Department of Agricultural Biotechnology and Research Institute of Agriculture and Life Sciences, Seoul National University, Seoul, 08826, Republic of Korea.
Sci Rep. 2018 May 30;8(1):8369. doi: 10.1038/s41598-018-26808-4.
The structural configuration of arsenate on iron (hydr)oxide determines its leachability and bioavailability in the soil environment. It is important to understand how the stability of iron hydroxide and the structural configuration of arsenate complexes vary in response to changes in environmental conditions. Therefore, we investigated the effects of drying, pH and surface loadings on the stability of goethite and the structural configuration of arsenate through batch experiments and TEM and XAS measurements with DFT calculation. As a result, we observed no significant transformation of goethite under most conditions, but TEM confirmed the partial formation of bernalite in the presence of arsenate at a pH of 10, and the bernalite showed 2.18 times higher arsenate sorption than the goethite. The linear combination fitting of the EXAFS spectra with DFT calculations revealed that tridentate and bidentate complexes were dominant under low surface loading and pH conditions in the sedimented samples, while monodentate complexes were abundant under high surface loading and pH conditions. Based on our results, we conclude that the formation of arsenic-rich colloids could account for mobilization in the soil environment, and the density of available sorption sites combined with the concentration of solute could cause the change in structural configuration.
砷酸盐在铁(氢)氧化物上的结构构型决定了其在土壤环境中的浸出性和生物可利用性。了解氢氧化铁的稳定性以及砷酸盐配合物的结构构型如何响应环境条件的变化而变化非常重要。因此,我们通过批量实验和 TEM 以及 XAS 测量并结合 DFT 计算,研究了干燥、pH 值和表面负载对针铁矿稳定性和砷酸盐结构构型的影响。结果表明,在大多数条件下,针铁矿没有发生明显的转化,但 TEM 证实了在 pH 值为 10 时存在砷酸盐的情况下,部分伯纳尔石的形成,并且伯纳尔石的砷酸盐吸附量比针铁矿高 2.18 倍。通过与 DFT 计算的线性组合拟合 EXAFS 光谱表明,在沉积样品中,低表面负载和低 pH 值条件下,三配位和双配位配合物占主导地位,而在高表面负载和高 pH 值条件下,单配位配合物丰富。根据我们的结果,我们得出结论,富砷胶体的形成可以解释土壤环境中的迁移,而可用吸附位点的密度与溶质浓度的结合可能导致结构构型的变化。