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Trace elements in two particle size fractions of urban soils collected from playgrounds in Bratislava (Slovakia)

机译:在布拉迪斯拉发(斯洛伐克)的游乐场收集的城市土壤中的两个粒度分数中的微量元素

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摘要

Today, it is proven that the contaminated urban soils are hazardous for the human health. Soil substrates of playgrounds call for special research as they are places where children are directly exposed to soil contaminants. Therefore, the objective of this work was to measure the pseudo-total contents and bioaccessibility of several metals and metalloids (As, Bi, Cd, Co, Cr, Cu, Fe, Hg, Mn, Ni, Pb, Sb, Sn, V, Zn) in two grain sizes ( 150 mu m and 50 mu m) of playground soils in Bratislava city (the capital of Slovakia). The content of metal(loid)s in the soils was controlled by a number of factors, with their increased contents (above 75% percentile or higher) at sites influenced by point sources of pollution (industry and agriculture) or at old sites located in the city centre. Cobalt, Cr, Fe, Mn, Ni and V had relatively uniform contents in soils compared to the other elements. As regression modelling with a categorical variable confirmed, the age of urban areas influenced the accumulation of As, Bi, Cd, Cu, Hg, Pb, Sb and Sn in playground soils. Exploratory statistical techniques with compositionally transformed data (principal component analysis, cluster analysis and construction of symmetric coordinates for correlation analysis) divided trace elements into the two main groupings, Co, Cr, Fe, Mn, Ni, V and Bi, Cd, Cu, Hg, Pb, Sb, Sn, Zn. Median concentrations of the elements in smaller soil grains ( 50 mu m) were significantly higher than in coarser grains ( 150 mu m). Cobalt, Cu, Mn, Pb, Sn and Zn had significantly higher bioaccessible proportions (% of the pseudo-total content) in 50 mu m soil size than in 150 mu m; however, the same order of bioaccessibility was achieved in both grain sizes. The highest bioaccessibility had Cd, Cu, Pb and Zn (similar to 40% and more), followed by Co, As, Mn, Sb (18-27%), Hg, Ni, Sn (10-12%) and finally Cr, Fe and V (less than 4%). The hazard index and carcinogenic risk values were higher in 50 mu m than in 150 mu m and significantly decreased in the two soil sizes when the bioaccessibility results were included in the health hazard calculation.
机译:今天,证明受污染的城市土壤对人类健康有害。操场的土壤基板呼吁特别研究,因为他们是儿童直接暴露于土壤污染物的地方。因此,这项工作的目的是测量几种金属和金属的伪含量和生物可接受(如,Bi,Cd,Co,Cr,Cu,Fe,Hg,Mn,Ni,Pb,Sb,Sn,V在布拉迪斯拉发城(斯洛伐克首都)的两个谷物尺寸(<150 mu m和<50 mu m)的两粒尺寸(<150 mu m和<50 mu m)。土壤中的金属含量(Loid)S的含量受到多种因素的控制,其含量增加(以高于75%百分位数或更高),受到点污染(工业和农业)或位于旧网站市中心。与其他元素相比,钴,Cr,Fe,Mn,Ni和V在土壤中具有相对均匀的内容物。随着对分类变量确认的回归建模,城市地区的年龄影响了游乐场土壤中AS,Bi,Cd,Cu,Hg,Pb,Sb和Sn的积累。具有合成转化的数据的探索性统计技术(相关成分分析,相关分析对称坐标的构建)将微量元素分开到两个主要分组,CO,Cr,Fe,Mn,Ni,V和Bi,Cd,Cu, Hg,pb,sb,sn,zn。较小的土壤颗粒(<50μm)中元素的中值浓度明显高于粗晶粒(<150μm)。钴,Cu,Mn,Pb,Sn和Zn具有明显更高的生物可接为比例(伪总含量的百分比)在50亩的土壤尺寸中比<150 m m m尺寸;然而,在晶粒尺寸中实现了相同的生物可接受性。最高的生物可接受性具有Cd,Cu,Pb和Zn(类似于40%和更多),其次是Co,As,Mn,Sb(18-27%),Hg,Ni,Sn(10-12%),最后Cr ,fe和v(小于4%)。危害指数和致癌风险值比<50μm在<150μm中的<50μm较高,并且当生物可接受结果包含在健康危险计算中时,两种土壤尺寸明显降低。

著录项

  • 来源
    《Environmental Geochemistry and Health》 |2020年第11期|3925-3947|共23页
  • 作者单位

    Comenius Univ Fac Nat Sci Dept Geochem Ilkovicova 6 Bratislava 84215 Slovakia;

    Comenius Univ Fac Math Phys & Informat Dept Appl Math & Stat Mlynska Dolina 1 Bratislava 84248 Slovakia;

    Comenius Univ Fac Nat Sci Dept Geochem Ilkovicova 6 Bratislava 84215 Slovakia;

    Charles Univ Prague Fac Sci Inst Geochem Mineral & Mineral Resources Albertov 6 Prague 12843 2 Czech Republic;

    Comenius Univ Fac Nat Sci Dept Geochem Ilkovicova 6 Bratislava 84215 Slovakia;

    Comenius Univ Fac Nat Sci Dept Geochem Ilkovicova 6 Bratislava 84215 Slovakia;

  • 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

    Bioaccessibility; Contamination; Health risk assessment; Metal(loid)s; Urban soil;

    机译:生物转移;污染;健康风险评估;金属(懒惰)S;城市土壤;
  • 入库时间 2022-08-18 21:49:13

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