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Leaf size and shape interact to control flammability: An experiment with artificial leaves cut from the large-leaved species Sapranthus palanga

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DataONE2025-08-22 更新2025-08-30 收录
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Climate change is altering fire regimes globally, increasing the occurrence, frequency, and severity of wildfires in ecosystems not traditionally adapted to fire, including tropical forests. Understanding the flammability of living plant tissues, particularly leaves—the most abundant and easily ignitable plant fuel—is crucial for predicting fire behavior and ecosystem responses. Leaf morphological traits such as size, shape, thickness, and surface area influence key physical processes like heat transfer, drying rate, and flame propagation, but their independent effects remain poorly understood due to confounding biochemical factors. To isolate the role of leaf size and shape in flammability, we performed controlled laboratory experiments using artificial leaves cut from a single large-leaved tropical species, Sapranthus palanga, thereby standardizing chemical composition and venation. The dataset comprises three experiments: (1) a control assessing differences between intact and cut lea..., , # Leaf size and shape interact to control flammability: An experiment with artificial leaves cut from the large-leaved species Sapranthus palanga This readme file describes the data files and supplementary files accompanying the above publication. For any further queries and if you would like to use this data in a publication, please contact Esthela Rodríguez ([rodriguezesthela14@gmail.com](mailto:rodriguezesthela14@gmail.com)). The following files are included: Flammability_S.palanga_Control.csv: This file contains data from an experiment designed to evaluate whether cutting artificial leaves from larger natural leaves affects their flammability. Columns: * margins type: Type of leaf margin, either “normal” (natural edge) or “cut” (manually cut edge). * ignition time (s): Time (in seconds) it took for the leaf to ignite after standardized flame application. * extinguished the flame (s): Time (in seconds) when the flame self-extinguished. * sustainability time (s): Duration of...,
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2025-08-23
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