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砷(V)在单铁氧化物上的吸附:X 射线吸收精细结构和表面络合。

Adsorption of arsenic(V) onto single sheet iron oxide: X-ray absorption fine structure and surface complexation.

机构信息

Dept. of Plant and Environmental Sciences, University of Copenhagen, Denmark.

Institut für Nukleare Entsorgung (INE), Karlsruher Institut für Technologie (KIT), Karlsruhe, Germany.

出版信息

J Colloid Interface Sci. 2019 Oct 15;554:433-443. doi: 10.1016/j.jcis.2019.07.024. Epub 2019 Jul 11.

Abstract

Adsorption onto two-dimensional nanosheet materials offers new possibilities for fast and efficient removal of contaminants from waters. Here, the adsorption of As(V) to a new type of iron oxides - single sheet iron oxide (SSI) - has been studied as a function of time, loading and pH. Adsorption of As(V) onto SSI was very fast compared to other iron oxides, with 80% of total As(V) adsorbed within 10 min. Examination by extended X-ray absorption fine structure analysis showed that As(V) forms a bidentate inner-sphere surface complex with SSI. Arsenic(V) adsorption isotherms and adsorption envelopes were well described using a 1-pK Basic Stern surface complexation model involving protonated (FeOAsOH) and unprotonated (FeOAsO) inner-sphere surface complexes. The surface complexation constants for As(V) binding to SSI is similar to constants found for goethite and ferrihydrite. Simulated adsorption isotherms for intermediate As(V) concentrations also demonstrate that SSI is performing equally well as goethite and ferrihydrite based on surface area normalized adsorption capacities. The binding affinities at micromolar to submicromolar As(V) solution concentrations are similar for SSI and ferrihydrite. SSI has interesting potential as a stable, high-affinity sorbent for use in applications where efficient and fast removal is required.

摘要

二维纳米片材料的吸附为从水中快速高效去除污染物提供了新的可能性。在此,研究了作为时间、负载和 pH 的函数的 As(V)到新型氧化铁 - 单原子层氧化铁 (SSI)的吸附。与其他氧化铁相比,SSI 对 As(V)的吸附非常快,在 10 分钟内吸附了 80%的总 As(V)。扩展 X 射线吸收精细结构分析表明,As(V)与 SSI 形成双齿内球表面络合物。使用涉及质子化 (FeOAsOH)和非质子化 (FeOAsO)内球表面络合物的 1-pK 基本斯特恩表面络合模型很好地描述了砷 (V)吸附等温线和吸附包络线。SSI 与针铁矿和水铁矿结合的砷 (V)的表面络合常数相似。中间 As(V)浓度的模拟吸附等温线也表明,基于表面积归一化吸附容量,SSI 与针铁矿和水铁矿一样表现良好。在微摩尔至亚微摩尔 As(V)溶液浓度下,SSI 和水铁矿的结合亲和力相似。SSI 作为一种稳定、高亲和力的吸附剂,在需要高效快速去除的应用中具有有趣的潜力。

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