primary study Madrigal2011a: Madrigal, J., Guijarro, M., Hernando, C., Díez, C., & Marino, E. (2011a). Effective Heat of Combustion for Flaming Combustion of Mediterranean Forest Fuels. Fire Technology, 47, 461-474.","plantPart":"shoot","original":"Madrigal2011a","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"total heat release (MJ/m²): 23.18","score":{"value":23.18,"scale":"FLAMITS — total heat release (MJ/m²)"},"claims":"FLAMITS record 7415; Combustibility measurement; plant part twigs; fuel live; predrying no; device calorimeter; site Madrigal2011a-1; sampling ND. Primary study Madrigal2011a: Madrigal, J., Guijarro, M., Hernando, C., Díez, C., & Marino, E. (2011a). Effective Heat of Combustion for Flaming Combustion of Mediterranean Forest Fuels. Fire Technology, 47, 461-474.","plantPart":"shoot","original":"Madrigal2011a","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 1042","score":{"value":1042,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 9218; Ignitability measurement; plant part leaves; fuel dead; predrying no; device muffle furnace; site Michelaki2020-9; sampling spring. Primary study Michelaki2020: Michelaki, C., Fyllas, N. M., Galanidis, A., Aloupi, M., Evangelou, E., Arianoutsou, M., & Dimitrakopoulos, P. G. (2020). Adaptive flammability syndromes in thermo-Mediterranean vegetation, captured by alternative resource-use strategies. Science of The Total Environment, 718, 137437.","plantPart":"leaf","original":"Michelaki2020","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 350","score":{"value":350,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 9219; Sustainability measurement; plant part leaves; fuel dead; predrying no; device muffle furnace; site Michelaki2020-9; sampling spring. Primary study Michelaki2020: Michelaki, C., Fyllas, N. M., Galanidis, A., Aloupi, M., Evangelou, E., Arianoutsou, M., & Dimitrakopoulos, P. G. (2020). Adaptive flammability syndromes in thermo-Mediterranean vegetation, captured by alternative resource-use strategies. Science of The Total Environment, 718, 137437.","plantPart":"leaf","original":"Michelaki2020","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"mass loss rate (g/s): 0","score":{"value":0,"scale":"FLAMITS — mass loss rate (g/s)"},"claims":"FLAMITS record 9220; Combustibility measurement; plant part leaves; fuel dead; predrying no; device muffle furnace; site Michelaki2020-9; sampling spring. Primary study Michelaki2020: Michelaki, C., Fyllas, N. M., Galanidis, A., Aloupi, M., Evangelou, E., Arianoutsou, M., & Dimitrakopoulos, P. G. (2020). Adaptive flammability syndromes in thermo-Mediterranean vegetation, captured by alternative resource-use strategies. Science of The Total Environment, 718, 137437.","plantPart":"leaf","original":"Michelaki2020","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"estimated burnt biomass (%): 94.5","score":{"value":94.5,"scale":"FLAMITS — estimated burnt biomass (%)"},"claims":"FLAMITS record 9221; Consumability measurement; plant part leaves; fuel dead; predrying no; device muffle furnace; site Michelaki2020-9; sampling spring. Primary study Michelaki2020: Michelaki, C., Fyllas, N. M., Galanidis, A., Aloupi, M., Evangelou, E., Arianoutsou, M., & Dimitrakopoulos, P. G. (2020). Adaptive flammability syndromes in thermo-Mediterranean vegetation, captured by alternative resource-use strategies. Science of The Total Environment, 718, 137437.","plantPart":"leaf","original":"Michelaki2020","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 8.4","score":{"value":8.4,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 9302; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Molina2017-1; sampling summer. Primary study Molina2017: Molina, J. R., Martín, T., Rodríguez Y Silva, F., & Herrera, M. Á. (2017). The ignition index based on flammability of vegetation improves planning in the wildland-urban interface: A case study in Southern Spain. Landscape and Urban Planning, 158, 129-138.","plantPart":"leaf","original":"Molina2017","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 14.7","score":{"value":14.7,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 9320; Sustainability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Molina2017-1; sampling summer. Primary study Molina2017: Molina, J. R., Martín, T., Rodríguez Y Silva, F., & Herrera, M. Á. (2017). The ignition index based on flammability of vegetation improves planning in the wildland-urban interface: A case study in Southern Spain. Landscape and Urban Planning, 158, 129-138.","plantPart":"leaf","original":"Molina2017","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flammability value: 5","score":{"value":5,"scale":"FLAMITS — flammability value"},"claims":"FLAMITS record 9338; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Molina2017-1; sampling summer. Primary study Molina2017: Molina, J. R., Martín, T., Rodríguez Y Silva, F., & Herrera, M. Á. (2017). The ignition index based on flammability of vegetation improves planning in the wildland-urban interface: A case study in Southern Spain. Landscape and Urban Planning, 158, 129-138.","plantPart":"leaf","original":"Molina2017","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 4.1","score":{"value":4.1,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 9738; Sustainability measurement; plant part leaves; fuel live; predrying no; device thermal analyzer; site Ntoufas2013-1; sampling february. Primary study Ntoufas2013: Ntoufas, I., Liodakis, S., Tzamtzis, N., Agiovlasitis, I. P., & Vorisis, D. (2013). The effect of biodiversity on the flammability of forests of Pinus halepensis Mill. Fresenius Environmental Bulletin, 22, 3865-3872.","plantPart":"leaf","original":"Ntoufas2013","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 4.9","score":{"value":4.9,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 9739; Sustainability measurement; plant part leaves; fuel live; predrying no; device thermal analyzer; site Ntoufas2013-2; sampling february. Primary study Ntoufas2013: Ntoufas, I., Liodakis, S., Tzamtzis, N., Agiovlasitis, I. P., & Vorisis, D. (2013). The effect of biodiversity on the flammability of forests of Pinus halepensis Mill. Fresenius Environmental Bulletin, 22, 3865-3872.","plantPart":"leaf","original":"Ntoufas2013","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 6.2","score":{"value":6.2,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 9740; Sustainability measurement; plant part leaves; fuel live; predrying no; device thermal analyzer; site Ntoufas2013-3; sampling february. Primary study Ntoufas2013: Ntoufas, I., Liodakis, S., Tzamtzis, N., Agiovlasitis, I. P., & Vorisis, D. (2013). The effect of biodiversity on the flammability of forests of Pinus halepensis Mill. Fresenius Environmental Bulletin, 22, 3865-3872.","plantPart":"leaf","original":"Ntoufas2013","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 2.5","score":{"value":2.5,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 9741; Sustainability measurement; plant part leaves; fuel live; predrying no; device thermal analyzer; site Ntoufas2013-1; sampling february. Primary study Ntoufas2013: Ntoufas, I., Liodakis, S., Tzamtzis, N., Agiovlasitis, I. P., & Vorisis, D. (2013). The effect of biodiversity on the flammability of forests of Pinus halepensis Mill. Fresenius Environmental Bulletin, 22, 3865-3872.","plantPart":"leaf","original":"Ntoufas2013","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 2.8","score":{"value":2.8,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 9742; Sustainability measurement; plant part leaves; fuel live; predrying no; device thermal analyzer; site Ntoufas2013-2; sampling february. Primary study Ntoufas2013: Ntoufas, I., Liodakis, S., Tzamtzis, N., Agiovlasitis, I. P., & Vorisis, D. (2013). The effect of biodiversity on the flammability of forests of Pinus halepensis Mill. Fresenius Environmental Bulletin, 22, 3865-3872.","plantPart":"leaf","original":"Ntoufas2013","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 2","score":{"value":2,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 9743; Sustainability measurement; plant part leaves; fuel live; predrying no; device thermal analyzer; site Ntoufas2013-1; sampling february. Primary study Ntoufas2013: Ntoufas, I., Liodakis, S., Tzamtzis, N., Agiovlasitis, I. P., & Vorisis, D. (2013). The effect of biodiversity on the flammability of forests of Pinus halepensis Mill. Fresenius Environmental Bulletin, 22, 3865-3872.","plantPart":"leaf","original":"Ntoufas2013","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 9.3","score":{"value":9.3,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 9744; Sustainability measurement; plant part leaves; fuel live; predrying no; device thermal analyzer; site Ntoufas2013-2; sampling february. Primary study Ntoufas2013: Ntoufas, I., Liodakis, S., Tzamtzis, N., Agiovlasitis, I. P., & Vorisis, D. (2013). The effect of biodiversity on the flammability of forests of Pinus halepensis Mill. Fresenius Environmental Bulletin, 22, 3865-3872.","plantPart":"leaf","original":"Ntoufas2013","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 12.3","score":{"value":12.3,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 9745; Sustainability measurement; plant part leaves; fuel live; predrying no; device thermal analyzer; site Ntoufas2013-3; sampling february. Primary study Ntoufas2013: Ntoufas, I., Liodakis, S., Tzamtzis, N., Agiovlasitis, I. P., & Vorisis, D. (2013). The effect of biodiversity on the flammability of forests of Pinus halepensis Mill. Fresenius Environmental Bulletin, 22, 3865-3872.","plantPart":"leaf","original":"Ntoufas2013","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 13.3","score":{"value":13.3,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 9746; Sustainability measurement; plant part leaves; fuel live; predrying no; device thermal analyzer; site Ntoufas2013-1; sampling february. Primary study Ntoufas2013: Ntoufas, I., Liodakis, S., Tzamtzis, N., Agiovlasitis, I. P., & Vorisis, D. (2013). The effect of biodiversity on the flammability of forests of Pinus halepensis Mill. Fresenius Environmental Bulletin, 22, 3865-3872.","plantPart":"leaf","original":"Ntoufas2013","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 283.4","score":{"value":283.4,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 9747; Combustibility measurement; plant part leaves; fuel live; predrying no; device thermal analyzer; site Ntoufas2013-2; sampling february. Primary study Ntoufas2013: Ntoufas, I., Liodakis, S., Tzamtzis, N., Agiovlasitis, I. P., & Vorisis, D. (2013). The effect of biodiversity on the flammability of forests of Pinus halepensis Mill. Fresenius Environmental