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Potential mobility of heavy metals through coupled application of sequential extraction and isotopic exchange: Comparison of leaching tests applied to soil and soakaway sediment

机译:通过顺序萃取和同位素交换的结合应用,重金属的潜在迁移率:土壤和索卡威沉积物浸出试验的比较

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摘要

Artificial infiltration facilities (AIFs) that enhance groundwater recharge and regulate urban runoff are going to be an integral element of the urban infrastructure. However, AIFs provide a sink which trap pollutants that are likely to cause groundwater contamination. The current study aimed first to examine the mobility characteristics of Cu, Zn, and Pb through soil and soakaway sediment using an integrated analytical approach for column leaching with artificial road runoff (ARR) and then to differentiate the sorption patterns among different samples, (i.e., surface soil, underlying soil, and soakaway sediments) using mass balances. In addition, the study compares metal retention and release under continuous and intermittent flow conditions. Column leaching experiments were conducted using batches for 10 and 30 d under continuous flow condition and for 20 d of intermittent leaching. Heavy metal content and partitioning in soil and sediment used in columns were well characterized before and after leaching experiments. The results showed that a gradual increase in pH and decrease in dissolved organic carbon had pronounced effect on the mobilization of heavy metals. Pb showed the highest retention compared to Cu and Zn which implies that metal complexes play a pivotal role in metal transport. Labile fractions were found to be trapped by the solid materials for retention and their high concentration in ARR is a major concern from the pollution point of view through infiltration facilities. Results obtained in this study predict the risk associated with the release of retained heavy metal under changing environmental conditions in AIFs.
机译:增强地下水补给并调节城市径流的人工渗透设施(AIF)将成为城市基础设施的组成部分。但是,AIF提供了一个接收器,用于收集可能导致地下水污染的污染物。当前的研究旨在首先使用一种集成的分析方法,通过人工径流(ARR)进行柱浸,研究Cu,Zn和Pb在土壤和索马里沉积物中的迁移特性,然后区分不同样品之间的吸附模式,(即,表层土壤,下层土壤和索科威沉积物)。此外,该研究比较了连续和间歇流动条件下金属的保留和释放。在连续流动条件下,分批进行了10天和30天的间歇浸出实验,并进行了20天的间歇浸出实验。在浸出实验之前和之后,对柱中使用的土壤中的重金属含量和分配进行了很好的表征。结果表明,pH的逐渐升高和溶解有机碳的降低对重金属的迁移具有明显的影响。与铜和锌相比,铅显示出最高的保留率,这表明金属络合物在金属传输中起关键作用。发现不稳定级分被固体材料截留以保留,从污染角度看,通过渗透设施,它们在ARR中的高浓度是一个主要问题。这项研究中获得的结果预测了在不断变化的环境条件下,AIFs中与释放重金属有关的风险。

著录项

  • 来源
    《Chemosphere》 |2013年第2期|796-804|共9页
  • 作者单位

    Department of Urban Engineering, The University of Tokyo, Tokyo 113-8656, Japan,Department of Environmental Science, Tezpur University, Assam, India;

    Research Center for Water Environment Technology, Graduate School of Engineering, The University of Tokyo, Tokyo 113-8656, Japan;

    Research Center for Water Environment Technology, Graduate School of Engineering, The University of Tokyo, Tokyo 113-8656, Japan;

    Department of Urban Engineering, The University of Tokyo, Tokyo 113-8656, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    column leaching; heavy metal; diffuse pollution; artificial infiltration facilities; groundwater contamination; isotope dilution technique;

    机译:柱浸重金属;扩散污染;人工渗透设施;地下水污染;同位素稀释技术;

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