Permeability of Two Clayey Soils Exposed to Petroleum Products and Organic Solvents

IF 1 Q4 ENGINEERING, CIVIL Civil Engineering Infrastructures Journal-CEIJ Pub Date : 2018-06-01 DOI:10.7508/CEIJ.2018.01.008
M. Karimpour-Fard, Roghayeh Alimohammadi-jelodar
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引用次数: 2

Abstract

Clayey soils are the most common material used for water sealing and undertake an important role in controlling landfill-related pollution. Organic liquids can adversely affect the effectiveness of clay liners by drastically increasing their hydraulic conductivity. The aim of this study is to investigate and compare the permeability in two types of clay with different plasticity, exposed to the flow of kerosene and diesel as non-polar immiscible liquids and ethanol as a miscible liquid with an intermediate dielectric constant. The effects of plasticity and water content for a given compactive effort are also investigated. Two different clayey soils with different plasticity were provided and their physical properties determined. Next, modified constant-head permeability tests were conducted on the samples. Results show that the lower dielectric constant of the organic fluids, leads to an increase in hydraulic conductivity. Research has shown that organic fluids shrink the diffuse double layer due to their lower dielectric constant and reduce its thickness. Shrinkage of the double layer leads to higher permeability and lower plasticity in the soil. As a result, the void space for the passage of the fluid increases. With the decrease the dielectric constant from 80.1 to 1.8, permeability is increased up to 1800 times. On the other hand, results show that for a clay with a higher liquid limit and plastic limit, permeability for all the liquids investigated in the research is lower.
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两种粘性土在石油产品和有机溶剂中的渗透性
粘土是最常见的水封材料,在控制垃圾填埋场相关污染方面发挥着重要作用。有机液体会大幅提高粘土衬垫的导水性,从而对其有效性产生不利影响。本研究的目的是研究和比较两种具有不同塑性的粘土在煤油和柴油作为非极性不混溶液体和乙醇作为中等介电常数的混溶液体的流动中的渗透率。还研究了塑性和含水量对给定压实力的影响。提供了两种不同塑性的粘性土,并测定了它们的物理性质。接下来,对样品进行修改的恒定水头渗透率测试。结果表明,有机流体的介电常数越低,导水率越高。研究表明,有机流体由于其较低的介电常数而使扩散双层收缩并减小其厚度。双层的收缩导致土壤的渗透性更高,塑性更低。结果,用于流体通过的空隙空间增大。随着介电常数从80.1降低到1.8,磁导率增加了1800倍。另一方面,结果表明,对于液限和塑性限较高的粘土,研究中研究的所有液体的渗透率都较低。
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来源期刊
CiteScore
1.30
自引率
60.00%
发文量
0
审稿时长
47 weeks
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