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Advanced treatment of urban wastewater by UV-C/free chlorine process: Micro-pollutants removal and effect of UV-C radiation on trihalomethanes formation

机译:UV-C /游离氯工艺对城市废水的深度处理:去除微量污染物以及UV-C辐射对三卤代甲烷形成的影响

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The effect of the UV-C/free chlorine (FC) process on the removal of contaminants of emerging concern (CECs) from real urban wastewater as well as the effect of UV-C radiation on the formation of trihalomethanes (THMs) compared to FC process alone was investigated. Unlike of FC process, UV-C/FC was really effective in the degradation of the target CECs (carbamazepine (CBZ), diclofenac, sulfamethoxazole and imidacloprid) in real wastewater (87% degradation of total CECs within 60 min, Q(UVC) =1.33 kJ L-1), being CBZ the most refractory one (49.5%, after 60 min). The UV-C radiation significantly affected the formation of THMs. THMs concentration (mainly chloroform) was lower in IJV-C/FC process after 30 min treatment (<1 mu gL(-1) = limit of quantification (LOQ)) than in FC process in dark (23 mu gL(-1)). Noteworthy, while in FC treated wastewater chloroform concentration increased after treatment, UV-C/FC process resulted in a significant decrease (residual concentrations below the LOQ), even after 24 h and 48 h post-treatment incubation. The formation of radicals due to UV-C/FC process can reduce THMs compared to chlorination process, because part of FC reacts with UV-C radiation to form radicals and it is no longer available to form THMs. These results are encouraging in terms of possible use of UV-C/FC process as advanced treatment of urban wastewater even for possible effluent reuse. (C) 2019 Elsevier Ltd. All rights reserved.
机译:与FC相比,UV-C /游离氯(FC)工艺对从实际城市废水中去除新兴关注污染物(CEC)的影响以及UV-C辐射对三卤甲烷(THMs)形成的影响仅对过程进行了调查。与FC过程不同的是,UV-C / FC在降解实际废水中的目标CEC(卡马西平(CBZ),双氯芬酸,磺胺甲恶唑和吡虫啉)方面非常有效(60分钟内总CEC的降解率为87%,Q(UVC) = 1.33 kJ L-1),是CBZ最难处理的一种(49.5%,60分钟后)。 UV-C辐射显着影响THM的形成。处理30分钟(<1μgL(-1)=定量限(LOQ))后,IJV-C / FC过程中的THMs浓度(主要为氯仿)低于黑暗中FC过程中的THMs浓度(23μgL(-1) )。值得注意的是,尽管经过FC处理的废水处理后氯仿浓度增加,但UV-C / FC过程甚至在处理后孵育24小时和48小时后仍显着降低(残留浓度低于LOQ)。与氯化过程相比,由于UV-C / FC过程而形成的自由基可降低THM,因为部分FC与UV-C辐射反应形成自由基,并且不再可用于形成THM。这些结果令人鼓舞,因为可能将UV-C / FC工艺用于城市废水的先进处理,甚至可能用于废水回用。 (C)2019 Elsevier Ltd.保留所有权利。

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