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用于饮用水回用的聚合物膜及工艺综述。

A review of polymeric membranes and processes for potable water reuse.

作者信息

Warsinger David M, Chakraborty Sudip, Tow Emily W, Plumlee Megan H, Bellona Christopher, Loutatidou Savvina, Karimi Leila, Mikelonis Anne M, Achilli Andrea, Ghassemi Abbas, Padhye Lokesh P, Snyder Shane A, Curcio Stefano, Vecitis Chad, Arafat Hassan A, Lienhard John H

机构信息

Rohsenow Kendall Heat Transfer Laboratory, Department of Mechanical Engineering Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge MA 02139-4307 USA.

Harvard School of Engineering and Applied Sciences, 29 Oxford Street, Cambridge, MA 02138, USA.

出版信息

Prog Polym Sci. 2016 Nov 10;81:209-237. doi: 10.1016/j.progpolymsci.2018.01.004.

Abstract

Conventional water resources in many regions are insufficient to meet the water needs of growing populations, thus reuse is gaining acceptance as a method of water supply augmentation. Recent advancements in membrane technology have allowed for the reclamation of municipal wastewater for the production of drinking water, i.e., potable reuse. Although public perception can be a challenge, potable reuse is often the least energy-intensive method of providing additional drinking water to water stressed regions. A variety of membranes have been developed that can remove water contaminants ranging from particles and pathogens to dissolved organic compounds and salts. Typically, potable reuse treatment plants use polymeric membranes for microfiltration or ultrafiltration in conjunction with reverse osmosis and, in some cases, nanofiltration. Membrane properties, including pore size, wettability, surface charge, roughness, thermal resistance, chemical stability, permeability, thickness and mechanical strength, vary between membranes and applications. Advancements in membrane technology including new membrane materials, coatings, and manufacturing methods, as well as emerging membrane processes such as membrane bioreactors, electrodialysis, and forward osmosis have been developed to improve selectivity, energy consumption, fouling resistance, and/or capital cost. The purpose of this review is to provide a comprehensive summary of the role of polymeric membranes in the treatment of wastewater to potable water quality and highlight recent advancements in separation processes. Beyond membranes themselves, this review covers the background and history of potable reuse, and commonly used potable reuse process chains, pretreatment steps, and advanced oxidation processes. Key trends in membrane technology include novel configurations, materials and fouling prevention techniques. Challenges still facing membrane-based potable reuse applications, including chemical and biological contaminant removal, membrane fouling, and public perception, are highlighted as areas in need of further research and development.

摘要

许多地区的传统水资源不足以满足不断增长的人口的用水需求,因此水的再利用作为一种增加供水的方法正逐渐被接受。膜技术的最新进展使得城市污水得以回收用于生产饮用水,即饮用水再利用。尽管公众认知可能是一个挑战,但饮用水再利用通常是向水资源紧张地区提供额外饮用水的能源消耗最低的方法。已经开发出了多种膜,这些膜可以去除从颗粒、病原体到溶解的有机化合物和盐等各种水污染物。通常,饮用水再利用处理厂使用聚合物膜进行微滤或超滤,并结合反渗透,在某些情况下还结合纳滤。膜的特性,包括孔径、润湿性、表面电荷、粗糙度、耐热性、化学稳定性、渗透性、厚度和机械强度,因膜和应用的不同而有所差异。膜技术的进展包括新的膜材料、涂层和制造方法,以及诸如膜生物反应器、电渗析和正向渗透等新兴膜工艺,这些进展旨在提高选择性、能耗、抗污染能力和/或降低资本成本。本综述的目的是全面总结聚合物膜在将废水处理至饮用水水质方面的作用,并突出分离过程的最新进展。除了膜本身,本综述还涵盖了饮用水再利用的背景和历史,以及常用的饮用水再利用工艺链、预处理步骤和高级氧化工艺。膜技术的关键趋势包括新颖的配置、材料和防污技术。基于膜的饮用水再利用应用仍然面临的挑战,包括化学和生物污染物的去除、膜污染和公众认知,被突出强调为需要进一步研究和开发的领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d94d/6011836/a5ac8a33551f/nihms973550f1a.jpg

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