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Performance of secondary wastewater treatment methods for the removal of contaminants of emerging concern implicated in crop uptake and antibiotic resistance spread: A review

机译:二次废水处理方法用于去除与作物吸收和抗生素抗性有关的新出现污染物的性能:综述

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Contaminants of emerging concern (CEC) discharged in effluents of wastewater treatment plants (WWTPs), not specifically designed for their removal, pose serious hazards to human health and ecosystems. Their impact is of particular relevance to wastewater disposal and re-use in agricultural settings due to CEC uptake and accumulation in food crops and consequent diffusion into the food-chain. This is the reason why the chemical CEC discussed in this review have been selected considering, besides recalcitrance, frequency of detection and entity of potential hazards, their relevance for crop uptake. Antibiotic-resistant bacteria (ARB) and antibiotic resistance genes (ARGs) have been included as microbial CEC because of the potential of secondary wastewater treatment to offer conditions favourable to the survival and proliferation of ARB, and dissemination of ARGs. Given the adverse effects of chemical and microbial CEC, their removal is being considered as an additional design criterion, which highlights the necessity of upgrading conventional WWTPs with more effective technologies. In this review, the performance of currently applied biological treatment methods for secondary treatment is analysed. To this end, technological solutions including conventional activated sludge (CAS), membrane bioreactors (MBRs), moving bed biofilm reactors (MBBRs), and nature-based solutions such as constructed wetlands (CWs) are compared for the achievable removal efficiencies of the selected CEC and their potential of acting as reservoirs of ARB&ARGs. With the aim of giving a picture of real systems, this review focuses on data from full-scale and pilot-scale plants treating real urban wastewater. To achieve an integrated assessment, technologies are compared considering also other relevant evaluation parameters such as investment and management costs, complexity of layout and management, present scale of application and need of a post-treatment. Comparison results allow the definition of design and operation strategies for the implementation of CEC removal in WWTPs, when agricultural reuse of effluents is planned. (C) 2018 Elsevier B.V. All rights reserved.
机译:废水处理厂(WWTP)废水中排放的新兴关注污染物(CEC)并非专门为去除而设计,对人体健康和生态系统构成了严重危害。由于CEC在粮食作物中的吸收和积累以及随后扩散到食物链中,它们的影响与农业环境中的废水处理和再利用特别相关。这就是为什么选择本综述中讨论的化学CEC的原因,除了顽固性,检测频率和潜在危害的实体之外,还考虑其与作物吸收的相关性。微生物CEC已包括抗药性细菌(ARB)和抗药性基因(ARG),因为二级废水处理有可能提供有利于ARB生存和增殖以及ARG传播的条件。考虑到化学和微生物CEC的不利影响,考虑将其去除是一项额外的设计标准,这凸显了用更有效的技术升级常规污水处理厂的必要性。在这篇综述中,分析了当前应用的生物处理方法用于二级治疗的性能。为此,比较了包括常规活性污泥(CAS),膜生物反应器(MBR),移动床生物膜反应器(MBBR)和基于自然的解决方案(例如人工湿地(CW))在内的技术解决方案对选定解决方案可实现的去除效率CEC及其作为ARB&ARGs库的潜力。为了提供真实系统的图片,本综述着重于处理实际城市废水的大型和中试规模工厂的数据。为了实现综合评估,在比较技术时还要考虑其他相关的评估参数,例如投资和管理成本,布局和管理的复杂性,当前的应用规模以及后处理的需求。当计划对废水进行农业再利用时,比较结果可以为在污水处理厂中实施CEC去除定义设计和操作策略。 (C)2018 Elsevier B.V.保留所有权利。

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