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首页> 外文期刊>International Journal of Photoenergy >Simultaneous Photocatalytic Reduction of Cr(VI) and Oxidation of Benzoic Acid in Aqueous N-F-Codoped TiO2Suspensions: Optimization and Modeling Using the Response Surface Methodology
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Simultaneous Photocatalytic Reduction of Cr(VI) and Oxidation of Benzoic Acid in Aqueous N-F-Codoped TiO2Suspensions: Optimization and Modeling Using the Response Surface Methodology

机译:N-F-掺杂的TiO2悬浮液中Cr(VI)的同时光催化还原和苯甲酸的氧化:使用响应面方法的优化和建模

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The simultaneous photocatalytic reduction of Cr(VI) and oxidation of benzoic acid (BA) in aqueous suspensions using N-F-codoped TiO2and simulated solar irradiation were investigated in the present study. Chemometric optimization tools such as response surface methodology (RSM) and experimental design were used to model and optimize selected operational parameters of the simultaneous photocatalytic reduction of Cr(VI) and oxidation of BA. RSM was developed by considering a central composite design with three input variables, that are, N-F-codoped TiO2mass, ratio of Cr/BA, and pH. The removal of Cr(VI) and BA in binary systems, containing both Cr(VI) and BA, showed a synergistic photocatalytic decontamination as BA significantly facilitated Cr(VI) reduction, whereas Cr(VI) accelerated also BA degradation. Due to the anionic-type adsorption onto TiO2and its acid-catalyzed photocatalytic reduction, the removal of Cr(VI) decreased with increasing pH, while the degradation of BA followed also the same trend. Under the optimum conditions (N-F-TiO2) = 600 mg L−1, ratio of Cr(VI)/BA = 5, pH = 4, the removal for both Cr and BA followed a pseudo first-order kinetic model. It was found that the selected variables have significant effect both on Cr(VI) removal and BA degradation efficiency. The results revealed the feasibility and the effectiveness of using N-F-codoped TiO2as photocatalyst for simultaneous decontamination of Cr(VI) and organic pollutants such as BA due to the appropriate oxidation and reduction ability of the photogenerated h+VB-e−CBpairs.
机译:研究了N-F共掺杂TiO2在水悬浮液中同时光催化还原Cr(VI)和氧化苯甲酸(BA)和模拟太阳辐射。使用化学计量学优化工具(例如响应面方法(RSM)和实验设计)来建模和优化同时光催化还原Cr(VI)和BA氧化的所选操作参数。 RSM是通过考虑具有三个输入变量的中央复合设计而开发的,这三个变量是N-F掺杂的TiO2的质量,Cr / BA的比率和pH。在同时含有Cr(VI)和BA的二元系统中,Cr(VI)和BA的去除显示出协同的光催化净化作用,因为BA显着促进了Cr(VI)的还原,而Cr(VI)也加速了BA的降解。由于TiO2上的阴离子型吸附及其酸催化的光催化还原作用,Cr(VI)的去除随着pH的增加而降低,而BA的降解也遵循相同的趋势。在最佳条件下(N-F-TiO2)= 600 mg L-1,Cr(VI)/ BA的比值为5,pH = 4,Cr和BA的去除均遵循伪一级动力学模型。发现所选择的变量对Cr(VI)的去除和BA降解效率均具有显着影响。结果表明,由于光生h + VB-e-CB对具有适当的氧化和还原能力,使用N-F掺杂的TiO2作为光催化剂同时净化Cr(VI)和有机污染物(如BA)的可行性和有效性。

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