煤矿开采
土地复垦
分区
环境科学
环境资源管理
煤
熵(时间箭头)
干旱
采矿工程
水资源管理
生态学
地理
地质学
土木工程
工程类
考古
物理
生物
量子力学
作者
Wu Xiao,Xuejiao Lv,Zhao Yanling,Haoxuan Sun,Jiaqi Li
标识
DOI:10.1016/j.ecolind.2019.105843
摘要
The exploitation of coal resources will bring about a series of environmental problems, which will not only affect the surface ecological environment of the region, seriously threatening underground resources, but will also affect the normal production and living activities of human beings. The impacted ecological system is combined by both overground and underground features. In this paper, Shendong coal field, one of the high-strength coal mining areas in western China is used as a research area. An O-U (Overground-Underground) analysis framework and model was established to quantitatively assess the degree of mining impact on the eco-system and its resilience. The entropy method is used to calculate the weight of each index, and the comprehensive value of each grid is calculated by the linear weighted method. The comprehensive value of each grid’s indicators is divided into four ecological resilience (ER) partitions by natural breakpoint method. Finally, Pearson coefficients is used to analyze the main influencing factors of the four sub-areas, and reasonable suggestions are given. By zoning the ER of the study area, it can provide reference for the mining method selection and land reclamation measures, and also provide direction for the ecological environment management in other similar areas.
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