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Laboratory study of strength, leaching, and electrical resistivity characteristics of heavy-metal contaminated soil

机译:重金属污染土的强度,浸出和电阻率特征的实验室研究

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In this work, geotechnical properties of heavy-metal contaminated soil consist of basic properties, strength, leaching, electrical resistivity and microstructural characteristics were investigated. The results showed that the clay content, specific surface area and cation exchange capacity of the soil decreased as heavy-metal concentrations increased. The decrease in basic properties was more significant in Zn-contaminated soil than that in Pb-contaminated soil. The unconfined compressive strength (UCS) decreased as heavy-metal concentrations increased. The effect of Zn2+ on UCS was confirmed to be greater than that of Pb2+. The leached heavy-metal concentration increased with higher initial heavy-metal concentrations. A greater leaching capacity was observed in Zn-contaminated soil compared to Pb-contaminated soil. With increasing pore fluid resistivity, UCS values gradually increased and leached ion concentrations dramatically decreased before becoming stable. Zn-contaminated soil was found to have a lower strength and higher leached-ion concentration than Pb-contaminated soil. A set of equations was proposed to successfully predict the engineering properties of contaminated soil using pore fluid resistivity. Microstructural analysis presented that, as heavy-metal concentrations increased, clay particles aggregated, the flocculation structure and the inter-aggregate pores became enlarged. Zn-contaminated soil had larger aggregate and inter-aggregate pores, compared to Pb-contaminated soil. In general, significant effects of heavy metal ions on geotechnical properties of the contaminated soil have been revealed and analyzed in the present work, which could be predicted using the pore fluid resistivity in a more effective way.
机译:在这项工作中,研究了重金属污染土壤的岩土性质,包括基本性质,强度,浸出,电阻率和微观结构特征。结果表明,由于重金属浓度的增加,土壤的粘土含量,比表面积和阳离子交换能力下降。 Zn受污染的土壤中基本性质的降低比PB污染土壤更显着。随着重金属浓度的增加,非整合的压缩强度(UCS)降低。 Zn2 +对UCs的影响得到了大于PB2 +的影响。浸出的重金属浓度随着初始重金属浓度的较高而增加。与PB污染的土壤相比,在Zn受污染的土壤中观察到更大的浸出能力。随着孔隙流体电阻率的增加,在变得稳定之前,UCS值逐渐增加并且浸出的离子浓度显着降低。发现Zn受污染的土壤具有比PB污染的土壤更低的强度和更高的浸出离子浓度。建议通过孔流体电阻率成功预测污染土壤的工程性能。微观结构分析呈现,随着重金属浓度的增加,粘土颗粒聚集,絮凝结构和聚集间孔隙变得放大。与PB污染的土壤相比,Zn受污染的土壤具有较大的骨料和骨料间孔隙。通常,在本作工作中揭示和分析了重金属离子对污染土壤岩土性质的显着影响,这可以通过更有效的方式预测孔隙流体电阻率。

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