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The relationship between soil geochemistry and the bioaccessibility of trace elements in playground soil

机译:土壤地球化学与运动场土壤微量元素生物可利用性的关系

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摘要

A total of 32 samples of surficial soil were collected from 16 playground areas in Madrid (Spain), in order to investigate the importance of the geochemistry of the soil on subsequent bioaccessibility of trace elements. The in vitro bioaccessibility of As, Co, Cr, Cu, Ni, Pb and Zn was evaluated by means of two extraction processes that simulate the gastric environment and one that reproduces a gastric + intestinal digestion sequence. The results of the in vitro bioaccessibility were compared against aqua regia extractions ("total" concentration), and it was found that total concentrations of As, Cu, Pb and Zn were double those of bioaccessible values, whilst that of Cr was ten times higher. Whereas the results of the gastric + intestinal extraction were affected by a high uncertainty, both gastric methods offered very similar and consistent results, with bioaccessibilities following the order: As = Cu = Pb = Zn > Co > Ni > Cr, and ranging from 63 to 7 %. Selected soil properties including pH, organic matter, Fe and CaCO_3 content were determined to assess their influence on trace element bioaccessibility, and it was found that Cu, Pb and Zn were predominantly bound to organic matter and, to a lesser extent, Fe oxides. The former fraction was readily accessible in the gastric solution, whereas Fe oxides seemed to recapture negatively charged chloride complexes of these elements in the gastric solution, lowering their bioaccessibility. The homogeneous pH of the playground soils included in the study does not influence trace element bioaccessibility to any significant extent except for Cr, where the very low gastric accessibility seems to be related to the strongly pH-dependent formation of complexes with organic matter. The results for As, which have been previously described and discussed in detail in Mingot et al. (Chemosphere 84: 1386-1391, 2011), indicate a high gastric bioaccessibility for this element as a consequence of its strong association with calcium carbonate and the ease with which these bonds are broken in the gastric solution. The calculation of risk assessments are therefore dependant on the methodology used and the specific environment they address. This has impacts on management strategies formulated to ensure that the most vulnerable of society, children, can live and play without adverse consequences to their health.
机译:为了调查土壤的地球化学对后续微量元素生物可及性的重要性,从马德里(西班牙)的16个运动场区域总共采集了32个表层土壤样品。 As,Co,Cr,Cu,Ni,Pb和Zn的体外生物可及性通过两种模拟胃环境的提取方法和一种复制胃+肠消化序列的方法进行评估。将体外生物可及性的结果与王水提取物(“总”浓度)进行了比较,发现As,Cu,Pb和Zn的总浓度是生物可及性值的两倍,而Cr则高十倍。 。胃+肠提取的结果受到高度不确定性的影响,两种胃方法均提供了非常相似和一致的结果,其生物可利用性按以下顺序排列:As = Cu = Pb = Zn> Co> Ni> Cr,范围为63至7%。确定了选定的土壤性质,包括pH,有机物,Fe和CaCO_3的含量,以评估它们对痕量元素生物可及性的影响,发现Cu,Pb和Zn主要与有机物结合,而在较小程度上与Fe氧化物结合。前一部分很容易在胃液中接触到,而铁氧化物似乎会重新捕获胃液中这些元素的带负电荷的氯离子络合物,从而降低了它们的生物利用度。除铬外,研究中所含运动场土壤的均质pH值对微量元素的生物可及性没有任何显着影响,但Cr极低的胃可及性似乎与与有机物形成的强烈pH依赖性有关。 As的结果已在Mingot等人的文献中进行了详细描述和讨论。 (Chemosphere 84:1386-1391,2011)表明,由于该元素与碳酸钙的强缔合以及在胃液中容易破坏这些键,因此该元素具有很高的胃生物可及性。因此,风险评估的计算取决于所使用的方法和所针对的特定环境。这将影响制定的管理策略,以确保社会最弱势群体儿童能够生活和娱乐,而不会对其健康造成不利影响。

著录项

  • 来源
    《Environmental Geochemistry and Health》 |2012年第6期|p.677-687|共11页
  • 作者单位

    Environmental Geochemistry Research and Engineering Laboratory, Universidad Politecnica de Madrid, Alenza 4, 28003 Madrid, Spain;

    Environmental Geochemistry Research and Engineering Laboratory, Universidad Politecnica de Madrid, Alenza 4, 28003 Madrid, Spain;

    Environmental Geochemistry Research and Engineering Laboratory, Universidad Politecnica de Madrid, Alenza 4, 28003 Madrid, Spain;

    Geography, Environment and Disaster Management, Coventry University, Priory Street, Coventry CV1 5FB, UK;

  • 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; trace elements; playground; risk; children; urban;

    机译:生物可及性;微量元素;操场;风险;孩子们城市的;
  • 入库时间 2022-08-17 13:27:48

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