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Lateritic Soil Treated with Waste Wood Ash as Liner in Landfill Construction

机译:用废木灰作为垃圾填埋场衬里用废木灰治疗的外形土壤

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Inherent variability in engineering properties of lateritic soil in relation to its plasticity, permeability, strength, workability, and natural moisture content, has made it an unpredictable material for use in civil engineering works, resulting in the need for its treatment by stabilization. A lateritic soil classified as A-6(6) and CL, according to American Association of State Highway and Transportation Officials and Unified Soil Classification System of ASTM (2011), was treated with up to 10 percent waste wood ash (WWA). Compaction was carried out using four energies, namely, reduced British Standard light, British Standard light (BSL), West African Standard, and British Standard heavy, on samples, which were then examined for hydraulic conductivity, volumetric shrinkage, and unconfined compressive strength as major criteria for use as liner and for the development of acceptable zones. Specimens with 4 percent WWA content compacted with a minimum BSL energy satisfied the maximum hydraulic conductivity (k) value of 1 x 10(-9) m/s, maximum volumetric shrinkage strain of 4 percent, and minimum unconfined compressive strength value of 200 kN/m(2) required for use as liner in engineered landfills. The overall acceptable zone was enlarged for up to 4 percent WWA content, thereby accommodating higher moulding water content, but the minimum compactive effort required to achieve it became reduced. The beneficial treatment of lateritic soil with up to 4 percent WWA will perform satisfactorily as liner and covers in waste containment application and will minimize the pollution and environmental impact of wood waste disposal.
机译:与其可塑性,渗透性,强度,可加工性和天然水分含量相关的外带土壤工程性能的固有变异使其成为土木工程作品中使用不可预测的材料,从而需要通过稳定化治疗。据美国国家公路和运输官员协会和ASTM(2011)的运输官员和统一土壤分类系统的统一土壤分类系统归类为A-6(6)和CL,均受高达10%的废木灰(WWA)进行治疗。使用四个能量进行压实,即减少英国标准光线,英国标准光(BSL),西非标准和英国标准重,然后在样品上检查,然后检查液压导电性,体积收缩和不合适的抗压强度主要标准用作衬里和可接受区域的开发。具有4%的WWA含量的标本,具有最小BSL能量,满足最大液压导电性(k)值为1×10(-9)m / s,最大体积收缩应变为4%,最小的未排除压缩强度值为200 kn / m(2)在工程垃圾填埋场中用作衬垫所需的。总体可接受的区域增大了高达4%的WWA含量,从而适应更高的含水量,但实现它所需的最小压力努力变为减少。随着衬垫的衬垫和废物遏制申请中的衬垫和覆盖物令人满意地表现良好的土壤,并将最大限度地减少木材废物处理的污染和环境影响。

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