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Cobalt/Peracetic Acid: Advanced Oxidation of Aromatic Organic Compounds by Acetylperoxyl Radicals

机译:钴/过氧乙酸:乙酰基过氧自由基对芳香族有机化合物的高级氧化

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摘要

Peracetic acid (PAA) is increasingly used as an alternative disinfectant and its advanced oxidation processes (AOPs) could be useful for pollutant degradation. Co(Ⅱ) or Co(III) can activate PAA to produce acetyloxyl (CH_3C(O)O·) and acetylperoxyl (CH_3C(O)OO·) radicals with little ·OH radical formation, and Co(Ⅱ)/Co(Ⅲ) is cycled. For the first time,this study determined the reaction rates of PAA with Co(Ⅱ) (K_(PAA,Co(Ⅱ))= 1.70 × 10~1 to 6.67 × 10~2 M~(-1)) and Co(Ⅲ) (K_(PAA,Co(Ⅲ)) = 3.91× 10~0 to 4.57 × 10~2 M~(-1)·s~(-1)) ions over the initial pH 3.0-8.2 and evaluated 30 different aromatic organic compounds for degradation by Co/PAA. In-depth investigation confirmed that CH_3C(O)OO· is the key reactive species under Co/PAA for compound degradation. Assessing the structure-activity relationship between compounds' molecular descriptors and pseudo-first-order degradation rate constants (K'_(PAA)·in s~(-1)) by Co/ PAA showed the number of ring atoms, E_(HOMO), softness, and ionization potential to be the most influential, strongly suggesting the electron transfer mechanism from aromatic compounds to the acetylperoxyl radical. The radical production and compound degradation in Co/PAA are most efficient in the intermediate pH range and can be influenced by water matrix constituents of bicarbonate, phosphate, and humic acids. These results significantly improve the knowledge regarding the acetylperoxyl radical from PAA and will be useful for further development and applications of PAA-based AOPs.
机译:过氧乙酸(PAA)越来越多地用作替代消毒剂,其先进的氧化过程(AOPs)可用于污染物降解。 Co(Ⅱ)或Co(III)可以活化PAA,生成几乎没有·OH自由基形成的乙酰氧基(CH_3C(O)O·)和乙酰过氧基(CH_3C(O)OO·)自由基,以及Co(Ⅱ)/ Co(Ⅲ) )循环。本研究首次确定了PAA与Co(Ⅱ)(K_(PAA,Co(Ⅱ))= 1.70×10〜1至6.67×10〜2 M〜(-1))和Co( Ⅲ)(K_(PAA,Co(Ⅲ))=初始pH 3.0-8.2时的3.91×10〜0至4.57×10〜2 M〜(-1)·s〜(-1))离子并进行30种不同的评估用于Co / PAA降解的芳族有机化合物。深入研究证实,CH_3C(O)OO·是Co / PAA下化合物降解的关键反应物种。通过Co / PAA评估化合物分子描述子与拟一级降解速率常数(K'_(PAA)·in s〜(-1))之间的构效关系表明环原子数E_(HOMO ),柔软度和电离势是最有影响力的,强烈暗示了从芳族化合物到乙酰基过氧自由基的电子转移机理。 Co / PAA中自由基的产生和化合物的降解在中等pH范围内最有效,并且会受到碳酸氢盐,磷酸盐和腐殖酸的水基质成分的影响。这些结果大大改善了有关PAA乙酰基过氧自由基的知识,将对基于PAA的AOP的进一步开发和应用有用。

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  • 来源
    《Environmental Science & Technology》 |2020年第8期|5268-5278|共11页
  • 作者单位

    School of Civil and Environmental Engineering Georgia Institute of Technology Atlanta Georgia 30332 United States;

    Beijing Engineering Research Center of Process Pollution Control Division of Environment Technology and Engineering Institute of Process Engineering Chinese Academyof Sciences Beijing 100190 China;

    College of Environmental Sciences and Engineering Peking University Beijing 100871 China;

    Beijing Engineering Research Center of Process Pollution Control Division of Environment Technology and Engineering Institute of Process Engineering Chinese Academy of Sciences Beijing 100190 China;

  • 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);
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  • 正文语种 eng
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