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Effects of Soil Cover and Protective Measures on Reducing Runoff and Soil Loss under Artificial Rainfall

机译:人工降雨条件下土壤覆盖及保护措施对减少径流和水土流失的影响。

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摘要

The hazards from wind, sand, and soil erosion caused by human activities, such as residue slopes in abandoned urban mines, have resulted in a vicious circle of environmental degradation. Selecting the optimal protective engineering method in mountainous areas has become a major difficulty in recent years, and the primary goal of our research is to accelerate the process of ecosystem reconstruction to maintain water and soil quality. In this study, cover soil of 10, 20, and 30 cm in depth was spread on the 30 accumulation slopes composed of loose residue from the Huangyuan Quarry, Beijing, and combined with two protection measures: eco-bags and bamboo fences. Runoff and soil loss from the aboveground, soil and residue layers were measured under rainfall intensities of 30, 60 and 120 mm/h generated with a rainfall simulator. The results indicated that both eco-bags and bamboo fences decreased runoff and soil loss. Bamboo fences were better at intercepting water under low runoff, whereas soil loss was more strongly reduced by eco-bags. The analysis also demonstrated that the depth of soil cover had an effect on runoff and soil loss. These findings will enrich the understanding of the effects of human activities on surface mines and provide a scientific basis for the ecological restoration of mines using engineering methods.
机译:人类活动造成的风沙和土壤侵蚀的危害,例如废弃的城市矿井中的残留坡度,导致了环境恶化的恶性循环。近年来,在山区选择最佳的防护工程方法已成为一项主要困难,我们研究的主要目标是加快生态系统的重建过程,以维持水土质量。在这项研究中,将深度分别为10、20和30 cm的覆盖土壤分布在北京the园采石场的30个由松散残渣组成的堆积坡上,并结合了两种保护措施:生态袋和竹篱笆。在由降雨模拟器产生的降雨强度为30、60和120 mm / h的情况下,测量了地表,土壤和残渣层的径流和土壤流失。结果表明,生态袋和竹篱笆都减少了径流和土壤流失。竹篱笆在低径流下更能拦截水,而生态袋可大大减少水土流失。分析还表明,土壤覆盖深度对径流和土壤流失有影响。这些发现将丰富人们对地雷活动的认识,并为使用工程方法进行地雷的生态恢复提供科学依据。

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