Bulletin, 22, 3865-3872.","plantPart":"leaf","original":"Ntoufas2013","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 277.6","score":{"value":277.6,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 9748; Combustibility measurement; plant part leaves; fuel live; predrying no; device thermal analyzer; site Ntoufas2013-3; sampling february. Primary study Ntoufas2013: Ntoufas, I., Liodakis, S., Tzamtzis, N., Agiovlasitis, I. P., & Vorisis, D. (2013). The effect of biodiversity on the flammability of forests of Pinus halepensis Mill. Fresenius Environmental Bulletin, 22, 3865-3872.","plantPart":"leaf","original":"Ntoufas2013","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 274.3","score":{"value":274.3,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 9749; Combustibility measurement; plant part leaves; fuel live; predrying no; device thermal analyzer; site Ntoufas2013-3; sampling february. Primary study Ntoufas2013: Ntoufas, I., Liodakis, S., Tzamtzis, N., Agiovlasitis, I. P., & Vorisis, D. (2013). The effect of biodiversity on the flammability of forests of Pinus halepensis Mill. Fresenius Environmental Bulletin, 22, 3865-3872.","plantPart":"leaf","original":"Ntoufas2013","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 397.3","score":{"value":397.3,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 9750; Combustibility measurement; plant part leaves; fuel live; predrying no; device thermal analyzer; site Ntoufas2013-1; sampling february. Primary study Ntoufas2013: Ntoufas, I., Liodakis, S., Tzamtzis, N., Agiovlasitis, I. P., & Vorisis, D. (2013). The effect of biodiversity on the flammability of forests of Pinus halepensis Mill. Fresenius Environmental Bulletin, 22, 3865-3872.","plantPart":"leaf","original":"Ntoufas2013","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 415.1","score":{"value":415.1,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 9751; Combustibility measurement; plant part leaves; fuel live; predrying no; device thermal analyzer; site Ntoufas2013-2; sampling february. Primary study Ntoufas2013: Ntoufas, I., Liodakis, S., Tzamtzis, N., Agiovlasitis, I. P., & Vorisis, D. (2013). The effect of biodiversity on the flammability of forests of Pinus halepensis Mill. Fresenius Environmental Bulletin, 22, 3865-3872.","plantPart":"leaf","original":"Ntoufas2013","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 406.8","score":{"value":406.8,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 9752; Combustibility measurement; plant part leaves; fuel live; predrying no; device thermal analyzer; site Ntoufas2013-3; sampling february. Primary study Ntoufas2013: Ntoufas, I., Liodakis, S., Tzamtzis, N., Agiovlasitis, I. P., & Vorisis, D. (2013). The effect of biodiversity on the flammability of forests of Pinus halepensis Mill. Fresenius Environmental Bulletin, 22, 3865-3872.","plantPart":"leaf","original":"Ntoufas2013","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 5505.97","score":{"value":5505.97,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 9753; Combustibility measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Ntoufas2013-1; sampling february. Primary study Ntoufas2013: Ntoufas, I., Liodakis, S., Tzamtzis, N., Agiovlasitis, I. P., & Vorisis, D. (2013). The effect of biodiversity on the flammability of forests of Pinus halepensis Mill. Fresenius Environmental Bulletin, 22, 3865-3872.","plantPart":"leaf","original":"Ntoufas2013","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 4835.08","score":{"value":4835.08,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 9754; Combustibility measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Ntoufas2013-2; sampling february. Primary study Ntoufas2013: Ntoufas, I., Liodakis, S., Tzamtzis, N., Agiovlasitis, I. P., & Vorisis, D. (2013). The effect of biodiversity on the flammability of forests of Pinus halepensis Mill. Fresenius Environmental Bulletin, 22, 3865-3872.","plantPart":"leaf","original":"Ntoufas2013","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 4693.83","score":{"value":4693.83,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 9755; Combustibility measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Ntoufas2013-3; sampling february. Primary study Ntoufas2013: Ntoufas, I., Liodakis, S., Tzamtzis, N., Agiovlasitis, I. P., & Vorisis, D. (2013). The effect of biodiversity on the flammability of forests of Pinus halepensis Mill. Fresenius Environmental Bulletin, 22, 3865-3872.","plantPart":"leaf","original":"Ntoufas2013","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 4400","score":{"value":4400,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 9757; Combustibility measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Ntoufas2016-1; sampling february. Primary study Ntoufas2016: Ntoufas, I., Liodakis, S., & Tzamtzis, N. (2016). The effect of the extractable components of euro-mediterranean vegetation species to the combustion of their foliage. Fresenius Environmental Bulletin, 2850.","plantPart":"leaf","original":"Ntoufas2016","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 4900","score":{"value":4900,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 9760; Combustibility measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Ntoufas2016-1; sampling february. Primary study Ntoufas2016: Ntoufas, I., Liodakis, S., & Tzamtzis, N. (2016). The effect of the extractable components of euro-mediterranean vegetation species to the combustion of their foliage. Fresenius Environmental Bulletin, 2850.","plantPart":"leaf","original":"Ntoufas2016","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"temperature at flaming (°C): 243.42","score":{"value":243.42,"scale":"FLAMITS — temperature at flaming (°C)"},"claims":"FLAMITS record 9763; Ignitability measurement; plant part leaves; fuel live; predrying no; device thermal analyzer; site Ntoufas2016-1; sampling february. Primary study Ntoufas2016: Ntoufas, I., Liodakis, S., & Tzamtzis, N. (2016). The effect of the extractable components of euro-mediterranean vegetation species to the combustion of their foliage. Fresenius Environmental Bulletin, 2850.","plantPart":"leaf","original":"Ntoufas2016","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"temperature at flaming (°C): 222.06","score":{"value":222.06,"scale":"FLAMITS — temperature at flaming (°C)"},"claims":"FLAMITS record 9766; Ignitability measurement; plant part leaves; fuel live; predrying no; device thermal analyzer; site Ntoufas2016-1; sampling february. Primary study Ntoufas2016: Ntoufas, I., Liodakis, S., & Tzamtzis, N. (2016). The effect of the extractable components of euro-mediterranean vegetation species to the combustion of their foliage. Fresenius Environmental Bulletin, 2850.","plantPart":"leaf","original":"Ntoufas2016","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 360","score":{"value":360,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 9769; Sustainability measurement; plant part leaves; fuel live; predrying no; device thermal analyzer; site Ntoufas2016-1; sampling february. Primary study Ntoufas2016: Ntoufas, I., Liodakis, S., & Tzamtzis, N. (2016). The effect of the extractable components of euro-mediterranean vegetation species to the combustion of their foliage. Fresenius Environmental Bulletin, 2850.","plantPart":"leaf","original":"Ntoufas2016","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 450","score":{"value":450,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 9772; Sustainability measurement; plant part leaves; fuel live; predrying no; device thermal analyzer; site Ntoufas2016-1; sampling february. Primary study Ntoufas2016: Ntoufas, I., Liodakis, S., & Tzamtzis, N. (2016). The effect of the extractable components of euro-mediterranean vegetation species to the combustion of their foliage. Fresenius Environmental Bulletin, 2850.","plantPart":"leaf","original":"Ntoufas2016","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"rate of burning spread (cm/s): 2090","score":{"value":2090,"scale":"FLAMITS — rate of burning spread (cm/s)"},"claims":"FLAMITS record 9882; Sustainability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Ormeno2009-1; sampling june. Primary study Ormeno2009: Ormeno, E., Cespedes, B., Sanchez, I.A., Velasco-Garcia, A., Moreno, J.M., Fernandez, C., & Baldy, V. (2009). The relationship between terpenes and flammability of leaf litter. Forest Ecology and Management, 257, 471-482.","plantPart":"litter","original":"Ormeno2009","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 85","score":{"value":85,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 9884; Combustibility measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Ormeno2009-1; sampling june. Primary study Ormeno2009: Ormeno, E., Cespedes, B., Sanchez, I.A., Velasco-Garcia, A., Moreno, J.M., Fernandez, C., & Baldy, V. (2009). The relationship between terpenes and flammability of leaf litter. Forest Ecology and Management, 257, 471-482.","plantPart":"litter","original":"Ormeno2009","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 348.7","score":{"value":348.7,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 9886; Sustainability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Ormeno2009-1; sampling june. Primary study Ormeno2009: Ormeno, E., Cespedes, B., Sanchez, I.A., Velasco-Garcia, A., Moreno, J.M., Fernandez, C., & Baldy, V. (2009). The relationship between terpenes and flammability of leaf litter. Forest Ecology and Management, 257, 471-482.","plantPart":"litter","original":"Ormeno2009","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 74.1","score":{"value":74.1,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 9888; Consumability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Ormeno2009-1; sampling june. Primary study Ormeno2009: Ormeno, E., Cespedes, B., Sanchez, I.A., Velasco-Garcia, A., Moreno, J.M., Fernandez, C., & Baldy, V. (2009). The relationship between terpenes and flammability of leaf litter. Forest Ecology and Management, 257, 471-482.","plantPart":"litter","original":"Ormeno2009","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 488.2","score":{"value":488.2,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 9890; Combustibility measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Ormeno2009-1; sampling june. Primary study Ormeno2009: Ormeno, E., Cespedes, B., Sanchez, I.A., Velasco-Garcia, A., Moreno, J.M., Fernandez, C., & Baldy, V. (2009). The relationship between terpenes and flammability of leaf litter. Forest Ecology and Management, 257, 471-482.","plantPart":"litter","original":"Ormeno2009","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 2.16","score":{"value":2.16,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 