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Arsenic Sequestration by Ferric Iron Plaque on Cattail Roots

机译:香蒲根上铁离子铁斑隔离砷

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摘要

Typha latifolia(cattail)sequesters arsenic within predominantly ferric iron root coatings,thus decreasing mobility of this toxic element in wetland sediments.Element-specific XRF microtomographic imaging illustrated a high spatial correlation between iron and arsenic in root plaques,with little arsenic in the interior of the roots.XANES analyses demonstrated that the plaque was predominantly ferric iron and contained approximately 20% As(lll)and 80% As(V),which is significant because the two oxidation states form species that differ in toxicity and mobility.For the first time,spatial distribution maps of As oxidation states were developed,indicating that As(lll)and As(V)are both fairly heterogeneous throughout the plaque.Chemical extractions showed that As was strongly adsorbed in the plaque rather than coprecipitated.Iron and arsenic concentrations ranged from 0.03 to 0.8 g Fe g~(-1)wet plaque and 30 to 1200 mug As g~(-1)wet plaque,consistent with a mechanism of As adsorption onto Fe(lll)oxyhydroxide plaque.Because this mechanism decreases the concentrations of both As(lll)and As(V)in groundwater,we propose that disruption of vegetation could increase the concentrations of mobile arsenic.
机译:香蒲(香蒲)在主要的铁铁根涂层中隔离了砷,从而降低了该有毒元素在湿地沉积物中的迁移率。特定元素的XRF显微照片显示,斑块中铁和砷之间的空间相关性很高,内部几乎没有砷XANES分析表明,该斑块主要是三价铁,含有约20%的As(III)和80%的As(V),这很重要,因为这两种氧化态形成了毒性和迁移率不同的物种。首次建立了As氧化态的空间分布图,表明As(III)和As(V)在整个噬菌斑中都非常不均一。化学提取显示As强烈吸附在噬菌斑中而不是共沉淀。铁和砷浓度范围为0.03至0.8 g Fe g〜(-1)湿斑和30至1200杯As g〜(-1)湿斑,与As吸附到Fe(由于这种机制降低了地下水中As(III)和As(V)的浓度,因此我们建议破坏植被可以增加移动砷的浓度。

著录项

  • 来源
    《Environmental Science & Technology》 |2004年第22期|p.6074-6077|共4页
  • 作者单位

    Ralph M.Parsons Laboratory,Department of Civil and Environmental Engineering,Massachusetts Institute of Technology,Cambridge,Massachusetts 02139,and Consortium for Advanced Radiation Sources and Department of Geophysical Sciences,University of Chicag;

    Ralph M.Parsons Laboratory,Department of Civil and Environmental Engineering,Massachusetts Institute of Technology,Cambridge,Massachusetts 02139,and Consortium for Advanced Radiation Sources and Department of Geophysical Sciences,University of Chicag;

    Ralph M.Parsons Laboratory,Department of Civil and Environmental Engineering,Massachusetts Institute of Technology,Cambridge,Massachusetts 02139,and Consortium for Advanced Radiation Sources and Department of Geophysical Sciences,University of Chicag;

  • 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 14:08:34

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