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Effects of surface coal mining and land reclamation on soil properties: A review

机译:地表煤矿和土地垦区对土壤性质的影响:综述

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Opencast coal mining has a series of consequences on land resources and places enormous pressure on the ecological environment. Stripping, excavation, transportation and dumping have different effects on soil physical, chemical and biological properties. Moreover, the reconstructed landscape produces increased small-scale spatial heterogeneity of mined soils. Currently, growing concerns for the negative consequences of mining have highlighted the importance of reclamation in minesoil studies. This review has examined the mechanisms of coal mining and reclamation that affect soil properties (physical, chemical, biological) and described soil development in reclamation, with an emphasis on the reclaimed minesoil (RMS) properties of reclamation sites. The major conclusions of this review were: (i) The randomness of soil dumping increased the heterogeneity of minesoil properties, which in turn increased the complexity of reclamation practice. (ii) The negative or positive consequences of mining and reclamation processes on RMS need to be recognized by scientific observations such as soil property multi-index analysis and soil chronosequences, on which the minesoil reconstruction practice are based. (iii) Five phases of reclamation (Le., geomorphic reshaping, soil reconstruction, hydrological stability, vegetation restoration, and landscape rebuilding) should be considered as a comprehensive system for the reconstruction of minesoils. (iv) The application of new technologies (e.g., micro-terrain reshaping and soil non-destructive detection) and new studies (e.g., systematic study, rebuilding animal habitat, and biodiversity research) to minesoil recovery practice would enhance the new concepts of land reclamation and ecological restoration in mining areas.
机译:Opencast煤矿在土地资源上有一系列后果,对生态环境的压力造成巨大压力。剥离,挖掘,运输和倾倒对土壤物理,化学和生物特性产生不同的影响。此外,重建的景观会产生较高的矿井土壤的小规模空间异质性。目前,对采矿的负面后果的越来越担心突出了填海在Minesoil研究中的重要性。本综述已审查了煤炭开采和垦区的机制,影响土壤性质(物理,化学,生物)和填海地区的土壤开发,重点是回收位点的再生Minesoil(RMS)性质。本综述的主要结论是:(i)土壤倾倒的随机性增加了Minesoil属性的异质性,从而增加了回收实践的复杂性。 (ii)采矿和回收过程对RMS的负面或积极后果需要通过诸如土壤性质多指数分析和土壤计量时间,其中Minesoil重建实践所依据的科学观察来认可。 (iii)五个阶段的填海(Le。,地貌,土壤重建,水文稳定,植被恢复,景观重建)应被视为重建Minesoils的综合系统。 (iv)新技术(例如,微地域重塑和土壤无损检测)和新研究(例如,系统研究,重建动物栖息地和生物多样性研究)的应用将提高土地的新概念矿区垦区和生态恢复。

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