Yang Jiaqi, Monnot Mathias, Ercolei Lionel, Moulin Philippe
Laboratoire de Mécanique, Modélisation et Procédés Propres, Equipe Procédés Membranaire (EPM-M2P2-CNRS-UMR 7340), Aix-Marseille Univ., Europôle de l'Arbois, BP 80, Bat. Laennec, Hall C, CEDEX 04, 13545 Aix-en-Provence, France.
Société des Eaux de Marseille Métropole, 25 Rue Edouard Delanglade, CEDEX 06, B.P. 29-13006 Marseille, France.
Membranes (Basel). 2020 Jun 25;10(6):131. doi: 10.3390/membranes10060131.
Wastewater reuse as a sustainable, reliable and energy recovery concept is a promising approach to alleviate worldwide water scarcity. However, the water reuse market needs to be developed with long-term efforts because only less than 4% of the total wastewater worldwide has been treated for water reuse at present. In addition, the reclaimed water should fulfill the criteria of health safety, appearance, environmental acceptance and economic feasibility based on their local water reuse guidelines. Moreover, municipal wastewater as an alternative water resource for non-potable or potable reuse, has been widely treated by various membrane-based treatment processes for reuse applications. By collecting lab-scale and pilot-scale reuse cases as much as possible, this review aims to provide a comprehensive summary of the membrane-based treatment processes, mainly focused on the hydraulic filtration performance, contaminants removal capacity, reuse purpose, fouling resistance potential, resource recovery and energy consumption. The advances and limitations of different membrane-based processes alone or coupled with other possible processes such as disinfection processes and advanced oxidation processes, are also highlighted. Challenges still facing membrane-based technologies for water reuse applications, including institutional barriers, financial allocation and public perception, are stated as areas in need of further research and development.
将废水再利用作为一种可持续、可靠且能实现能源回收的理念,是缓解全球水资源短缺的一种有前景的方法。然而,废水再利用市场需要长期努力来发展,因为目前全球仅有不到4%的废水经过处理用于再利用。此外,再生水应根据当地的水再利用指南满足健康安全、外观、环境可接受性和经济可行性等标准。而且,城市废水作为非饮用水或饮用水再利用的替代水源,已通过各种基于膜的处理工艺广泛处理以用于再利用应用。通过尽可能多地收集实验室规模和中试规模的再利用案例,本综述旨在全面总结基于膜的处理工艺,主要侧重于水力过滤性能、污染物去除能力、再利用目的、抗污染潜力、资源回收和能源消耗。还强调了不同基于膜的工艺单独使用或与其他可能的工艺(如消毒工艺和高级氧化工艺)结合使用的进展和局限性。指出了基于膜的水再利用应用技术仍面临的挑战,包括制度障碍、资金分配和公众认知,这些被视为需要进一步研究和开发的领域。