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正向渗透在海水淡化和废水再利用中的应用。

Forward osmosis niches in seawater desalination and wastewater reuse.

机构信息

King Abdullah University of Science and Technology, Water Desalination and Reuse Center, Thuwal, Saudi Arabia; Delft University of Technology, Faculty of Applied Sciences, Department of Biotechnology, Delft, The Netherlands.

King Abdullah University of Science and Technology, Water Desalination and Reuse Center, Thuwal, Saudi Arabia.

出版信息

Water Res. 2014 Dec 1;66:122-139. doi: 10.1016/j.watres.2014.08.021. Epub 2014 Aug 27.

Abstract

This review focuses on the present status of forward osmosis (FO) niches in two main areas: seawater desalination and wastewater reuse. Specific applications for desalination and impaired-quality water treatment and reuse are described, as well as the benefits, advantages, challenges, costs and knowledge gaps on FO hybrid systems are discussed. FO can play a role as a bridge to integrate upstream and downstream water treatment processes, to reduce the energy consumption of the entire desalination or water recovery and reuse processes, thus achieving a sustainable solution for the water-energy nexus. FO hybrid membrane systems showed to have advantages over traditional membrane process like high pressure reverse osmosis and nanofiltration for desalination and wastewater treatment: (i) chemical storage and feed water systems may be reduced for capital, operational and maintenance cost, (ii) water quality is improved, (iii) reduced process piping costs, (iv) more flexible treatment units, and (v) higher overall sustainability of the desalination and wastewater treatment process. Nevertheless, major challenges make FO systems not yet a commercially viable technology, the most critical being the development of a high flux membrane, capable of maintaining an elevated salt rejection and a reduced internal concentration polarization effect, and the availability of appropriate draw solutions (cost effective and non-toxic), which can be recirculated via an efficient recovery process. This review article highlights the features of hybrid FO systems and specifically provides the state-of-the-art applications in the water industry in a novel classification and based on the latest developments toward scaling up these systems.

摘要

这篇综述主要聚焦于正向渗透(FO)在两个主要领域的现状:海水淡化和废水再利用。描述了海水淡化和处理受损水质及再利用的具体应用,讨论了 FO 混合系统的优点、挑战、成本和知识差距。FO 可以作为一种桥梁,将上游和下游的水处理过程集成在一起,从而减少整个脱盐或水回收和再利用过程的能源消耗,为水-能源纽带提供可持续的解决方案。FO 混合膜系统在海水淡化和废水处理方面优于传统的膜处理工艺,如高压反渗透和纳滤:(i)减少化学储存和进料水系统的资本、运营和维护成本,(ii)提高水质,(iii)降低工艺管道成本,(iv)更灵活的处理单元,以及(v)提高脱盐和废水处理过程的整体可持续性。然而,FO 系统尚未成为一种商业可行的技术,主要挑战是开发高通量膜,能够维持较高的盐截留率和较低的内部浓度极化效应,以及提供合适的汲取液(经济有效且无毒),并通过高效的回收过程进行再循环。本文综述了混合 FO 系统的特点,并根据最新的发展情况,对水工业中的应用进行了新颖的分类和阐述。

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