9892; Ignitability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Ormeno2009-1; sampling june. Primary study Ormeno2009: Ormeno, E., Cespedes, B., Sanchez, I.A., Velasco-Garcia, A., Moreno, J.M., Fernandez, C., & Baldy, V. (2009). The relationship between terpenes and flammability of leaf litter. Forest Ecology and Management, 257, 471-482.","plantPart":"litter","original":"Ormeno2009","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 15.19","score":{"value":15.19,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 9898; Sustainability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Ormeno2009-1; sampling june. Primary study Ormeno2009: Ormeno, E., Cespedes, B., Sanchez, I.A., Velasco-Garcia, A., Moreno, J.M., Fernandez, C., & Baldy, V. (2009). The relationship between terpenes and flammability of leaf litter. Forest Ecology and Management, 257, 471-482.","plantPart":"litter","original":"Ormeno2009","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 20.8","score":{"value":20.8,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 10501; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Petriccione2006-1; sampling may to june. Primary study Petriccione2006: Petriccione, M. (2006). Infiammabilità della lettiera di diverse specie vegetali di ambiente mediterráneo. Tesi Di Dottorato. Università Degli Studi Di Napoli Federico II.","plantPart":"leaf","original":"Petriccione2006","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 7.25","score":{"value":7.25,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 10502; Sustainability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Petriccione2006-1; sampling may to june. Primary study Petriccione2006: Petriccione, M. (2006). Infiammabilità della lettiera di diverse specie vegetali di ambiente mediterráneo. Tesi Di Dottorato. Università Degli Studi Di Napoli Federico II.","plantPart":"leaf","original":"Petriccione2006","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"ignition frequency (%): 40","score":{"value":40,"scale":"FLAMITS — ignition frequency (%)"},"claims":"FLAMITS record 10503; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Petriccione2006-1; sampling may to june. Primary study Petriccione2006: Petriccione, M. (2006). Infiammabilità della lettiera di diverse specie vegetali di ambiente mediterráneo. Tesi Di Dottorato. Università Degli Studi Di Napoli Federico II.","plantPart":"leaf","original":"Petriccione2006","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flammability value: 2","score":{"value":2,"scale":"FLAMITS — flammability value"},"claims":"FLAMITS record 10504; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Petriccione2006-1; sampling may to june. Primary study Petriccione2006: Petriccione, M. (2006). Infiammabilità della lettiera di diverse specie vegetali di ambiente mediterráneo. Tesi Di Dottorato. Università Degli Studi Di Napoli Federico II.","plantPart":"leaf","original":"Petriccione2006","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 2.5","score":{"value":2.5,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11329; Ignitability measurement; plant part litter; fuel dead; predrying yes; device epiradiator; site Romero2019-1; sampling july. Primary study Romero2019: Romero, B., Fernandez, C., Lecareux, C., Ormeño, E., & Ganteaume, A. (2019). How terpene content affects fuel flammability of wildlandurban interface vegetation. International Journal of Wildland Fire, 28, 614.","plantPart":"litter","original":"Romero2019","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 589.4","score":{"value":589.4,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 11335; Combustibility measurement; plant part litter; fuel dead; predrying yes; device epiradiator; site Romero2019-1; sampling july. Primary study Romero2019: Romero, B., Fernandez, C., Lecareux, C., Ormeño, E., & Ganteaume, A. (2019). How terpene content affects fuel flammability of wildlandurban interface vegetation. International Journal of Wildland Fire, 28, 614.","plantPart":"litter","original":"Romero2019","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 14.6","score":{"value":14.6,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11341; Sustainability measurement; plant part litter; fuel dead; predrying yes; device epiradiator; site Romero2019-1; sampling july. Primary study Romero2019: Romero, B., Fernandez, C., Lecareux, C., Ormeño, E., & Ganteaume, A. (2019). How terpene content affects fuel flammability of wildlandurban interface vegetation. International Journal of Wildland Fire, 28, 614.","plantPart":"litter","original":"Romero2019","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"temperature at flaming (°C): 352.5","score":{"value":352.5,"scale":"FLAMITS — temperature at flaming (°C)"},"claims":"FLAMITS record 11347; Ignitability measurement; plant part litter; fuel dead; predrying yes; device epiradiator; site Romero2019-1; sampling july. Primary study Romero2019: Romero, B., Fernandez, C., Lecareux, C., Ormeño, E., & Ganteaume, A. (2019). How terpene content affects fuel flammability of wildlandurban interface vegetation. International Journal of Wildland Fire, 28, 614.","plantPart":"litter","original":"Romero2019","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flammability value: 100","score":{"value":100,"scale":"FLAMITS — flammability value"},"claims":"FLAMITS record 11353; Ignitability measurement; plant part litter; fuel dead; predrying yes; device epiradiator; site Romero2019-1; sampling july. Primary study Romero2019: Romero, B., Fernandez, C., Lecareux, C., Ormeño, E., & Ganteaume, A. (2019). How terpene content affects fuel flammability of wildlandurban interface vegetation. International Journal of Wildland Fire, 28, 614.","plantPart":"litter","original":"Romero2019","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 14","score":{"value":14,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11359; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Romero2019-1; sampling july. Primary study Romero2019: Romero, B., Fernandez, C., Lecareux, C., Ormeño, E., & Ganteaume, A. (2019). How terpene content affects fuel flammability of wildlandurban interface vegetation. International Journal of Wildland Fire, 28, 614.","plantPart":"leaf","original":"Romero2019","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 545","score":{"value":545,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 11366; Combustibility measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Romero2019-1; sampling july. Primary study Romero2019: Romero, B., Fernandez, C., Lecareux, C., Ormeño, E., & Ganteaume, A. (2019). How terpene content affects fuel flammability of wildlandurban interface vegetation. International Journal of Wildland Fire, 28, 614.","plantPart":"leaf","original":"Romero2019","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 13.9","score":{"value":13.9,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11373; Sustainability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Romero2019-1; sampling july. Primary study Romero2019: Romero, B., Fernandez, C., Lecareux, C., Ormeño, E., & Ganteaume, A. (2019). How terpene content affects fuel flammability of wildlandurban interface vegetation. International Journal of Wildland Fire, 28, 614.","plantPart":"leaf","original":"Romero2019","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"temperature at flaming (°C): 318.7","score":{"value":318.7,"scale":"FLAMITS — temperature at flaming (°C)"},"claims":"FLAMITS record 11381; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Romero2019-1; sampling july. Primary study Romero2019: Romero, B., Fernandez, C., Lecareux, C., Ormeño, E., & Ganteaume, A. (2019). How terpene content affects fuel flammability of wildlandurban interface vegetation. International Journal of Wildland Fire, 28, 614.","plantPart":"leaf","original":"Romero2019","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flammability value: 100","score":{"value":100,"scale":"FLAMITS — flammability value"},"claims":"FLAMITS record 11388; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Romero2019-1; sampling july. Primary study Romero2019: Romero, B., Fernandez, C., Lecareux, C., Ormeño, E., & Ganteaume, A. (2019). How terpene content affects fuel flammability of wildlandurban interface vegetation. International Journal of Wildland Fire, 28, 614.","plantPart":"leaf","original":"Romero2019","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 3.03","score":{"value":3.03,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11395; Ignitability measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 3.31","score":{"value":3.31,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11396; Ignitability measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 3.29","score":{"value":3.29,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11397; Ignitability measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 3.12","score":{"value":3.12,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11398; Ignitability measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 3.08","score":{"value":3.08,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11399; Ignitability measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 2.94","score":{"value":2.94,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11400; Ignitability measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 3.18","score":{"value":3.18,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11401; Ignitability measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 2.8","score":{"value":2.8,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11402; Ignitability measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 716.34","score":{"value":716.34,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 11403; Combustibility measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 613.99","score":{"value":613.99,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 11404; Combustibility measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 645.14","score":{"value":645.14,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 11405; Combustibility measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 437.48","score":{"value":437.48,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 11406; Combustibility measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 243.66","score":{"value":243.66,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 11407; Combustibility measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 567.3","score":{"value":567.3,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 11408; Combustibility measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 