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采用双金属 Fe-Co 催化剂对活性红 195 进行光催化氧化:通过 Box-Behnken 设计进行统计建模与优化。

Photocatalytic oxidation of Reactive Red 195 by bimetallic Fe-Co catalyst: Statistical modeling and optimization via Box-Behnken design.

机构信息

School of Chemical, Biological, and Materials Engineering and Sciences, Mapúa University, Intramuros, Manila, 1002, Philippines; Department of Chemical Engineering, National Cheng Kung University, Tainan, 701, Taiwan.

Department of Chemical Engineering, National Cheng Kung University, Tainan, 701, Taiwan.

出版信息

Chemosphere. 2023 Oct;338:139509. doi: 10.1016/j.chemosphere.2023.139509. Epub 2023 Jul 15.

Abstract

Response surface methodology (RSM) is an effective tool for process optimization with multi-complex operational factors. The present work aims to model and optimize the photocatalytic oxidation (PCO) parameters of Reactive Red 195 (RR195) dye decoloration with the SiO-supported Fe-Co catalyst (FCS) derived from a novel catalyst synthesis method, fluidized-bed crystallization (FBC) process, using Box-Behnken design (BBD) as the RSM statistical model. The Fe-Co@SiO catalyst was successfully fabricated using the FBC process, and it showed good catalytic activity and performance toward the degradation of RR195. The extent of the effects of pH, HO dosage (HD), catalyst loading (CL), and operating time (t) on the decoloration of RR195 was studied. Hence, the order of variable significance follows the sequence: pH > t > CL > HD. pH has the most significant effect among the variables for RR195 decoloration. The decoloration efficiency predicted by the BBD model was 88.3% under the optimized operation conditions of initial pH of 3.15, 0.76 mM HO, 1.18 g L FCS and 59.4 min of operating time. The actual decoloration efficiency was very close to the predicted value indicating that BBD can efficiently be utilized to optimize RR195 degradation with FCS under the PCO system.

摘要

响应面法(RSM)是一种用于多复杂操作因素的过程优化的有效工具。本工作旨在使用 Box-Behnken 设计(BBD)作为 RSM 统计模型,对 SiO 负载的 Fe-Co 催化剂(FCS)的光催化氧化(PCO)参数进行建模和优化,该催化剂由一种新颖的催化剂合成方法流化床结晶(FBC)工艺得到,用于处理活性红 195(RR195)染料的脱色。成功地使用 FBC 工艺制备了 Fe-Co@SiO 催化剂,该催化剂对 RR195 的降解表现出良好的催化活性和性能。研究了 pH、HO 用量(HD)、催化剂负载量(CL)和操作时间(t)对 RR195 脱色的影响程度。因此,变量的重要性顺序为:pH>t>CL>HD。pH 对 RR195 脱色的影响最大。在初始 pH 为 3.15、0.76 mM HO、1.18 g L FCS 和 59.4 min 操作时间的优化操作条件下,BBD 模型预测的脱色效率为 88.3%。实际脱色效率非常接近预测值,表明 BBD 可以有效地用于优化 PCO 系统下 FCS 对 RR195 的降解。

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