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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Surface complexation and precipitate geometry for aqueous Zn(II) sorption on ferrihydrite: II. XANES analysis and simulation
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Surface complexation and precipitate geometry for aqueous Zn(II) sorption on ferrihydrite: II. XANES analysis and simulation

机译:亚铁水吸附Zn(II)水溶液的表面络合和沉淀几何形状:II。 XANES分析和模拟

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摘要

X-ray absorption near-edge spectroscopy (XANES) analysis of sorption complexes has the advantages of high sensitivity (10- to 20-fold greater than extended X-ray absorption fine structure [EXAFS] analysis) and relative ease and speed of data collection (because of the short k-space range). It is thus a potentially powerful tool for characterization of environmentally significant surface complexes and precipitates at very low surface coverages. However, quantitative analysis has been limited largely to "fingerprint" comparison with model spectra because of the difficulty of obtaining accurate multiple-scattering amplitudes for small clusters with high confidence. In the present work, calculations of the XANES for 50- to 200-atom clusters of structure from Zn model compounds using the full multiple-scattering code Feff 8.0 accurately replicate experimental spectra and display features characteristic of specific first-neighbor anion coordination geometry and second-neighbor cation geometry and number. Analogous calculations of the XANES for small molecular clusters indicative of precipitation and sorption geometries for aqueous Zn on ferrihydrite, and suggested by EXAFS analysis, are in good agreement with observed spectral trends with sample composition, with Zn-oxygen coordination and with changes in second-neighbor cation coordination as a function of sorption coverage. Empirical analysis of experimental XANES features further verifies the validity of the calculations. The findings agree well with a complete EXAFS analysis previously reported for the same sample set, namely, that octahedrally coordinated aqueous Zn2+ species sorb as a tetrahedral complex on ferrihydrite with varying local geometry depending on sorption density. At significantly higher densities but below those at which Zn hydroxide is expected to precipitate, a mainly octahedral coordinated Zn 21 precipitate is observed. An analysis of the multiple scattering paths contributing to the XANES demonstrates the importance of scattering paths involving the anion sublattice. We also describe the specific advantages of complementary quantitative XANES and EXAFS analysis and estimate limits on the extent of structural information obtainable from XANES analysis. Copyright (C) 2003 Elsevier Science Ltd. [References: 30]
机译:吸附复合物的X射线吸收近边缘光谱(XANES)分析具有高灵敏度(比扩展X射线吸收精细结构[EXAFS]分析大10至20倍)的优点,并且数据收集相对容易和快捷(由于k空间范围较短)。因此,它是表征非常重要的表面复合物和非常低的表面覆盖率的沉淀物的潜在强大工具。但是,由于难以获得具有高置信度的小型星团的准确多散射振幅,因此定量分析在很大程度上仅限于与模型光谱进行“指纹”比较。在当前工作中,使用完整的多散射代码Feff 8.0从Zn模型化合物计算50至200原子簇的结构的XANES可以精确地复制实验光谱,并显示特定的第一邻居阴离子配位几何特征和第二特征的特征。 -邻居阳离子的几何形状和数量。 EXAFS分析表明,小分子簇的XANES的类似计算表明水合物上Zn水溶液的沉淀和吸附几何形状,与EXAFS分析表明,与观察到的光谱趋势与样品组成,Zn-氧配位以及第二次反应的变化非常吻合。邻居阳离子配位与吸附覆盖率的关系。对XANES实验功能的经验分析进一步验证了计算的有效性。这些发现与先前针对同一样品集进行的EXAFS分析完全吻合,即,八面体配位的Zn2 +水溶液以四面体复合物的形式吸附在三水铁矿上,其局部几何形状取决于吸附密度。在高得多的密度但低于预期的氢氧化锌沉淀的密度时,观察到主要是八面体配位的Zn 21沉淀。对有助于XANES的多个散射路径的分析证明了涉及阴离子亚晶格的散射路径的重要性。我们还描述了互补定量XANES和EXAFS分析的特定优势,并估计了可从XANES分析获得的结构信息的范围限制。版权所有(C)2003 Elsevier Science Ltd. [引用:30]

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