Developmental Progress of Electrodialysis Technologies and Membrane Materials for Extraction of Lithium from Salt Lake Brines

被引:29
|
作者
Ying, Jiadi [1 ,2 ]
Lin, Yuqing [2 ]
Zhang, Yiren [2 ]
Yu, Jianguo [2 ]
机构
[1] Shaoxing Univ, Inst New Energy, Sch Chem & Chem Engn, Shaoxing 312000, Zhejiang, Peoples R China
[2] East China Univ Sci & Technol, Natl Engn Res Ctr Comprehens Utilizat Salt Lake Re, Sch Resources & Environm Engn, Shanghai 200237, Peoples R China
来源
ACS ES&T WATER | 2023年 / 3卷 / 07期
基金
中国国家自然科学基金;
关键词
CATION-EXCHANGE MEMBRANES; POLY(ETHER ETHER KETONE); METHYL ISOBUTYL KETONE; TRIBUTYL-PHOSPHATE; RECOVERING LITHIUM; TRANSPORT-PROPERTIES; SELECTIVE MEMBRANES; POLYELECTROLYTE MULTILAYERS; NANOFILTRATION MEMBRANE; SURFACE MODIFICATION;
D O I
10.1021/acsestwater.3c00013
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Salt lake brines have become the main source of lithium owing to their abundant reserves and low extraction costs. The low absolute concentration of Li+ and the complexity of accompanying ions in the brines are crucial issues, thereby inspiring the development of a variety of lithium extraction technologies. Among them, electrodialysis (ED) enables acceptable separation performance, reduced energy consumption, and near-zero pollution toward salt lake brines with a high Mg2+/Li+ mass ratio. Most recently, the rapid advancement of integrated ED technologies and emerging strategies for membrane material fabrications are conducive to facilitating the implementation of this technology. The newly proposed processes can achieve higher energy utilization and enhance the concentration of lithium salt products. For membrane materials, the superior permselectivity between lithium and magnesium is still the current pursuit. The key metrics for developing membranes involve tuning the materials' hydrophilicity, pore size, and charge. Among them, due to the rise of lithium-specific recognition materials, it is believed that coupling them with ED technology to achieve efficient and precise extraction of lithium will be the future development direction.
引用
收藏
页码:1720 / 1739
页数:20
相关论文
共 50 条
  • [21] Reviewing Recent Advances in Nanofiltration Membranes for Efficient Lithium and Magnesium Separation from Salt Lake Brines
    Yu, Le-yang
    Gao, Bin-jie
    Lv, Yan-feng
    Peng, Guo-feng
    Zhao, Hui
    JORDAN JOURNAL OF CHEMISTRY, 2024, 19 (01) : 1 - 18
  • [22] Extraction of lithium from salt lake brine containing boron using multistage centrifuge extractors
    Shi, Dong
    Zhang, Licheng
    Peng, Xiaowu
    Li, Lijuan
    Song, Fugen
    Nie, Feng
    Ji, Lianmin
    Zhang, Yuze
    DESALINATION, 2018, 441 : 44 - 51
  • [23] Environmental impact of direct lithium extraction from brines
    Vera, Maria L.
    Torres, Walter R.
    Galli, Claudia I.
    Chagnes, Alexandre
    Flexer, Victoria
    NATURE REVIEWS EARTH & ENVIRONMENT, 2023, 4 (03) : 149 - 165
  • [24] Lithium extraction from low-quality brines
    Yang, Sixie
    Wang, Yigang
    Pan, Hui
    He, Ping
    Zhou, Haoshen
    NATURE, 2024, 636 (8042) : 309 - 321
  • [25] Recovery of lithium resources from salt lake brines using a novel low dissolution loss extractant of DEHEHP with FeCl3
    Li, Hemin
    Deng, Yuefeng
    Chen, Ji
    SEPARATION AND PURIFICATION TECHNOLOGY, 2024, 341
  • [26] Preliminary study on recovering lithium from high Mg2+/Li+ ratio brines by electrodialysis
    Ji, Zhi-yong
    Chen, Qing-bai
    Yuan, Jun-sheng
    Liu, Jie
    Zhao, Ying-ying
    Feng, Wen-xian
    SEPARATION AND PURIFICATION TECHNOLOGY, 2017, 172 : 168 - 177
  • [27] Extraction of Lithium from Salt Lake Brine with Triisobutyl Phosphate in Ionic Liquid and Kerosene
    Gao Daolin
    Yu Xiaoping
    Guo Yafei
    Wang Shiqiang
    Liu Mingming
    Deng Tianlong
    Chen Yuwei
    Nelson, Belzile
    CHEMICAL RESEARCH IN CHINESE UNIVERSITIES, 2015, 31 (04) : 621 - 626
  • [28] A review of the nanofiltration membrane for magnesium and lithium separation from salt-lake brine
    Zhang, Lei
    Hu, Mengyang
    He, Benqiao
    Pei, Hongchang
    Li, Xianhui
    Matsuyama, Hideto
    SEPARATION AND PURIFICATION TECHNOLOGY, 2025, 354
  • [29] Review of recent progress on lithium recovery and recycling from primary and secondary sources with membrane-based technologies
    Butylskii, D. Yu.
    Troitskiy, V. A.
    Smirnova, N. V.
    Pismenskaya, N. D.
    Wang, Y.
    Jiang, C.
    Xu, T.
    Nikonenko, V. V.
    DESALINATION, 2024, 586
  • [30] Extraction of lithium from salt lake brine containing borate anion and high concentration of magnesium
    Xiang, Wei
    Liang, Shengke
    Zhou, Zhiyong
    Qin, Wei
    Fei, Weiyang
    HYDROMETALLURGY, 2016, 166 : 9 - 15