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Hydraulic and compaction characteristics of leachate-contaminated lateritic soil

机译:渗滤液污染的红土的水力和压实特性

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Large quantities of leachate-contaminated lateritic soil results from dump yards in the southwest coast of India. These dump yards receive large quantities of municipal solid waste which includes chemical, industrial and biomedical wastes. Large areas of land are currently being used for this purpose. An extensive laboratory testing program was carried out to determine the compaction characteristics and hydraulic conductivity of clean and contaminated lateritic soil. Batch tests were used to study the immediate effect of leachate contamination on the properties of lateritic soil. Contaminated specimens were prepared by mixing the lateritic soil with leachate in the amount of 5 percent, 10 percent and 20 percent by weight to vary the degree of contamination. The results indicated a small reduction in maximum dry density and an increase in hydraulic conductivity due to leachate-contamination. The change induced by chemical reaction in the microstructure of the soil was studied by scanning electron microscope before and after contamination of soil with leachate. The structure of the leachate contaminated soil sample appeared to be aggregated in scanning electron microscope analysis. The aggregated structure increases the effective pore space and thus increases the hydraulic conductivity. Fifty percent increase in hydraulic conductivity was observed for specimens prepared at standard Proctor density and mixed with 20 percent leachate. Compaction characteristics did not change much with the presence of leachate up to 10 percent. With 20 percent leachate the maximum dry density decreased slightly indicating excess leachate in the soil. However the changes are not significant.
机译:印度西南海岸的垃圾场造成大量渗滤液污染的红土土壤。这些垃圾场接收大量的城市固体废物,其中包括化学,工业和生物医学废物。目前,大面积土地正用于此目的。进行了广泛的实验室测试程序,以确定干净和受污染的红土的压实特性和水力传导率。分批测试用于研究渗滤液污染对红土土壤特性的直接影响。通过将红土土壤与渗滤液混合(按重量百分比计分别为5%,10%和20%)来制备污染样品,以改变污染程度。结果表明,由于浸出液污染,最大干密度略有降低,而水力传导率却有所增加。在渗滤液污染土壤的前后,通过扫描电子显微镜研究了化学反应引起的土壤微观结构的变化。渗滤液污染的土壤样品的结构在扫描电子显微镜分析中似乎是聚集的。聚集的结构增加了有效的孔隙空间,从而增加了水力传导率。对于以标准Proctor密度制备并与20%沥滤液混合的样品,观察到水力传导率增加了50%。渗滤液含量高达10%时,压实特性变化不大。浸出液量为20%时,最大干密度略有下降,表明土壤中有过量的浸出液。但是,更改并不重要。

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