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DSA类电极催化降解硝基苯动力学及机理的研究
引用本文:宋卫锋,林美强,倪亚明,朱又春,孙水裕.DSA类电极催化降解硝基苯动力学及机理的研究[J].环境科学研究,2002,15(5):10-13.
作者姓名:宋卫锋  林美强  倪亚明  朱又春  孙水裕
作者单位:1. 广东工业大学,环境工程系,广东,广州,510090
2. 同济大学,测试中心,上海,200092
基金项目:广东工业大学博士启动基金资助课题
摘    要:用新兴的电化学催化系统 ,以特殊工艺自制的DSA类电极作阳极 ,对模拟硝基苯废水进行了降解处理 ,得出了该试验范围内的最佳条件 ,降解过程符合一级反应模型。根据分析 ,推测硝基苯分子主要先被阴极产生的H·还原为亚硝基苯、苯胺等 ,然后再扩散到阳极附近被HO·氧化为偶氮苯、氧化偶氮苯等 ,最后进一步氧化开环 ,生成苯基丁二酸等酸类物质以至二氧化碳 ,同时硝基苯分子也可以直接在阳极附近得到氧化生成 2 -硝基苯酚。最后 ,对硝基苯的降解途径进行了描述

关 键 词:电化学催化降解  硝基苯  废水处理  化学动力学
文章编号:1001-6929(2002)05-0010-04
收稿时间:2001/12/6 0:00:00

Study on Catalytic Degradation Kinetics and Mechanism of Nitrobenzene Wastewater Using DSA-Type Anodes
SONG Wei-feng,LIN Mei-qiang,NI Ya-ming,ZHU You-chun and SUN Shui-yu.Study on Catalytic Degradation Kinetics and Mechanism of Nitrobenzene Wastewater Using DSA-Type Anodes[J].Research of Environmental Sciences,2002,15(5):10-13.
Authors:SONG Wei-feng  LIN Mei-qiang  NI Ya-ming  ZHU You-chun and SUN Shui-yu
Institution:SONG Wei\|feng 1,LIN Mei\|qiang 1,NI Ya\|ming 2,ZHU You\|chun 1,SUN Shui\|yu 1
Abstract:Dimensionally stable anodes (DSA)-type anodes,made by the authors themselves with special technology, have been employed in electrochemical catalytic system,one of the newly developed advanced oxidation technologies/processes(AOT/P),to treat the nitrobenzene wastewater.The optimal condition has been obtained in this study range.The analysis shows that the reaction can be described by first-order kinetics.It is inferred that nitrobenzene molecules will be mainly reduced by H· produced on the cathodes firstly to form nitrosobenzene and aniline,etc.,which diffuse to the anodes to be oxidized by HO· absorbed on the anodes surface to give azobenzene and azoxybenzene,etc.and at last the benzene rings will be opened to produce acid and carbon dioxide.The analyses also imply that nitrobenzene molecules can be oxidized around the anodes directly to form 2-nitrophenol.Finlly,the degradationpathways of nitrobenzene have been illustrated.
Keywords:electrochemical catalytic degradation  nitrobenzene  kinetics  mechanism
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