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不同电催化工艺下苯酚的降解特性
引用本文:周明华,吴祖成,汪大翚.不同电催化工艺下苯酚的降解特性[J].高等学校化学学报,2003,24(9):1637-1641.
作者姓名:周明华  吴祖成  汪大翚
作者单位:浙江大学环境工程研究所, 杭州 310027
基金项目:教育部留学回国人员基金(批准号:98679),浙江省自然科学基金(批准号:200043)
摘    要:比较了苯酚在电催化阳极氧化(AE)、阴阳两极协同降解(ACE)及亚铁离子存在下阴阳两极协同催化降解(FeACE)3种工艺下的降解及产物变化.在电流0.25A下处理2h,废水中COD的去除率在AE下仅30%,在ACE下为60%,而在FeACE下高达90%.苯酚降解的中间产物主要为对苯二酚、邻苯二酚、间苯二酚、对苯醌、顺丁烯二酸、反丁烯二酸和草酸等.在FeACE工艺下,中间产物还有甲酸.最终产物为CO2.FeACE不仅提高了COD的去除速率,而且还有助于有毒中间产物的迅速消除,并使有机物彻底氧化,因而在环境保护中更具有应用前景.采用水杨酸作捕获剂证实了3种电催化工艺降解有机物的羟基自由基作用机理,其进攻苯环的活性顺序为:对位>邻位>间位,根据产物变化提出了苯酚降解路径.

关 键 词:双电极电催化  苯酚降解  高级氧化技术(AOPs)  降解机理  
文章编号:0251-0790(2003)09-1637-05
收稿时间:2002-10-14

Characteristic of Phenol Degradation Under Various Electrocatalysis Processes
ZHOU Ming-Hua,WU Zu-Cheng,WANG Da-Hui.Characteristic of Phenol Degradation Under Various Electrocatalysis Processes[J].Chemical Research In Chinese Universities,2003,24(9):1637-1641.
Authors:ZHOU Ming-Hua  WU Zu-Cheng  WANG Da-Hui
Institution:Institute of Environmental Engineering, Zhe Jiang University, Hangzhou 310027, China
Abstract:Phenol degradation with three electrocatalysis processes; anodic electrocatalysis(AE), anodic-cathodic electrocatalysis (ACE) and ferrous ion catalyzed anodic-cathodic electrocatlysis (FeACE) were compared. At current of 0. 25 A, the removal rate of COD in wastewater is only 30% by using AE, while it is 60% by using ACE, and 90% by using FeACE. The main intermediates during the phenol degradation are hydroquinone, catechol, resorcinol, benzoquinone, maleic acid, fumaric acid and oxalic acid. When FeACE was used, formic acid was also observed and the final product is carbon dioxide. FeACE can increase the removal rate of COD, and benefit the rapid elimination of toxic intermediates as well. Furthermore , the process could reach the mineralization of organic compound, showing much more optimistic potential for the environmental protection. The mechanism of organic degradation was confirmed to be the role of hydroxyl radical by using salicylic acid as the radical trapping, which are more likely to attack benzene ring in the sequence of p-, m-, o-. A degradation mechanism for phenol was also proposed.
Keywords:Anodic-cathodic electrocatalysis  Phenol degradation  Advanced oxidation processes(AOPs)  Degradation mechanism
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