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一种创新的光反应器,FluHelik,以促进 UVC/HO 光化学反应:城市废水的三级处理。

An innovative photoreactor, FluHelik, to promote UVC/HO photochemical reactions: Tertiary treatment of an urban wastewater.

机构信息

Laboratory of Separation and Reaction Engineering-Laboratory of Catalysis and Materials (LSRE-LCM), Department of Chemical Engineering, Faculty of Engineering, University of Porto, Rua Dr. Roberto Frias, 4200-465 Porto, Portugal; CNPq - National Council for Scientific and Technological Development, Brazil.

Laboratory of Separation and Reaction Engineering-Laboratory of Catalysis and Materials (LSRE-LCM), Department of Chemical Engineering, Faculty of Engineering, University of Porto, Rua Dr. Roberto Frias, 4200-465 Porto, Portugal.

出版信息

Sci Total Environ. 2019 Jun 1;667:197-207. doi: 10.1016/j.scitotenv.2019.02.335. Epub 2019 Feb 23.

Abstract

An innovative photoreactor, FluHelik, was used to promote the degradation of contaminants of emerging concern (CECs) by a photochemical UVC/HO process. First, the system was optimized for the oxidation of a model antibiotic, oxytetracycline (OTC), using both ultrapure water (UPW) and a real urban wastewater (UWW) (collected after secondary treatment) as solution matrices. Following, the process was evaluated for the treatment of a UWW spiked with a mixture of OTC and 10 different pharmaceuticals established by the Swiss legislation at residual concentrations (∑CECs <660 μg L). The performance of the FluHelik reactor was analyzed both at lab and pre-pilot scale in multiple and single pass flow modes. The efficiency of the FluHelik photoreactor, at lab-scale, was evaluated at different operational conditions (HO concentration, UVC lamp power (4, 6 and 11 W) and flow rate) and further compared with a conventional Jets photoreactor. Both photoreactors exhibited similar OTC removal efficiencies at the best conditions; however, the FluHelik reactor showed to be more efficient (1.3 times) in terms of mineralization when compared with the Jets reactor. Additionally, the efficiency of the UVC/HO photochemical system using the FluHelik photoreactor in reducing the toxicity of the real effluent containing 11 pharmaceuticals was evaluated through zebrafish (Danio rerio) embryo toxicity bioassays. FluHelik scale-up from laboratory to pre-pilot to promote UVC/HO photochemical process proved to be feasible.

摘要

一种创新的光反应器 FluHelik 被用于通过光化学 UVC/HO 工艺促进新兴关注污染物(CECs)的降解。首先,该系统使用超纯水(UPW)和实际城市废水(UWW)(经过二级处理后收集)作为溶液基质,对模型抗生素土霉素(OTC)的氧化进行了优化。随后,该工艺用于处理 UWW 中添加了瑞士法规规定的残留浓度(∑CECs<660μg/L)的 OTC 和 10 种不同药物的混合物。在多次和单次流动模式下,在实验室和中试规模下分析了 FluHelik 反应器的性能。在不同的操作条件(HO 浓度、UVC 灯功率(4、6 和 11W)和流速)下,在实验室规模下评估了 FluHelik 光反应器的效率,并与传统的 Jets 光反应器进行了比较。在最佳条件下,两种光反应器对 OTC 的去除效率相似;然而,与 Jets 反应器相比,FluHelik 反应器在矿化方面的效率更高(提高 1.3 倍)。此外,还通过斑马鱼(Danio rerio)胚胎毒性生物测定评估了使用 FluHelik 光反应器的 UVC/HO 光化学系统在降低含有 11 种药物的实际废水毒性方面的效率。从实验室到中试规模的 FluHelik 放大,以促进 UVC/HO 光化学工艺的进行,被证明是可行的。

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