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IMPACT OF SURFACE COAL MINING ON SOIL HYDRAULIC PROPERTIES

机译:地表煤矿对土壤液压特性的影响

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Soil erosion is strongly related to soil hydraulic properties. Understanding how surface coal mining impacts those properties is important in developing effective management practices to control erosion during reclamation. Soils from undisturbed areas, roughly graded mine spoil, replaced topsoil before seeding, and revegetated areas at the Rosebud Mine in Eastern Montana were evaluated to determine impacts on soil hydraulic properties. Field and laboratory studies were conducted to determine soil hydraulic properties, including particle-size distribution, organic matter content, and saturated hydraulic conductivity. WEPP simulations and risk analyses were performed on the soil hydraulic property data to determine the impacts of changes on soil erosion. The hydraulic properties of the soils in each representative area have significant differences due to the mining and reclamation practices at the. mine. WEPP simulations show that the potential for soil erosion increases due to mining activities disturbing the soil. WEPP simulations also indicate that the potential for erosion may return to pre-mining levels over time with effective revegetation practices.
机译:土壤侵蚀与土壤液压特性密切相关。了解地表煤炭开采的影响如何影响这些物业在制定有效的管理实践方面很重要,以控制填海过程中的控制侵蚀。未受干扰地区的土壤,大致分级的矿物弃土,在播种前取代了Topsoil,并评估了东蒙大拿州玫瑰花蕾矿的再折叠地区,以确定对土壤液压特性的影响。进行现场和实验室研究以确定土壤液压性能,包括粒度分布,有机物质含量和饱和液压导电性。对土壤液压特性数据进行了WEPP模拟和风险分析,以确定变化对土壤侵蚀的影响。由于采矿和回收措施,每个代表区的土壤的液压性能具有显着差异。矿。 WEPP模拟表明,由于扰乱土壤的采矿活动,土壤侵蚀的潜力增加。 WEPP模拟还表明,侵蚀潜力可能随着时间的推移返回预先采矿水平随着有效的再训练实践。

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