Enhanced mineralization of Reactive Black 5 by waste iron oxide via photo-Fenton process

被引:0
作者
Weihua Tan
Jia Ai
Yuanrou Fan
Xiang Liu
Yuncheng Xu
Hui Zhang
Yao-Hui Huang
机构
[1] Wuhan University,Department of Environmental Science and Engineering
[2] National Cheng-Kung University,Department of Chemical Engineering
[3] National Cheng-Kung University,Sustainable Environmental Research Center
来源
Research on Chemical Intermediates | 2020年 / 46卷
关键词
Advanced oxidation process; Heterogeneous photo-Fenton; Hydroxyl radical; Mineralization; Reactive black 5;
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学科分类号
摘要
Advanced oxidation process is a promising technology for the treatment of azo dye wastewater, owing to its high degradation performance and less secondary contamination. Herein, the mineralization of azo dye Reactive Black 5 (RB5) by the heterogeneous photo-Fenton process was investigated in a three-phase fluidized bed reactor. The waste iron oxide (denoted as BT) obtained from tannery wastewater process with Fenton’s reagent was selected as a heterogeneous catalyst. The introduction of BT to the UV/H2O2 process (UV/H2O2/BT) shows obviously higher mineralization efficiency because ferric complexes of carboxylic acid, the degradation intermediates of RB5, could be readily decomposed by UV irradiation. The decolorization was achieved by homogenous photo-Fenton reaction induced by leached iron, while the mineralization was contributed to heterogeneous oxidation. Under the conditions of 254 nm UV irradiation, 19.00 mM H2O2, 2.0 g L–1 catalyst loading and natural pH0 of 5.0, 90.2% TOC removal of RB5 could be achieved. The catalyst indicated an acceptable stability and reusability after four cycles. The proposed heterogeneous photo-Fenton process with stable performance is environmental-friendly for the mineralization of RB5.
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页码:4423 / 4431
页数:8
相关论文
共 159 条
[1]  
Sha Y(2016)undefined Chemosphere 144 1530-undefined
[2]  
Mathew I(2015)undefined J. Hazard. Mater. 283 70-undefined
[3]  
Cui Q(2015)undefined Chem. Eng. J. 270 290-undefined
[4]  
Clay M(2017)undefined Appl. Catal. B 206 44-undefined
[5]  
Gao F(2015)undefined Catal. Today 252 107-undefined
[6]  
Zhang XJ(2019)undefined Environ. Sci. Pollut. Res. 26 23149-undefined
[7]  
Gu Z(2017)undefined Res. Chem. Intermed. 43 2587-undefined
[8]  
Cai C(2010)undefined Chem. Eng. J. 159 116-undefined
[9]  
Zhang H(2015)undefined Appl. Catal. B 178 29-undefined
[10]  
Zhong X(2019)undefined Chemosphere 217 475-undefined