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The performance of natural clay as a barrier to the diffusion of municipal solid waste landfill leachates

机译:天然粘土的性能阻碍了城市垃圾填埋场渗滤液的扩散

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摘要

In this paper, the diffusion of solutes in natural clay from a concentrated solution consisting primarily of ammonium, sodium and chloride ions at a pH level of 8 was studied and was based on an existing 20-year-old landfill. Contaminant transport through clay liners was predicted using transport and reaction geochemical codes to help explain the experimental data. The model predicted the chloride anion diffusion and cation exchange processes for three different experiments: (1) small-scale interactions in compacted clay, (2) 1:1 European Union (EU) Directive demonstration experiments (0.5-m-thick clay barrier), and (3) analysis of a bore hole with core recovery drilled in an old landfill located above a similar type of clay as that studied in (1) and (2). Orders of magnitude between 10(-10) and 10(-9) m(2) s(-1) were used for the apparent diffusion coefficient to fit the chloride profiles at the different scales; however, at larger space and time scales, diffusion was retarded due to the presence of more consolidated, non-mechanically disturbed clay materials at large depths in a natural clay-rock emplacement.
机译:在本文中,基于现有的已有20年历史的垃圾填埋场,研究了溶质在pH值为8的主要由铵,钠和氯离子组成的浓溶液中在天然粘土中的扩散。通过运输和反应地球化学法预测了通过黏土衬里的污染物运输,以帮助解释实验数据。该模型预测了三个不同实验中氯离子的扩散和阳离子交换过程:(1)压实粘土中的小规模相互作用,(2)1:1欧盟(EU)指令示范实验(0.5米厚的粘土屏障) (3)在旧垃圾填埋场钻了一个带有岩心回收的钻孔的分析,该垃圾填埋场位于与(1)和(2)研究的相似类型的粘土上方。表观扩散系数使用10(-10)和10(-9)m(2)s(-1)之间的数量级,以适应不同比例下的氯化物分布。然而,在较大的空间和时间尺度上,由于在天然粘土-岩层中较大深度存在更固结,不受机械干扰的粘土材料,扩散受到了阻碍。

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