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水羟铁锰矿中硫酸盐的局部配位环境。

Sulfate Local Coordination Environment in Schwertmannite.

机构信息

Department of Ecosystem Science and Management, University of Wyoming , Laramie, Wyoming 82071, United States.

Key Laboratory of Arable Land Conservation (Middle and Lower Reaches of Yangtze River), Ministry of Agriculture, College of Resources and Environment, Huazhong Agricultural University , Wuhan 430070, China.

出版信息

Environ Sci Technol. 2015 Sep 1;49(17):10440-8. doi: 10.1021/acs.est.5b02660. Epub 2015 Aug 13.

Abstract

Schwertmannite, a nanocrystalline ferric oxyhydroxy-sulfate mineral, plays an important role in many environmental geochemical processes in acidic sulfate-rich environments. The sulfate coordination environment in schwertmannite, however, remains unclear, hindering our understanding of the structure, formation, and environmental behavior of the mineral. In this study, sulfur K-edge X-ray absorption near edge structure (XANES) and extended X-ray absorption fine structure (EXAFS) spectroscopic analyses in combination with infrared spectroscopy were used to determine the sulfate local atomic environment in wet and air-dried schwertmannite samples after incubation at various pHs and ionic strengths. Results indicate that sulfate exists as both inner- and outer-sphere complexes in schwertmannite. Regardless of the sample preparation conditions, the EXAFS-determined S-Fe interatomic distances are 3.22-3.26 Å, indicative of bidentate-binuclear sulfate inner-sphere complexes. XANES spectroscopy shows that the proportion of the inner-sphere complexes decreases with increasing pH for both wet and dried samples and that the dried samples contain much more inner-sphere complexes than the wet ones at any given pH. Assuming that schwertmannite is a distorted akaganéite-like structure, the sulfate inner-sphere complexation suggests that, the double chains of the edge-sharing Fe octahedra, enclosing the tunnel, must contain defects, on which reactive singly-Fe coordinated hydroxyl functional groups form for ligand exchange with sulfate. The drying effect suggests that the tunnel contains readily exchangeable H2O molecules in addition to sulfate ions.

摘要

纤铁矿是一种纳米级的铁氧基羟硫酸盐矿物,在酸性富硫酸盐环境中的许多环境地球化学过程中起着重要作用。然而,纤铁矿中的硫酸盐配位环境仍不清楚,这阻碍了我们对矿物的结构、形成和环境行为的理解。在这项研究中,采用硫 K 边 X 射线吸收近边结构(XANES)和扩展 X 射线吸收精细结构(EXAFS)光谱分析结合红外光谱法,确定了在不同 pH 值和离子强度下孵育后湿态和风干态纤铁矿样品中硫酸盐的局部原子环境。结果表明,硫酸盐以内圈和外圈配合物的形式存在于纤铁矿中。无论样品制备条件如何,EXAFS 确定的 S-Fe 原子间距离均为 3.22-3.26 Å,表明双齿双核硫酸盐内圈配合物的存在。XANES 光谱表明,对于湿态和干态样品,内圈配合物的比例均随 pH 值的增加而降低,并且在任何给定 pH 值下,干态样品比湿态样品含有更多的内圈配合物。假设纤铁矿是一种扭曲的 akaganéite 样结构,硫酸盐的内圈配位表明,包含在隧道中的边共享 Fe 八面体的双链必须含有缺陷,在这些缺陷上形成与硫酸盐进行配体交换的单配位 Fe 羟基官能团。干燥效应表明,隧道除了含有硫酸盐离子外,还含有可快速交换的 H2O 分子。

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