Xu Tielian, Kamat Prashant V, O'Shea Kevin E
Department of Chemistry and Biochemistry, Florida International University, Miami, Florida 33199, USA.
J Phys Chem A. 2005 Oct 13;109(40):9070-5. doi: 10.1021/jp054021x.
We report herein a detailed assessment of the roles of O2, H2O2, OH, and O2- in the TiO2 assisted photocatalytic oxidation (PCO) of arsenite. Although both arsenite, As(III), and arsenate, As(V), adsorb extensively onto the surface of TiO2, past studies relied primarily on the analysis of the arsenic species in solution, neglecting those adsorbed onto the surface of TiO2. We used extraction and analyses of the arsenic species adsorbed onto the surface of the TiO2 to illustrate that the oxidation of As(III) to As(V) occurs in an adsorbed state during TiO2 PCO. The TiO2 photocatalytic oxidation (PCO) of surface adsorbed As(III) in deoxygenated solutions with electron scavengers, Cu2+, and polyoxometalates (POM) yields oxidation rates that are comparable to those observed under oxygen saturation, implying the primary role of oxygen is as a scavenger of the conduction band electron. Pulse radiolysis and competition kinetics were employed to determine a rate constant of 3.6 x 10(6) M(-1) s(-1) for the reaction of As(III) with O2-*. Transient absorption studies of adsorbed hydroxyl radicals, generated by subjecting colloidal TiO2 to radiolytic conditions, provide convincing evidence that the adsorbed hydroxyl radical (TiO2+*OH) plays the central role in the oxidation with As(III) during TiO2 assisted photocatalysis. Our results suggest the reaction of superoxide anion radical does not contribute in the conversion of As(III) when compared to the reaction of As(III) with *OH radical during TiO2 PCO.
我们在此报告对O₂、H₂O₂、·OH和O₂⁻在TiO₂辅助光催化氧化(PCO)亚砷酸盐过程中所起作用的详细评估。尽管亚砷酸盐(As(III))和砷酸盐(As(V))都能大量吸附在TiO₂表面,但过去的研究主要依赖于对溶液中砷物种的分析,而忽略了吸附在TiO₂表面的那些。我们通过对吸附在TiO₂表面的砷物种进行萃取和分析,以说明在TiO₂光催化氧化过程中,As(III)向As(V)的氧化是在吸附状态下发生的。在含有电子清除剂Cu²⁺和多金属氧酸盐(POM)的脱氧溶液中,TiO₂对表面吸附的As(III)进行光催化氧化(PCO)所产生的氧化速率与在氧气饱和条件下观察到的速率相当,这意味着氧气主要起到导带电子清除剂的作用。采用脉冲辐解和竞争动力学方法确定As(III)与O₂⁻反应的速率常数为3.6×10⁶ M⁻¹ s⁻¹。通过对胶体TiO₂进行辐解条件处理产生吸附的羟基自由基的瞬态吸收研究,提供了令人信服的证据,表明吸附的羟基自由基(TiO₂+·OH)在TiO₂辅助光催化过程中与As(III)的氧化反应中起核心作用。我们的结果表明,与TiO₂光催化氧化过程中As(III)与·OH自由基的反应相比,超氧阴离子自由基反应对As(III)的转化没有贡献。