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Determination of soil contamination sources in mining area using Zn/Cd ratios with mobile Cd

机译:用移动CD使用Zn / CD比测定采矿区土壤污染源

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摘要

Paddy fields near metalliferous mining area are sometimes contaminated by tailings or mine water. In the contaminated paddy fields around the abandoned Seoseong mine, South Korea, groundwater, surface water, and soil samples were assessed to infer sources (tailings and/or mine water) of soil contamination. Major contaminants in the soil included As and Pb which were not detected in the adit water. Moreover, delta S-34(SO4) values of groundwater at contaminated downstream paddy fields were higher than those of ground and surface water in the mining area, which indicated water-derived contamination is not evident. The Zn/Cd ratios of soil were assessed to verify the source (tailings) of soil contamination. Plots of the Zn/Cd ratio against Zn and As contents showed that soil samples contaminated from tailings had Zn/Cd ratios (108-247) which were similar with the Zn/Cd range of the tailings. In contrast, the ratios of the soil samples were different from the Zn/Cd range of contaminated water samples. The Zn/Cd ratios were determined using 0.1 M HCl-extractable Cd, and the fraction of 0.1 M HCl-extractable Cd in aqua regia-digestible Cd increased with increasing aqua regia-digestible Cd content. These observations suggest that Zn/Cd ratios in contaminated soil are primarily controlled by 0.1 M HCl-extractable Cd, possibly due to the greater exchangeability of 0.1 M HCl-extractable Cd than that of total Cd. This suggests that Zn/Cd ratios determined using 0.1 M HCl-extractable Cd can be especially sensitive and useful for determining sources of soil contamination in mining areas such as tailings or contaminated water.
机译:墨水挖掘区域附近的稻田有时受到尾矿或矿井水的污染。在废弃的Seoseong矿山周围的受污染的稻田中,评估了土壤污染的源(尾矿和/或矿井水)的污染稻田。包含的土壤中的主要污染物为AS和PB,在Adit水中未检测到。此外,污染下游稻田地下水的ΔS-34(SO4)值高于矿区的地面和地面水的地下水,这表明水源性污染不明显。评估土壤的Zn / Cd比率以验证土壤污染的源(尾矿)。 Zn / Cd比例的Zn和作为内容的曲线表明,从尾矿污染的土壤样品具有Zn / Cd比率(108-247),其与尾矿的Zn / Cd范围类似。相反,土壤样品的比例与污染水样的Zn / Cd范围不同。使用0.1M HCl可提取的Cd测定Zn / Cd比率,随着Aqua Regia可消化CD含量的增加,Aqua Regia可消化CD中的0.1M HCl可提取的Cd的级分。这些观察结果表明,污染土壤中的Zn / Cd比主要由0.1M HCl可提取的Cd控制,可能是由于0.1M HCl可提取的Cd的更大的盈可曲线,而不是总CD的粘性。这表明使用0.1M HCl可提取的CD测定的Zn / Cd比可以特别敏感,可用于确定矿床(如尾矿或受污染的水)中的土壤污染源。

著录项

  • 来源
    《Environmental Geochemistry and Health》 |2021年第10期|4061-4074|共14页
  • 作者单位

    Sangji Univ Dept New Energy & Min Engn Wonju 26339 Gangwon Do South Korea|Korea Mine Reclamat Corp MIRECO Inst Mine Reclamat Technol Wonju 26464 Gangwon Do South Korea;

    Korea Mine Reclamat Corp MIRECO Inst Mine Reclamat Technol Wonju 26464 Gangwon Do South Korea;

    Korea Mine Reclamat Corp MIRECO Inst Mine Reclamat Technol Wonju 26464 Gangwon Do South Korea|Korea Univ Dept Earth & Environm Sci Seoul 02841 South Korea;

    Korea Mine Reclamat Corp MIRECO Inst Mine Reclamat Technol Wonju 26464 Gangwon Do South Korea;

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

    Soil contamination source; Mine tailings; Cd mobility; 0.1 M HCl-extractable cd;

    机译:土壤污染源;矿井;CD流动性;0.1米HCL可提取的CD;

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