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首页> 外文期刊>Journal of solid state electrochemistry >Photoelectrocatalytic degradation of 3-nitrophenol at surface of Ti/TiO_2 electrode
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Photoelectrocatalytic degradation of 3-nitrophenol at surface of Ti/TiO_2 electrode

机译:Ti / TiO_2电极表面光电催化降解3-硝基苯酚

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The widely utilization of phenol and its derivatives such as 3-nitrophenol (3-NP) has led to the worldwide pollution in the environment. In this study, Ti/TiO_2 photoelectrode was prepared with anodic oxidation of Ti foil electrode and then the photoelectrocatalytic (PEC) degradation of 3-NP was performed via this electrode, comparing with photocatalytic (PC), electrooxidation and direct photolysis by ultraviolet light. A significant photoelectrochemical synergetic effect in 3-NP degradation was observed on the Ti/TiO_2 electrode and rate constant for the PEC process of Ti/TiO_2 electrode was about three times as high as its PC degradation process. 3-NP concentration monitoring was carried out with differential pulse voltammetry. Results showed that PEC degradation has highest effect on concentration decreasing of 3-NP at solution and degraded it about 38 %, while other processes degradation efficiencies were about 4, 7, and 12 % for electrooxidation, direct photolysis and photocatalytic degradation, respectively. Finally, effects of solution pH and applied potential on degradation efficiency were studied and results showed that optimum pH for degradation is equal 4.00 and optimum potential is 1.2 V vs. Ag|AgCl|KCl (3M) reference electrode.
机译:苯酚及其衍生物(如3-硝基苯酚(3-NP))的广泛使用已导致全球环境污染。本研究通过阳极氧化钛箔电极制备Ti / TiO_2光电极,然后通过该电极对3-NP进行光催化(PEC)降解,与光催化(PC),电氧化和紫外光直接光解进行比较。在Ti / TiO_2电极上观察到了对3-NP降解的显着光电化学协同效应,并且Ti / TiO_2电极的PEC过程的速率常数约为其PC降解过程的三倍。用差示脉冲伏安法进行3-NP浓度监测。结果表明,PEC降解对溶液中3-NP浓度降低的影响最大,并使其降解约38%,而其他过程的降解效率分别为电氧化,直接光解和光催化降解,分别为4%,7%和12%。最后,研究了溶液pH和施加电势对降解效率的影响,结果表明,相对于Ag | AgCl | KCl(3M)参比电极,降解的最佳p​​H值为4.00,最佳电势为1.2V。

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