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Efficiency comparison of ozonation, photolysis, photocatalysis and photoelectrocatalysis methods in real textile wastewater decolorization

机译:臭氧氧化,光解,光催化和光电催化方法在实际纺织废水脱色中的效率比较

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Treatment of real effluents from industries using AOPs stands to be an imperative task of crucial importance yet quite huge a challenge largely given the nature of complexity of these wastewaters. The present work sought to develop a versatile system aimed at the treatment of real wastewater using a bubbling annular reactor, which enables us to test the efficiency of photolysis; photocatalysis, photo-electrocatalysis and direct ozonation using oxygen or ozone as gas flow. A TiO2 nanotubes electrode was used as photocatalyst in photocatalytic and photoelectrocatalytic measurements with and without coupling with ozonation under pH 3.0 and pH 8.0 leading to 50% of color removal after 60 min reaction. However, the results indicated 90% of color removal upon the bubbling of ozone after 15 min of treatment. A synergistic effect was observed in all experiments using the AOPs in the presence of ozone under both pH values. Interestingly though, 85% of decolorization was obtained through direct ozonation without any change in the effluent following 10 min of treatment. The results were discussed in terms of electric energy per order and were compared to those reported previously. For real textile wastewater, ozonation appears to be a promising candidate for full-scale effluent decolorization. (C) 2016 Elsevier Ltd. All rights reserved.
机译:使用AOPs处理来自行业的实际废水一直是至关重要的当务之急,但鉴于这些废水的复杂性,很大程度上这是一个巨大的挑战。当前的工作试图开发一种通用的系统,该系统旨在使用鼓泡的环形反应器来处理实际废水,这使我们能够测试光解效率。使用氧气或臭氧作为气流进行光催化,光电催化和直接臭氧化。 TiO2纳米管电极在光催化和光电催化测量中用作光催化剂,在pH 3.0和pH 8.0下,无论是否与臭氧化反应耦合,在60分钟反应后都会有50%的颜色去除。但是,结果表明,处理15分钟后,臭氧鼓泡后可去除90%的颜色。在两个pH值下都存在臭氧的情况下,使用AOP在所有实验中均观察到协同作用。然而,有趣的是,在处理10分钟后,直接进行臭氧处理可实现85%的脱色,而出水没有任何变化。以每订单电能的形式讨论了结果,并与先前报告的结果进行了比较。对于真实的纺织废水,臭氧处理似乎是进行大规模废水脱色的有前途的候选人。 (C)2016 Elsevier Ltd.保留所有权利。

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