Photocatalytic degradation of textile dye CI Basic Yellow 28 wastewater by Degussa P25 based TiO 2

Gülhan Köneçoğlu, Toygun Safak, Y. Kalpaklı, M. Akgün
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引用次数: 14

Abstract

Wastewaters of textile industry cause high volume colour and harmful substance pollutions. Photocatalytic degradation is a method which gives opportunity of reduction of organic pollutants such as dye containing wastewaters. In this study, photocatalytic degradation of C.I. Basic Yellow 28 (BY28) as a model dye contaminant was carried out using Degussa P25 in a photocatalytic reactor. The experiments were followed out at three different azo dye concentrations in a reactor equipped UV-A lamp (365 nm) as a light source. Azo dye removal efficiencies were examined with total organic carbon and UV-vis measurements. As a result of experiments, maximum degradation efficiency was obtained as 100% at BY28 concentration of 50 mgL-1 for the reaction time of 2.5 h. The photodegradation of BY28 was described by a pseudo-first-order kinetic model modified with the langmuir-Hinshelwood mechanism. The adsorption equilibrium constant and the rate constant of the surface reaction were calculated as Kdye = 6.689u10-2 L mg-1 and kc = 0.599 mg L-1min-1, respectively.
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德固赛P25 tio2光催化降解纺织染料CI碱性黄28废水
纺织工业废水造成了大量的有色和有害物质污染。光催化降解是一种为减少含染料废水等有机污染物提供机会的方法。本研究利用德固赛P25在光催化反应器中对模型染料污染物C.I.碱性黄28 (BY28)进行了光催化降解。实验在三种不同的偶氮染料浓度下,在配备UV-A灯(365 nm)作为光源的反应器中进行。用总有机碳和紫外-可见测量法考察了偶氮染料去除效率。实验结果表明,在BY28浓度为50 mg -1、反应时间为2.5 h时,BY28的最大降解效率为100%。BY28的光降解用langmuir-Hinshelwood机理修正的准一级动力学模型描述。计算表面反应的吸附平衡常数为Kdye = 6.689u10-2 L mg-1, kc = 0.599 mg L-1min-1。
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