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TiO_2-Photocatalyzed As(Ⅲ) Oxidation in Aqueous Suspensions: Reaction Kinetics and Effects of Adsorption

机译:悬浮液中TiO_2-光催化As(Ⅲ)的氧化反应动力学及吸附效应

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摘要

Oxidation of arsenite, As(Ⅲ), to arsenate, As(Ⅴ), is required for the efficient removal of arsenic by many water treatment technologies. The photocatalyzed oxidation of As(Ⅲ) on titanium dioxide, TiO_2, offers an environmentally benign method for this unit operation. In this study, we explore the efficacy and mechanism of TiO_2-photocatalyzed As(Ⅲ) oxidation at circumneutral pH and over a range of As-(Ⅲ) concentrations approaching those typically encountered in water treatment systems. We focus on the effect of As adsorption on observed rates of photooxidation. Adsorption (in the dark) of both As(Ⅲ) and As(Ⅴ) on Degussa P25 TiO_2 was examined at pH 6.3 over a range in dissolved arsenic concentrations, [As]_(diss), of 0.10-89 μM and 0.2 or 0.05 gL~(-1) TiO_2 forAs(Ⅲ) and As(Ⅴ), respectively. Adsorption isotherms generally followed the Langmuir-Hinshelwood model with As(Ⅲ) exhibiting an adsorption maxima of 32μmol g~(-1). As(Ⅴ) adsorption did not reach a plateau under the experimental conditions examined; the maximum adsorbed concentration observed was 130 μmol g~(-1). The extent of As-(Ⅲ) and As(Ⅴ) adsorption observed at the beginning and end of the kinetic studies was consistent with that observed in the adsorption isotherms. Kinetic studies were performed in batch systems at pH 6.3 with 0.8-42μM As-(Ⅲ) and 0.05 g L~(-1) TiO_2; complete oxidation of As(Ⅲ) was observed within 10-60 min of irradiation at 365 nm. The observed effect of As(Ⅲ) concentration on reaction kinetics was consistent with surface saturation at higher concentrations. Addition of phosphate at 0.5-10 μM had little effect on either As(Ⅲ) sorption or its photooxidation rate but did inhibit adsorption of the product As(Ⅴ). The selective use of hydroxyl radical quenchers and superoxide dismutase demonstrated that superoxide, O_2~(·-), ptays a major role in the oxidation of As(Ⅲ) to As(Ⅴ).
机译:为了通过多种水处理技术有效去除砷,需要将砷中的砷(Ⅲ)氧化为砷(Ⅴ)。 As(Ⅲ)在二氧化钛TiO_2上的光催化氧化为该装置的运行提供了一种环境友好的方法。在这项研究中,我们探索了TiO_2光催化As(Ⅲ)在周围pH和超过一系列As-(Ⅲ)浓度(接近水处理系统中通常遇到的浓度)的氧化的功效和机理。我们专注于砷吸附对观察到的光氧化速率的影响。在pH 6.3范围内,在溶解砷浓度[As] _(diss)为0.10-89μM和0.2或0.2的范围内,检测了Degussa P25 TiO_2上As(Ⅲ)和As(Ⅴ)的吸附(在黑暗中)。 As(Ⅲ)和As(Ⅴ)分别为0.05 gL〜(-1)TiO_2。吸附等温线一般遵循Langmuir-Hinshelwood模型,As(Ⅲ)的吸附最大值为32μmolg〜(-1)。在所研究的实验条件下,As(Ⅴ)的吸附未达到平稳状态。观察到的最大吸附浓度为130μmolg〜(-1)。在动力学研究的开始和结束时观察到的As-(Ⅲ)和As(Ⅴ)吸附程度与在吸附等温线中观察到的一致。在pH为6.3的间歇体系中,用0.8-42μMAs-(Ⅲ)和0.05 g L〜(-1)TiO_2进行动力学研究。在365 nm的辐射下10-60分钟内观察到As(Ⅲ)完全氧化。所观察到的砷(Ⅲ)浓度对反应动力学的影响与较高浓度下的表面饱和度一致。添加0.5-10μM的磷酸盐对As(Ⅲ)的吸附或其光氧化速率几乎没有影响,但确实抑制了As(Ⅴ)产物的吸附。羟基自由基猝灭剂和超氧化物歧化酶的选择性使用表明,超氧化物O_2〜(·-)在将As(Ⅲ)氧化为As(Ⅴ)中起主要作用。

著录项

  • 来源
    《Environmental Science & Technology》 |2005年第6期|p.1880-1886|共7页
  • 作者单位

    Department of Environmental Science and Engineering, California Institute of Technology, 1200 East California Boulevard, Pasadena, California 91125;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境化学;
  • 关键词

  • 入库时间 2022-08-17 14:07:50

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