自行车
土壤碳
碳循环
环境科学
全球变暖
土壤水分
气候变化
碳纤维
土壤科学
全球变化
环境化学
化学
生态系统
生态学
材料科学
林业
地理
生物
复合数
复合材料
作者
Junjie Lin,Biao Zhu,Weixin Cheng
摘要
Abstract The response of soil organic carbon ( SOC ) pools to globally rising surface temperature crucially determines the feedback between climate change and the global carbon cycle. However, there is a lack of studies investigating the temperature sensitivity of decomposition for decadally cycling SOC which is the main component of total soil carbon stock and the most relevant to global change. We tackled this issue using two decadally 13 C‐labeled soils and a much improved measuring system in a long‐term incubation experiment. Results indicated that the temperature sensitivity of decomposition for decadally cycling SOC (>23 years in one soil and >55 years in the other soil) was significantly greater than that for faster‐cycling SOC (<23 or 55 years) or for the entire SOC stock. Moreover, decadally cycling SOC contributed substantially (35–59%) to the total CO 2 loss during the 360‐day incubation. Overall, these results indicate that the decomposition of decadally cycling SOC is highly sensitive to temperature change, which will likely make this large SOC stock vulnerable to loss by global warming in the 21st century and beyond.
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