DocumentCode
1997540
Title
Chemical kinetics study on p-chlorophenol Wastewater Treatment by the technology of electrochemical oxidation
Author
Junsheng Hu ; Hao, Lingting ; Li, Yue ; Ren, Xue-dong
Author_Institution
Sch. of Municipal & Environ. Eng., ShenYang JianZhu Univ., Shenyang, China
fYear
2011
fDate
16-18 Sept. 2011
Firstpage
3864
Lastpage
3867
Abstract
Based on experimental research, this paper discussed the Kinetics law of p-chlorphenol Wastewater Treatment by electrochemical oxidation, The influence effect on the reaction rates of p-chlorphenol degradation was inspected how various factors of aeration rate, applied voltage, supporting electrolyte concentration, and the initial pH value by experiment. The results show that the electrochemical degradation accords with the apparent first-order kinetics law, the applied voltage and the initial pH value are greater impact on electrochemical treatment reaction rate, but the effect of aeration rate and support electrolytes concentration on Electrochemical reaction rate are relatively small. The efficiency of degradation was increased along with the higher voltage but reduce gradually. When aeration rate, the electrolyte concentration and initial PH value changes within a certain scope, the rule of electrochemical oxidization processing efficiency were first increased and then reduce. Comprehensive consideration of the treatment efficiency and economic factors, suitable for the experimental conditions are the decomposition voltage of 10V, the aeration rate of 0.2m3/L, the supporting electrolyte concentration of 0.04mol/L and the initial pH value of 3.0.
Keywords
chemical variables measurement; electrochemical analysis; electrolytes; pH; reaction rate constants; wastewater treatment; aeration rate; chemical kinetics; economic factors; electrochemical degradation; electrochemical oxidization processing efficiency; electrochemical treatment reaction rate; electrolyte concentration; first-order kinetic law; p-chlorphenol degradation; p-chlorphenol wastewater treatment; Degradation; Electrodes; Fitting; Kinetic theory; Oxidation; Surface treatment; Wastewater; Reaction Rate Constant; electrochemical oxidation; p-chlorophenol; reaction kinetics;
fLanguage
English
Publisher
ieee
Conference_Titel
Electrical and Control Engineering (ICECE), 2011 International Conference on
Conference_Location
Yichang
Print_ISBN
978-1-4244-8162-0
Type
conf
DOI
10.1109/ICECENG.2011.6058178
Filename
6058178
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