512.79","score":{"value":512.79,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 11409; Combustibility measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 427.19","score":{"value":427.19,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 11410; Combustibility measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 13.88","score":{"value":13.88,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11411; Sustainability measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 16.44","score":{"value":16.44,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11412; Sustainability measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 17.52","score":{"value":17.52,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11413; Sustainability measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 13.05","score":{"value":13.05,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11414; Sustainability measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 16.25","score":{"value":16.25,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11415; Sustainability measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 13.78","score":{"value":13.78,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11416; Sustainability measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 12.67","score":{"value":12.67,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11417; Sustainability measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 14.52","score":{"value":14.52,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11418; Sustainability measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 43.13","score":{"value":43.13,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 11419; Combustibility measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 44.09","score":{"value":44.09,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 11420; Combustibility measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 46.45","score":{"value":46.45,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 11421; Combustibility measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 56.29","score":{"value":56.29,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 11422; Combustibility measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 52.58","score":{"value":52.58,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 11423; Combustibility measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 56.98","score":{"value":56.98,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 11424; Combustibility measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 48.5","score":{"value":48.5,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 11425; Combustibility measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 53.5","score":{"value":53.5,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 11426; Combustibility measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 2.93","score":{"value":2.93,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11427; Ignitability measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 2.91","score":{"value":2.91,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11428; Ignitability measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 3.18","score":{"value":3.18,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11429; Ignitability measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 2.19","score":{"value":2.19,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11430; Ignitability measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 2.65","score":{"value":2.65,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11431; Ignitability measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 2.68","score":{"value":2.68,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11432; Ignitability measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 2.14","score":{"value":2.14,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11433; Ignitability measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 2.24","score":{"value":2.24,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11434; Ignitability measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 525.97","score":{"value":525.97,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 11435; Combustibility measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 709.24","score":{"value":709.24,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 11436; Combustibility measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 447.49","score":{"value":447.49,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 11437; Combustibility measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 475.5","score":{"value":475.5,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 11438; Combustibility measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 304.01","score":{"value":304.01,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 11439; Combustibility measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 543.82","score":{"value":543.82,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 11440; Combustibility measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 547.25","score":{"value":547.25,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 11441; Combustibility measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 487.58","score":{"value":487.58,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 11442; Combustibility measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 15.39","score":{"value":15.39,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11443; Sustainability measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 14.78","score":{"value":14.78,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11444; Sustainability measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 16.73","score":{"value":16.73,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11445; Sustainability measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 15.71","score":{"value":15.71,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11446; Sustainability measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 17.32","score":{"value":17.32,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11447; Sustainability measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 16.51","score":{"value":16.51,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11448; Sustainability measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 13.57","score":{"value":13.57,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11449; Sustainability measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 16.31","score":{"value":16.31,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11450; Sustainability measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 37.56","score":{"value":37.56,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 11451; Combustibility measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 46.03","score":{"value":46.03,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 11452; Combustibility measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 42.09","score":{"value":42.09,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 11453; Combustibility measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 57.08","score":{"value":57.08,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 11454; Combustibility measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 53.99","score":{"value":53.99,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 11455; Combustibility measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 51.96","score":{"value":51.96,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 11456; Combustibility measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 57.83","score":{"value":57.83,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 11457; Combustibility measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 52.25","score":{"value":52.25,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 11458; Combustibility measurement; plant part twigs; fuel live; predrying yes; device flat flame burner; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"shoot","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 2.91","score":{"value":2.91,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11459; Ignitability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 2.41","score":{"value":2.41,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11460; Ignitability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 2.31","score":{"value":2.31,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11461; Ignitability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 2.26","score":{"value":2.26,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11462; Ignitability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 3.88","score":{"value":3.88,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11463; Ignitability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 1.9","score":{"value":1.9,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11464; Ignitability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 2","score":{"value":2,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11465; Ignitability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 2.14","score":{"value":2.14,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11466; Ignitability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 640.94","score":{"value":640.94,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 11467; Combustibility measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 499.74","score":{"value":499.74,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 11468; Combustibility measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 582.16","score":{"value":582.16,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 11469; Combustibility measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 445","score":{"value":445,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 11470; Combustibility measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 462.35","score":{"value":462.35,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 11471; Combustibility measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 462.22","score":{"value":462.22,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 11472; Combustibility measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 394.7","score":{"value":394.7,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 11473; Combustibility measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 468.88","score":{"value":468.88,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 