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Hydraulic and mechanical characteristics of compacted sand-bentonite: tyre chips mix for its landfill application

机译:压实砂岩的液压和力学特性:轮胎芯片混合其垃圾填埋场

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Compacted sand-bentonite mixtures are generally placed at waste dumping places as a means of avoiding contaminant movement to reduce or remove the potential for groundwater pollution. Owing to their almost impermeable nature and high pollutant adsorption tendency, bentonite generally treated as a liner material to avoid subsurface contamination. Cracks are formed in the landfill liner due to the desiccation, large interlayer shrinkage and differential settlement of bentonite. Fibres are commonly added to sand-bentonite mixture to act as a reinforcing material to eliminate the development of tensile cracks. Waste tyre chips are derived from the tyre retreated technique, and it can be included as short fibre in sand-bentonite mixture for the use as landfill barrier material. Hydraulic conductivity and shear strength are the two important parameters of the liner material, which are considered for hydraulic, and stability analysis in landfill application. In this context, consolidation and consolidated undrained tests were performed to study the hydraulic and mechanical behaviour of sand-bentonite mixture mixed in a proportion of 80:20 and mixed with 0, 5, 10 and 15% of waste tyre chips. From the consolidation test, swelling pressure and swelling potential reduced maximal at 15% of tyre chip content. Hydraulic conductivity and negative pore water pressure altered significantly with the application of tyre chips. Effective internal angle of friction enhanced from 24.9 degrees to 30.5 degrees and critical state parameter improved from 0.738 to 1.429 with the presence of 15% of tyre chips. Test result suggested that maximum of 10% of tyre chips can be used as a landfill liner and 15% tyre chips would be benefited for landfill cover.
机译:压实的砂膨润土混合物通常放置在废物倾倒场所,作为避免污染物运动减少或消除地下水污染的可能性的手段。由于它们几乎不透水性和高污染物吸附倾向,膨润土通常被视为衬里材料以避免地下污染。由于膨润土的干燥,大层间收缩和差动沉降,填埋衬垫中的裂缝形成裂缝。纤维通常加入砂膨润土混合物中以充当加强材料,以消除拉伸裂缝的发育。废轮胎芯片源自轮胎后退技术,可以包括在砂膨润土混合物中的短纤维中,以用作垃圾填埋屏障材料。液压导电性和剪切强度是衬里材料的两个重要参数,其被认为是垃圾填埋场应用中的液压和稳定性分析。在这种情况下,进行整合和巩固的不推进的测试,以研究砂膨润土混合物的液压和力学行为以占80:20的比例,并与0,5,10和15%的废轮胎芯片混合。从整合测试,膨胀压力和膨胀潜力在15%的轮胎芯片含量下降低。液压导电性和负孔隙水压随着轮胎芯片的应用而显着改变。有效内部摩擦角增强从24.9度到30.5度,并且临界状态参数从0.738增加到1.429,存在15%的轮胎芯片。测试结果表明,最大10%的轮胎芯片可以用作垃圾填埋衬垫,15%的轮胎芯片将使垃圾填埋场覆盖。

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