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首页> 外文期刊>Chemical engineering journal >Fullerol mediated enhancement of chloramphenicol degradation in Fe(III)/H2O2 system by accelerating Fe(III)/Fe(II) cycle via a non-photochemical pathway
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Fullerol mediated enhancement of chloramphenicol degradation in Fe(III)/H2O2 system by accelerating Fe(III)/Fe(II) cycle via a non-photochemical pathway

机译:富罗尔介导通过非光化学途径加速Fe(III)/ H2O2系统的Fe(III)/ H 2 O 2系统中氯霉素降解的增强

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摘要

Hydroxylated fullerene, Fullerol, has applied in many areas because of its high electron affinity and antioxidant potential, while it was few used in wastewater treatment. In this study, the mechanism involved that Fullerol accelerated the regeneration of Fe(II) in the Fe(III)/H2O2 system under dark condition, which was investigated with chloramphenicol (CAP) as a model pollutant. In Fullerol/Fe(III)/H2O2 system, CAP removal was completely achieved at 60 min via a non-photochemical pathway. In addition, the quenching experiments and electron spin resonance (ESR) results indicated that hydroxyl radical ((OH)-O-center dot) was the main reactive oxygen species (ROSs). The Fullerol/Fe(III)/H2O2 system had a rate constant of CAP degradation about 5.0 x 10(-2) min(-1), which was about 22 times higher than it in Fe(III)/H2O2 Fenton-like system (2.3 x 10(-3) min(-1)). Fe(II) was ascertained the effective component that was responsible for H2O2 activation to produce (OH)-O-center dot, which derived from 1) the first pathway: Fullerol complexed with Fe(III) and the redox potential of the complex is much lower than Fe(III)/Fe (II); 2) the second pathway: Fullerol acted as an electron donor to reduce Fe(III) into Fe(II). Moreover, CAP degradation intermediates were identified and its degradation pathways were proposed. This study suggested a new approach for improving the Fe(III)/H2O2 system by accelerating Fe(III)/Fe(II) cycles with Fullerol.
机译:羟基化富勒烯,富勒醇,由于其高电子亲和力和抗氧化潜力,在许多领域应用,而在废水处理中则很少用于废水。在这项研究中,富集的机制加速了暗条件下Fe(III)/ H 2 O 2系统中Fe(II)的Fe(II)的再生​​,用氯霉素(帽)作为模型污染物研究。在全溶胶/ Fe(III)/ H 2 O 2系统中,通过非光化学途径完全在60分钟内完全取出盖子。另外,淬火实验和电子自旋共振(ESR)结果表明羟基((OH)-O中心点)是主要的反应性氧(罗斯)。饱和/ Fe(III)/ H 2 O 2系统具有约5.0×10(-2)分钟(-1)的帽劣化的速率常数,比Fe(III)/ H2O2 Fenton样系统高约22倍(2.3 x 10(-3)min(-1))。确定Fe(II)的有效组分,该组分负责生产(OH)-O-中心点,其衍生自1)第一途径:富含Fe(III)和复合物的氧化还原电位络合远低于FE(III)/ FE(II); 2)第二种途径:富勒醇作为电子给体,以将Fe(III)减少到Fe(II)中。此外,鉴定了帽劣化中间体,提出了其降解途径。该研究表明,通过加速Fe(III)/ Fe(II)循环与富含甾醇的循环改善Fe(III)/ H 2 O 2系统的新方法。

著录项

  • 来源
    《Chemical engineering journal》 |2020年第1期|共8页
  • 作者单位

    Sichuan Univ Coll Architecture &

    Environm Chengdu 610065 Peoples R China;

    Sichuan Univ Coll Architecture &

    Environm Chengdu 610065 Peoples R China;

    Sichuan Univ Coll Architecture &

    Environm Chengdu 610065 Peoples R China;

    Sichuan Univ Coll Architecture &

    Environm Chengdu 610065 Peoples R China;

    Sichuan Univ Coll Architecture &

    Environm Chengdu 610065 Peoples R China;

    Sichuan Univ Coll Architecture &

    Environm Chengdu 610065 Peoples R China;

    Sichuan Univ Coll Architecture &

    Environm Chengdu 610065 Peoples R China;

    Sichuan Univ Coll Architecture &

    Environm Chengdu 610065 Peoples R China;

    Sichuan Univ Coll Architecture &

    Environm Chengdu 610065 Peoples R China;

    Sichuan Univ Coll Architecture &

    Environm Chengdu 610065 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

    Antibiotics; Fenton; Non-photochemical pathway; Fullerol; Fe(III)/Fe(II) cycle;

    机译:抗生素;芬顿;非光化学途径;富勒索尔;FE(III)/ FE(II)循环;

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