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首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Heavy metals in soil contaminated through e-waste processing activities in a recycling area: Implications for risk management
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Heavy metals in soil contaminated through e-waste processing activities in a recycling area: Implications for risk management

机译:通过回收领域的电子废物加工活动污染的土壤中的重金属:对风险管理的影响

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摘要

Heavy metal pollution of the environment caused by e-waste recycling is of increasing concern, but little information is available on metal emissions during e-waste processing activities. Here, the concentrations of nine metals in soil at four contaminated sites in Qingyuan (an e-waste recycling area in China) and the risks posed were investigated. Soil at the sites was polluted with metals, particularly Cd, Cu, Pb, and Sb, the concentrations of which were 2.83-2306, 2.17-1880, 0.96-1971, and 9.28-5607 times higher, respectively, than local background concentrations. The Cd, Cr, Hg, Pb, and Sb concentrations were significantly lower in soil at an abandoned site than at acid-leaching, dismantling, and burning sites. The risks posed by metals in soil to human and environmental health were much higher at the acid-leaching and burning sites than the dismantling and abandoned sites. Source assessments indicated the differences in metal concentrations at the different sites were caused by different e-waste recycling activities at the sites. The results indicated crude e-waste processing is an important source of heavy metals to soil and should be of great concern. Pollution control measures and risk management strategies specific to soil contaminated through e-waste processing activities should be developed. (C) 2019 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:由电子废物回收引起的环境的重金属污染是越来越多的关注,但在电子废物加工活动期间,在金属排放时提供的信息很少。在此,清远四次污染场地(中国电子废物回收区的土壤中九个金属浓度及其占有的风险。位点的土壤污染金属,特别是Cd,Cu,Pb和Sb,其浓度分别为2.83-2306,2.83-2306,2.17-1880,0.96-1971和9.28-5607倍,分别比本地背景浓度更高。除酸浸出,拆解和燃烧部位的废弃位点,土壤中的CD,Cr,Hg,Pb和Sb浓度显着降低。在酸浸出和燃烧的位点,土壤中金属和环境健康的金属造成的风险高于拆解和废弃地点。源评估表明,不同部位的金属浓度差异是由地点的不同电子废物回收活动引起的。结果表明,粗电子废物加工是土壤的重要源,应该是非常关注的。应制定通过电子废物加工活动污染的土壤特异的污染控制措施和风险管理策略。 (c)2019化学工程师机构。 elsevier b.v出版。保留所有权利。

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