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Terrestrial vegetation redistribution and carbon balance under climate change

机译:气候变化下的陆地植被重新分布和碳平衡

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Background Dynamic Global Vegetation Models (DGVMs) compute the terrestrial carbon balance as well as the transient spatial distribution of vegetation. We study two scenarios of moderate and strong climate change (2.9 K and 5.3 K temperature increase over present) to investigate the spatial redistribution of major vegetation types and their carbon balance in the year 2100. Results The world's land vegetation will be more deciduous than at present, and contain about 125 billion tons of additional carbon. While a recession of the boreal forest is simulated in some areas, along with a general expansion to the north, we do not observe a reported collapse of the central Amazonian rain forest. Rather, a decrease of biomass and a change of vegetation type occurs in its northeastern part. The ability of the terrestrial biosphere to sequester carbon from the atmosphere declines strongly in the second half of the 21st century. Conclusion Climate change will cause widespread shifts in the distribution of major vegetation functional types on all continents by the year 2100.
机译:背景动态全球植被模型(DGVMs)计算陆地碳平衡以及植被的瞬时空间分布。我们研究了中度和强烈气候变化的两种情况(当前温度分别升高了2.9 K和5.3 K),以调查2100年主要植被类型的空间再分布及其碳平衡。结果世界陆地植被将比10月更加落叶。目前,还包含约1,250亿吨碳。虽然在某些地区模拟了北方森林的衰退以及向北的总体扩张,但我们没有观察到亚马逊中部雨林的报道。而是在其东北部发生了生物量的减少和植被类型的变化。在21世纪下半叶,陆地生物圈从大气中吸收碳的能力大大下降。结论到2100年,气候变化将导致各大洲主要植被功能类型分布的广泛变化。

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