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Catalytic ozonation of simulated textile dyeing wastewater using mesoporous carbon aerogel supported copper oxide catalyst

机译:介孔碳气凝胶负载的氧化铜催化剂催化臭氧氧化模拟纺织印染废水

摘要

Textile dyeing uses large amount of freshwater and synthetic dyes. Its effluents have to be subjected to certain treatments to remove the contaminants, especially for residue dyestuffs, before discharging to water bodies for elimination of adverse impacts to the environment. The objective of this research is to fabricate a novel catalyst, carbon aerogel supported copper oxide, and study its catalytic performance for the first time in ozonation of simulated dyeing wastewater for dye degradation. The catalyst was prepared using sol-gel and impregnation method, and characterized by Transmission Electron Microscope and X-Ray Diffraction techniques which suggesting that the nano-sized copper oxide particles successfully embedded and well-dispersed in the amorphous carbon aerogel. The catalytic performance of the catalyst was evaluated by degradation of C.I. Reactive Black 5 in a semi-continuous reactor. The results show that the catalyst has promising potential in ozonation towards dye elimination in dyeing wastewater, in which the dye removal efficiency can be effectively enhanced by the catalyst. In the specific conditions, COD removal could reach 46% in catalytic ozonation system after 60-min reaction, while it was only 29% in ozonation alone without catalyst. In addition, a systematic parameter study was performed to investigate the effect of the temperature, pH, ozone dosage, catalyst amount and dye concentration on dye degradation in terms of color and COD removal.
机译:纺织品染色使用大量的淡水和合成染料。在将其废水排放到水体中之前,必须对其废水进行一定的处理,以去除污染物,尤其是残留染料,以消除对环境的不利影响。这项研究的目的是制造一种新型的催化剂,即碳气凝胶负载的氧化铜,并首次研究其在模拟染料废水的臭氧氧化中降解染料的催化性能。采用溶胶-凝胶法和浸渍法制备了该催化剂,并用透射电子显微镜和X射线衍射技术对其进行了表征,表明该纳米级氧化铜颗粒能够成功嵌入并很好地分散在无定形碳气凝胶中。通过C.I的降解评价催化剂的催化性能。半连续反应器中的活性黑5。结果表明,该催化剂在印染废水中的臭氧化方面具有去除染料的潜力,该催化剂可以有效提高染料的去除效率。在特定条件下,经过60分钟的反应后,催化臭氧化系统中的COD去除率可达到46%,而在没有催化剂的情况下,仅臭氧化处理中的COD去除率仅为29%。此外,进行了系统的参数研究,以研究温度,pH,臭氧用量,催化剂用量和染料浓度对染料降解的影响,包括颜色和COD去除率。

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