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Bioaccessibility of Arsenic(V) Bound to Ferrihydrite Using a Simulated Gastrointestinal System

机译:模拟胃肠道系统结合砷铁矿对水铁矿的生物可及性

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摘要

The risk posed from incidental ingestion to humans of arsenic-contaminated soil may depend on sorption of arsenate (As(V)) to oxide surfaces in soil.Arsenate sorbed to ferrihydrite,a model soil mineral,was used to simulate possible effects on ingestion of soil contaminated with As-(V) sorbed to Fe oxide surfaces.Arsenate sorbed to ferrihydrite was placed in a simulated gastrointestinal tract (in vitro) to ascertain the bioaccessibility of As(V) and changes in As(V) surface speciation caused by the gastrointestinal system.The speciation of As was determined using extended X-ray absorption fine structure (EXAFS) analysis and X-ray absorption near-edge spectroscopy (XANES).The As(V) adsorption maximum was found to be 93 mmol kg~(-1) The bioaccessible As(V) ranged from 0 to 5%,and surface speciation was determined to be binuclear bidentate with no changes in speciation observed post in vitro.Arsenate concentration in the intestine was not constant and varied from 0.001 to 0.53 mM for the 177 mmol kg~(-1) As(V) treated sample.These results suggest that the bioaccessibility of As(V) is related to the As(V) concentration,the As(V) adsorption maximum,and that multiple measurements of dissolved As(V) in the intestinal phase may be needed to calculate the bioaccessibility of As(V) adsorbed to ferrihydrite.
机译:人体误食砷污染的土壤所造成的风险可能取决于砷酸盐(As(V))在土壤氧化物表面的吸附。砷被吸附到三水铁硼酸盐(一种典型的土壤矿物)上,用来模拟对砷摄入的可能影响。吸附到三氧化二铁表面的被砷(V)污染的土壤。吸附到水铁矿上的砷酸盐被放置在模拟胃肠道中(体外),以确定砷(V)的生物可及性以及由砷引起的砷(V)表面形态的变化通过扩展的X射线吸收精细结构(EXAFS)分析和X射线吸收近边缘光谱法(XANES)确定了As的形态,发现As(V)的最大吸附量为93 mmol kg〜( -1)生物可利用的As(V)范围为0至5%,并且在体外观察到表面形态被确定为双核双齿,形态没有变化。肠中砷酸盐的浓度不是恒定的,且在0.001至0.53 mM之间变化对于1 77 mmol kg〜(-1)As(V)处理的样品。这些结果表明As(V)的生物可及性与As(V)的浓度,As(V)的最大吸附量以及对溶解物的多次测量有关肠道阶段可能需要As(V)来计算吸附到三水铝石上的As(V)的生物可及性。

著录项

  • 来源
    《Environmental Science & Technology》 |2006年第4期|p.1364-1370|共7页
  • 作者单位

    School of Environment and Natural Resources,The Ohio State University,2021 Coffey Rd,Columbus,Ohio 43210,USEPA,National Risk Management Research Laboratory,5995 Center Hill Avenue,Cincinnati,Ohio 45224,and Sierra Nevada Research Institute,University;

    School of Environment and Natural Resources,The Ohio State University,2021 Coffey Rd,Columbus,Ohio 43210,USEPA,National Risk Management Research Laboratory,5995 Center Hill Avenue,Cincinnati,Ohio 45224,and Sierra Nevada Research Institute,University;

    School of Environment and Natural Resources,The Ohio State University,2021 Coffey Rd,Columbus,Ohio 43210,USEPA,National Risk Management Research Laboratory,5995 Center Hill Avenue,Cincinnati,Ohio 45224,and Sierra Nevada Research Institute,University;

    School of Environment and Natural Resources,The Ohio State University,2021 Coffey Rd,Columbus,Ohio 43210,USEPA,National Risk Management Research Laboratory,5995 Center Hill Avenue,Cincinnati,Ohio 45224,and Sierra Nevada Research Institute,University;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);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 环境化学;
  • 关键词

  • 入库时间 2022-08-17 14:06:52

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