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首页> 外文期刊>Ultrasonics sonochemistry >Visible light induced sonophotocatalytic degradation of Reactive Red dye 198 using dye sensitized TiO2
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Visible light induced sonophotocatalytic degradation of Reactive Red dye 198 using dye sensitized TiO2

机译:染料敏化的TiO2在可见光下的声光催化降解活性红染料198

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摘要

In this paper we are reporting the accelerated sonophotocatalytic degradation of Reactive Red (RR) 198 dye under visible light using dye sensitized TiO2 activated by ultrasound. The effect of sonolysis, photocatalysis and sonophotocatalysis under visible light has been examined to study the influence on the degradation rates by varying the initial substrate concentration, pH and catalyst loading to ascertain the synergistic effect on the degradation techniques. Ultrasonic activation at 47 kHz contributes through cavitation leading to the splitting of H2O2 produced by both photocatalysis and sonolysis. This results in the formation of oxidative species, such as singlet oxygen (O-1(2)) and superoxide (O-2(-.)) radicals in the presence of oxygen. Sonication increases the amount of reactive radical species, inducing faster oxidation of the substrate and degradation of intermediates and also the deaggregation of the photocatalyst which are responsible for the observed synergy. Further, the photocatalytic activity of RR 198 dye sensitized TiO2 is demonstrated by the degradation of phenol under visible light and ultrasound. A comparative study using TiO2, Hombikat UV 100 and ZnO was also carried out. (c) 2006 Elsevier B.V. All rights reserved.
机译:在本文中,我们报道了使用超声波激活的染料敏化的TiO2在可见光下加速了活性红(RR)198染料的声光催化降解。已经研究了在可见光下的声解,光催化和声光催化作用,以通过改变初始底物浓度,pH和催化剂负载量来研究对降解速率的影响,从而确定对降解技术的协同作用。 47 kHz的超声波激活通过空化作用而导致光催化和声分解产生的H2O2分裂。这导致在氧的存在下形成氧化性物种,例如单线态氧(O-1(2))和超氧化物(O-2(-。))自由基。超声处理增加了反应性自由基种类的数量,导致底物的更快氧化和中间体的降解,以及导致观察到的协同作用的光催化剂的分解。此外,RR 198染料敏化的TiO2的光催化活性通过可见光和超声作用下苯酚的降解得到证明。还进行了使用TiO2,Hombikat UV 100和ZnO的比较研究。 (c)2006 Elsevier B.V.保留所有权利。

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