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新型复合电极对偶氮染料分子的光催化降解
引用本文:黄行九,叶刚,刘伟,王连超,蔡乃才,刘锦淮.新型复合电极对偶氮染料分子的光催化降解[J].化学物理学报,2003,16(5):309-394.
作者姓名:黄行九  叶刚  刘伟  王连超  蔡乃才  刘锦淮
作者单位:中国科学技术大学化学系,中国科学技术大学化学系,中国科学院合肥智能机械研究所,中国科学技术大学化学系,武汉大学化学与分子科学学院,中国科学院合肥智能机械研究所 合肥230026,中国科学院合肥智能机械研究所,合肥230031,合肥230026,合肥230031,合肥230026,武汉430072,合肥230031
基金项目:SupportedbytheNationalNaturalScienceFoundationofChina (6 0 2 74 0 6 1)
摘    要:介绍了具有合成H2 O2 和光催化性能的双功能新型复合电极 ,并用X射线衍射、扫描电镜等方法进行了表征 .双功能复合电极是将TiO2 光催化剂负载在活性碳 (AC)和具有合成H2 O2 性能的新型载体空气电极上形成的 .在复合电极作阴极的光反应器中 ,·OH和TiO2 光催化剂的存在实现了光化学氧化与光催化氧化在同一电极 /溶液界面上的联合作用 .实验结果表明 ,复合电极对提高偶氮染料分子活性艳红 (K 2BP)的氧化降解速度起了重要作用 ,仅反应 3min ,脱色率可达 4 9% ;反应 80min ,偶氮染料分子COD去除率可达 4 7% .

关 键 词:复合电极  TiO2光催化  降解  偶氮染料
收稿时间:2002/11/24 0:00:00

Photocatalytic Degradation of Azo Dye Using a Novel Composite Elelctrode
Huang Xingjiu,Ye Gang,Liu Wei,Wang Lianchao,Cai Naicai and Liu Jinhuai.Photocatalytic Degradation of Azo Dye Using a Novel Composite Elelctrode[J].Chinese Journal of Chemical Physics,2003,16(5):309-394.
Authors:Huang Xingjiu  Ye Gang  Liu Wei  Wang Lianchao  Cai Naicai and Liu Jinhuai
Institution:Huang Xingjiu a,b,Ye Ganga,Liu Weib,Wang Lianchaoa,Cai Naicaic,Liu Jinhuai b**
Abstract:A novel composite electrode which had functions of synthesizing H 2O 2 and photocatalysis was reported and characterized by X-rays diffraction and SEM. This double function composite electrode was prepared by the Sol-gel method of loading photocatalyst TiO 2/AC on a novel carrier which could synthesize H 2O 2 and separate photogenerated electrons(e-) and holes(h+) efficiently, resulting in improving the reaction rate. In the photo reactor, the composite electrode was used as a cathode, Ru-Ti-O electrode used as an anode lower pressure Hg lamp used as a light source. The combining oxidation of photochemistry and photocatalysis existed at the same interface of electrode-solution. Experiments showed that TiO 2 was an anatase phase and homogeneously distributed on the surface of active carbon (AC). So, the effective surface area of the photocatalysts and their absorbability for organic molecules could be increased, providing high concentration environments of organic molecules around TiO 2 particles and resulting in the enhancement of photocatalytic activity of TiO 2. Although the surface of air electrode was covered with photocatalyst TiO 2/AC, the current efficiency in H 2O 2 synthesis of the composite electrode was higher as the current density was 15 A/cm2 and the efficiency reached about 80%. The experimental results also showed that the composite electrode played an important role in enhancing the oxidation rate of azo dye molecule (activated red K-2BP), in 3 min, the decolorizing rate could reach about 49%, and the removing COD rate could reach about 47% only in 80 min.
Keywords:Composite electrode  TiO  2 photocatalyst  Degradation  Azo dye
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