Literature DB >> 24245497

Reinvestigation of the role of humic acid in the oxidation of phenols by permanganate.

Bo Sun1, Jing Zhang, Juanshan Du, Junlian Qiao, Xiaohong Guan.   

Abstract

Humic acid (HA) affects the oxidation of phenolic compounds by permanganate, but the role of HA in the oxidation of phenols by permanganate is far from clear. The mechanisms by which HA influences the oxidation of phenols by permanganate at pH 5.0-9.0 were systematically examined in this study. The presence of HA enhanced the oxidation of phenolic compounds by permanganate at pH ≤7.0, with greater enhancement at lower pH values. The presence of HA facilitated the in situ formation of MnO2, implying the importance of reductive moieties of HA in this reaction. This was supported by the finding that HA preoxidized by ozone showed enhancements in the oxidation of phenols by permanganate at pH 5.0-6.0 smaller than those seen with pristine HA. The good correlation between HA-induced improvement in the oxidation rates of phenols by permanganate and those by preformed colloidal MnO2 at pH 5.0 confirmed that contribution of MnO2 formed in situ for the oxidation of phenols under this condition. The differences in the influence of Na2S2O3 and HA on the oxidation of phenol by permanganate revealed the fact that the continuous generation of fresh MnO2 and stabilization of the MnO2 formed in situ by HA were crucial for the HA-induced enhancement of the oxidation of phenols by permanganate at pH ≤7.0. The consumption of permanganate by HA and the poor oxidation ability of in situ-generated MnO2 under alkaline conditions resulted in the slightly negative effect of HA on the degradation rates of phenols by permanganate at pH >7.0.

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Year:  2013        PMID: 24245497     DOI: 10.1021/es404138s

Source DB:  PubMed          Journal:  Environ Sci Technol        ISSN: 0013-936X            Impact factor:   9.028


  2 in total

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Authors:  Lingjun Bu; Zhou Shi; Shiqing Zhou
Journal:  Environ Sci Pollut Res Int       Date:  2016-10-10       Impact factor: 4.223

2.  The role of trace N-Oxyl compounds as redox mediator in enhancing antiviral ribavirin elimination in UV/Chlorine process.

Authors:  Qiyuan Sun; Jing Yang; Yongjie Fan; Kaicong Cai; Zhilei Lu; Zhenle He; Zeping Xu; Xingteng Lai; Yuyi Zheng; Changqing Liu; Feifeng Wang; Zhe Sun
Journal:  Appl Catal B       Date:  2022-07-05       Impact factor: 24.319

  2 in total

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