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Solidification/stabilization of hazardous wastes containing metals and organic contaminants

机译:固化/稳定含有金属和有机污染物的危险废物

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The potential of solidification/stabilization (S/S) technology for the safe disposal of hazardous wastes has wide spread recognition. The purpose of this study was to investigate the effectiveness of portland cement-based S/S technology for the safe disposal of hazardous wastes containing toxic metals and organic contaminants. As hazardous wastes, metal enriched mining residue, adsorbable organic halogens (AOX) containing pulp and paper sludge, and polychlorinated biphenyl (PCB) oil-contaminated soil were used. For S/S of waste, portland cement as a binding agent was mixed with wastes at different ratios. For initial waste characterization, contaminant concentrations and some physical waste characteristics such as particle-size distribution, Atterberg limits, specific gravity, and moisture content yielding the maximum compacted dry density were determined. Waste and cement mixtures were cured for 28 days after compacting the desired waste-cement mixtures at their predetermined optimum moisture contents yielding the corresponding maximum dry densities in cylindrical molds having a height of 71 mm and a diameter of 36 mm. At the end of the 28-day cure period, unconfined compressive strength and hydraulic conductivity measurements were conducted on the solidified samples. Subsequently, solidified samples were crushed for fractionation into two different aggregate sizes (between 1-2 and >2 mm) and subjected to the U.S. Environmental Protection Agency Toxicity Characteristic Leaching Procedure (TCLP). The effectiveness of S/S was assessed by comparing the chemical composition of leachates obtained from TCLP tests of untreated and treated, i.e., S/S waste samples, and comparing values of strength and hydraulic conductivity of solidified waste samples with regulatory requirements. For mining waste, effective application of S/S was achieved for most cases. AOX containing sludge yielded acceptable results in terms of strength and hydraulic conductivity but leachate AOX concentrations were above regulatory levels. The effectiveness of S/S for coarse textured-soils contaminated with a PCB oil was not satisfactory, especially at a cement:soil ratio less than 35%. [References: 45]
机译:固化/稳定化(S / S)技术在安全处置危险废物方面的潜力已得到广泛认可。这项研究的目的是研究基于硅酸盐水泥的S / S技术在安全处置含有有毒金属和有机污染物的危险废物方面的有效性。作为危险废物,使用了富含金属的采矿残渣,含有纸浆和纸浆的可吸附有机卤素(AOX),以及多氯联苯(PCB)污染了油的土壤。对于废物的S / S,将作为粘合剂的硅酸盐水泥与废物以不同的比例混合。为了初步表征废物,确定了污染物的浓度和一些物理废物的特征,例如粒度分布,阿特伯格限值,比重和产生最大压实干密度的水分。在将所需的废水泥混合物以预定的最佳水分压实后,将废水泥混合物固化28天,从而在高度为71 mm,直径为36 mm的圆柱形模具中产生相应的最大干密度。在28天的固化期结束时,对固化的样品进行了无侧限的抗压强度和水力传导率测量。随后,将固化的样品压碎,分馏成两种不同的聚集体尺寸(1-2毫米和> 2毫米之间),并接受美国环境保护局的毒性特征浸出程序(TCLP)。通过比较从未经处理和已处理的S / S废物样品的TCLP测试中获得的渗滤液的化学组成,并将固化废物样品的强度和水力传导率值与法规要求进行比较,来评估S / S的有效性。对于采矿废物,大多数情况下都可以有效地应用S / S。就强度和水力传导率而言,含AOX的污泥产生了可接受的结果,但渗滤液中AOX的浓度却高于规定水平。 S / S对于被PCB油污染的粗糙纹理土壤的有效性不令人满意,尤其是在水泥与土壤比率小于35%的情况下。 [参考:45]

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