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首页> 外文期刊>The Science of the Total Environment >Constructed wetlands combined with disinfection systems for removal of urban wastewater contaminants
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Constructed wetlands combined with disinfection systems for removal of urban wastewater contaminants

机译:人工湿地与消毒系统相结合,可去除城市废水中的污染物

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The removal efficiency of an urban wastewater treatment plant (WWTP) to obtain an effluent suitable for agriculture reuse was evaluated in a one-year period, taking into account the Italian wastewater limits and the recent European proposal for the minimum requirements water quality for agricultural irrigation. The secondary effluent of WWTP was treated by three full-scale horizontal sub-surface flow (H-SSF) constructed wetlands (CWs), working in parallel, planted with different macrophytes species, and combined with a UV device and a lagooning system running in series.The H-SSF CW system effectively reduced physico-chemical pollutants and its efficiency was steady over the investigation period, while, Escherichia coli densities always exceed the Italian limits required for wastewater reuse in agriculture. The UV system significantly reduced the microbiological indicators, eliminating E. coli, in compliance with the Italian regulation, and somatic coliphages, although a variable efficacy against total coliforms and enterococci, especially in winter season, was achieved. Although the lagooning unit provides a high removal of the main microbial groups, it did not reduce physico-chemical parameters. Even if the overall performance target, for the whole treatment chain, met the recent log(10) reduction (= 5.0), required by the European Commission, the persistence of enterococci, especially in winter season, poses a matter of concern for public health, for the potential risk to serve as a genetic reservoir of transferable antibiotic-resistance. (C) 2018 Elsevier B.V. All rights reserved.
机译:在一年的时间内,评估了城市废水处理厂(WWTP)去除废水的效率,以得到适合于农业再利用的废水,同时考虑了意大利的废水限量以及最近欧洲提出的农业灌溉最低水质要求的提议。污水处理厂的二级污水经三个全尺寸水平地下流(H-SSF)人工湿地(CW)处理,并行工作,种植了不同的大型植物,并与紫外线装置和泻湖系统组合运行。 H-SSF CW系统有效减少了物理化学污染物,并且在调查期间效率一直稳定,而大肠杆菌的密度始终超过了农业废水回用所需的意大利限值。紫外线系统显着降低了微生物指标,符合意大利法规,消除了大肠杆菌和体型噬菌体,尽管对总大肠菌群和肠球菌的疗效有所不同,尤其是在冬季。尽管泻湖单元可以去除大部分主要微生物,但并未降低其理化参数。即使整个治疗链的总体绩效目标达到了欧盟委员会最近要求的log(10)降低(> = 5.0),肠球菌的持久性,尤其是在冬季,仍然引起公众关注健康,因为它具有潜在的风险,可以作为抗药性转移的遗传资源。 (C)2018 Elsevier B.V.保留所有权利。

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