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Effect of Sludge Amendment on Remediation of Metal Contaminated Soils

机译:污泥改良剂对金属污染土壤修复的影响

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Column-leaching and pilot-scale experiments were conducted to evaluate the use of biosolids (sewage sludges) to control the mobilization of metals from contaminated soils with smelting slags. The pilot-scale experiments using amended soils showed that Cu, Pb and Sb were retained, decreasing their concentrations from 250 μg/L, 80 μg/L and 6 μg/L, respectively in the leachates of contaminated soils, to 20 μg/L, 40 μg/L and 4 μg/L, respectively, in the amended material. Hydrogeochemical modeling of the leachates using Minteq revealed that the degree of complexation of Cu rose 56.3% and 57.6% in leachates of amended soils. Moreover, Cu may be immobilized by biosolids, possibly via adsorption by oxyhydroxides of Fe or sorption by organic matter. The partial retention of Pb coincides with the possible precipitation of chloropyromorphite, which is the most stable mineral phase in the pH-Eh conditions of the leachates from the amended material. The retention of Sb may be associated with the precipitation of Sb2O3, which is the most stable mineral phase in the experimental conditions. The organic amendments used in this study increased some metal and metalloid concentrations in the leachates (Fe, Mn, Ni, As and Se), which suggests that the organic amendments could be used with caution to remediate metal contaminated areas.
机译:进行了柱浸实验和中试规模的实验,以评估生物固体(污水污泥)的使用,以控制从具有冶炼炉渣的污染土壤中金属的迁移。使用改良土壤的中试实验表明,保留了Cu,Pb和Sb,将其在污染土壤渗滤液中的浓度分别从250μg/ L,80μg/ L和6μg/ L降低至<20μg/ L。修改后的材料分别为L,40μg/ L和4μg/ L。使用Minteq对渗滤液进行水文地球化学模拟显示,在改良土壤中,渗滤液中Cu的络合度分别提高了56.3%和57.6%。此外,铜可能被生物固体固定,可能是通过铁的羟基氧化物的吸附或有机物的吸附。 Pb的部分保留与次氯酸盐的可能沉淀相吻合,这是在经修正的物料的渗滤液的pH-Eh条件下最稳定的矿物相。 Sb的保留可能与Sb 2 O 3 的沉淀有关,Sb 2 O 3 是实验条件下最稳定的矿物相。本研究中使用的有机改性剂增加了渗滤液中的某些金属和准金属浓度(Fe,Mn,Ni,As和Se),这表明有机改性剂应谨慎使用,以修复金属污染区域。

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