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The influence of leaf morphology on litter flammability and its utility for interpreting palaeofire

机译:叶片形态对凋落物可燃性的影响及其对古火的解释

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摘要

Studies of palaeofire rely on quantifying the abundance of fossil charcoals in sediments to estimate changes in fire activity. However, gaining an understanding of the behaviour of palaeofires is also essential if we are to determine the palaeoecological impact of wildfires. Here, I use experimental approaches to explore relationships between litter fire behaviour and leaf traits that are observable in the fossil record. Fire calorimetry was used to assess the flammability of 15 species of conifer litter and indicated that leaf morphology related to litter bulk density and fuel load that determined the duration of burning and the total energy released. These data were applied to a fossil case study that couples estimates of palaeolitter fire behaviour to charcoal-based estimates of fire activity and observations of palaeoecological changes. The case study reveals that significant changes in fire activity and behaviour likely fed back to determine ecosystem composition. This work highlights that we can recognize and measure plant traits in the fossil record that relate to fire behaviour and therefore that further research is warranted towards estimating palaeofire behaviour as it can enhance our ability to interpret the palaeoecological impact of palaeofires throughout Earth's long evolutionary history.This article is part of the themed issue ‘The interaction of fire and mankind’.
机译:对古火的研究依靠量化沉积物中化石炭的含量来估计火势的变化。但是,要确定野火的古生态影响,了解古火的行为也至关重要。在这里,我使用实验方法来探索凋落物着火行为与化石记录中可观察到的叶片性状之间的关系。火量热法用于评估15种针叶树凋落物的可燃性,并表明叶片形态与凋落物堆积密度和燃料负荷有关,决定了燃烧的持续时间和释放的总能量。这些数据被应用于化石案例研究,该研究将古火现象的估计与基于木炭的火活动估计以及古生态变化的观察相结合。案例研究表明,火灾活动和行为的重大变化可能会反馈给确定生态系统的组成。这项工作强调了我们可以识别和测量化石记录中与火行为有关的植物特征,因此有必要进行进一步的研究来估计古火行为,因为它可以增强我们在整个地球漫长的进化历史中解释古火的古生态影响的能力。本文是主题“火与人类的相互作用”的一部分。

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