11474; Combustibility measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 98.88","score":{"value":98.88,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11475; Sustainability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 104.99","score":{"value":104.99,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11476; Sustainability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 89.64","score":{"value":89.64,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11477; Sustainability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 41.07","score":{"value":41.07,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11478; Sustainability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 99.95","score":{"value":99.95,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11479; Sustainability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 95.03","score":{"value":95.03,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11480; Sustainability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 110.39","score":{"value":110.39,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11481; Sustainability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 388.81","score":{"value":388.81,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11482; Sustainability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 58.85","score":{"value":58.85,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 11483; Combustibility measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 51.54","score":{"value":51.54,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 11484; Combustibility measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 60.27","score":{"value":60.27,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 11485; Combustibility measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 58.99","score":{"value":58.99,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 11486; Combustibility measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 20.01","score":{"value":20.01,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 11487; Combustibility measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 59.11","score":{"value":59.11,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 11488; Combustibility measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 46.67","score":{"value":46.67,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 11489; Combustibility measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 63.38","score":{"value":63.38,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 11490; Combustibility measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-1; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 2.24","score":{"value":2.24,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11491; Ignitability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 1.98","score":{"value":1.98,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11492; Ignitability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 2.19","score":{"value":2.19,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11493; Ignitability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 2.4","score":{"value":2.4,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11494; Ignitability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 2.43","score":{"value":2.43,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11495; Ignitability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 1.88","score":{"value":1.88,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11496; Ignitability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 2.39","score":{"value":2.39,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11497; Ignitability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 1.53","score":{"value":1.53,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11498; Ignitability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 634.78","score":{"value":634.78,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 11499; Combustibility measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 583.86","score":{"value":583.86,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 11500; Combustibility measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 547.83","score":{"value":547.83,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 11501; Combustibility measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 425.14","score":{"value":425.14,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 11502; Combustibility measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 484.11","score":{"value":484.11,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 11503; Combustibility measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 382.65","score":{"value":382.65,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 11504; Combustibility measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 476.96","score":{"value":476.96,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 11505; Combustibility measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum flame temperature (°C): 467.63","score":{"value":467.63,"scale":"FLAMITS — maximum flame temperature (°C)"},"claims":"FLAMITS record 11506; Combustibility measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 93.73","score":{"value":93.73,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11507; Sustainability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 87.94","score":{"value":87.94,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11508; Sustainability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 98.62","score":{"value":98.62,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11509; Sustainability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 101.5","score":{"value":101.5,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11510; Sustainability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 96.11","score":{"value":96.11,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11511; Sustainability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 104.23","score":{"value":104.23,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11512; Sustainability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 102.87","score":{"value":102.87,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11513; Sustainability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 107.63","score":{"value":107.63,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11514; Sustainability measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 62.44","score":{"value":62.44,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 11515; Combustibility measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 62.88","score":{"value":62.88,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 11516; Combustibility measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 56.86","score":{"value":56.86,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 11517; Combustibility measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 56.54","score":{"value":56.54,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 11518; Combustibility measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 66.54","score":{"value":66.54,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 11519; Combustibility measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 44.85","score":{"value":44.85,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 11520; Combustibility measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 69.25","score":{"value":69.25,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 11521; Combustibility measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flame height (cm): 69.77","score":{"value":69.77,"scale":"FLAMITS — flame height (cm)"},"claims":"FLAMITS record 11522; Combustibility measurement; plant part litter; fuel all; predrying yes; device epiradiator; site Romero2021-2; sampling july. Primary study Romero2021: Romero, B., & Ganteaume, A. (2021). Effect of Fire Frequency on the Flammability of Two Mediterranean Pines: Link with Needle Terpene Content. Plants, 10, 2164.","plantPart":"litter","original":"Romero2021","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 10.55","score":{"value":10.55,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11619; Sustainability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Rosavec2013-1; sampling june. Primary study Rosavec2013: Rosavec, R., ikic, Z., panjol, ., & Barcic, D. (2013). Utjecaj meteorolokih ?imbenika na zapaljivost nekih sredozemnih vrsta. umarski list, 137, 583-590.","plantPart":"leaf","original":"Rosavec2013","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 10.54","score":{"value":10.54,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 11620; Sustainability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Rosavec2013-2; sampling june. Primary study Rosavec2013: Rosavec, R., ikic, Z., panjol, ., & Barcic, D. (2013). Utjecaj meteorolokih ?imbenika na zapaljivost nekih sredozemnih vrsta. umarski list, 137, 583-590.","plantPart":"leaf","original":"Rosavec2013","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 29.57","score":{"value":29.57,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 11921; Ignitability measurement; plant part leaves; fuel dead; predrying no; device calorimeter; site Santoni2014-1; sampling ND. Primary study Santoni2014: Santoni, P., Bartoli, P., Simeoni, A., & Torero, J. (2014). Bulk and particle properties of pine needle fuel bedsinfluence on combustion. International Journal of Wildland Fire, 23, 1076-1086.","plantPart":"leaf","original":"Santoni2014","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"temperature at flaming (°C): 459","score":{"value":459,"scale":"FLAMITS — temperature at flaming (°C)"},"claims":"FLAMITS record 12137; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Saura2010-1; sampling august. Primary study Saura2010: Saura-Mas, S., Paula, S., Pausas, J. G,. & Lloret, F. (2010). Fuel loading and flammability in the Mediterranean Basin woody species with different post-fire regenerative strategies. International Journal of Wildland Fire, 19, 783.","plantPart":"leaf","original":"Saura2010","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 303.3","score":{"value":303.3,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 12169; Sustainability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Saura2010-1; sampling august. Primary study Saura2010: Saura-Mas, S., Paula, S., Pausas, J. G,. & Lloret, F. (2010). Fuel loading and flammability in the Mediterranean Basin woody species with different post-fire regenerative strategies. International Journal