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砷(III)和砷(V)与零价铁腐蚀产物的反应。

Arsenic(III) and arsenic(V) reactions with zerovalent iron corrosion products.

作者信息

Manning Bruce A, Hunt Mathew L, Amrhein Christopher, Yarmoff Jory A

机构信息

Department of Chemistry and Biochemistry, San Francisco State University, 1600 Holloway Avenue, San Francisco, California 94132, USA.

出版信息

Environ Sci Technol. 2002 Dec 15;36(24):5455-61. doi: 10.1021/es0206846.

Abstract

Zerovalent iron (Fe0) has tremendous potential as a remediation material for removal of arsenic from groundwater and drinking water. This study investigates the speciation of arsenate (As(V)) and arsenite (As(III)) after reaction with two Fe0 materials, their iron oxide corrosion products, and several model iron oxides. A variety of analytical techniques were used to study the reaction products including HPLC-hydride generation atomic absorption spectrometry, X-ray diffraction, scanning electron microscopy-energy-dispersive X-ray analysis, and X-ray absorption spectroscopy. The products of corrosion of Fe0 include lepidocrocite (gamma-FeOOH), magnetite (Fe3O4), and/or maghemite (gamma-Fe2O3), all of which indicate Fe(II) oxidation as an intermediate step in the Fe0 corrosion process. The in-situ Fe0 corrosion reaction caused a high As(III) and As(V) uptake with both Fe0 materials studied. Under aerobic conditions, the Fe0 corrosion reaction did not cause As(V) reduction to As(III) but did cause As(III) oxidation to As(V). Oxidation of As(III) was also caused by maghemite and hematite minerals indicating that the formation of certain iron oxides during Fe0 corrosion favors the As(V) species. Water reduction and the release of OH- to solution on the surface of corroding Fe0 may also promote As(III) oxidation. Analysis of As(III) and As(V) adsorption complexes in the Fe0 corrosion products and synthetic iron oxides by extended X-ray absorption fine structure spectroscopy (EXAFS) gave predominant As-Fe interatomic distances of 3.30-3.36 A. This was attributed to inner-sphere, bidentate As(III) and As(V) complexes. The results of this study suggest that Fe0 can be used as a versatile and economical sorbent for in-situ treatment of groundwater containing As(III) and As(V).

摘要

零价铁(Fe0)作为从地下水和饮用水中去除砷的修复材料具有巨大潜力。本研究调查了砷酸盐(As(V))和亚砷酸盐(As(III))与两种Fe0材料、它们的氧化铁腐蚀产物以及几种模型氧化铁反应后的形态。使用了多种分析技术来研究反应产物,包括高效液相色谱 - 氢化物发生原子吸收光谱法、X射线衍射、扫描电子显微镜 - 能量色散X射线分析和X射线吸收光谱法。Fe0的腐蚀产物包括纤铁矿(γ-FeOOH)、磁铁矿(Fe3O4)和/或磁赤铁矿(γ-Fe2O3),所有这些都表明Fe(II)氧化是Fe0腐蚀过程中的中间步骤。所研究的两种Fe0材料的原位Fe0腐蚀反应均导致对As(III)和As(V)的高吸附。在有氧条件下,Fe0腐蚀反应未导致As(V)还原为As(III),但确实导致As(III)氧化为As(V)。磁赤铁矿和赤铁矿矿物也会导致As(III)氧化,这表明Fe0腐蚀过程中某些氧化铁的形成有利于As(V)形态。腐蚀的Fe0表面上的水还原以及OH-向溶液中的释放也可能促进As(III)氧化。通过扩展X射线吸收精细结构光谱(EXAFS)对Fe0腐蚀产物和合成氧化铁中的As(III)和As(V)吸附络合物进行分析,得出主要的As-Fe原子间距离为3.30 - 3.36 Å。这归因于内球双齿As(III)和As(V)络合物。本研究结果表明,Fe0可作为一种通用且经济的吸附剂用于原位处理含As(III)和As(V)的地下水。

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