作者
Benjamin N Sulman, Jessica AM Moore, Rose Abramoff, Colin Averill, Stephanie Kivlin, Katerina Georgiou, Bhavya Sridhar, Melannie D Hartman, Gangsheng Wang, William R Wieder, Mark A Bradford, Yiqi Luo, Melanie A Mayes, Eric Morrison, William J Riley, Alejandro Salazar, Joshua P Schimel, Jinyun Tang, Aimée T Classen
发表日期
2018/11
期刊
Biogeochemistry
卷号
141
页码范围
109-123
出版商
Springer International Publishing
简介
Soils contain more carbon than plants or the atmosphere, and sensitivities of soil organic carbon (SOC) stocks to changing climate and plant productivity are a major uncertainty in global carbon cycle projections. Despite a consensus that microbial degradation and mineral stabilization processes control SOC cycling, no systematic synthesis of long-term warming and litter addition experiments has been used to test process-based microbe-mineral SOC models. We explored SOC responses to warming and increased carbon inputs using a synthesis of 147 field manipulation experiments and five SOC models with different representations of microbial and mineral processes. Model projections diverged but encompassed a similar range of variability as the experimental results. Experimental measurements were insufficient to eliminate or validate individual model outcomes. While all models projected that CO2 …
引用总数
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