表土
土壤碳
碳纤维
土壤水分
土壤有机质
环境科学
环境化学
土层
土壤科学
化学
材料科学
复合数
复合材料
作者
Yuanhe Yang,Leiyi Chen,Kai Fang,Bin Wei,Shuqi Qin,Xuehui Feng,Tianyu Hu,Chengjun Ji
摘要
<p>Elucidating the processes underlying the persistence of soil organic matter (SOM) is a prerequisite for projecting soil carbon feedback to climate change. However, the potential role of plant carbon input in regulating the multi-layer SOM preservation over broad geographic scales remains unclear. Based on large-scale soil radiocarbon (&#916;<sup>14</sup>C) measurements on the Tibetan Plateau, we found that plant carbon input was the major contributor to topsoil carbon destabilisation despite the significant associations of topsoil &#916;<sup>14</sup>C with climatic and mineral variables as well as SOM chemical composition. By contrast, mineral protection by iron&#8211;aluminium oxides and cations became more important in preserving SOM in deep soils. These regional observations were confirmed by a global synthesis derived from the International Soil Radiocarbon Database (ISRaD). Our findings illustrate different effects of plant carbon input on SOM persistence across soil layers, providing new insights for models to better predict multi-layer soil carbon dynamics under changing environments.</p>
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