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Mobility and speciation of heavy metals in soils impacted by hazardous waste

机译:受危险废物影响的土壤中重金属的迁移性和形态

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摘要

This study describes the mobility and chemical fractionation of heavy metals (HMs) from a site impacted by auto battery slag that was generated from secondary lead smelting operations. Samples were collected from the waste pile and from the immediate surrounding soil at four depths to assess the migration and potential bioavailability of Pb, Cd, Cr, Ni and Zn. Total levels of the HMs and their fractionation were determined. The results indicate that highest levels of HMs are present in the uppermost layer with significant migration down the depth, thereby posing a threat to groundwater quality. In the fractions, the concentrations of the metals follow this sequence: Pb>Zn>Cd>Cr>Ni. The chemical fractions of Pb, Cd, Cr, Ni and Zn in the samples, expressed as mean concentrations of the sum of the individual chemical fractions, demonstrate that the HMs exist mainly in the non-residual fractions. For instance, the percentage of non-residual fractions of lead in the waste pile and the surrounding soil ranged from 48.9 to 95.6% and 69.4 to 98.3% respectively. The mobility factors of the heavy metals are significantly high indicating high potential mobility and bioavailable forms of these HMs. The high concentrations of the HMs particularly Pb in the non-residual fractions, as observed in this study, shows the impact of anthropogenic activities on enrichment of natural soil with bioavailable HMs. Consequently, there is a need to be cautious in the way waste that is generated from heavy metals projects is added to natural soil.
机译:这项研究描述了二次铅熔炼操作产生的受自动电池渣影响的现场中重金属(HMs)的迁移率和化学分馏。从废料堆和周围四个深度的土壤中收集样品,以评估Pb,Cd,Cr,Ni和Zn的迁移和潜在生物利用度。确定了HMs的总水平及其分级。结果表明,HMs的最高含量存在于最上层,并沿深度向下迁移,从而对地下水质量构成威胁。在各部分中,金属的浓度遵循以下顺序:Pb> Zn> Cd> Cr> Ni。样品中Pb,Cd,Cr,Ni和Zn的化学成分表示为各个化学成分之和的平均浓度,表明HMs主要存在于非残留成分中。例如,废料堆和周围土壤中非残留铅的百分比分别为48.9%至95.6%和69.4%至98.3%。重金属的迁移率因子非常高,表明这些HM具有高潜在迁移率和生物利用度形式。如本研究中所观察到的那样,非残留部分中高浓度的HMs,尤其是Pb,表明人为活动对生物可利用的HMs富集天然土壤的影响。因此,在将重金属项目产生的废物添加到自然土壤中的方式上需要保持谨慎。

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