Anku William Wilson, Oppong Samuel Osei-Bonsu, Shukla Sudheesh Kumar, Govender Poomani Penny
Acta Chim Slov. 2016;63(2):380-91. doi: 10.17344/acsi.2016.2385.
This research work delved into the photocatalytic degradation of monoazo dye (methyl orange) and diazo dye (congo red) in aqueous solution using Fe3+/C/S-doped TiO2 nanocomposites. The nanocomposites were synthesised through sol-gel method and characterized using XRD, FTIR, SEM, TEM, EDX, BET and UV-Vis. Photocatalytic degradation of the dyes was monitored under simulated visible light using pristine TiO2, C/S/doped-TiO2 and Fe3+/C/S doped-TiO2 with varying concentrations of Fe3+. The influence of catalyst doping, solution pH, and light intensity were also examined. Doping TiO2 with Fe3+/C/S caused reduction in its band gap value with the resultant improvement in its visible light activity. The photocatalytic efficiency of the catalysts is given as follows: TiO2 < C/S/TiO2 < Fe3+/C/S-TiO2 with Fe3+/C/S-TiO2 (0.3% Fe3+) as the best performing photocatalyst. The monoazo dye experienced higher degradation efficiency than the diazo dye. Degradation of the azo dyes was observed to decrease with increasing pH from 2 to 12. Increased visible light intensity enhanced the photodegradation efficiency of the dye. Dye decolourization was observed to be faster than its mineralization.
本研究工作深入探讨了使用Fe3+/C/S掺杂的TiO2纳米复合材料对水溶液中单偶氮染料(甲基橙)和双偶氮染料(刚果红)的光催化降解。通过溶胶-凝胶法合成了纳米复合材料,并使用XRD、FTIR、SEM、TEM、EDX、BET和UV-Vis对其进行了表征。在模拟可见光下,使用原始TiO2、C/S/掺杂TiO2和不同Fe3+浓度的Fe3+/C/S掺杂TiO2监测染料的光催化降解。还研究了催化剂掺杂、溶液pH值和光强度的影响。用Fe3+/C/S掺杂TiO2导致其带隙值降低,从而提高了其可见光活性。催化剂的光催化效率如下:TiO2 < C/S/TiO2 < Fe3+/C/S-TiO2,其中Fe3+/C/S-TiO2(0.3% Fe3+)是性能最佳的光催化剂。单偶氮染料的降解效率高于双偶氮染料。观察到随着pH值从2增加到12,偶氮染料的降解减少。可见光强度的增加提高了染料的光降解效率。观察到染料脱色比其矿化更快。