Abst'/> Mechanism and efficiency of contaminant reduction by hydrated electron in the sulfite/iodide/UV process
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Mechanism and efficiency of contaminant reduction by hydrated electron in the sulfite/iodide/UV process

机译:亚硫酸盐/碘化物/紫外线工艺中水合电子减少污染物的机理和效率

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摘要

AbstractAdvanced reduction by the extremely strong reducing species, hydrated electron (eaq), is a promising and viable approach to eliminate a wide variety of persistent and toxic contaminants. In this study, we proposed a sulfite/iodide/UV process, which offered efficient production of eaqfor contaminant reduction. Using monochloroacetic acid (MCAA) as a simple eaqprobe, the availability of eaqwas assessed, and the mechanism involving the roles of S(IV) and iodide in the process was elucidated. A pronounced synergistic effect of S(IV) and iodide was observed in MCAA reductive dechlorination. The efficiency was much more dependent on the iodide concentration due to its higher absorptivity and quantum yield of eaq. S(IV) played a dual role by producing eaqvia photoionization of SO32−and by reducing the reactive iodine species formed to avoid their scavenging of eaq. When S(IV) was available, cycling of iodide occurred, favoring the constant eaqproduction. The formation and transformation kinetics of sulfite radical were studied to verify the roles of S(IV) and iodide in the process. A kinetic model of MCAA dechlorination was also developed to quantify the eaq-initiated reduction efficiency, highlighting the effects of S(IV), iodide, and pH. High pH favored the reduction, and the process was still effective in field surface water. This study underscores the importance of producing eaqefficiently and of minimizing the eaqscavenging of intermediates inherently formed and accumulated, and highlights the potential of the sulfite/iodide/UV process to efficiently eliminate recalcitrant contaminants.Graphical abstractDisplay OmittedHighlightsA sulfite/iodide/UV process was proposed, offering efficient production of eaq.A pronounced synergistic effect of S(IV) and iodide was observed and interpreted.The roles of S(IV) and iodide were elucidated and verified quantitatively.Dominant reactive species were revealed, and the mechanism was studied.The eaqavailability was quantified in terms of MCAA dechlorination kinetics.
机译: 摘要 通过极强的还原物种,水合电子(e aq ),是一种有前途且可行的方法,可以消除各种各样的持久性和有毒污染物。在这项研究中,我们提出了亚硫酸盐/碘化物/紫外线法,该方法可有效生产e aq -用于减少污染物。使用一氯乙酸(MCAA)作为简单的e aq probe,e的可用性评估了 aq -,并且涉及涉及S(IV)和碘化物作用的机理在此过程中得到了阐明。在MCAA还原脱氯中观察到了S(IV)和碘化物的明显协同作用。由于其较高的吸收率和e aq -的量子产率,效率更加依赖于碘化物的浓度。 ce:sup>。 S(IV)通过SO的电离产生e aq 起双重作用。 ce:inf loc =“ post”> 3 2-,并通过减少形成的反应性碘物种来避免它们清除e aq 。当有可用的S(IV)时,发生碘化物的循环,有利于常数e aq -生产。研究了亚硫酸根的形成和转化动力学,以验证S(IV)和碘化物在该过程中的作用。还建立了MCAA脱氯动力学模型来量化e 水溶液 -引发的还原效率,强调了S(IV),碘化物和pH的影响。高pH值有利于还原,该方法在田间地表水中仍然有效。这项研究强调了有效产生e aq -并使e 水溶液 清除固有形成和积累的中间体,并突出了亚硫酸盐/碘化物/的潜力紫外线处理可有效消除顽固性污染物。 图形摘要 省略显示 突出显示 建议采用亚硫酸盐/碘化物/ UV工艺,以提高生产效率e aq - S(IV)和观察到并解释了碘化物。 已阐明并定量验证了S(IV)和碘化物的作用。 揭示了主要的反应物种,并研究了机理。 e aq 的可用性通过MCAA脱氯动力学进行了量化。

著录项

  • 来源
    《Water Research》 |2018年第1期|357-364|共8页
  • 作者单位

    School of Environmental Science and Engineering, Zhejiang Gongshang University;

    School of Environmental Science and Engineering, Zhejiang Gongshang University;

    College of Biology and the Environment, Nanjing Forestry University;

    School of Environmental Science and Engineering, Sun Yat-sen University;

    School of Environmental Science and Engineering, Zhejiang Gongshang University;

    School of Environmental Science and Engineering, Zhejiang Gongshang University;

    School of Environmental Science and Engineering, Zhejiang Gongshang University;

    State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hydrated electron; Mechanism; Sulfite/iodide/UV process; Advanced reduction processes; Efficiency;

    机译:水合电子;机理;亚硫酸盐/碘化物/紫外线法;高级还原法;效率;
  • 入库时间 2022-08-17 13:38:39

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