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首页> 外文期刊>Practice Periodical of Hazardous, Toxic, and Radioactive Waste Management >Role of Cover Systems to Control Methane Migration from Dumpsites
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Role of Cover Systems to Control Methane Migration from Dumpsites

机译:覆盖系统控制垃圾渣迁移的作用

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摘要

The emission of landfill gases from dump sites due to anaerobic biodegradation of waste is a matter of increasing public concern as they significantly contribute to global warming. In order to assess the methane emissions from dump sites and to quantify the effects of clay covers and geosynthetic clay liners (GCLs) in reducing them, numerical simulations were conducted. From the simulations, it was noted that clay covers reduced the atmospheric methane flux fourfold and GCLs produced a sixfold reduction in comparison to open dumps. Atmospheric methane fluxes far above the safe limit were observed for the open dumps, which were significantly lower when covers were in place. Development of large pressures owing to reduced migration and continuous methane production were also observed when covers were present. A study of the effect of geotechnical properties of cover and material types suggested that they affect methane emissions significantly. Absolute permeability, porosity, saturation, and van Genuchten properties influenced methane migration to a large extent and hence should be taken into consideration in a cover design.
机译:由于Anaerobic生物降解废物垃圾场来自垃圾场所的垃圾填埋场的排放是一个增加公众关注的问题,因为它们显着促进了全球变暖。为了评估从倾卸地点的甲烷排放并量化粘土覆盖物和地质合成粘土衬里(GCLS)的影响,减少它们,进行了数值模拟。从模拟中,有人指出,粘土覆盖物降低了大气甲烷通量四倍,GCLS与开放式倾卸相比产生了六倍降低。对于开放式倾料观察到远高于安全限制的大气甲烷通量,当覆盖物到位时显着降低。当存在覆盖物时,还观察到由于覆盖的迁移和连续甲烷产量的大压力的发展。覆盖物和材料类型的岩土性质的影响研究表明它们显着影响甲烷排放。绝对渗透性,孔隙率,饱和度和van numanuchten属性影响甲烷迁移在很大程度上,因此应在封面设计中考虑。

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