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Remarkable improved electro-Fenton efficiency by electric-field-induced catalysis of CeO_2

机译:电场诱导的CeO_2催化显着提高电子芬顿效率

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In this study, we designed a novel combined electro-Fenton system for the treatment of wastewater containing biological recalcitrant using electric-field-induced ceria (CeO2) as the synergistic catalysts. It was found that by applying this CeO2 electro-Fenton system, the current efficiency improved from 74.49% to 109.82% within 2.5 min; the removal efficiency for dimethyl phthalate (DMP) increased from 85.5% to 94.9% within 20 min; and the mineralization rate increased from 76.01% to 93.58% after 120 min. The effects of parameters such as the applied potential, electrolyte, and concentration of Fe2+ on the current efficiency were systematically studied. Investigations by LSV, zeta titration, X-ray photoelectron spectroscopy (XPS), X-Ray Diffraction (XRD)and electron spin resonance (ESR)revealed the reasons for achieving a current efficiency of over 100% in the CeO2 electro-Fenton system. A mechanism that involved Bronsted acid sites and the redox cycle of sulfate CeO2 was proposed.
机译:在这项研究中,我们设计了一种新型的组合式Fenton电系统,以电场诱导的二氧化铈(CeO2)作为协同催化剂来处理含有生物难降解剂的废水。发现通过应用这种CeO2电芬顿系统,电流效率在2.5分钟内从74.49%提高到了109.82%。在20分钟内,邻苯二甲酸二甲酯(DMP)的去除率从85.5%提高到94.9%; 120min后矿化率由76.01%提高到93.58%。系统地研究了诸如施加电势,电解质和Fe2 +浓度等参数对电流效率的影响。通过LSV,ζ滴定,X射线光电子能谱(XPS),X射线衍射(XRD)和电子自旋共振(ESR)进行的研究揭示了在CeO2电子芬顿系统中实现电流效率超过100%的原因。提出了涉及布朗斯台德酸位点和硫酸铈CeO2氧化还原循环的机理。

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