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Characterization of pond ash-bentonite mixes as landfill liner material

机译:池塘 - 膨润土的表征混合为垃圾填埋衬垫材料

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摘要

Characterization of pond ash-bentonite mixes is made to assess their suitability as liner material for waste disposal facilities by examining the relevant index and engineering properties. Further, a comparative assessment is made between sand-bentonite and pond ash-bentonite mixes for the range of bentonite content varying from 0 to 30% by weight at an interval of 5% to ensure an effective substitution of sand with pond ash. Addition of bentonite to sand or pond ash significantly influences the plasticity, strength and permeability properties. Besides, the shape parameters of the coarser fraction and morphology of compacted mixes also influence the engineering properties. A multiple linear regression equation is suggested to predict the hydraulic conductivity of these mixes by considering the basic material properties such as liquid limit, plasticity index and void ratio as an input variable with a correlation coefficient of 0.92 between the measured and predicted hydraulic conductivity values. At comparable conditions, compacted pond ash-bentonite mixes exhibit higher strength but also higher permeability than sand-bentonite mixes. Pond ash-bentonite and sand-bentonite mixes met the liner requirements when compacted with modified Proctor compaction effort at a minimum bentonite content of 20% and 15%, respectively.
机译:通过检查相关指标和工程性能,使池塘膨润土混合物的表征评估其作为废物处理设施的衬里材料的适用性。此外,砂膨润土和池塘 - 膨润土与膨润土含量范围的比较评估在5%的间隔下改变0至30重量%,以确保用池灰的有效取代沙子。向沙子或池塘添加膨润土显着影响可塑性,强度和渗透性。此外,压实混合物的较粗分数和形态的形状参数也影响了工程性质。建议通过考虑诸如液体限制,可塑性指数和空隙率的基本材料特性,以预测这些混合物的液压导电性,例如测量的液压导电值之间的相关系数为0.92。在可比条件下,压实的池灰 - 膨润土混合物具有比砂膨润土混合物更高的强度,但也具有更高的渗透性。池塘 - 膨润土和砂膨润土混合物在压实改进的Proctor压实工作时达到衬里要求,以分别为20%和15%的最低膨润土含量。

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