of Wildland Fire, 19, 783.","plantPart":"leaf","original":"Saura2010","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to smoke (s): 121.3","score":{"value":121.3,"scale":"FLAMITS — time to smoke (s)"},"claims":"FLAMITS record 12203; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Saura2010-1; sampling august. Primary study Saura2010: Saura-Mas, S., Paula, S., Pausas, J. G,. & Lloret, F. (2010). Fuel loading and flammability in the Mediterranean Basin woody species with different post-fire regenerative strategies. International Journal of Wildland Fire, 19, 783.","plantPart":"leaf","original":"Saura2010","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"temperature at smoke (°C): 169.8","score":{"value":169.8,"scale":"FLAMITS — temperature at smoke (°C)"},"claims":"FLAMITS record 12240; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Saura2010-1; sampling august. Primary study Saura2010: Saura-Mas, S., Paula, S., Pausas, J. G,. & Lloret, F. (2010). Fuel loading and flammability in the Mediterranean Basin woody species with different post-fire regenerative strategies. International Journal of Wildland Fire, 19, 783.","plantPart":"leaf","original":"Saura2010","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to smouldering (s): 268","score":{"value":268,"scale":"FLAMITS — time to smouldering (s)"},"claims":"FLAMITS record 12276; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Saura2010-1; sampling august. Primary study Saura2010: Saura-Mas, S., Paula, S., Pausas, J. G,. & Lloret, F. (2010). Fuel loading and flammability in the Mediterranean Basin woody species with different post-fire regenerative strategies. International Journal of Wildland Fire, 19, 783.","plantPart":"leaf","original":"Saura2010","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"temperature at smouldering (°C): 342.3","score":{"value":342.3,"scale":"FLAMITS — temperature at smouldering (°C)"},"claims":"FLAMITS record 12312; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Saura2010-1; sampling august. Primary study Saura2010: Saura-Mas, S., Paula, S., Pausas, J. G,. & Lloret, F. (2010). Fuel loading and flammability in the Mediterranean Basin woody species with different post-fire regenerative strategies. International Journal of Wildland Fire, 19, 783.","plantPart":"leaf","original":"Saura2010","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flammability value: 0","score":{"value":0,"scale":"FLAMITS — flammability value"},"claims":"FLAMITS record 13345; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Valette1990-1; sampling june to september. Primary study Valette1990: Valette, J.-C. (1990). Flammabilities of Mediterranean forest species. Effects on the combustibility of the forest communities inflammabilités des espèces forestières méditerranéennes. Conséquences sur la combustibilité des formations forestières. Revue forestière française, 42, 76-92.","plantPart":"leaf","original":"Valette1990","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flammability value: 4","score":{"value":4,"scale":"FLAMITS — flammability value"},"claims":"FLAMITS record 13346; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Valette1990-1; sampling june to september. Primary study Valette1990: Valette, J.-C. (1990). Flammabilities of Mediterranean forest species. Effects on the combustibility of the forest communities inflammabilités des espèces forestières méditerranéennes. Conséquences sur la combustibilité des formations forestières. Revue forestière française, 42, 76-92.","plantPart":"leaf","original":"Valette1990","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 9.69","score":{"value":9.69,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 16438; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Rosavec2022-1; sampling between 2017 to 2019. Primary study Rosavec2022: Rosavec, R., Bar?i?, D., panjol, ., Orani?, M., Dubravac, T., & Antonovi?, A. (2022). Flammability and Combustibility of Two Mediterranean Species in Relation to Forest Fires in Croatia. Forests, 13, 1266.","plantPart":"leaf","original":"Rosavec2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 10.22","score":{"value":10.22,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 16439; Sustainability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Rosavec2022-1; sampling between 2017 to 2019. Primary study Rosavec2022: Rosavec, R., Bar?i?, D., panjol, ., Orani?, M., Dubravac, T., & Antonovi?, A. (2022). Flammability and Combustibility of Two Mediterranean Species in Relation to Forest Fires in Croatia. Forests, 13, 1266.","plantPart":"leaf","original":"Rosavec2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 7.12","score":{"value":7.12,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 16440; Ignitability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Rosavec2022-1; sampling between 2017 to 2019. Primary study Rosavec2022: Rosavec, R., Bar?i?, D., panjol, ., Orani?, M., Dubravac, T., & Antonovi?, A. (2022). Flammability and Combustibility of Two Mediterranean Species in Relation to Forest Fires in Croatia. Forests, 13, 1266.","plantPart":"leaf","original":"Rosavec2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 6.38","score":{"value":6.38,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 16441; Sustainability measurement; plant part leaves; fuel live; predrying no; device epiradiator; site Rosavec2022-1; sampling between 2017 to 2019. Primary study Rosavec2022: Rosavec, R., Bar?i?, D., panjol, ., Orani?, M., Dubravac, T., & Antonovi?, A. (2022). Flammability and Combustibility of Two Mediterranean Species in Relation to Forest Fires in Croatia. Forests, 13, 1266.","plantPart":"leaf","original":"Rosavec2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 99.44","score":{"value":99.44,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 16455; Sustainability measurement; plant part leaves; fuel live; predrying yes; device burning bench; site Pallozzi2018-1; sampling summer 2013. Primary study Pallozzi2018: Pallozzi, E., Lusini, I., Cherubini, L., Hajiaghayeva, R. A., Ciccioli, P., & Calfapietra, C. (2018). Differences between a deciduous and a conifer tree species in gaseous and particulate emissions from biomass burning. Environmental pollution, 234, 457-467.","plantPart":"leaf","original":"Pallozzi2018","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 272.38","score":{"value":272.38,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 16456; Sustainability measurement; plant part twigs; fuel live; predrying yes; device burning bench; site Pallozzi2018-1; sampling summer 2013. Primary study Pallozzi2018: Pallozzi, E., Lusini, I., Cherubini, L., Hajiaghayeva, R. A., Ciccioli, P., & Calfapietra, C. (2018). Differences between a deciduous and a conifer tree species in gaseous and particulate emissions from biomass burning. Environmental pollution, 234, 457-467.","plantPart":"shoot","original":"Pallozzi2018","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burning duration (s): 66.08","score":{"value":66.08,"scale":"FLAMITS — burning duration (s)"},"claims":"FLAMITS record 16457; Sustainability measurement; plant part litter; fuel live; predrying yes; device burning bench; site Pallozzi2018-1; sampling summer 2013. Primary study Pallozzi2018: Pallozzi, E., Lusini, I., Cherubini, L., Hajiaghayeva, R. A., Ciccioli, P., & Calfapietra, C. (2018). Differences between a deciduous and a conifer tree species in gaseous and particulate emissions from biomass burning. Environmental pollution, 234, 457-467.","plantPart":"litter","original":"Pallozzi2018","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 497.1","score":{"value":497.1,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 16461; Combustibility measurement; plant part leaves; fuel live; predrying yes; device burning bench; site Pallozzi2018-1; sampling summer 2013. Primary study Pallozzi2018: Pallozzi, E., Lusini, I., Cherubini, L., Hajiaghayeva, R. A., Ciccioli, P., & Calfapietra, C. (2018). Differences between a deciduous and a conifer tree species in gaseous and particulate emissions from biomass burning. Environmental pollution, 234, 457-467.","plantPart":"leaf","original":"Pallozzi2018","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 712.08","score":{"value":712.08,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 16462; Combustibility measurement; plant part twigs; fuel live; predrying yes; device burning bench; site Pallozzi2018-1; sampling summer 2013. Primary study Pallozzi2018: Pallozzi, E., Lusini, I., Cherubini, L., Hajiaghayeva, R. A., Ciccioli, P., & Calfapietra, C. (2018). Differences between a deciduous and a conifer tree species in gaseous and particulate emissions from biomass burning. Environmental pollution, 234, 457-467.","plantPart":"shoot","original":"Pallozzi2018","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum sample temperature (°C): 523.6","score":{"value":523.6,"scale":"FLAMITS — maximum sample temperature (°C)"},"claims":"FLAMITS record 16463; Combustibility measurement; plant part litter; fuel live; predrying yes; device burning bench; site Pallozzi2018-1; sampling summer 2013. Primary study Pallozzi2018: Pallozzi, E., Lusini, I., Cherubini, L., Hajiaghayeva, R. A., Ciccioli, P., & Calfapietra, C. (2018). Differences between a deciduous and a conifer tree species in gaseous and particulate emissions from biomass burning. Environmental pollution, 234, 457-467.","plantPart":"litter","original":"Pallozzi2018","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 89.57","score":{"value":89.57,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 16765; Ignitability measurement; plant part twigs; fuel live; predrying no; device calorimeter; site Benhalima2019-1; sampling september 2017. Primary study Benhalima2019: Benhalima, Y., & Dehane, B. (2019). Flammability of certain conifers and oak species of north west Algeria. Proceedings of the X International Scientific Agricultural Symposium Agrosym 2019. Jahorina.","plantPart":"shoot","original":"Benhalima2019","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"maximum energy flux (kW/m²): 137.2","score":{"value":137.2,"scale":"FLAMITS — maximum energy flux (kW/m²)"},"claims":"FLAMITS record 16766; Combustibility measurement; plant part twigs; fuel live; predrying no; device calorimeter; site Benhalima2019-1; sampling september 2017. Primary study Benhalima2019: Benhalima, Y., & Dehane, B. (2019). Flammability of certain conifers and oak species of north west Algeria. Proceedings of the X International Scientific Agricultural Symposium Agrosym 2019. Jahorina.","plantPart":"shoot","original":"Benhalima2019","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"calorific value (kcal/kg): 