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首页> 外文期刊>Environmental Science and Pollution Research >In situ anodic induction of low-valence copper in electro-Fenton system for effective nitrobenzene degradation
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In situ anodic induction of low-valence copper in electro-Fenton system for effective nitrobenzene degradation

机译:原位阳极诱导电芬铜系统低价铜,以实现有效硝基苯降解

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摘要

To achieve superior advanced oxidation processes (AOPs), transitional state activators are of great significance for the production of active radicals by H2O2, while instability limits their activation efficiency. In this study, density functional theory calculation (DFT) results showed that Cu+ exhibits excellent H2O2 activation performance, with Gibbs free energy change (Delta G) of 33.66 kcal/mol, two times less than that of Cu2+ (77.83 kcal/mol). Meanwhile, an electro-Fenton system using Cu plate as an anode was proposed for in situ generation of Cu+. The released Cu with low-valence state can be well-confined on the surface of the exciting electrode, which was confirmed by X-ray photoelectron spectroscopy (XPS), Raman, and UV-vis spectroscopy. The hydroxyl radicals in this Cu-based electro-Fenton system were determined by the electron spin resonance (ESR). The nitrobenzene degradation ratio was greatly increased by 43.90% with the introduction of the proposed in situ electrochemical Cu+ generation process. Various characterization results indicated that the production of Cu+ was the key factor in the highly efficient Cu-based electro-Fenton reaction.
机译:为了实现优异的晚期氧化方法(AOP),过渡状态活化剂对于通过H 2 O 2的活性基团产生具有重要意义,而不稳定限制了它们的活化效率。在该研究中,密度函数理论计算(DFT)结果表明,Cu +表现出优异的H 2 O 2活化性能,Gibbs自由能量变化(Delta g)为33.66kcal / mol,比Cu2 +(77.83kcal / mol)小两倍。同时,提出了使用Cu板作为阳极作为阳极的电 - 芬顿系统,以原位产生Cu +。具有低价状态的释放的Cu可以很好地限制在激励电极的表面上,该excient电极的表面被X射线光电子能谱(XPS),拉曼和UV-Vis光谱证实。通过电子自旋共振(ESR)测定该基于Cu基电芬系统中的羟基自由基。随着原位电化学Cu +生成过程提出,硝基苯降解比例大大增加了43.90%。各种表征结果表明Cu +的生产是高效Cu基电芬反应中的关键因素。

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