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Removal of heavy metals and arsenic from a co-contaminated soil by sieving combined with washing process

机译:通过筛分和清洗工艺从共同污染的土壤中去除重金属和砷

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Batch experiments were conducted with a heavy metals and arsenic co-contaminated soil from an abandoned mine to evaluate the feasibility of a remediation technology that combines sieving with soil washing. Leaching of the arsenic and heavy metals from the different particle size fractions was found to decrease in the order: <0.1, 2-0.1, and >2 mm. With increased contact time, the concentration of heavy metals in the leachate was significantly decreased for small particles, probably because of adsorption by the clay soil component. For the different particle sizes, the removal efficiencies for Pb and Cd were 75%-87%, and 61%-77% for Zn and Cu, although the extent of removal was decreased for As and Cr at <45%. The highest efficiency by washing for Pb, Cd, Zn, and As was from the soil particles >2 mm, although good metal removal efficiencies were also achieved in the small particle size fractions. Through SEM-EDS observations and correlation analysis, the leaching regularity of the heavy metals and arsenic was found to be closely related to Fe, Mn, and Ca contents of the soil fractions. The remediation of heavy metal-contaminated soil by sieving combined with soil washing was proven to be efficient, and practical remediation parameters were also recommended. (C) 2015 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
机译:对废弃矿山中重金属和砷共污染的土壤进行了批处理实验,以评估将筛分与土壤洗涤相结合的修复技术的可行性。发现来自不同粒度级分的砷和重金属的浸出顺序为:<0.1、2-0.1和> 2 mm。随着接触时间的增加,对于小颗粒,渗滤液中重金属的浓度显着降低,这可能是由于粘土成分的吸附所致。对于不同的粒径,Pb和Cd的去除效率为75%-87%,Zn和Cu的去除效率为61%-77%,尽管As和Cr的去除率降低了<45%。洗涤Pb,Cd,Zn和As的最高效率来自> 2 mm的土壤颗粒,尽管在小颗粒级分中也获得了良好的金属去除效率。通过SEM-EDS观测和相关分析,发现重金属和砷的浸出规律与土壤部分的Fe,Mn和Ca含量密切相关。事实证明,通过筛分和水洗相结合修复重金属污染的土壤是有效的,并且还建议使用实际的修复参数。 (C)2015年中国科学院生态环境研究中心。由Elsevier B.V.发布

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