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溶液pH及电流浓度对电化学法生成羟基自由基降解机制的影响
引用本文:陈 震,陈 晓,郑 曦,陈日耀,林智虹,陈玉峰,张义康.溶液pH及电流浓度对电化学法生成羟基自由基降解机制的影响[J].环境科学研究,2002,15(3):42-44.
作者姓名:陈 震  陈 晓  郑 曦  陈日耀  林智虹  陈玉峰  张义康
作者单位:1. 福建师范大学,实验中心,福建,福州,350007
2. 山东临沂师范学院,山东,临沂,276001
基金项目:福建省教育委员会项目 (JA0 0 15 3 )
摘    要:用电化学稳态极化曲线分析方法讨论了溶液pH值及电流浓度对染料降解脱色的影响。实验结果表明,pH值将影响着阴极反应的方向,电极电位与染料降解脱色的效果,在酸性溶液中有利于过氧化氢的生成,阴极电位较低,但不利于随后的絮凝步骤;在中性溶液中染料降解脱色的综合效果较好,CODcr去除率可达80%以上,文中还讨论了电流浓度对降解脱色效果的影响,当电解槽内电流浓度达0.5A/L时可取得满意的效果,电流浓度太大时,体系将伴随着析出氢气等的副反应,降解反应的电流效率下降。

关 键 词:电流浓度  溶液  降解机制  染料  脱色  染料降解  羟基自由基  电化学方法  pH值  废水处理
文章编号:1001-6929(2002)03-0042-04
收稿时间:2001/9/6 0:00:00

Influence of pH and Current Concentration on Electrochemical-Generated Hydroxyl Radical for Degradation and Decolorization of Dye Wastewater
CHEN Zhen,CHEN Xiao,ZHENG Xi,CHEN Ri-yao,LIN Zhi-hong,CHEN Yu-feng and ZHANG Yi-kang.Influence of pH and Current Concentration on Electrochemical-Generated Hydroxyl Radical for Degradation and Decolorization of Dye Wastewater[J].Research of Environmental Sciences,2002,15(3):42-44.
Authors:CHEN Zhen  CHEN Xiao  ZHENG Xi  CHEN Ri-yao  LIN Zhi-hong  CHEN Yu-feng and ZHANG Yi-kang
Institution:CHEN Zhen 1,CHEN Xiao 1,ZHENG Xi 1,CHEN Ri\|yao 1,LIN Zhi\|hong\+1,CHEN Yu\|feng\+1,ZHANG Yi\|kang\+2
Abstract:The influence of pH and current concentration on the dye degradation and decolorization were discussed with electrochemical steady\|curve polarization.The experimental results showed that pH value would affect the direction of cathode reaction,electric potential of the electrode and degradation and decolorization effect of dyes.The acid solution is favorable to formation of H\-2O\-2 and has low electric potential of the electrode,but unfavorable to the follow\|up flocculation.The neutral solution is efficient for degradation and decolorization of dyes,with COD Cr removal higher than 80%. When the current concentration in the electrolytic tank reaches 0 5 A/L,the degradation and decolorization can be satisfactory.If the current concentration gets too great,by\|products like hydrogen will be generated and the current efficiency of the reaction becomes lower.
Keywords:decolorization  degradation  hydroxyl radical  electrochemical method
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