Soil carbon-concentration and carbon-climate feedbacks in CMIP6 Earth system models

R. Varney, P. Friedlingstein, S. Chadburn, Eleanor J. Burke, Peter M. Cox
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Abstract

Abstract. Achieving climate targets requires mitigation against climate change but also understanding of the response of land and ocean carbon systems. In this context, global soil carbon stocks and their response to environmental changes are key. This paper quantifies the global soil carbon feedbacks due to changes in atmospheric CO2, and the associated climate changes, for Earth system models (ESMs) in CMIP6. A standard approach is used to calculate carbon cycle feedbacks, defined here as soil carbon-concentration (βs) and carbon-climate (γs) feedback parameters, which are also broken down into processes which drive soil carbon change. The sensitivity to CO2 is shown to dominate soil carbon changes at least up to a doubling of atmospheric CO2. However, the sensitivity of soil carbon to climate change is found to become an increasingly important source of uncertainty under higher atmospheric CO2 concentrations.
CMIP6 地球系统模型中的土壤碳浓度和碳-气候反馈作用
摘要实现气候目标需要减缓气候变化,但也需要了解陆地和海洋碳系统的响应。在这方面,全球土壤碳储量及其对环境变化的响应是关键。本文针对 CMIP6 中的地球系统模式(ESM),量化了大气二氧化碳变化引起的全球土壤碳反馈以及相关的气候变化。本文采用标准方法计算碳循环反馈,将其定义为土壤碳浓度(βs)和碳-气候(γs)反馈参数,并将其细分为驱动土壤碳变化的过程。结果表明,对二氧化碳的敏感性在土壤碳变化中占主导地位,至少在大气二氧化碳增加一倍的情况下是如此。然而,在大气二氧化碳浓度较高的情况下,土壤碳对气候变化的敏感性将成为一个越来越重要的不确定性来源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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