Antimony Isotope Fractionation during Adsorption on Iron (Oxyhydr)oxides

铁酸盐 同位素分馏 吸附 分馏 针铁矿 化学 无机化学 扩展X射线吸收精细结构 动力学同位素效应 同位素 物理化学 吸收光谱法 物理 有机化学 量子力学
作者
Jiabei Luo,Xianjun Xie,Jianbo Shi,Yanxin Wang
出处
期刊:Environmental Science & Technology [American Chemical Society]
卷期号:58 (1): 695-703 被引量:13
标识
DOI:10.1021/acs.est.3c05867
摘要

The fate of antimony (Sb) is strongly affected by adsorption, yet Sb isotope fractionation and the associated mechanism have not been widely reported. Here we experimentally investigated the process of Sb(V) adsorption on iron (oxyhydr)oxides and the associated isotope effects. Sb isotope fractionation occurs during adsorption (Δ123Sbsolution-mineral = 1.20 ± 0.02‰ for ferrihydrite and 2.35 ± 0.04‰ for goethite). Extended X-ray absorption fine structure (EXAFS) analysis shows that Sb(V) adsorption on iron (oxyhydr)oxides occurs via inner-sphere surface complexation, including mononuclear bidentate edge-sharing (2E) and binuclear bidentate corner-sharing (2C) complexes. A longer atom distance of Sb-Fe in ferrihydrite leads to less Sb isotope fractionation during Sb adsorption than in goethite. The Gibbs free energy and Mayer bond order were calculated based on density functional theory (DFT) and suggested that the strength of the bonding environment can be summarized as Sb(OH)6- > 2E > 2C. In turn, the bonding environment indicates the mechanism of Sb isotope fractionation during the process. This study reveals that Sb isotope fractionation occurs during Sb(V) adsorption onto iron (oxyhydr)oxides, providing a basis for the future study of Sb isotopes and further understanding of the fractionation mechanism.
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