Application of response surface methodology on COD removal from textile wastewater by anodic chlorination and cathodic electro-Fenton process

被引:1
|
作者
Chung, Mei-Hui [1 ]
Wang, Chih-Ta [1 ]
Wang, Jian-Wen [1 ]
Chou, Wei-Lung [2 ]
Kuo, Yi-Ming [1 ]
机构
[1] Chung Hwa Univ Med Technol, Dept Safety Hlth & Environm Engn, Tainan 717, Taiwan
[2] HungKuang Univ, Dept Safety Hlth & Environm Engn, Taichung 433, Taiwan
关键词
COD removal; Anodic chlorination; Electro-Fenton oxidation; Response surface methodology; ELECTROCHEMICAL OXIDATION; IN-SITU; HYDROGEN-PEROXIDE; OPTIMIZATION; COLOR; DYES; ELECTROCOAGULATION; DEGRADATION; REAGENT; SYSTEM;
D O I
10.5004/dwt.2018.21953
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
This study applied response surface methodology to investigate chemical oxygen demand (COD) removal from dyeing wastewater by coupling anodic chlorination using Ti/Pt anode and cathodic electro-Fenton oxidation using activated carbon fiber cathode. The COD was removed by electrogenerated HOCl in the anodic compartment, while in the cathodic compartment the COD was removed by OH. produced by combing the cathodically generated H2O2 with Fe2+. A face-centered central composite experimental design was used to obtain the main variables, such as current density, initial chloride concentration, Fe2+ concentration and solution pH, on the individual response surface for anodic chlorination and cathodic electro-Fenton COD removal efficiencies. Two mathematical models that can describe the individual COD removal response were obtained. Analysis of variance showed a high coefficient of determination value (R-2) and insignificant lack of fit for both anodic and cathodic quadratic response surface models. The Pareto analysis gave the percentage effect of each variable on the response. For the anodic chlorination, the current density and the added chloride concentration were the most important two factors. On the other hand, the solution pH played the most important part for cathodic electro-Fenton oxidation.
引用
收藏
页码:144 / 151
页数:8
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