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Heavy metals in soil at a waste electrical and electronic equipment processing area in China

机译:中国废弃电子电气设备加工区土壤中的重金属

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摘要

For the objective of evaluating the contamination degree of heavy metals and analysing its variation trend in soil at a waste electrical and electronic equipment processing area in Shanghai, China, evaluation methods, which include single factor index method, geo-accumulation index method, comprehensive pollution index method, and potential ecological risk index method, were adopted in this study. The results revealed that the soil at a waste electrical and electronic equipment processing area was polluted by arsenic, cadmium, copper, lead, zinc, and chromium. It also demonstrated that the concentrations of heavy metals were increased over time. Exceptionally, the average value of the metalloid (arsenic) was 73.31 mg kg~(−1) in 2014, while it was 58.31 mg kg~(−1) in the first half of 2015, and it was 2.93 times and 2.33 times higher than that of the Chinese Environmental Quality Standard for Soil in 2014 and the first half of 2015, respectively. The sequences of the contamination degree of heavy metals in 2014 and the first half of 2015 were cadmium > lead > copper > chromium > zinc and cadmium > lead > chromium > zinc > copper. From the analysis of the potential ecological risk index method, arsenic and cadmium had higher ecological risk than other heavy metals. The integrated ecological risk index of heavy metals (cadmium, copper, lead, zinc, and chromium) and metalloid (arsenic) was 394.10 in 2014, while it was 656.16 in the first half of 2015, thus documenting a strong ecological risk.
机译:为了评估上海某废弃电器电子设备加工区土壤中重金属的污染程度并分析其变化趋势,采用了单因素指标法,地累积指标法,综合污染等评价方法。本研究采用指数法和潜在生态风险指数法。结果表明,废弃电子电气设备加工区的土壤被砷,镉,铜,铅,锌和铬污染。还表明重金属的浓度随时间增加。异常的是,2014年类金属(砷)的平均值为73.31 mg kg〜(-1),2015年上半年为58.31 mg kg〜(-1),分别是2.93倍和2.33倍分别高于2014年和2015年上半年的《中国土壤环境质量标准》。 2014年和2015年上半年重金属的污染程度顺序为镉>铅>铜>铬>锌和镉>铅>铬>锌>铜。从潜在生态风险指数法的分析来看,砷和镉比其他重金属具有更高的生态风险。重金属(镉,铜,铅,锌和铬)和准金属(砷)的综合生态风险指数在2014年为394.10,而在2015年上半年为656.16,从而证明了强烈的生态风险。

著录项

  • 来源
    《Waste management & research》 |2017年第11期|1183-1191|共9页
  • 作者单位

    WEEE Research Centre of Shanghai Polytechnic University, Shanghai, China,Shanghai Collaborative Innovation Centre for WEEE Recycling, Shanghai, China;

    WEEE Research Centre of Shanghai Polytechnic University, Shanghai, China,Shanghai Collaborative Innovation Centre for WEEE Recycling, Shanghai, China;

    WEEE Research Centre of Shanghai Polytechnic University, Shanghai, China,Shanghai Collaborative Innovation Centre for WEEE Recycling, Shanghai, China;

    WEEE Research Centre of Shanghai Polytechnic University, Shanghai, China,Shanghai Collaborative Innovation Centre for WEEE Recycling, Shanghai, China;

    WEEE Research Centre of Shanghai Polytechnic University, Shanghai, China,Shanghai Collaborative Innovation Centre for WEEE Recycling, Shanghai, China;

    WEEE Research Centre of Shanghai Polytechnic University, Shanghai, China,Shanghai Collaborative Innovation Centre for WEEE Recycling, Shanghai, China;

    WEEE Research Centre of Shanghai Polytechnic University, Shanghai, China,Shanghai Collaborative Innovation Centre for WEEE Recycling, Shanghai, China;

    WEEE Research Centre of Shanghai Polytechnic University, Shanghai, China,Shanghai Collaborative Innovation Centre for WEEE Recycling, Shanghai, China;

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

    comprehensive pollution index; geo-accumulation index; heavy metals; potential ecological risk index; single factor index; soil; Waste electrical and electronic equipment;

    机译:综合污染指数;地理积累指数重金属;潜在生态风险指数;单因素指数泥;废弃电子电气设备;

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