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Soil Erosion Effects on Soil Organic Carbon and an Assessment within China

机译:土壤侵蚀对土壤有机碳的影响及其在中国的评估

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Soil erosion is a widespread geological process with strong capabilities to entrap, transport and redistribute surface soil. It is important to grade erosion intensity and estimate eroded soil mass. On the other hand, soil organic carbon pool (SOC), as the largest terrestrial carbon content, is prone to be affected by soil erosion. Soil erosion redistributes surface soil over landscape, and changes the physical environmental conditions. The consequences are depletion of SOC in eroded regions, emission of carbon dioxide during transportation and input of extra SOC in deposited sites. This paper quantified the effects of soil erosion on soil organic carbon through following three steps: firstly, soil erosion type and soil erosion intensity were determined by interpreting Landsat TM images. Secondly, through field investigation, soil type and soil profile data were collected, and SOC contents in the 0-20cm layer were constructed. Finally, supported by map algebra in Geographic Information System (GIS), soil organic carbon loss induced by soil erosion was calculated based on the national soil erosion modulus standard. Total annual SOC loss in China was about 1.595x10~8ton-C yr~(-1). Assuming 20% of SOC was oxidized, erosion induced CO_2 emission was about 3.19x10~7ton-C yr~(-1).
机译:土壤侵蚀是一种广泛的地质过程,具有捕获,运输和重新分布表层土壤的强大能力。分级侵蚀强度和估算侵蚀的土壤质量非常重要。另一方面,土壤有机碳库(SOC)作为最大的陆地碳含量,容易受到土壤侵蚀的影响。水土流失将表层土壤重新分布在景观上,并改变了物理环境条件。结果是侵蚀区域的SOC耗尽,运输过程中的二氧化碳排放以及沉积地点额外的SOC输入。本文通过以下三个步骤量化了土壤侵蚀对土壤有机碳的影响:首先,通过解释Landsat TM图像确定土壤侵蚀类型和土壤侵蚀强度。其次,通过野外调查,收集了土壤类型和土壤剖面数据,并构造了0-20cm层中的SOC含量。最后,在地理信息系统(GIS)的地图代数支持下,根据国家土壤侵蚀模量标准,计算了土壤侵蚀引起的土壤有机碳损失。中国年SOC总损失约为1.595x10〜8ton-C yr〜(-1)。假设20%的SOC被氧化,腐蚀诱导的CO_2排放约为3.19x10〜7ton-C yr〜(-1)。

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