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Wildfire and drought dynamics destabilize carbon stores of fire-suppressed forests

机译:野火和干旱动态破坏了受火抑制的森林的碳储量

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Widespread fire suppression and thinning have altered the structure and composition of many forests in the western United States, making them more susceptible to the synergy of large-scale drought and fire events. We examine how these changes affect carbon storage and stability compared to historic fire-adapted conditions. We modeled carbon dynamics under possible drought and fire conditions over a 300-year simulation period in two mixed-conifer conditions common in the western United States: (1) pine-dominated with an active fire regime and (2) fir-dominated, fire suppressed forests. Fir-dominated stands, with higher live- and dead-wood density, had much lower carbon stability as drought and fire frequency increased compared to pine-dominated forest. Carbon instability resulted from species (i.e., fir's greater susceptibility to drought and fire) and stand (i.e., high density of smaller trees) conditions that develop in the absence of active management. Our modeling suggests restoring historic species composition and active fire regimes can significantly increase carbon stability in fire-suppressed, mixed-conifer forests. Long-term management of forest carbon should consider the relative resilience of stand structure and composition to possible increases in disturbance frequency and intensity under changing climate.
机译:广泛的灭火和疏伐改变了美国西部许多森林的结构和组成,使它们更容易受到大规模干旱和火灾事件的协同作用。与历史上采用火的情况相比,我们研究了这些变化如何影响碳储存和稳定性。我们在美国西部常见的两种混合针叶树种条件下,在300年的模拟期中,在可能的干旱和火情条件下,对碳动力学进行了建模:(1)松树为主的主动火政权;(2)冷杉为主的火被压抑的森林。与干旱为主的森林相比,杉木为主的林分具有较高的活木和枯木密度,其碳稳定性要低得多,因为干旱和火灾频率增加。碳的不稳定性是由于在没有积极管理的情况下形成的物种(即冷杉对干旱和火的敏感性更高)和林分(即小树的高密度)条件造成的。我们的模型表明,恢复历史物种的组成和活跃的火势可以显着提高受火抑制的针叶混交林的碳稳定性。森林碳的长期管理应考虑林分结构和组成的相对复原力,以应对气候变化下干扰频率和强度的可能增加。

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