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Bioavailability and risk assessment of potentially toxic elements in garden edible vegetables and soils around a highly contaminated former mining area in Germany

机译:德国高度污染的前矿区附近的花园食用蔬菜和土壤中的潜在毒性元素的生物利用度和风险评估

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摘要

Although soil contamination by potentially toxic elements (PTEs) in Europe has a history of many centuries, related problems are often considered as having been dealt with due to the enforcement of tight legislations. However, there are many unsolved issues. We aimed to assess PTE levels in highly contaminated soils and in garden edible vegetables using human health risk indices in order to evaluate the availability and mobilization of arsenic (As), copper (Cu), manganese (Mn), mercury (Hg), lead (Pb), and zinc (Zn). In four gardens in Germany, situated on, or in the vicinity of, a mine dump area, we planted beans (Phaseolus vulgaris ssp. nanus), carrots (Daucus sativus) and lettuce (Lactuca sativa ssp. capitata). We examined soil-to-plant mobilization of elements using transfer coefficient (TC), as well as soil contamination using contamination factor (CF), enrichment factor (EF), and bioaccumulation index (I_(geo)). In addition, we tested two human health risk assessment indices: Soil-induced hazard quotient (HQs) (representing the "direct soil ingestion" pathway), and vegetable-induced hazard quotient (HQv) (representing the "vegetable intake" pathway). The studied elements were highly elevated in the soils. The values in garden 2 were especially high (e.g., Pb: 13789.0 and Hg: 36.8 mg kg~(-1)) and largely exceeded the reported regulation limits of 50 (for As), 40 (Cu), 400 (Pb), 150 (Zn), and 5 (Hg) mg kg~(-1). Similarly, element concentrations were very high in the grown vegetables. The indices of CF, EF and I_(geo) were enhanced even to levels that are rarely reported in the literature. Specifically, garden 2 indicated severe contamination due to multi-element deposition. The contribution of each PTE to the total of measured HQs revealed that Pb was the single most important element causing health risk (contributing up to 77% to total HQs). Lead also posed the highest risk concerning vegetable consumption, contributing up to 77% to total HQv. The presence of lead in both cases was followed by that of As, Mn and Hg. We conclude that in multi-element contamination cases, along with high-toxicity elements (here, Pb, As and Hg) other elements may also be responsible for increasing human health risks (i.e., Mn), due to the possibility of adverse synergism of the PTEs.
机译:尽管在欧洲由潜在毒性元素(PTE)污染土壤已有数百年的历史,但由于执行严格的法规,通常认为相关问题已得到解决。但是,有许多未解决的问题。我们旨在使用人类健康风险指数评估高污染土壤和花园食用蔬菜中的PTE含量,以评估砷(As),铜(Cu),锰(Mn),汞(Hg),铅的可用性和迁移(Pb)和锌(Zn)。在位于矿山垃圾场附近的德国的四个花园中,我们种植了豆类(菜豆),胡萝卜(生菜)和生菜(苜蓿(Lactuca sativa ssp.capitata))。我们使用转移系数(TC)以及使用污染因子(CF),富集因子(EF)和生物蓄积指数(I_(geo))检查了土壤到植物的元素动员。此外,我们测试了两个人类健康风险评估指标:土壤诱导的危险商(HQs)(代表“直接土壤摄入”途径)和蔬菜诱导的危险商(HQv)(代表“植物摄入”途径)。所研究的元素在土壤中高度升高。花园2中的值特别高(例如,Pb:13789.0和Hg:36.8 mg kg〜(-1)),并且大大超出了所报告的法规限值50(对于As),40(Cu),400(Pb), 150(Zn)和5(Hg)mg kg〜(-1)。同样,蔬菜中的元素浓度也很高。 CF,EF和I_(geo)的指数甚至提高到文献中很少报道的水平。具体而言,花园2显示由于多元素沉积而造成的严重污染。每个PTE对所测HQ总数的贡献表明,铅是引起健康风险的最重要的单个元素(占HQ总数的77%)。铅也是蔬菜消费的最高风险,占总Hv的77%。在两种情况下都存在铅,然后是砷,锰和汞。我们得出的结论是,在多元素污染的情况下,由于高锰酸钾可能产生不利的协同作用,其他元素也可能与增加人类健康风险(即锰)有关。 PTE。

著录项

  • 来源
    《Journal of Environmental Management》 |2017年第2期|192-200|共9页
  • 作者单位

    School of Agriculture, University of Thessaly, Fytokou Street, GR-384 46, Greece;

    University of Kafrelsheikh, Faculty of Agriculture, Department of Soil and Water Sciences, 33 516 Kafr El-Sheikh, Egypt,University of Wuppertal, Soil- and Groundwater-Management, Pauluskirchstrasse 7, 42285 Wuppertal, Germany;

    University of Wuppertal, Soil- and Groundwater-Management, Pauluskirchstrasse 7, 42285 Wuppertal, Germany;

    University of Wuppertal, Soil- and Groundwater-Management, Pauluskirchstrasse 7, 42285 Wuppertal, Germany,Department Ⅰ: Planning and Controlling, Universitaet Bielefeld, Germany, Universitaetsstrasse 25, 33615 Bielefeld, Germany;

    Laboratory of Analytical Chemistry and Applied Ecochemistry, Department of Applied Analytical and Physical Chemistry, Faculty of Bioscience Engineering, Ghent University, Coupure Links 653, Ghent, Belgium;

    University of Wuppertal, Soil- and Groundwater-Management, Pauluskirchstrasse 7, 42285 Wuppertal, Germany;

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

    Toxic metal(loid)s; Transfer coefficient; Hazard quotient; Contamination pathways;

    机译:有毒金属(胶体);转移系数;危险商;污染途径;

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