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Warming-induced global soil carbon loss attenuated by downward carbon movement

机译:通过向下碳运动减弱的全球土壤碳损失

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摘要

The fate of soil organic carbon (SOC) under warming is poorly understood, particularly across large extents and in the whole-soil profile. Using a data-model integration approach applied across the globe, we find that downward movement of SOC along the soil profile reduces SOC loss under warming. We predict that global SOC stocks (down to 2 m) will decline by 4% (similar to 80 Pg) on average when SOC reaches the steady state under 2 degrees C warming, assuming no changes in net primary productivity (NPP). To compensate such decline (i.e. maintain current SOC stocks), a 3% increase of NPP is required. Without the downward SOC movement, global SOC declines by 15%, while a 20% increase in NPP is needed to compensate that loss. This vital role of downward SOC movement in controlling whole-soil profile SOC dynamics in response to warming is due to the protection afforded to downward-moving SOC by depth, indicated by much longer residence times of SOC in deeper layers. Additionally, we find that this protection could not be counteracted by promoted decomposition due to the priming of downward-moving new SOC from upper layers on native old SOC in deeper layers. This study provides the first estimation of whole-soil SOC changes under warming and additional NPP required to compensate such changes across the globe, and reveals the vital role of downward movement of SOC in reducing SOC loss under global warming.
机译:在变暖下的土壤有机碳(SoC)的命运很差,特别是在大型范围内和整个土壤剖面上。使用全球应用数据模型集成方法,我们发现沿着土壤轮廓的SoC向下运动可降低变暖的SOC损失。我们预测全球SoC股(下至2米)将平均下降4%(类似于80 pg),当SoC达到2摄氏度下的稳态时,假设净初级生产率(NPP)没有变化。为了补偿这种下降(即,维持现行的SoC库存),需要增加NPP的3%。没有向下的SoC运动,全球SoC下降15%,而NPP的增加20%以补偿该损失。向下SOC运动在控制整个土壤轮廓SOC动力学中的这种至关重要的作用响应于变暖而是由于通过深度向下移动SOC的保护,所示的SOC在更深层中的较长时间。此外,我们发现由于在深层层上的原生旧SOC上的上层向下移动的新SOC引发而促进的分解,不能抵消这种保护。本研究规定了在加热下的全土化SoC变化的首次估计,并要求额外的NPP弥补全球的这种变化,并揭示了SoC向下运动在降低全球变暖下减少SoC损失的重要作用。

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