Seawater desalination by reverse osmosis: current development and future challenges in membrane fabrication – a review

Seawater reverse osmosis (SWRO) is the key technology driving an energy-efficient and cost-effective desalination process. At the center of this technology are the thin film composite (TFC) membranes, which not only promise a stable operation but also high separation performances. The objective of t...

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Main Authors: Lim, Yu Jie, Goh, Kunli, Kurihara, Masaru, Wang, Rong
Other Authors: Interdisciplinary Graduate School (IGS)
Format: Article
Language:English
Published: 2022
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Online Access:https://hdl.handle.net/10356/161890
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Institution: Nanyang Technological University
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spelling sg-ntu-dr.10356-1618902022-09-23T06:02:11Z Seawater desalination by reverse osmosis: current development and future challenges in membrane fabrication – a review Lim, Yu Jie Goh, Kunli Kurihara, Masaru Wang, Rong Interdisciplinary Graduate School (IGS) Nanyang Environment and Water Research Institute Singapore Membrane Technology Centre Engineering::Environmental engineering Permeability-Selectivity Tradeoff Upper-Bound Relationship Seawater reverse osmosis (SWRO) is the key technology driving an energy-efficient and cost-effective desalination process. At the center of this technology are the thin film composite (TFC) membranes, which not only promise a stable operation but also high separation performances. The objective of this review is to consolidate recent advances in SWRO membranes from the standpoint of membrane materials, fabrication methodologies and applications. First, the thermodynamic limit and energy consumption of SWRO desalination are reviewed, before we discuss the current status of SWRO membranes, highlighting the four main challenges to date – permselective tradeoff, relatively low single-pass boron rejection, membrane fouling and poor chlorine resistance. Thereafter, a comprehensive review of the membrane development is presented. We examine findings reported in research papers and patents, and various methods to achieve SWRO membranes of higher permselectivity, boron rejection, and chlorine resistance as well as lower fouling propensity. Key insights from the membrane industry are also furnished. Then, we put together an outlook, featuring our perspectives on SWRO membrane development. Empirical data in this review are collated into an upper-bound relationship, which is tailored specifically for SWRO membranes and expected to provide benchmarking for future SWRO membrane development. Since the traits of SWRO membranes are unique from those of brackish water RO (BWRO) membranes, we also distinguish the methods used for SWRO membrane fabrication to help zero in on the correct strategies, and provide insights for advancing new membrane designs. Overall, this review sums up the current state-of-the-art SWRO membranes, looking at the array of fabrication methods used thus far, and putting into perspective critical strategies to realize the next-generation TFC membranes that can address the future demands of SWRO and deliver a more competitive desalination process. Economic Development Board (EDB) Nanyang Technological University National Research Foundation (NRF) This research grant was supported by the Singapore National Research Foundation under its Urban Solutions & Sustainability and administered by PUB, Singapore’s National Water Agency (grant number: CRP Project PUB-1801-001). The Singapore Membrane Technology Center, Nanyang Environment and Water Research Institute, Nanyang Technological University is supported by the Economic Development Board of Singapore. 2022-09-23T06:02:11Z 2022-09-23T06:02:11Z 2021 Journal Article Lim, Y. J., Goh, K., Kurihara, M. & Wang, R. (2021). Seawater desalination by reverse osmosis: current development and future challenges in membrane fabrication – a review. Journal of Membrane Science, 629, 119292-. https://dx.doi.org/10.1016/j.memsci.2021.119292 0376-7388 https://hdl.handle.net/10356/161890 10.1016/j.memsci.2021.119292 2-s2.0-85103737888 629 119292 en PUB-1801-001 Journal of Membrane Science © 2021 Elsevier B.V. All rights reserved.
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Environmental engineering
Permeability-Selectivity Tradeoff
Upper-Bound Relationship
spellingShingle Engineering::Environmental engineering
Permeability-Selectivity Tradeoff
Upper-Bound Relationship
Lim, Yu Jie
Goh, Kunli
Kurihara, Masaru
Wang, Rong
Seawater desalination by reverse osmosis: current development and future challenges in membrane fabrication – a review
description Seawater reverse osmosis (SWRO) is the key technology driving an energy-efficient and cost-effective desalination process. At the center of this technology are the thin film composite (TFC) membranes, which not only promise a stable operation but also high separation performances. The objective of this review is to consolidate recent advances in SWRO membranes from the standpoint of membrane materials, fabrication methodologies and applications. First, the thermodynamic limit and energy consumption of SWRO desalination are reviewed, before we discuss the current status of SWRO membranes, highlighting the four main challenges to date – permselective tradeoff, relatively low single-pass boron rejection, membrane fouling and poor chlorine resistance. Thereafter, a comprehensive review of the membrane development is presented. We examine findings reported in research papers and patents, and various methods to achieve SWRO membranes of higher permselectivity, boron rejection, and chlorine resistance as well as lower fouling propensity. Key insights from the membrane industry are also furnished. Then, we put together an outlook, featuring our perspectives on SWRO membrane development. Empirical data in this review are collated into an upper-bound relationship, which is tailored specifically for SWRO membranes and expected to provide benchmarking for future SWRO membrane development. Since the traits of SWRO membranes are unique from those of brackish water RO (BWRO) membranes, we also distinguish the methods used for SWRO membrane fabrication to help zero in on the correct strategies, and provide insights for advancing new membrane designs. Overall, this review sums up the current state-of-the-art SWRO membranes, looking at the array of fabrication methods used thus far, and putting into perspective critical strategies to realize the next-generation TFC membranes that can address the future demands of SWRO and deliver a more competitive desalination process.
author2 Interdisciplinary Graduate School (IGS)
author_facet Interdisciplinary Graduate School (IGS)
Lim, Yu Jie
Goh, Kunli
Kurihara, Masaru
Wang, Rong
format Article
author Lim, Yu Jie
Goh, Kunli
Kurihara, Masaru
Wang, Rong
author_sort Lim, Yu Jie
title Seawater desalination by reverse osmosis: current development and future challenges in membrane fabrication – a review
title_short Seawater desalination by reverse osmosis: current development and future challenges in membrane fabrication – a review
title_full Seawater desalination by reverse osmosis: current development and future challenges in membrane fabrication – a review
title_fullStr Seawater desalination by reverse osmosis: current development and future challenges in membrane fabrication – a review
title_full_unstemmed Seawater desalination by reverse osmosis: current development and future challenges in membrane fabrication – a review
title_sort seawater desalination by reverse osmosis: current development and future challenges in membrane fabrication – a review
publishDate 2022
url https://hdl.handle.net/10356/161890
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