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Temperature sensitivity of soil carbon decomposition and feedbacks to climate change.

机译:土壤碳分解和对气候变化的反馈的温度敏感性。

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摘要

Significantly more carbon is stored in the world's soils--including peatlands, wetlands and permafrost--than is present in the atmosphere. Disagreement exists, however, regarding the effects of climate change on global soil carbon stocks. If carbon stored belowground is transferred to the atmosphere by a warming-induced acceleration of its decomposition, a positive feedback to climate change would occur. Conversely, if increases of plant-derived carbon inputs to soils exceed increases in decomposition, the feedback would be negative. Despite much research, a consensus has not yet emerged on the temperature sensitivity of soil carbon decomposition. Unravelling the feedback effect is particularly difficult, because the diverse soil organic compounds exhibit a wide range of kinetic properties, which determine the intrinsic temperature sensitivity of their decomposition. Moreover, several environmental constraints obscure the intrinsic temperature sensitivity of substrate decomposition, causing lower observed 'apparent' temperature sensitivity, and these constraints may, themselves, be sensitive to climate.
机译:与大气中存在的碳相比,存储在世界土壤(包括泥炭地,湿地和多年冻土)中的碳量要多得多。但是,关于气候变化对全球土壤碳储量的影响存在分歧。如果储存在地下的碳通过变暖引起的分解加速转移到大气中,则会对气候变化产生积极的反馈。相反,如果植物向土壤中输入的碳的增加量超过分解的增加量,则反馈将为负。尽管进行了大量研究,但对土壤碳分解的温度敏感性尚未达成共识。揭示反馈效应特别困难,因为各种土壤有机化合物均具有广泛的动力学性质,这决定了其分解的固有温度敏感性。此外,一些环境限制因素掩盖了基材分解的固有温度敏感性,导致较低的“表观”温度敏感性,这些限制因素本身可能对气候敏感。

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