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Experimental investigation on shear strength and permeability of a deeply dewatered sewage sludge for use in landfill covers

机译:用于垃圾掩埋场的深度脱水污泥的剪切强度和渗透性的实验研究

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This paper presents an experimental study on a deeply dewatered sewage sludge produced by using a new technique of membrane filter press. The experiments involve measurements of sludge composition, basic physical properties, shear strength, water permeability, and leaching toxicity. The measurements of shear strength and permeability were also performed on the sludge specimens soaked in a low acid leachate or distilled water for 1 and 2 months. This is to investigate the influence of chemical change in pore fluid as a result of rainfall infiltration or leachate seepage at landfills. Comparison tests were also carried out on silty clay that is commonly used for landfill cover material. The experimental results show that the deeply dewatered sludge contains 66 % organic content and 85 % water content (dry mass basis). The undrained shear strength of the sludge is >25 kPa even after 2-month soaking in the leachate and distilled water, meeting the requirement of the Chinese standard [CJ/T249-2007, Disposal of sludge from municipal wastewater treatment plant: sludge quality for co-landfilling. Ministry of Building and Construction, P.R. China (in Chinese), 2007]. The measured cohesion and friction angle for the sludge are >20 kPa and 22.3°, respectively. The soaking of sludge specimens in either leachate or distilled water resulted in an increase in frictional angle by several degrees. The water permeability for the sludge ranges from 0.68 × 10~(-8) to 1.3 × 10~(-8) cm/s, and permeability after 2-month soaking is less than the minimum requirement for the barrier layer of landfill covers (i.e., 1.0 × 10~(-7) cm/s). The concentrations of heavy metals leaching from the dewatered sludge are lower than the limit values of leaching toxicity for the wastewater discharge standard of China. The experimental results indicate that deeply dewatered sludge can be used as an alternative material for the barrier layer of landfill covers.
机译:本文介绍了使用膜压滤机新技术生产的深度脱水污泥的实验研究。实验涉及污泥成分,基本物理性能,剪切强度,水渗透性和浸出毒性的测量。还对浸泡在低酸渗滤液或蒸馏水中1个月和2个月的污泥样品进行了剪切强度和渗透率的测量。这是为了调查由于降雨渗入或垃圾填埋场渗滤液渗漏而导致的孔隙流体化学变化的影响。还对通常用于垃圾掩埋覆盖材料的粉质粘土进行了对比测试。实验结果表明,深度脱水的污泥含有66%的有机物和85%的水(以干重计)。即使在浸出液和蒸馏水中浸泡2个月后,污泥的不排水剪切强度仍大于25 kPa,符合中国标准[CJ / T249-2007,市政污水处理厂污泥的处理:污泥质量共同填埋。中国建设部,2007。测得的污泥的内聚力和摩擦角分别> 20 kPa和22.3°。污泥样品在浸出液或蒸馏水中的浸泡导致摩擦角增加了几度。污泥的水渗透率范围为0.68×10〜(-8)至1.3×10〜(-8)cm / s,浸泡2个月后的渗透率小于垃圾填埋场覆盖层的最低要求(即1.0×10〜(-7)cm / s)。从脱水污泥中浸出的重金属浓度低于中国废水排放标准的浸出毒性极限值。实验结果表明,深度脱水的污泥可以用作填埋场覆盖物阻挡层的替代材料。

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