1772.236556","score":{"value":1772.236556,"scale":"FLAMITS — calorific value (kcal/kg)"},"claims":"FLAMITS record 16767; Combustibility measurement; plant part twigs; fuel live; predrying no; device calorimeter; site Benhalima2019-1; sampling september 2017. Primary study Benhalima2019: Benhalima, Y., & Dehane, B. (2019). Flammability of certain conifers and oak species of north west Algeria. Proceedings of the X International Scientific Agricultural Symposium Agrosym 2019. Jahorina.","plantPart":"shoot","original":"Benhalima2019","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"burnt biomass (%): 99.18","score":{"value":99.18,"scale":"FLAMITS — burnt biomass (%)"},"claims":"FLAMITS record 16768; Consumability measurement; plant part twigs; fuel live; predrying no; device calorimeter; site Benhalima2019-1; sampling september 2017. Primary study Benhalima2019: Benhalima, Y., & Dehane, B. (2019). Flammability of certain conifers and oak species of north west Algeria. Proceedings of the X International Scientific Agricultural Symposium Agrosym 2019. Jahorina.","plantPart":"shoot","original":"Benhalima2019","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 69","score":{"value":69,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 16839; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Schemel2008-1; sampling ND. Primary study Schemel2008: Schemel, C.F., Simeoni, A., Biteau, H., Rivera, J.D., & Torero, J.L. (2008). A calorimetric study of wildland fuels. Experimental Thermal and Fluid Science, 32, 13811389.","plantPart":"leaf","original":"Schemel2008","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 394.14","score":{"value":394.14,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 18044; Sustainability measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 113.37","score":{"value":113.37,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 18045; Sustainability measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 114.39","score":{"value":114.39,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 18046; Sustainability measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 58.43","score":{"value":58.43,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 18047; Sustainability measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 59.68","score":{"value":59.68,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 18048; Sustainability measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 64.97","score":{"value":64.97,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 18049; Sustainability measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 33.73","score":{"value":33.73,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 18050; Sustainability measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 69.94","score":{"value":69.94,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 18051; Sustainability measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 68.13","score":{"value":68.13,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 18052; Sustainability measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 61.42","score":{"value":61.42,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 18067; Sustainability measurement; plant part leaves; fuel live; predrying yes; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 59.76","score":{"value":59.76,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 18068; Sustainability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 26.36","score":{"value":26.36,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 18069; Sustainability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 54.77","score":{"value":54.77,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 18070; Sustainability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 55.37","score":{"value":55.37,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 18071; Sustainability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 54.02","score":{"value":54.02,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 18072; Sustainability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 107.58","score":{"value":107.58,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 18073; Sustainability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 109.4","score":{"value":109.4,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 18074; Sustainability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"flaming duration (s): 395.08","score":{"value":395.08,"scale":"FLAMITS — flaming duration (s)"},"claims":"FLAMITS record 18075; Sustainability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 25.08","score":{"value":25.08,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18091; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 15.25","score":{"value":15.25,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18092; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 17.59","score":{"value":17.59,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18093; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 15.09","score":{"value":15.09,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18094; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 16.53","score":{"value":16.53,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18095; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 16.79","score":{"value":16.79,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18096; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 18.54","score":{"value":18.54,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18097; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 22.49","score":{"value":22.49,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18098; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 29.66","score":{"value":29.66,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18099; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 29.63","score":{"value":29.63,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18115; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 22.51","score":{"value":22.51,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18116; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 18.34","score":{"value":18.34,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18117; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 16.62","score":{"value":16.62,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18118; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 16.31","score":{"value":16.31,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18119; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 14.9","score":{"value":14.9,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18120; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 17.54","score":{"value":17.54,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18121; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 15.33","score":{"value":15.33,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18122; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 24.72","score":{"value":24.72,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18123; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Boutchiche2022-1; sampling ND. Primary study Boutchiche2022: Boutchiche, H., Mosbah, O., Sahila, A., Raposo, J., Reis, L., Viegas, D. X., ... Zekri, N. (2022). Influence of Compactness Upon Flammability Properties of Forest Fuels.  in review, preprint.","plantPart":"leaf","original":"Boutchiche2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 368.54","score":{"value":368.54,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18264; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 342.05","score":{"value":342.05,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18265; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 309.21","score":{"value":309.21,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18266; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 407.26","score":{"value":407.26,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18267; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 461.46","score":{"value":461.46,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18268; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 526.69","score":{"value":526.69,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18269; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 597.02","score":{"value":597.02,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18270; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 574.02","score":{"value":574.02,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18271; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 714.75","score":{"value":714.75,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18272; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 788.15","score":{"value":788.15,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18273; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 753.69","score":{"value":753.69,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18274; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 864.61","score":{"value":864.61,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18275; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 884.32","score":{"value":884.32,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18276; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 961.94","score":{"value":961.94,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18277; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 981.65","score":{"value":981.65,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18278; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 1060.47","score":{"value":1060.47,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18279; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 187.95","score":{"value":187.95,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18280; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 151.84","score":{"value":151.84,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18281; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 200.86","score":{"value":200.86,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18282; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 181.14","score":{"value":181.14,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18283; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 279.17","score":{"value":279.17,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18284; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 297.95","score":{"value":297.95,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18285; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 