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首页> 外文期刊>Chemical engineering journal >Quantitative evaluation of relative contribution of high-valent iron species and sulfate radical in Fe(VI) enhanced oxidation processes via sulfur reducing agents activation
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Quantitative evaluation of relative contribution of high-valent iron species and sulfate radical in Fe(VI) enhanced oxidation processes via sulfur reducing agents activation

机译:通过硫还原剂活化的高价铁铁物种和硫酸盐自由基相对贡献的定量评价

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摘要

Recently, it has been reported that sulfur reducing agents (e.g., sulfite and thiosulfate) can effectively activate Fe(VI), leading to a fast degradation of various contaminants. However, the reactive intermediates (i.e., high-valent iron species versus free radicals) involved in the Fe(VI)/sulfite and Fe(VI)/thiosulfate systems remain far from clear. In this work, by using methyl phenyl sulfoxide (PMSO) as a mechanistic probe, we quantitatively assessed the relative contribution of high-valent iron species versus sulfate radical in these two systems. High-valent iron species oxidized PMSO to methyl phenyl sulfone product (PMSO2), while sulfate radical oxidized PMSO to hydroxylated and/or polymeric products. The yield of PMSO2 (mole of PMSO2 formed per mole of PMSO consumed) was quantified to be in the range of 30-95% under various conditions. This finding suggested the contribution of both high-valent iron species and sulfate radical in the Fe(VI)/sulfite system, which was dependent on solution chemistry (i.e., solution pH and [Fe(VI)]:[sulfite] ratio). Comparatively, the yield of PMSO2 in the Fe(VI)/thiosulfate system remained as high as 90-100% under various conditions. This finding indicated that only high-valent iron species was involved in the Fe(VI)/thiosulfate system and the contribution of sulfate radical was negligible. The discrepancy in the effects of oxygen, alcohol scavenger and co-existing components (e.g., Cl-, HCO3-, and humic acid) on the Fe(VI)/sulfite versus Fe(VI)/thiosulfate systems also indicated the involvement of different oxidants in these two systems.
机译:最近,据报道,硫还原剂(例如,亚硫酸盐和硫代硫酸盐)可以有效地活化Fe(VI),导致各种污染物的快速降解。然而,参与Fe(VI)/亚硫酸盐和Fe(VI)/硫代硫酸盐系统中涉及的反应性中间体(即,高价铁物种与自由基)仍远非澄清。在这项工作中,通过使用甲基苯基亚砜(PMSO)作为机械探针,我们定量评估了这两个系统中高价铁物种与硫酸根的相对贡献。高价铁物种氧化PMSOSO至甲基苯基砜产物(PMSO2),同时硫酸盐自由基氧化PMSOSO至羟基化和/或聚合物产物。在各种条件下量化PMSO2(每摩尔PMSOS的PMSO 2的摩尔PMSO 2)的产率在30-95%的范围内。该发现提出了高价铁物种和硫酸根在Fe(VI)/亚亚硫酸盐系统中的贡献,该系统依赖于溶液化学(即溶液pH和[Fe(VI)]:[亚硫酸盐]比例)。相比之下,在Fe(VI)/硫代硫酸盐系统中PMSO 2的产率在各种条件下保持高达90-100%。该发现表明,只有高价铁物种涉及Fe(VI)/硫代硫酸盐系统,硫酸盐自由基的贡献可忽略不计。氧气,酒精清除剂和共存组分(例如,Cl-,HCO3-和腐殖酸)对Fe(VI)/亚硫酸盐与Fe(VI)/硫代硫酸酯系统的影响的差异也表明了不同的参与这两个系统中的氧化剂。

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  • 来源
    《Chemical engineering journal》 |2020年第2020期|共9页
  • 作者单位

    Guangdong Univ Technol Inst Environm &

    Ecol Engn Guangzhou 510006 Peoples R China;

    Guangdong Univ Technol Inst Environm &

    Ecol Engn Guangzhou 510006 Peoples R China;

    Jilin Jianzhu Univ Sch Municipal &

    Environm Engn Key Lab Songliao Aquat Environm Minist Educ Changchun 130118 Peoples R China;

    Harbin Inst Technol Sch Environm State Key Lab Urban Water Resource &

    Environm Harbin 150090 Peoples R China;

    Guangdong Univ Technol Inst Environm &

    Ecol Engn Guangzhou 510006 Peoples R China;

    Guangdong Univ Technol Inst Environm &

    Ecol Engn Guangzhou 510006 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    Fe(VI); Sulfite; Thiosulfate; High-valent iron intermediate; Sulfate radical;

    机译:Fe(vi);亚硫酸盐;硫代硫酸盐;高价铁中间体;硫酸盐自由基;

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