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Experimental Research on Engineering Property of Heavy Metal-contaminated Kaoiinite

机译:重金属污染的高铁工程性能实验研究

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Due to release and accumulation of industrial contaminants in natural soil in some regions, and the long-term interaction between leachate and clay which is adopted as isolation material of contaminants, the engineering property variation of clay soils after having been polluted by heavy metal ions gradually has drawn more and more attention of environmental geotechnical engineers. With relatively high chemical stability and low expansion coefficient kaoiinite is widely distributed and usually used in engineering practice. In this research, Pb, Zn, and Cu-contaminated kaolinite specimens of controlled initial dry density and water content were manually prepared through static compaction. Then expansion capacity, unconfmed compression, electrical resistivity and one-dimensional consolidation tests were conducted. It is found that the expansion capacity of contaminated kaolinite is influenced by the type and concentration of heavy metal ion. The unconfmed compressive strength of heavy metal-contaminated kaolinite is decreased in a short period, but it may increase in a long term. Unconfmed compressive strength of the same type of heavy metal-contaminated kaolinite will change with the contamination concentration. The electrical resistivity of kaolinite would be decreased when contaminated by heavy metal ions. The higher the contamination concentration is, the lower the electrical resistivity will be. All the compression indexes of heavy metal-contaminated kaolinite become lower than that of the clean kaolinite, and it also depends on both the type of heavy metal and contamination concentration. For the three types of heavy metal ions, Pb has the greatest influence on the engineering property of kaolinite, while the effects of Zn and Cu are quite similar.
机译:由于在一些地区的天然土壤中的工业污染物释放和积累,以及渗滤液和粘土之间的长期相互作用,其被用作污染物的分离材料,粘土土壤的工程性质变化逐渐被逐渐污染越来越多地关注环境岩土工程师。具有相对较高的化学稳定性和低膨胀系数Kaoiinite广泛分布,通常用于工程实践。在该研究中,通过静压手动制备受控初始干密度和水含量的Pb,Zn和Cu污染的高岭石标本。然后进行扩展容量,无浮动压缩,电阻率和一维固结试验。发现污染的高岭石的膨胀能力受重金属离子的类型和浓度的影响。在短时间内,重金属污染的高岭土的无束缚抗压强度降低,但可能长期增加。相同类型的重金属污染的高岭石的未浮动抗压强度将随污染浓度而变化。当被重金属离子污染时,高岭石的电阻率会降低。污染浓度越高,电阻率越低。重金属污染的高岭土的所有压缩指数都变得低于清洁高岭石的压缩指数,也取决于重金属和污染浓度的类型。对于三种类型的重金属离子,PB对高岭石的工程性质影响最大,而Zn和Cu的效果非常相似。

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