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Urban wastewater treatment by using Ag/ZnO and Pt/TiO2 photocatalysts

机译:使用Ag / ZnO和Pt / TiO2光催化剂进行城市废水处理

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摘要

In this study, the treatment of wastewater coming from a river highly polluted with domestic and industrial effluents was evaluated. For this purpose, series of photocatalysts obtained by ZnO and TiO2 modification were evaluated. The effect of metal addition and Ti precursor (in the case of the titania series) over the physicochemical and photocatalytic properties of the materials obtained was also analyzed. The evaluation of the photocatalytic activity showed that semiconductor modification and precursor used in the materials synthesis are important factors influencing the physicochemical and therefore the photocatalytic properties of the materials obtained. The water samples analyzed in the present work were taken from a highly polluted river, and it was found that the effectiveness of the photocatalytic treatment increases when the reaction time increases and for both, wastewater samples and isolated Escherichia coli strain follow the next order Pt/TiO2 ZnO. It was also observed that biochemical and chemical demand oxygen and turbidity significantly decrease after treatment, thus indicating that photocatalysis is a non-selective technology, which can lead to recover wastewater containing different pollutants.
机译:在这项研究中,评估了来自国内和工业污染的河流的废水的处理。为此目的,评估通过ZnO和TiO 2改性获得的一系列光催化剂。还分析了金属加法和Ti前体(在二氧化钛系列的情况下)对所得材料的物理化学和光催化性质的影响。光催化活性的评价显示,材料合成中使用的半导体改性和前体是影响物理化学的重要因素,从而获得所得材料的光催化性质。在本作工作中分析的水样从一个高度污染的河流中取出,发现光催化处理的有效性在反应时间增加时增加,废水样本和孤立的大肠杆菌菌株遵循下一个订单Pt / TiO2&& ZnO。还观察到,治疗后,生物化学和化学需求氧气和浊度显着降低,从而表明光催化是一种非选择性技术,可以导致恢复含有不同污染物的废水。

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