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FeZSM-5 沸石非均相类 Fenton 氧化法对水中 C.I. 活性红 141 的脱色和矿化的参数研究。

A parametric study on the decolorization and mineralization of C.I. Reactive Red 141 in water by heterogeneous Fenton-like oxidation over FeZSM-5 zeolite.

机构信息

Chemical Engineering Department, Ege University, 35100 Bornova, İzmir, Turkey.

出版信息

J Environ Health Sci Eng. 2015 Jan 31;13:7. doi: 10.1186/s40201-015-0162-6. eCollection 2015.

Abstract

In this study, the heterogeneous Fenton-like degradation of Reactive Red 141 (RR141) in water was investigated over iron containing ZSM-5 zeolite (Si/Al = 42) prepared by ion-exchange (FeZSM-5 (42)). The catalyst was characterized by XRD, SEM, FTIR, TPR, and ICP-AES measurements. The effects of the initial concentrations of the dye and H2O2, the initial pH of the solution, catalyst loading, and the reaction temperature were investigated on heterogeneous Fenton-like degradation of RR141. The reduction of the solution initial pH from ca. 7.0 to ca. 3.5 had a positive effect on color removal. A complete color removal was achieved with all the H2O2 concentrations in the range of 0.007 - 0.067 M over the FeZSM-5 (42) catalyst after 2 h of reaction. The COD reduction increased from 52% to 81% with an increase in the amount of the catalyst. The COD reduction was affected positively with the increase in temperature from 298 K through 313 K to 323 K and then to 333 K. The initial decolorization rate was described by the equation: -rA0 = 9.4*10(4) e(-38.8/RT) CRR141,0 CH2O2,0 (0.184) with an H2O2 concentration range of 0.007 M - 0.033 M (where R is in kJ/mol).

摘要

在这项研究中,研究了用铁含量的 ZSM-5 沸石(Si/Al=42)通过离子交换法(FeZSM-5(42))制备的铁含 ZSM-5 沸石(FeZSM-5(42))在水中对活性红 141(RR141)的非均相类 Fenton 降解作用。通过 XRD、SEM、FTIR、TPR 和 ICP-AES 测量对催化剂进行了表征。考察了染料和 H2O2 的初始浓度、溶液初始 pH 值、催化剂负载量和反应温度对 RR141 非均相类 Fenton 降解的影响。将溶液初始 pH 值从约 7.0 降低至约 3.5 对去除颜色有积极影响。在 FeZSM-5(42)催化剂上,在 2 小时的反应时间内,H2O2 浓度在 0.007-0.067 M 范围内,RR141 可完全去除颜色。随着催化剂用量的增加,COD 去除率从 52%增加到 81%。COD 去除率随温度从 298 K 升高至 313 K、323 K 再升高至 333 K 而呈正相关。初始脱色速率由方程描述:-rA0=9.4*10(4) e(-38.8/RT) CRR141,0 CH2O2,0 (0.184),其中 H2O2 浓度范围为 0.007 M-0.033 M(其中 R 为 kJ/mol)。

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