416.41","score":{"value":416.41,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18286; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 437.73","score":{"value":437.73,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18287; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 472.27","score":{"value":472.27,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18288; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 475.02","score":{"value":475.02,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18289; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 511.11","score":{"value":511.11,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18290; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 586.22","score":{"value":586.22,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18291; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 680.72","score":{"value":680.72,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18292; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 725.05","score":{"value":725.05,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18293; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 922.51","score":{"value":922.51,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18294; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 902.82","score":{"value":902.82,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18295; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 871.67","score":{"value":871.67,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18296; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 153.23","score":{"value":153.23,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18297; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 123.68","score":{"value":123.68,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18298; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 72.78","score":{"value":72.78,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18299; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 203.66","score":{"value":203.66,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18300; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 239.76","score":{"value":239.76,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18301; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 337.61","score":{"value":337.61,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18302; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 391.3","score":{"value":391.3,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18303; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 424.12","score":{"value":424.12,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18304; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 472.92","score":{"value":472.92,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18305; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 477.12","score":{"value":477.12,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18306; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 554.94","score":{"value":554.94,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18307; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 666.39","score":{"value":666.39,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18308; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 715.64","score":{"value":715.64,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18309; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 753.4","score":{"value":753.4,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18310; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 893.44","score":{"value":893.44,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18311; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 926.26","score":{"value":926.26,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 18312; Ignitability measurement; plant part leaves; fuel live; predrying no; device calorimeter; site Mosbah2022-1; sampling ND. Primary study Mosbah2022: Mosbah, O., Sabi, F. Z., Terrah, S. M., Boutchiche, H., Hamamousse, N., Sahila, A.,  Zekri, N.  (2022). Influence of fuel load on the flammability of live Pinus Halepensis needles. In: D. X. Viegas & L.M. Ribeiro (Ed.), Advances in Forest Fire Research (pp. 1671-1674). Portugal, Coimbra University Press","plantPart":"leaf","original":"Mosbah2022","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"ignition frequency (%): 89","score":{"value":89,"scale":"FLAMITS — ignition frequency (%)"},"claims":"FLAMITS record 19831; Ignitability measurement; plant part litter; fuel all; predrying yes; device burning bench; site Ganteaume2009-1; sampling ND. Primary study Ganteaume2009: Ganteaume, A., Lampin-Maillet, C., Guijarro, M., Hernando, C., Jappiot, M., Fonturbel, T., ... Vega, J.A. (2009). Spot fires: fuel bed flammability and capability of firebrands to ignite fuel beds. International Journal of Wildland Fire, 18, 951-969.","plantPart":"litter","original":"Ganteaume2009","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"time to flaming (s): 4.51","score":{"value":4.51,"scale":"FLAMITS — time to flaming (s)"},"claims":"FLAMITS record 19832; Ignitability measurement; plant part litter; fuel all; predrying yes; device burning bench; site Ganteaume2009-1; sampling ND. Primary study Ganteaume2009: Ganteaume, A., Lampin-Maillet, C., Guijarro, M., Hernando, C., Jappiot, M., Fonturbel, T., ... Vega, J.A. (2009). Spot fires: fuel bed flammability and capability of firebrands to ignite fuel beds. International Journal of Wildland Fire, 18, 951-969.","plantPart":"litter","original":"Ganteaume2009","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"rate of burning spread (cm/s): 0.23","score":{"value":0.23,"scale":"FLAMITS — rate of burning spread (cm/s)"},"claims":"FLAMITS record 19833; Sustainability measurement; plant part litter; fuel all; predrying yes; device burning bench; site Ganteaume2009-1; sampling ND. Primary study Ganteaume2009: Ganteaume, A., Lampin-Maillet, C., Guijarro, M., Hernando, C., Jappiot, M., Fonturbel, T., ... Vega, J.A. (2009). Spot fires: fuel bed flammability and capability of firebrands to ignite fuel beds. International Journal of Wildland Fire, 18, 951-969.","plantPart":"litter","original":"Ganteaume2009","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"flamits","verdict":"not-rated","verdictRaw":"mass loss rate (g/s): 1.34","score":{"value":1.34,"scale":"FLAMITS — mass loss rate (g/s)"},"claims":"FLAMITS record 19834; Combustibility measurement; plant part litter; fuel all; predrying yes; device burning bench; site Ganteaume2009-1; sampling ND. Primary study Ganteaume2009: Ganteaume, A., Lampin-Maillet, C., Guijarro, M., Hernando, C., Jappiot, M., Fonturbel, T., ... Vega, J.A. (2009). Spot fires: fuel bed flammability and capability of firebrands to ignite fuel beds. International Journal of Wildland Fire, 18, 951-969.","plantPart":"litter","original":"Ganteaume2009","edition":"Dryad version 9","url":"https://doi.org/10.5061/dryad.h18931zr3","documentDate":"2023-12-22T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"},{"source":"greece-property-fire-regulation-2023","verdict":"avoid","verdictRaw":"ΙΔΙΑΙΤΕΡΑ ΕΥΦΛΕΚΤΑ ΕΝΔΗΜΙΚΑ ΦΥΤΑ — Pinus halepensis","claims":"The regulation prints this taxon in its table of particularly flammable endemic trees and shrubs.","plantPart":"whole-plant","sourcePlacement":{"value":"section 5.4.2, Table 2δi","scheme":"greece-2023-particularly-flammable"},"edition":"FEK B 3475/2023","url":"https://www.elinyae.gr/ethniki-nomothesia/ya-oik-ypendaoka5590420192023-fek-3475b-2452023","documentDate":"2023-05-24T00:00:00.000Z","accessedOn":"2026-08-25T00:00:00.000Z"}],"flammabilityClass":"highly-flammable","ratingReason":"consensus","recommendation":"avoid","author":"grayson-graham","reviewStatus":"draft","lastVerified":"2026-08-23T00:00:00.000Z","reviewNotes":"Photo auto-selected (top-voted iNat); human review pending."},"localAssessmentInputs":{"stateDistribution":["CA"],"nativeStates":[],"rangeAssertions":[{"relation":"documented-occurrence","geography":{"grain":"state","stateCodes":["CA"]},"provenance":"legacy-field"}],"usdaZoneMin":null,"usdaZoneMax":null,"hardinessAssertions":[],"hardinessSelection":{"status":"none","assertions":[]},"invasiveIn":[{"state":"L48","status":"invasive-reported","source":"us-riis"}],"statusAssertions":[{"status":"invasive","channel":"ecological","geography":{"grain":"aggregate-region","regions":["L48"]},"source":"us-riis-v2","sourceRecordId":"USRIIS-L48-Plantae9833","sourceVersion":"2.0 (November 2022)","asOf":"2022-10-23T00:00:00.000Z","sourceModified":"2017-11-21T00:00:00.000Z","sourceTaxon":{"name":"Pinus halepensis","rank":"species","rawRank":"Species"},"sourceDesignation":{"code":"D2","label":"invasive (category D2)"},"associatedReferences":["USDA Natural Resources Conservation Service (NRCS) PLANTS Database (2021dqv), https://plants.usda.gov/home/plantProfile?symbol=PIHA7"],"taxonProjection":{"basis":"exact-taxon","notes":"exact source identifier, rank, family, and scientific/accepted name"},"provenance":"cited"}],"fireEvidenceClass":"highly-flammable","recommendation":"avoid","fireSourceScopes":[],"firePerformanceConditions":[{"condition":"green","evidence":[{"source":"molina-2017-ignition-index","verdict":"avoid","url":"https://helvia.uco.es/xmlui/bitstream/10396/27022/3/","claims":"Table 2 reports 107.14% foliar moisture, 8.4 s mean time to ignition, and 14.7 s mean flame duration across 200 live-leaf samples.","evidenceIndex":3},{"source":"henaoui-cistus-tlemcen","verdict":"avoid","url":"https://eujournal.org/index.php/esj/article/download/1917/1917/0","claims":"Table 1 classifies Pinus halepensis at flammability note 3; the paper prints its stratum as Tree.","evidenceIndex":5}]}],"maintenanceAssertions":[],"maintenanceConditions":null,"regulatoryReviews":{},"seedReviews":{}},"legacyCompatibilityProjection":{"nativeStates":[],"invasiveIn":[{"state":"L48","status":"invasive-reported","source":"us-riis-v2"}]},"localAssessmentContract":"Compare each dimension separately. State noxious-weed seed designations are material-scoped and never become non-seed plant restrictions, ecological-invasive findings, nursery restrictions, alternatives, product evidence, or fire votes. Introduced/established context is not an invasive warning. Minimum-only hardiness has no inferred maximum; canonical source-temperature conversion is validated and contradictory applicable rows project no primary zone. L48 context applies only to conterminous states and is never exact-state status. Fire-performance conditions are not maintenance advice. FEIS fire-ecology context does not vote in the plant classification. Absence of a status row is not regulatory clearance."}