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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Convergent paired electrocatalytic degradation of p-dinitrobenzene by Ti/SnO2-Sb/beta-PbO2 anode. A new insight into the electrochemical degradation mechanism
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Convergent paired electrocatalytic degradation of p-dinitrobenzene by Ti/SnO2-Sb/beta-PbO2 anode. A new insight into the electrochemical degradation mechanism

机译:通过Ti / SnO2-Sb /β-PbO2阳极将p-二硝基苯的收敛配对电催化降解。 进入电化学降解机制的新洞察

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摘要

In this work, a convergent paired electrochemical method was used for the mineralization of p-dinitrobenzene (p-DNB) over a Ti/SnO2-Sb/beta-PbO2 anode. This anode shows high overvoltage for oxygen evolution, long service lifetime and excellent electrocatalytic degradation efficiency. The influence of several operating parameters on the conversion paired electrocatalytic degradation of p-DNB and COD removal efficiency has been examined. The results showed that the degradation and COD removal of p-DNB reached up to 100% and 98%, respectively. The most important part of this study is to propose a novel mechanism for electrochemical degradation of p-DNB. We discovered that both anodic and cathodic reactions are responsible for mineralization of p-DNB. Accordingly, we propose a convergent paired electrocatalytic degradation mechanism based on the reduction of p-DNB at the cathode and oxidation of cathodically generated p-diaminobenzene at the anode surface for electrochemical mineralization of p-DNB.
机译:在这项工作中,通过Ti / SnO2-Sb /β-PbO2阳极对P-二硝基苯(P-DNB)的矿化进行矿化的收敛配对电化学方法。该阳极显示出高过电压用于氧气演化,长期服务寿命和优异的电催化降解效率。研究了几种操作参数对P-DNB和COD去除效率的转化成对电催化降解的影响。结果表明,P-DNB的降解和鳕鱼分别去除高达100%和98%。本研究中最重要的部分是提出一种新的P-DNB电化学降解机制。我们发现阳极和阴极反应均负责P-DNB的矿化。因此,我们提出了一种基于在阴极在阴极产生的P-DNB的阳极的P-DNB的降低的收敛配对电催化降解机制,并在阳极表面上的P-DNB电化学矿化。

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