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Influence of in vitro assay pH and extractant composition on As bioaccessibility in contaminated soils

机译:体外测定pH和萃取剂组成对被污染土壤中As生物可及性的影响

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摘要

In vitro bioaccessibility assays are often utilised to determine the potential human exposure to soil contaminants through soil ingestion. Comparative studies have identified inconsistencies in the results obtained with different in vitro assays. In this study we investigated the potential causes for the variability between in vitro assay results using the PBET and SBRC assays to assess As bioaccessibility in 5 brownfield contaminated soils. Total As concentration in the 5 soils ranged from 227 to 807 mg As kg~(-1) in the <250 μm particle fraction while XANES analysis identified that As was predominately present as As~v (>88% was sorbed to Fe mineral phases) with the remaining As present as beudantite or orpiment mineral phases. Arsenic bioaccessibility varied depending on the in vitro methodology; markedly higher values were obtained using the SBRC gastric phase compared to the PBET gastric phase, however, similar As bioaccessibility values were obtained in both the SBRC and PBET intestinal phases. The difference in As bioaccessibility following SBRC and PBET gastric phase extraction appeared to be due to the difference in gastric phase pH (i.e. 1.5 versus 2.5 respectively), however, modifying the PBET gastric phase to pH 1.5 (that of the SBRC gastric phase) enhanced As bioaccessibility up to 1.6 fold, but was still markedly lower than SBRC values. Although As bioaccessibility was enhanced, the increase did not occur as a result of the solubilisation of As associated Fe mineral phases suggesting As bioaccessibility may also be strongly influenced by the in vitro assay extractant composition. The extractant composition of the PBET assay incorporates a number of organic acids in addition to pepsin which may inhibit the sorption of As onto iron oxide surfaces, therefore increasing As solubility at the modified (pH 1.5) gastric phase pH.
机译:体外生物可及性测定通常用于确定人类通过土壤摄入而暴露于土壤污染物的潜在可能性。比较研究已经确定了在不同的体外试验中获得的结果不一致。在这项研究中,我们调查了使用PBET和SBRC分析评估5种褐地污染土壤中As生物可及性的体外分析结果之间差异的潜在原因。在<250μm的颗粒级分中,这5种土壤中的总As浓度范围为227至807 mg As kg〜(-1),而XANES分析表明As主要以As〜v的形式存在(> 88%被吸附到Fe矿物相中),剩余的As以膨润土或蜂巢状矿物相存在。砷的生物可及性取决于体外方法。与PBET胃相相比,使用SBRC胃相获得了明显更高的值,但是,在SBRC和PBET肠相中均获得了相似的生物可及性值。 SBRC和PBET胃相提取后的As生物可及性差异似乎是由于胃相pH值的差异(分别为1.5和2.5)引起的,但是,将PBET胃相修改为pH 1.5(SBRC胃相的pH值)得到了增强由于生物可及性高达1.6倍,但仍显着低于SBRC值。尽管提高了生物可及性,但由于与砷相关的铁矿物质相的溶解并未导致这种增加,这表明体外生物提取剂的组成也可能极大地影响生物可及性。除胃蛋白酶外,PBET测定法的萃取剂组合物还包含多种有机酸,这可能会抑制As在氧化铁表面上的吸附,因此在改良的(pH 1.5)胃相pH下增加As的溶解度。

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  • 来源
    《Science of the total environment》 |2014年第1期|171-177|共7页
  • 作者单位

    Centre for Environmental Risk Assessment and Remediation, University of South Australia, Mawson Lakes, SA 5095, Australia,Cooperative Research Centre for Contamination Assessment and Remediation of the Environment, Mawson Lakes, SA 5095, Australia;

    U. S. Environmental Protection Agency, National Risk Management Research Laboratory, Land Remediation and Pollution Control Division, 5995 Center Hill Avenue, Cincinnati, OH 45224-1702, United States;

    U.S. Environmental Protection Agency, National Enforcement Investigations Center, Denver, CO 80225, United States;

    Centre for Environmental Risk Assessment and Remediation, University of South Australia, Mawson Lakes, SA 5095, Australia,TMK Consulting Engineers, 105 Waymouth Street, Adelaide, SA 5000, Australia;

    Centre for Environmental Risk Assessment and Remediation, University of South Australia, Mawson Lakes, SA 5095, Australia,Cooperative Research Centre for Contamination Assessment and Remediation of the Environment, Mawson Lakes, SA 5095, Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Arsenic; Bioaccessibility; Speciation; XANES; Exposure;

    机译:砷;生物可及性;物种XANES;接触;

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