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Assessment of Soil Erosion Sensitivity Based on Environment Background Analysis

机译:基于环境背景分析的土壤侵蚀敏感性评价

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Soil erosion seriously threatens the ecological environment across the world, and much attention has also been devoted to this problem in recent years. The objective of this study was to assess soil erosion sensitivity under its environment background on large scale. Supported with GIS and remote sensing technologies, the relationship of soi1 erosion intensity status and its environment background was comprehensively analyzed, which consisted of slope gradient, altitudes, vegetation cover, surface material, land use and precipitation, then the soil erosion complicated indexes of natural factors was calculated, and the soil erosion sensitivity was assessed and derived using spatial principal components analysis. The result of soil erosion sensitivity was divided into five levels: no sensitivity, low sensitivity, medium sensitivity, high sensitivity and extreme sensitivity. The approach was applied to a case study of Hubei Province, Central China. The assessment results indicated that the soil erosion sensitivity was at low level for the study area as a whole, 30.6% of the total land area under no soil erosion sensitivity, low and medium erosion sensitivity was with an area percentage of 55.8%, while high and extreme sensitivity was relatively limited, with an area percentage of 13.6%. Based on the analysis with environment background, high soil erosion sensitivity mostly occurred in the slope gradient between 8 to 15°, at altitude from 150 to 500 meters, as far as land use is concerned, soil erosion sensitivity is highest in dry land, especially in areas with surface material vulnerable to erosion. Results of the study may provide an important basis for environmental protection and ecological reconstruction.
机译:水土流失严重威胁着世界各地的生态环境,并且近年来也对此问题进行了很多关注。这项研究的目的是大规模评估其环境背景下的土壤侵蚀敏感性。在地理信息系统和遥感技术的支持下,综合分析了土壤侵蚀强度状况与环境背景的关系,包括坡度,海拔,植被覆盖度,地表材料,土地利用和降水量,然后是自然侵蚀的复杂指标。计算土壤侵蚀因子,并使用空间主成分分析法评估和推导土壤侵蚀敏感性。土壤侵蚀敏感性的结果分为五个等级:无敏感性,低敏感性,中敏感性,高敏感性和极端敏感性。该方法已应用于中国中部湖北省的案例研究。评估结果表明,整个研究区的土壤侵蚀敏感性处于较低水平,在没有土壤侵蚀敏感性的情况下占总土地面积的30.6%,中低侵蚀敏感性的面积百分比为55.8%,而较高极端灵敏度相对有限,面积百分比为13.6%。根据环境背景分析,高土壤侵蚀敏感性主要发生在坡度为8至15°,海拔150至500米的地方,就土地利用而言,旱地土壤侵蚀敏感性最高。在表面材料容易腐蚀的区域。研究结果可能为环境保护和生态重建提供重要依据。

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