Drivers, challenges, and emerging technologies for desalination of high-salinity brines: A critical review

被引:129
|
作者
Shah, Kinnari M. [1 ]
Billinge, Ian H. [1 ]
Chen, Xi [1 ]
Fan, Hanqing [1 ]
Huang, Yuxuan [1 ]
Winton, Robert K. [1 ]
Yip, Ngai Yin [1 ,2 ]
机构
[1] Columbia Univ, Dept Earth & Environm Engn, New York, NY 10027 USA
[2] Columbia Univ, Columbia Water Ctr, New York, NY 10027 USA
基金
美国国家科学基金会;
关键词
Desalination; Hypersaline brines; Zero liquid discharge; Emerging technologies; Fit-for-purpose water reuse; Energy consumption; Scaling; HUMIDIFICATION-DEHUMIDIFICATION DESALINATION; EUTECTIC FREEZE CRYSTALLIZATION; CONTACT MEMBRANE DISTILLATION; GAS PRODUCED WATER; ZERO LIQUID DISCHARGE; REVERSE-OSMOSIS DESALINATION; HYDRATE BASED DESALINATION; OF-THE-ART; MULTISTAGE FLASH DESALINATION; PRESSURE-RETARDED OSMOSIS;
D O I
10.1016/j.desal.2022.115827
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Hypersaline brines are of growing environmental concern. While high-salinity desalination and zero liquid discharge (ZLD) are increasingly attractive treatment options, the high salt and scalant contents pose considerable technical difficulties to existing desalination techniques. In this review, we introduce sources of hyper saline brines, examine factors driving high-salinity desalination, and present the thermodynamic minimum energy of hypersaline desalination and ZLD, highlighting effects of mineral precipitation and imperfect salt rejection. We then critically examine prospects and challenges of 10 alternative technologies for hypersaline desalination: electrodialysis, osmotically-mediated reverse osmosis, forward osmosis, membrane distillation, humidification-dehumidification, solvent extraction desalination, supercritical water desalination, freeze desalination, clathrate hydrate desalination, and solar thermal desalination. Although electrodialysis and osmotically-mediated reverse osmosis show promise of having competitive energy efficiencies, these membrane based techniques are still constrained by concentrate salinity limits. Recovery and reuse of heat will be vital for competitiveness of thermally-driven approaches. Technologies that intrinsically precipitate salts in bulk solution, namely solvent extraction desalination, supercritical water desalination, and humidification-dehumidification, can advantageously avoid mineral scaling. Due to the highly heterogeneous nature of hypersaline streams and the wide array of end-use goals, the high-salinity desalination market will ultimately be best served by a range of different technologies with distinctive capabilities.
引用
收藏
页数:26
相关论文
共 50 条
  • [41] A Current-Adaptive Evaporator with Optimized Energy Utilization for Self-Cleaning High-Salinity Desalination
    Zhang, Ruicheng
    Zhang, Wenqing
    Ren, Haipeng
    Liu, Keshuai
    Yang, Shichang
    Chen, Bin
    Li, Wei
    Ge, Can
    Xu, Duo
    Xu, Weilin
    ADVANCED FUNCTIONAL MATERIALS, 2024,
  • [42] Unlocking High-Salinity Desalination with Cascading Osmotically Mediated Reverse Osmosis: Energy and Operating Pressure Analysis
    Chen, Xi
    Yip, Ngai Yin
    ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2018, 52 (04) : 2242 - 2250
  • [43] Opportunities for disruptive digital technologies to ensure circularity in supply Chain: A critical review of drivers, barriers and challenges
    Agrawal, Rohit
    Yadav, Vinay Surendra
    Majumdar, Abhijit
    Kumar, Anil
    Luthra, Sunil
    Garza-Reyes, Jose Arturo
    COMPUTERS & INDUSTRIAL ENGINEERING, 2023, 178
  • [44] Metals Recovery from Seawater Desalination Brines: Technologies, Opportunities, and Challenges (vol 9, pg 7704, 2021)
    Kumar, Amit
    Naidu, Gayathri
    Fukuda, Hiroki
    Du, Fengmin
    Vigneswaran, Saravanamuth
    Drioli, Enrico
    Lienhard, John H., V
    ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 2021, 11 (01): : 464 - 465
  • [45] Membrane distillation localized heating in high-salinity wastewater treatment: Mechanisms, performance and challenges
    Wan, Yuxuan
    Yu, Huarong
    Li, Ruixiang
    Chang, Haiqing
    Qu, Dan
    Qu, Fangshu
    RESOURCES CONSERVATION AND RECYCLING, 2025, 215
  • [46] Potential and challenges of desalination technologies for arid and semiarid regions: A comprehensive review
    Soni, Simran
    Jindal, Manoj Kumar
    Tewari, Pradip Kumar
    Anand, Vikky
    DESALINATION, 2025, 600
  • [47] A Critical Review of Emerging Technologies for Electric and Hybrid Vehicles
    Lee, Christopher H. T.
    Hua, Wei
    Long, Teng
    Jiang, Chaoqiang
    Iyer, Lakshmi Varaha
    IEEE OPEN JOURNAL OF VEHICULAR TECHNOLOGY, 2021, 2 : 471 - 485
  • [48] A critical review of conventional and emerging wastewater treatment technologies
    Sangamnere, Ravindra
    Misra, Tavishi
    Bherwani, Hemant
    Kapley, Atya
    Kumar, Rakesh
    SUSTAINABLE WATER RESOURCES MANAGEMENT, 2023, 9 (02)
  • [49] Chitosan/graphene oxide mixed matrix membrane with enhanced water permeability for high-salinity water desalination by pervaporation
    Qian, Xiaowei
    Li, Na
    Wang, Qinzhuo
    Ji, Songcan
    DESALINATION, 2018, 438 : 83 - 96
  • [50] A critical review of conventional and emerging wastewater treatment technologies
    Ravindra Sangamnere
    Tavishi Misra
    Hemant Bherwani
    Atya Kapley
    Rakesh Kumar
    Sustainable Water Resources Management, 2023, 9