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首页> 外文期刊>Journal of Hazardous Materials >Preparation and characterization of PbO_2 electrode and its application in electro-catalytic degradation of o-aminophenol in aqueous solution assisted by CuO-Ce_2O_3/γ-Al_2O_3 catalyst
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Preparation and characterization of PbO_2 electrode and its application in electro-catalytic degradation of o-aminophenol in aqueous solution assisted by CuO-Ce_2O_3/γ-Al_2O_3 catalyst

机译:PbO_2电极的制备,表征及其在CuO-Ce_2O_3 /γ-Al_2O_3催化剂辅助下的水溶液中邻氨基苯酚的电催化降解中的应用

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摘要

The electrochemical degradation of o-aminophenol (OAP) in aqueous solution was investigated by galvanostatic electrolysis using PbO_2 electrode as anode. The Ti/SnO_2-Sb_2O_3/PbO_2 anode was prepared by thermal decomposition and electro-deposition method, and was characterized by X-ray diffraction (XRD). The hydroxyl radicals electro-generated on anode were detected by fluorescence spectroscopy. The effects of initial pH and current density on the efficiency of the electrochemical degradation process were also studied. UV spectroscopy and chemical oxygen demand (COD) measurements were conducted to evaluate the removal effects of organic pollutants. The experimental results showed that the refractory organics in wastewater can be removed by pure electrochemical process, COD removal efficiency of 91.6% was obtained in 70 min at initial pH 11.0 and current density was equal to 50 mA cm~(-2). In order to improve the efficiency of degradation and accelerate the reaction rate, a novel catalyst, 7-Al_2O_3 supported Ce-doped CuO, was synthesized by impregnating process and was characterized by X-ray photoelectron spectroscopy (XPS). The catalyst exhibited excellent catalytic activity in the electro-catalytic degradation of OAP wastewater and the COD removal efficiency of 91.7% was obtained in 20 min under mild conditions. Finally, a hypothetical mechanism of electro-catalytic degradation was proposed.
机译:以PbO_2电极为阳极,通过恒电流电解法研究了邻氨基苯酚(OAP)在水溶液中的电化学降解。通过热分解和电沉积方法制备了Ti / SnO_2-Sb_2O_3 / PbO_2阳极,并通过X射线衍射(XRD)表征。通过荧光光谱法检测在阳极上电生成的羟基自由基。还研究了初始pH和电流密度对电化学降解过程效率的影响。进行了紫外光谱和化学需氧量(COD)测量,以评估有机污染物的去除效果。实验结果表明,纯电化学工艺可以去除废水中的难降解有机物,在初始pH值为11.0的条件下,在70min内COD的去除率为91.6%,电流密度为50mA cm〜(-2)。为了提高降解效率,加快反应速度,通过浸渍法合成了新型的7-Al_2O_3负载铈掺杂CuO催化剂,并通过X射线光电子能谱(XPS)表征。该催化剂在OAP废水的电催化降解中表现出优异的催化活性,在温和条件下20分钟内获得的COD去除率为91.7%。最后,提出了一种电催化降解的假想机理。

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