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Photocatalytic Oxidation of Arsenic(Ⅲ): Evidence of Hydroxyl Radicals

机译:砷的光催化氧化(Ⅲ):羟基自由基的证据

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Arsenic contamination has been found in the groundwater of several countries. Photocatalysis can rapidly oxidize arsenite (As(Ⅲ)) to less labile and less toxic arsenate (As(Ⅴ)), which then can be removed by adsorption onto photocatalyst surfaces. This study investigates the photocatalytic oxidation of As(Ⅲ) to As(Ⅴ) as a function of As(Ⅲ) concentration, pH, catalyst loading, light intensity, dissolved oxygen concentration, type of TiO_2 surfaces, and ferric ions to understand the kinetics and the mechanism of As(Ⅲ) oxidation in the UV/TiO_2 system. Photocatalytic oxidation of As(Ⅲ) to As(Ⅴ) takes place in minutes and follows zero-order kinetics. Benzoic acid (BA) was used as a hydroxyl radical (·OH) scavenger to provide evidence for the ·OH as the main oxidant for oxidation of As(Ⅲ). The ·OH radical was independently generated by nitrate photolysis, and kinetics of As(Ⅲ) oxidation by the ·OH radical was determined. Formation of salicylic acid (SA) from the oxidation of BA by ·OH also demonstrates the involvement of ·OH in the mechanism of As(Ⅲ) oxidation. The effect of Fe(Ⅲ) on As(Ⅲ) oxidation at different pH values with and without TiO_2 under UV light was examined. The results suggest that ·OH is the dominant oxidant for As(Ⅲ) oxidation. Two commercially available Ti02 suspensions, Degussa P25 and Hombikat UV100, were tested for the removal of arsenic through oxidation of As(Ⅲ) to As(Ⅴ) followed by adsorption of As(Ⅴ) onto TiO_2 surfaces. Results showed that complete removal of arsenic below the World Health Organization drinking water limit of 10μg/L could be achieved.
机译:在几个国家的地下水中发现了砷污染。光催化可以将砷(As(Ⅲ))迅速氧化为较不稳定和毒性较小的砷酸盐(As(Ⅴ)),然后可以通过吸附到光催化剂表面将其除去。本研究研究了As(Ⅲ)转化为As(Ⅴ)的光催化氧化与As(Ⅲ)浓度,pH,催化剂载量,光强度,溶解氧浓度,TiO_2表面类型和三价铁离子的关系,以了解动力学在UV / TiO_2体系中As(Ⅲ)的氧化机理As(Ⅲ)到As(Ⅴ)的光催化氧化在几分钟内发生,并遵循零级动力学。苯甲酸(BA)被用作羟基自由基(·OH)的清除剂,为·OH作为氧化As(Ⅲ)的主要氧化剂提供了证据。硝酸根光解可独立产生·OH自由基,并测定了·OH自由基氧化As(Ⅲ)的动力学。由·OH氧化BA形成的水杨酸(SA)也表明·OH参与了As(Ⅲ)氧化机理。研究了在不同的pH值下,有和没有TiO_2的情况下,Fe(Ⅲ)对As(Ⅲ)氧化的影响。结果表明,·OH是As(Ⅲ)氧化的主要氧化剂。测试了两种可商购的Ti02悬浮液,Degussa P25和Hombikat UV100,通过将As(Ⅲ)氧化为As(Ⅴ),然后将As(Ⅴ)吸附在TiO_2表面上来去除砷。结果表明,在世界卫生组织饮用水限值10μg/ L以下可以完全清除砷。

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