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Photocatalytic degradation of azo dye in TiO2 suspended solution

机译:TiO2悬浮液中偶氮染料的光催化降解。

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The photocatalysis of azo dye, Orange G, by, P-25 anatase TiO2 was investigated in this research. The experiments were conducted in a batch reactor with TiO2 powder suspension. Four near-UV lamps were used as the light source. The experimental variables included solution pH level, amount of TiO2, illumination light intensity, and reaction time. A pseudo-first order reaction kinetic was proposed to simulate the photocatalytic degradation of Orange G in the batch reactor. More than 80% of 10 mg/L Orange G decomposition in 60-minute reaction time was observed in this study and fast decomposition of Orange G only occurred in the presence of both TiO2 and suitable light energy. Faster degradation of Orange G was achieved under acid conditions. The degradation rates of Orange G at pH = 3.0 were about two times faster than those at pH = 7.0. Faster degradation of azo dye was observed for greater irradiated light intensity and more TiO2 present during the reaction. The reaction rates were proportional to TiO2 concentration and light intensity with the power order of 0.726 and 0.734, respectively. [References: 11]
机译:本研究研究了P-25锐钛矿型TiO2对偶氮染料Orange G的光催化作用。实验在具有TiO2粉末悬浮液的间歇反应器中进行。使用四个近紫外灯作为光源。实验变量包括溶液pH值,TiO2量,照明光强度和反应时间。提出了拟一级反应动力学,以模拟间歇反应器中橙G的光催化降解。在这项研究中,在60分钟的反应时间内观察到超过80%的10 mg / L橙G分解,并且仅在同时存在TiO2和合适的光能的情况下,橙G才快速分解。在酸性条件下,橙G的降解更快。在pH = 3.0时,Orange G的降解速率比在pH = 7.0时的降解速率快约两倍。对于更大的辐照光强度和反应过程中存在的更多TiO2,观察到了偶氮染料降解得更快。反应速率与TiO2浓度和光强度成正比,功率阶数分别为0.726和0.734。 [参考:11]

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