Brackish water desalination using reverse osmosis and capacitive deionization at the water-energy nexus

被引:172
作者
Pan, Shu-Yuan [1 ]
Haddad, Andrew Z. [2 ]
Kumar, Arkadeep [2 ]
Wang, Sheng-Wei [3 ]
机构
[1] Natl Taiwan Univ, Dept Bioenvironm Syst Engn, 1,Sect 4,Roosevelt Rd, Taipei 10617, Taiwan
[2] Lawrence Berkeley Natl Lab, Energy Technol Area, Berkeley, CA 94720 USA
[3] Tamkang Univ, Dept Water Resources & Environm Engn, New Taipei 251301, Taiwan
关键词
Electrokinetics; Energy consumption; Water productivity; Brine utilization; Carbon footprint; Hybridization; POWERED MEMBRANE TECHNOLOGY; LIFE-CYCLE ASSESSMENT; GRAPHENE OXIDE MEMBRANES; OF-THE-ART; SEAWATER DESALINATION; WASTE-WATER; PERFORMANCE ANALYSIS; CARBON ELECTRODES; GROUNDWATER DESALINATION; ENVIRONMENTAL IMPACTS;
D O I
10.1016/j.watres.2020.116064
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
In this article, we present a critical review of the reported performance of reverse osmosis (RO) and capacitive deionization (CDI) for brackish water (salinity < 5.0 g/L) desalination from the aspects of engineering, energy, economy and environment. We first illustrate the criteria and the key performance indicators to evaluate the performance of brackish water desalination. We then systematically summarize technological information of RO and CDI, focusing on the effect of key parameters on desalination performance, as well as energy-water efficiency, economic costs and environmental impacts (including carbon footprint). We provide in-depth discussion on the interconnectivity between desalination and energy, and the trade-off between kinetics and energetics for RO and CDI as critical factors for comparison. We also critique the results of technical-economic assessment for RO and CDI plants in the context of large-scale deployment, with focus on lifetime-oriented consideration to total costs, balance between energy efficiency and clean water production, and pretreatment/post-treatment requirements. Finally, we illustrate the challenges and opportunities for future brackish water desalination, including hybridization for energy-efficient brackish water desalination, co-removal of specific components in brackish water, and sustainable brine management with innovative utilization. Our study reveals that both RO and CDI should play important roles in water reclamation and resource recovery from brackish water, especially for inland cities or rural regions. (C) 2020 Elsevier Ltd. All rights reserved.
引用
收藏
页数:23
相关论文
共 219 条
[61]   Reverse osmosis desalination: Water sources, technology, and today's challenges [J].
Greenlee, Lauren F. ;
Lawler, Desmond F. ;
Freeman, Benny D. ;
Marrot, Benoit ;
Moulin, Philippe .
WATER RESEARCH, 2009, 43 (09) :2317-2348
[62]   Technoeconomic Analysis of Brackish Water Capacitive Deionization: Navigating Tradeoffs between Performance, Lifetime, and Material Costs [J].
Hand, Steven ;
Guest, Jeremy S. ;
Cusick, Roland D. .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2019, 53 (22) :13353-13363
[63]   Performance metrics for the objective assessment of capacitive deionization systems [J].
Hawks, Steven A. ;
Ramachandran, Ashwin ;
Porada, Slawomir ;
Campbell, Patrick G. ;
Suss, Matthew E. ;
Biesheuvel, P. M. ;
Santiago, Juan G. ;
Stadermann, Michael .
WATER RESEARCH, 2019, 152 :126-137
[64]   Short-Circuited Closed-Cycle Operation of Flow-Electrode CDI for Brackish Water Softening [J].
He, Calvin ;
Ma, Jinxing ;
Zhang, Changyong ;
Song, Jingke ;
Waite, T. David .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2018, 52 (16) :9350-9360
[65]   Energy breakdown in capacitive deionization [J].
Hemmatifar, Ali ;
Palko, James W. ;
Stadermann, Michael ;
Santiago, Juan G. .
WATER RESEARCH, 2016, 104 :303-311
[66]   Two-Dimensional Porous Electrode Model for Capacitive Deionization [J].
Hemmatifar, Ali ;
Stadermann, Michael ;
Santiago, Juan G. .
JOURNAL OF PHYSICAL CHEMISTRY C, 2015, 119 (44) :24681-24694
[67]   State-of-the-art of reverse osmosis desalination pretreatment [J].
Henthome, Lisa ;
Boysen, Buddy .
DESALINATION, 2015, 356 :129-139
[68]   Design of decentralized energy systems for rural electrification in developing countries considering regional disparity [J].
Herran, Diego Silva ;
Nakata, Toshihiko .
APPLIED ENERGY, 2012, 91 (01) :130-145
[69]   How to achieve the optimal performance of capacitive deionization and inverted-capacitive deionization [J].
Hu, Chi-Chang ;
Hsieh, Chi-Feng ;
Chen, Yi-Jing ;
Liu, Ching-Fang .
DESALINATION, 2018, 442 :89-98
[70]   Carbon electrodes for capacitive deionization [J].
Huang, Zheng-Hong ;
Yang, Zhiyu ;
Kang, Feiyu ;
Inagaki, Michio .
JOURNAL OF MATERIALS CHEMISTRY A, 2017, 5 (02) :470-496