首页> 外文期刊>Journal of Chemical Engineering of Japan >EFFECT OF ANODIC AND CATHODIC REACTIONS ON OXIDATIVE DEGRADATION OF PHENOL IN AN UNDIVIDED BIPOLAR ELECTROLYZER
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EFFECT OF ANODIC AND CATHODIC REACTIONS ON OXIDATIVE DEGRADATION OF PHENOL IN AN UNDIVIDED BIPOLAR ELECTROLYZER

机译:阳极和阴极反应对未改性双极性电解槽中苯酚氧化降解的影响

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References(10) Cited-By(11) Both anodic oxidation and generation of hydrogen peroxide through electroreduction of oxygen may be useful for oxidative degradation of organic compounds. To clarify the effect of electrode reactions of both sides of a bipolar plate on the current efficiency for oxidative degradation of phenol, experiments were conducted by using an undivided bipolar electrolyzer having a vertical stack of perforated graphite electrodes. The Faradaic current If was arranged as a function of the electrode potential difference EB between opposite sides of a bipolar plate. By analyzing the If - EB curves for the electrolyses in solutions containing different reactants, separate currents corresponding to anodic and cathodic reactions were determined. The effect of EB on the COD current efficiency Ce(COD) for the oxidative degradation of phenol could be well explained by the contribution of the currents of phenol oxidation and oxygen reduction to the total current. The value of Ce(COD) in case of sparging oxygen showed a bimodal curve having the maximum values with respect to EB.
机译:参考文献(10)Cited-By(11)阳极氧化和通过氧的电还原产生过氧化氢都可用于有机化合物的氧化降解。为了阐明双极板两侧的电极反应对苯酚氧化降解的电流效率的影响,使用具有垂直叠置的多孔石墨电极的无分隔双极电解槽进行了实验。法拉第电流If被布置为双极板相对两侧之间的电极电势差EB的函数。通过分析在含有不同反应物的溶液中进行电解的If-EB曲线,可以确定分别对应于阳极和阴极反应的电流。 EB对苯酚氧化降解的COD电流效率Ce(COD)的影响可以通过苯酚氧化和氧还原的电流对总电流的贡献很好地解释。喷射氧气时的Ce(COD)值显示出一条双峰曲线,相对于EB具有最大值。

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