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Studies on the photocatalytic decolorization of pararosanilne chloride dye and its simulated dyebath effluent

机译:仲芳基氯化苯胺染料的光催化脱色及其染浴废水的研究。

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In the present study the photocatalytic decolorization of pararosaniline chloride dye (unhydrolysed and hydrolysed forms) and its simulated dyebath effluent has been investigated by employing heterogeneous photocatalysis process. The photocatalytic activity of different semiconductors viz. TiO_2, ZnO, CdS and ZnS has been compared in order to select the most active catalyst for the decolorization of this dye. It was observed that ZnO exhibits better photocatalytic activity than the others. Thereafter different operational parameters which affect the decolorization process like catalyst dose, pH, initial dye concentration have been optimized. The maximum decolorization of the dye solutions was noticed in alkaline conditions and the optimum value of catalyst dose was found to be 1 g L~(-1). Further the study has been extended to explore the applicability of this system for the decolorization of the dye in its hydrolysed form and simulated dyebath effluent. The decolorization rate as well as chemical oxygen demand (COD) reduction of the hydrolysed dye solutions was higher than that of the unhydrolysed dye solutions, whereas the simulated dye bath effluent decolorized at a somewhat slower rate than hydrolysed and unhydrolysed dye solutions.
机译:在本研究中,已通过采用非均相光催化方法研究了对硝基苯胺氯化物染料(未水解和水解形式)及其模拟染浴废水的光催化脱色。不同半导体的光催化活性。比较了TiO_2,ZnO,CdS和ZnS,以选择用于该染料脱色的最具活性的催化剂。观察到ZnO比其他的具有更好的光催化活性。此后,已经优化了影响脱色过程的不同操作参数,例如催化剂剂量,pH,初始染料浓度。在碱性条件下,染料溶液最大脱色,催化剂用量的最佳值为1 g L〜(-1)。进一步的研究已经扩展到探索该系统用于水解形式的染料和模拟染浴流出物的脱色的适用性。水解染料溶液的脱色率和化学需氧量(COD)降低均高于未水解染料溶液,而模拟染料浴出水的脱色速率却比水解和未水解染料溶液稍慢。

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