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Recent acceleration of biomass burning and carbon losses in Alaskan forests and peatlands

机译:阿拉斯加森林和泥炭地最近生物质燃烧和碳损失加速

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Climate change has increased the area affected by forest fires each year in boreal North America. Increases in burned area and fire frequency are expected to stimulate boreal carbon losses. However, the impact of wildfires on carbon emissions is also affected by the severity of burning. How climate change influences the severity of biomass burning has proved difficult to assess. Here, we examined the depth of ground-layer combustion in 178 sites dominated by black spruce in Alaska, using data collected from 31 fire events between 1983 and 2005. We show that the depth of burning increased as the fire season progressed when the annual area burned was small. However, deep burning occurred throughout the fire season when the annual area burned was large. Depth of burning increased late in the fire season in upland forests, but not in peatland and permafrost sites. Simulations of wildfire-induced carbon losses from Alaskan black spruce stands over the past 60 years suggest that ground-layer combustion has accelerated regional carbon losses over the past decade, owing to increases in burn area and late-season burning. As a result, soils in these black spruce stands have become a net source of carbon to the atmosphere, with carbon emissions far exceeding decadal uptake.
机译:每年在北美北部,气候变化增加了受森林火灾影响的区域。预计燃烧面积和火灾频率的增加会刺激北方碳损失。但是,野火对碳排放的影响也受到燃烧严重性的影响。事实证明,气候变化如何影响生物质燃烧的严重性。在这里,我们使用1983年至2005年间从31起火灾事件中收集的数据,考察了阿拉斯加以黑云杉为主的178个地点的地层燃烧深度。我们发现,当年面积变化时,燃烧深度随着火灾季节的发展而增加烧得很小。然而,当年燃烧面积很大时,整个火灾季节都会发生深度燃烧。在旱季,旱地森林的燃烧深度增加,但在泥炭地和多年冻土地区则没有。在过去60年中,由阿拉斯加黑云杉林引起的野火引起的碳损失的模拟表明,由于燃烧面积和后期燃烧的增加,地表燃烧在过去十年中加速了区域碳损失。结果,这些黑云杉林中的土壤已经成为大气中碳的净来源,碳排放量远远超过了十年的吸收量。

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