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利用响应面法(RSM)优化和模拟炭/TiO 复合光催化剂对 Cr(VI)的光催化还原。

Photocatalytic reduction of Cr(VI) by char/TiO composite photocatalyst: optimization and modeling using the response surface methodology (RSM).

机构信息

Department of Environmental and Natural Resources Management, University of Patras, 30100, Agrinio, Greece.

Department of Chemistry, University of Ioannina, 45110, Ioannina, Greece.

出版信息

Environ Sci Pollut Res Int. 2017 Jan;24(2):1063-1072. doi: 10.1007/s11356-016-6779-x. Epub 2016 May 10.

Abstract

The photocatalytic reduction of Cr(VI) using pyrolytic char/TiO (PC/TiO) composite catalyst under simulated solar irradiation was studied. Response surface methodology (RSM) and experimental design were used for modeling the removal kinetics and for the optimization of operational parameters. RSM was developed by considering a central composite design with four input variable, i.e. catalyst concentration, initial concentration of Cr(VI), pH, and % (v/v) methanol concentration for assessing individual and interactive effects. A quadratic model was established as a functional relationship between four independent variables and the removal efficiency of Cr(VI). It was found that all selected variables have significant effect on Cr(VI) removal efficiency; however, the pH, the % concentration of methanol, and their interaction exhibited the major effects. Within the studied experimental ranges, the optimum conditions for maximum Cr(VI) removal efficiency (72.1 %) after 60 min of photocatalytic treatment were: catalyst concentration 55 mg L, Cr(VI) concentration 20 mg L, pH 4, and 5 % (v/v) methanol concentration. Under optimum conditions, Cr(VI) reductive removal followed pseudo-first-order kinetics, and nearly complete removal took place within 90 min. The results revealed the feasibility and the effectiveness of PC/TiO as photocatalyst in reduction reactions due to their ability of e-h pair separation increasing the transfer of the photogenerated e to the catalyst's surface and thus the reduction of Cr(VI).

摘要

采用热解炭/TiO (PC/TiO)复合催化剂,在模拟太阳光照射下,研究了光催化还原 Cr(VI)的反应。运用响应面法(RSM)和实验设计对去除动力学进行建模,并对操作参数进行优化。RSM 采用中心复合设计,考虑了四个输入变量,即催化剂浓度、Cr(VI)初始浓度、pH 值和甲醇浓度(v/v%),以评估各因素及其交互作用的影响。建立了一个二次模型,作为四个独立变量与 Cr(VI)去除效率之间的函数关系。结果表明,所有选定的变量对 Cr(VI)去除效率都有显著影响;然而,pH 值、甲醇浓度及其交互作用的影响最大。在所研究的实验范围内,60 分钟光催化处理后达到最大 Cr(VI)去除效率(72.1%)的最佳条件为:催化剂浓度 55mg/L、Cr(VI)浓度 20mg/L、pH 值 4 和 5%(v/v)甲醇浓度。在最佳条件下,Cr(VI)的还原去除遵循准一级动力学,在 90 分钟内几乎完全去除。结果表明,PC/TiO 作为光催化剂在还原反应中具有可行性和有效性,因为其能够增加光生电子对的分离,从而促进光生电子向催化剂表面的转移,进而还原 Cr(VI)。

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