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首页> 外文期刊>Chemical engineering journal >Comparison of phenacetin degradation in aqueous solutions by catalytic ozonation with CuFe2O4 and its precursor: Surface properties, intermediates and reaction mechanisms
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Comparison of phenacetin degradation in aqueous solutions by catalytic ozonation with CuFe2O4 and its precursor: Surface properties, intermediates and reaction mechanisms

机译:CuFe2O4及其前体催化臭氧氧化水溶液中非那西丁的降解比较:表面性质,中间体和反应机理

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In this study, a new magnetic catalyst for enhancing the ozonation process, named as CFOH, a precursor of CuFe2O4 (CFO) was used to enhance the ozonation. The comparison of the surface properties, performance, and reaction mechanisms of CFO and CFOH in catalytic ozonation was investigated. The CFOH showed higher surface area, pore volume, and stronger acidic sites than those of CFO. Importantly, both CFOH and CFO exhibited magnetization, which can be used to separate the catalysts from the bulk solution for reuse. In addition, faster degradation and mineralization of phenacetin (PNT) in catalytic ozonation by CFOH were observed. The generation/decay of intermediates and H2O2 were identified in the studied processes. The yield and decomposition rate of H2O2 in the reaction determined the concentration of (OH)-O-center dot, which was found to be the key for the better catalytic activity of CFOH. Furthermore, the fates of benzene- and open-ring intermediates in the processes were also investigated. The surface reactions, including surface adsorption and catalytic reaction were observed for the mineralization of intermediates generated from PNT oxidation. These surface reactions became more significant when using CFOH as the catalyst, which justifies the better mineralization ability of CFOH. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项研究中,一种名为CFOH(CuFe2O4(CFO)的前驱体)的新型磁性催化剂可用于增强臭氧化作用,该催化剂称为CFOH。研究了CFO和CFOH在催化臭氧化反应中的表面性质,性能和反应机理的比较。 CFOH比CFO具有更高的表面积,孔体积和更强的酸性位。重要的是,CFOH和CFO均显示出磁化强度,可用于将催化剂从本体溶液中分离出来以进行再利用。此外,观察到在CFOH催化臭氧氧化中非那西丁(PNT)的降解和矿化更快。在研究过程中确定了中间体和H2O2的产生/衰减。反应中H2O2的产率和分解速率决定了(OH)-O-中心点的浓度,这是提高CFOH催化活性的关键。此外,还研究了该方法中苯和开环中间体的命运。观察到包括PNT氧化生成的中间体矿化的表面反应,包括表面吸附和催化反应。当使用CFOH作为催化剂时,这些表面反应变得更加重要,这证明CFOH具有更好的矿化能力。 (C)2015 Elsevier B.V.保留所有权利。

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