Department of Chemistry, Annamalai University, Annamalainagar 608002, India.
J Hazard Mater. 2009 Dec 30;172(2-3):914-21. doi: 10.1016/j.jhazmat.2009.07.082. Epub 2009 Jul 28.
Photocatalytic activity of surface fluorinated TiO(2)-P25 (F-TiO(2)-P25) in the degradation of a chlorotriazine azo dye Reactive Orange 4 (RO 4) under ambient conditions was investigated in this study. Characterization of F-TiO(2)-P25 reveals that the catalyst has a strong absorption in the UV range and the presence of F atom in the catalyst. The degradation rate of RO 4 with surface fluorinated TiO(2)-P25 is three times faster than bare TiO(2)-P25. The quantum yield of UV/TiO(2)-P25 process is largely decreased by the increase of initial dye concentration, whereas in UV/F-TiO(2)-P25 process, the influence of initial dye concentration is less. Surface fluorination of TiO(2)-P25 enhanced the adsorption of RO 4 dye, while improving overall degradation rate. The optimum operating conditions of UV/F-TiO(2)-P25 process for efficient degradation are reported.
本研究考察了在环境条件下,表面氟化 TiO(2)-P25(F-TiO(2)-P25)在降解氯三嗪偶氮染料活性艳橙 4(RO 4)中的光催化活性。F-TiO(2)-P25 的表征表明,该催化剂在紫外光区具有很强的吸收,并且催化剂中存在 F 原子。表面氟化 TiO(2)-P25 对 RO 4 的降解速率比 bare TiO(2)-P25 快三倍。UV/TiO(2)-P25 过程的量子产率随着初始染料浓度的增加而大大降低,而在 UV/F-TiO(2)-P25 过程中,初始染料浓度的影响较小。TiO(2)-P25 的表面氟化增强了 RO 4 染料的吸附,同时提高了整体降解速率。报道了有效降解 UV/F-TiO(2)-P25 过程的最佳操作条件。