Feng Y J, Li X Y
Department of Environmental Science & Engineering, Harbin Institute of Technology, 202 Haihe Road, Nangang District, Harbin, 150090, People's Republic of China.
Water Res. 2003 May;37(10):2399-407. doi: 10.1016/S0043-1354(03)00026-5.
Elecrtochemical degradation of phenol was evaluated at five typical anodes for mineralization to carbon dioxide or for being a pre-treatment method in toxic aromatic compounds. Three kinds of RuO(2)-base electrodes were prepared by thermal deposition, which were coated by the oxides of Ru or by Ru, Sn and Sb or by Ru, Sn, Sb and Gd on Ti metal surface, respectively. Another electrode Ti/ PbO(2) was prepared by electro-deposition method with PbO(2) coated on Ti. A Pt electrode was chosen for comparison. Characteristics of the typical five electrodes were investigated by cyclic voltammetry, SEM and its degradation ability for phenol. Performance for phenol degradation of the three RuO(2) electrodes lie in: Ti/Sb-Sn-RuO(2)-Gd> Ti/Sb-Sn-RuO(2)> Ti/RuO(2) and the electrode with beta-PbO(2) coating was superior to RuO(2)-based electrodes and Pt electrode. Aromatic ring opening take place at all researched electrodes and it is supposed that electrolysis run stop at different intermediates, such as benzoquinone, maleic acid, etc. Under the present experimental conditions, whole mineralization to CO(2) takes place only in the beta-PbO(2) anode. A pathway of electrochemical degradation of phenol was suggested based on the experimental analysis.
在五种典型阳极上评估了苯酚的电化学降解,以实现其矿化生成二氧化碳,或作为有毒芳香族化合物的预处理方法。通过热沉积制备了三种RuO₂基电极,分别在钛金属表面涂覆Ru的氧化物、Ru、Sn和Sb的氧化物或Ru、Sn、Sb和Gd的氧化物。另一种电极Ti/PbO₂通过电沉积法制备,在钛上涂覆PbO₂。选择铂电极作为对照。通过循环伏安法、扫描电子显微镜研究了这五种典型电极的特性及其对苯酚的降解能力。三种RuO₂电极对苯酚的降解性能为:Ti/Sb-Sn-RuO₂-Gd>Ti/Sb-Sn-RuO₂>Ti/RuO₂,且涂覆β-PbO₂的电极优于RuO₂基电极和铂电极。在所有研究电极上均发生芳环开环,推测电解过程在不同中间体(如苯醌、马来酸等)处停止。在当前实验条件下,仅在β-PbO₂阳极上发生完全矿化生成CO₂。基于实验分析提出了苯酚的电化学降解途径。