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Improved heavy metal immobilization of compacted clay by cement treatment

机译:通过水泥处理改善压实粘土的重金属固定

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摘要

This study examines the use of cement treatment in improving the lead immobilization properties of a compacted clay liner for sanitary landfill applications. The compaction and strength characteristics of the cement treated clay at cement contents of 0%, 3%, 6%, 9%, 12%, 15% and 18% by weight of dry soil are studied via standard compaction and unconfined compressive strength tests. The lead immobilization characteristics of the cement treated clay are also investigated using atomic absorption spectroscopy. The cement contents of 6% and 9% significantly affect the permeability coefficient and lead absorption of the clay. The permeability coefficient of the cement treated clay meets the requirement for a waterproof material in landfill, i.e., <1.49 × 10−11 m/s. Lead immobilization is shown to increase with increasing cement content. When the lead nitrate solution in the form of Pb2+ ions seeps through the cement treated clay, the hydrolysis reaction results in the formation of Ca2+ and OH− ions. The solution with high alkalinity from this reaction dissolves SiO2 and Al2O3 in the clay. The Pb2+ ions are therefore absorbed by SiO2 and Al2O3 and Pb3SiO5 is formed. As a result, the lead content in the effluent from the cement treated clay is significantly lower than that from untreated clay. The results from this research can be translated into a regulatory framework for managing the contamination dissipation of industrial waste from landfill.
机译:本研究检测水泥处理在改善压实粘土衬里的铅固定性能方面的使用,用于卫生垃圾填埋场应用。通过标准压实和无凝结的抗压强度试验研究水泥含量在水泥含量为0%,3%,6%,9%,12%,15%和18重量%的干燥土壤中的压实含量的压实和强度特性。使用原子吸收光谱还研究了水泥处理粘土的铅固定特性。水泥含量为6%和9%显着影响渗透性系数和粘土的铅吸收。水泥处理的粘土的渗透性系数符合垃圾填埋场中防水材料的要求,即<1.49×10-11m / s。显示铅固定化随着水泥含量的增加而增加。当铅硝酸盐溶液以Pb2 +离子的形式通过水泥处理的粘土渗透时,水解反应导致形成Ca2 +和OH-离子。该反应中具有高碱度的溶液溶解于粘土中的SiO 2和Al 2 O 3。因此,PB2 +离子由SiO 2吸收,并形成Al 2 O 3和PB3SiO5。结果,来自水泥处理粘土的流出物中的铅含量显着低于未处理的粘土。该研究的结果可以转化为管理垃圾填埋场工业废物污染污染的监管框架。

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