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Efficient application of nano-TiO2 thin films in the photocatalytic removal of Alizarin Yellow from aqueous solutions

机译:纳米TiO2薄膜在光催化去除茜素黄中的高效应用

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The aim of this investigation is to obtain thin films of nano-TiO2 on a borosilicate glass substrate using sol-gel template method. The thin film was immobilized with and without polyethylene glycol as filler media and annealed at 500 degrees C. Further, thin films were characterized by the IR, XRD, XRF and XPS analytical methods. The surface morphology of these films was obtained by the FE-SEM images and the BET specific surface area and pore sizes were obtained. The nano-TiO2 was, perhaps, formed a nanopillar onto the substrate. The thin films were successfully employed in the photocatalytic degradation of Alizarin Yellow (AY), an azo dye, from aqueous solutions using the UV-light irradiation under batch reactor operations. Various physico-chemical parametric studies, viz., effect of pH, Alizarin Yellow concentration and interfering ions were studied to deduce the mechanism involved in photocatalytic degradation of this pollutant. The time dependence degradation of Alizarin Yellow was provided to demonstrate the kinetics of degradation of this pollutant from aqueous solutions. It was observed that the degradation of Alizarin Yellow followed pseudo-first-order rate kinetics. Study was further extended with total organic carbon measurement using TOC analyser to demonstrate an apparent mineralization of Alizarin Yellow from aqueous solutions. The presence of several interfering ions or even (OH)-O-center dot scavengers suppressed the photo-catalytic action of thin films in AY degradation from aqueous solutions. (C) 2015 Elsevier B.V. All rights reserved.
机译:该研究的目的是使用溶胶-凝胶模板方法在硼硅酸盐玻璃基板上获得纳米TiO2薄膜。在有和没有聚乙二醇作为填充介质的情况下固定薄膜,并在500℃下退火。此外,通过IR,XRD,XRF和XPS分析方法表征薄膜。通过FE-SEM图像获得这些膜的表面形态,并且获得BET比表面积和孔径。纳米二氧化钛可能在基材上形成了纳米柱。在间歇反应器操作下,使用紫外光照射,成功地将薄膜用于偶氮染料茜素黄(AY)的光催化降解。研究了各种物理化学参数研究,即pH值,茜素黄浓度和干扰离子的影响,以推导该污染物光催化降解的机理。提供了茜素黄的时间依赖性降解,以证明该污染物从水溶液中降解的动力学。观察到茜素黄的降解遵循伪一级速率动力学。使用TOC分析仪进行的总有机碳测量进一步扩展了研究,以证明从水溶液中明显析出茜素黄。几种干扰离子或什至(OH)-O-中心点清除剂的存在抑制了AY在水溶液中降解时薄膜的光催化作用。 (C)2015 Elsevier B.V.保留所有权利。

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