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Widespread decreases in topsoil inorganic carbon stocks across China's grasslands during 1980s-2000s.

机译:在1980年代至2000年代期间,中国草原的表层土壤无机碳储量普遍减少。

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Soil carbon (C) stocks consist of inorganic and organic components, ~1.7 times larger than the total of the C stored in vegetation and the atmosphere together. Significant soil C losses could thus offset any C sink in vegetation, creating a positive feedback to climate change. However, compared with the susceptible sensitivity of organic matter decay to climate warming, soil inorganic carbon (SIC) stocks are often assumed to be relatively stable. Here, we evaluated SIC changes across China's grasslands over the last two decades using data from a recent regional soil survey during 2001-2005 and historical national soil inventory during the 1980 s. Our results showed that SIC stocks in the top 10 cm decreased significantly between the two sampling periods, with a mean rate of 26.8 (95% confidence interval: 15.8-41.7) g C m-2 yr-1. The larger decreases in SIC stocks were observed in those regions with stronger soil acidification and richer soil carbonates. The lost SIC could be released to the atmosphere as carbon dioxide, redistributed to the deeper soil layer, and transferred to the nearby regions. The fraction of soil carbonates entering into the atmosphere may diminish the strength of terrestrial C sequestration and amplify the positive C-climate feedback.
机译:土壤碳(C)储量由无机和有机成分组成,比存储在植被和大气中的总碳总量大约1.7倍。因此,大量的土壤碳损失可能抵消植被中的任何碳汇,从而为气候变化创造积极的反馈。但是,与有机物衰减对气候变暖的敏感性相比,通常认为土壤无机碳(SIC)储量相对稳定。在这里,我们使用最近的2001-2005年区域土壤调查数据和1980年代全国土壤历史存量数据,评估了过去20年中国草地的SIC变化。我们的结果表明,在两个采样期之间,前10 cm的SIC存量显着下降,平均率为26.8(95%置信区间:15.8-41.7)g C m -2 yr -1 。在那些土壤酸化更强,碳酸盐含量更高的地区,SIC存量下降幅度更大。丢失的SIC可能以二氧化碳的形式释放到大气中,重新分配到更深的土壤层,然后转移到附近区域。进入大气层的土壤碳酸盐的比例可能会降低陆地碳固存的强度,并扩大正C气候反馈。

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