填埋场低渗透衬垫对地下水污染的影响

IF 2.8 2区 工程技术 Q2 ENGINEERING, GEOLOGICAL
W. Hu, Y. Yu, R. Rowe
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引用次数: 1

摘要

城市固体废物(MSW)填埋场底部需要低渗透性衬垫,以最大限度地减少渗滤液泄漏和污染物迁移到地下水中。本文使用二维地下水流动和污染物传输耦合模型来检验中国现行垃圾填埋场标准规定的三种类型的低渗透衬垫的性能:(1)压实粘土衬垫(CCL),(2)覆在CCL上的土工膜(GMB),以及(3)覆在GCL上的GMB。该模型模拟了渗滤液的泄漏和污染物在CCL填埋场的整个基底上的迁移,以及通过GMB复合衬垫的有孔GMB褶皱的迁移。根据渗漏率和氯化物对含水层的峰值影响,对每种类型的低渗透衬管的性能进行了评估和比较。基于本文研究的衬垫情况和条件,结果表明,三种类型的低渗透衬垫在最小化渗漏率和氯化物对含水层的影响方面是不等效的。GMB+GCL+CCL在三种低渗透衬管中表现最好,并且能够有效地将氯化物对含水层的峰值影响限制在饮用水中可接受的水平以下。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance of landfill low-permeability liners for minimizing groundwater contamination
Low-permeability liners are required at the base of municipal solid waste (MSW) landfills to minimize leachate leakage and contaminant migration into groundwater. This paper uses a two-dimensional coupled groundwater flow and contaminant transport model to examine the performance of three types of low-permeability liners specified by the current Chinese landfill standard: (1) a compacted clay liner (CCL), (2) a geomembrane (GMB) overlying a CCL, and (3) a GMB overlying a geosynthetic clay liner (GCL) on a CCL. The model simulates leachate leaking and contaminant migrating over the entire base of the landfill for the CCL and through the holed GMB wrinkles for the GMB composite liners. The performance of each type of low-permeability liners was evaluated and compared in terms of leakage rate and peak impact of chloride on the aquifer. Based on liner cases and conditions examined in this paper, the results show that the three types of low-permeability liners are not equivalent for minimizing the leakage rate and chloride impact on the aquifer. The GMB+GCL+CCL performs the best among the three low-permeability liners, and is effective for limiting the peak chloride impact on the aquifer below the acceptable level in drinking water.
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来源期刊
Geosynthetics International
Geosynthetics International ENGINEERING, GEOLOGICAL-GEOSCIENCES, MULTIDISCIPLINARY
CiteScore
6.90
自引率
20.00%
发文量
91
审稿时长
>12 weeks
期刊介绍: An online only, rapid publication journal, Geosynthetics International – an official journal of the International Geosynthetics Society (IGS) – publishes the best information on current geosynthetics technology in research, design innovation, new materials and construction practice. Topics covered The whole of geosynthetic materials (including natural fibre products) such as research, behaviour, performance analysis, testing, design, construction methods, case histories and field experience. Geosynthetics International is received by all members of the IGS as part of their membership, and is published in e-only format six times a year.
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