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对针铁矿表面砷酸盐配位的重新思考。

Rethinking arsenate coordination at the surface of goethite.

作者信息

Loring John S, Sandström Malin H, Norén Katarina, Persson Per

机构信息

Department of Chemistry, Umeå University, Umeå, 901 87, Sweden.

出版信息

Chemistry. 2009;15(20):5063-72. doi: 10.1002/chem.200900284.

Abstract

A fundamental precept of geochemistry is that arsenate coordinates at mineral surfaces in a predominately bridging-bidentate fashion. We show that this is incorrect for the model system, arsenate adsorbed at the surface of goethite (alpha-FeOOH), using a combination of XRD, EXAFS, and IR spectroscopic results. We report the crystal structure of pentaamminecobalt(III) arsenate, which consists of monodentate-coordinated metal-arsenato complexes that have Co-As distances of only 3.25 A. This result implies that metal-arsenic distances are not diagnostic for the coordination mode of arsenate. We show that the K-edge EXAFS spectra of pentaamminecobalt(III) arsenate and arsenate-goethite surface complexes are strikingly similar, which suggests that arsenate could be coordinated at the goethite surface in a monodentate fashion. Refinements of the k(3)-weighted EXAFS spectra of arsenate adsorbed on goethite results in values of CN(As-Fe) between 0.8-1.1 (+/-0.7), and there is no evidence that the coordination mode of arsenate changes as a function of pH or arsenate surface coverage. We report IR spectra from the first simultaneous IR and potentiometric titration of arsenate adsorbed on deuterated goethite (alpha-FeOOD) in D(2)O, and we show for the first time the As-O stretching bands of arsenate-goethite surface complexes. We deduce that arsenate-goethite surface complexes are un-, singly, or doubly protonated, depending on pH, from a principal component analysis of the As-O stretching region and an interpretation of the Type-B OH stretching region. In summary, our cumulative results show that arsenate coordinates at the water-goethite interface in a predominately monodentate fashion. Furthermore, we find no evidence for bridging-bidentate coordination, which is a finding that impacts oxoanion bioavailability and challenges theories of mineral dissolution and surface complexation.

摘要

地球化学的一个基本准则是,砷酸盐在矿物表面主要以桥连双齿的方式配位。我们通过结合X射线衍射(XRD)、扩展X射线吸收精细结构(EXAFS)和红外光谱结果表明,对于砷酸盐吸附在针铁矿(α-FeOOH)表面的模型体系而言,情况并非如此。我们报道了五氨合钴(III)砷酸盐的晶体结构,它由单齿配位的金属-砷酸根络合物组成,其Co-As距离仅为3.25埃。这一结果意味着金属-砷距离并不能用于诊断砷酸盐的配位模式。我们表明,五氨合钴(III)砷酸盐和砷酸盐-针铁矿表面络合物的K边EXAFS光谱惊人地相似,这表明砷酸盐可能以单齿方式配位在针铁矿表面。对吸附在针铁矿上的砷酸盐的k(3)加权EXAFS光谱进行精修,得到的CN(As-Fe)值在0.8 - 1.1(±0.7)之间,并且没有证据表明砷酸盐的配位模式会随pH值或砷酸盐表面覆盖率而变化。我们报道了在D₂O中对吸附在氘代针铁矿(α-FeOOD)上的砷酸盐进行首次同步红外和电位滴定得到的红外光谱,并且我们首次展示了砷酸盐-针铁矿表面络合物的As-O伸缩带。通过对As-O伸缩区域的主成分分析以及对B型OH伸缩区域的解释,我们推断,根据pH值的不同,砷酸盐-针铁矿表面络合物是未质子化、单质子化或双质子化的。总之,我们的累积结果表明,砷酸盐在水-针铁矿界面主要以单齿方式配位。此外,我们没有发现桥连双齿配位的证据,这一发现影响了含氧阴离子的生物有效性,并对矿物溶解和表面络合理论提出了挑战。

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