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首页> 外文期刊>International journal of risk assessment and management >Compacted lateritic soil treated with blast furnace slag as hydraulic barriers in waste containment systems
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Compacted lateritic soil treated with blast furnace slag as hydraulic barriers in waste containment systems

机译:用高炉矿渣处理的压实红壤作为废物围护系统中的水力屏障

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Laboratory testing was conducted to assess the feasibility of using lateritic soil mixed with up to 15% blast furnace slag (BFS) by dry weight of soil as a suitable hydraulic barrier. Tests were carried out on the lateritic soil-slag mixture to ascertain the particle size distribution, index properties and compaction characteristics. The relationship between hydraulic conductivity, unconfined compressive strength (UCS) and volumetric shrinkage strain at standard Proctor, West African Standard and modified Proctor, compactive efforts were determined at different moulding water contents (i.e., 10-20%). Acceptable zones on the compaction plane in which compacted soil specimens would have low hydraulic conductivity (< 1 × 10~(- 9) m/s), minimum volumetric shrinkage strain (< 4%) and high compressive strength (> 200 kN/m~2) were established. The results showed that higher slag contents improved the hydraulic conductivity, volumetric shrinkage strain and compressive strength. Optimum properties of the lateritic soil-slag mixture were obtained at 10% slag treatment that suggests the use of the mixture as a suitable hydraulic barrier in waste containment systems.
机译:进行了实验室测试,以评估使用按土壤干重计将不超过15%的高炉矿渣(BFS)混合的红土土壤作为合适的水硬屏障的可行性。对红土-矿渣混合物进行了测试,以确定粒度分布,指数特性和压实特性。在不同的成型含水量(即10%至20%)下,确定了标准Proctor,西非标准和改性Proctor的水力传导率,无侧限抗压强度(UCS)和体积收缩应变之间的关系。压实平面上的可接受区域,其中压实的土壤样品将具有低水力传导率(<1×10〜(-9)m / s),最小体积收缩应变(<4%)和高抗压强度(> 200 kN / m 〜2)已建立。结果表明,较高的矿渣含量提高了水力传导率,体积收缩应变和抗压强度。在10%的矿渣处理条件下,获得了红土土壤-矿渣混合物的最佳性能,这表明该混合物可作为废物围护系统中的合适水力屏障使用。

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