Selective sorbents for recovery of lithium ions by hybrid capacitive deionization

被引:31
|
作者
Siekierka, Anna [1 ]
Bryjak, Marek [1 ]
机构
[1] Wroclaw Univ Sci & Technol, Dept Proc Engn & Technol Polymer & Carbon Mat, Wyb St Wyspianskiego 27, PL-50370 Wroclaw, Poland
关键词
Lithium-manganese-titanium spinels; Hybrid capacitive deionization; Geothermal water; Lithium selectivity; Lithium recovery; HYDROTHERMAL SYNTHESIS; GEOTHERMAL WATER; MANGANESE OXIDE; LI-7; ELECTRODES; SEPARATION; BATTERIES; EXTRACTION; METAL; ELECTRODIALYSIS;
D O I
10.1016/j.desal.2021.115324
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Lithium is a critical element due to its use in lithium-ion batteries, required for electric vehicles and stationary energy storage devices. Various approaches have been applied to extract it from the available resources. One of the developed lithium-capturing methods is hybrid capacitive deionization (HCDI), where the cathode is made of spinel-type material. This paper presents our study on the most effective Li, Mn, and Ti spinel-type materials, for which we analysed their structure, efficiency for lithium capturing, and energy consumption in the HCDI system. We found spinel with Li:Mn:Ti ratio of 1:3:0.15 to be the best material for lithium recovery. The natural geothermal water was applied for testing lithium recovery by HCDI equipped with the investigated material. By applying the asymmetrical electric mode, the lithium capturing efficiency reached near 80% with 8 min. The separation factors for other cations such as sodium, potassium, calcium, magnesium, and strontium were over three-times smaller.
引用
收藏
页数:13
相关论文
共 50 条
  • [1] Fabricating a Flow-Through Hybrid Capacitive Deionization Cell for Selective Recovery of Lithium Ions
    Xie, Ning
    Li, Yaqian
    Yuan, Yijin
    Gong, Jingming
    Hu, Xianluo
    ACS APPLIED ENERGY MATERIALS, 2021, 4 (11) : 13036 - 13043
  • [2] Lithium iron manganese oxide as an adsorbent for capturing lithium ions in hybrid capacitive deionization with different electrical modes
    Siekierka, Anna
    SEPARATION AND PURIFICATION TECHNOLOGY, 2020, 236
  • [3] Selective membrane capacitive deionization for superior lithium recovery
    Si, Jiangju
    Xue, Chenrui
    Li, Shun
    Yang, Linchao
    Li, Weiwei
    Yang, Jie
    Lan, Jihong
    Sun, Ningbo
    DESALINATION, 2024, 572
  • [4] Lithium capturing from geothermal water by hybrid capacitive deionization
    Siekierka, Anna
    Tomaszewska, Barbara
    Bryjak, Marek
    DESALINATION, 2018, 436 : 8 - 14
  • [5] Lithium and magnesium separation from brines by hybrid capacitive deionization
    Siekierka, Anna
    DESALINATION, 2022, 527
  • [6] Recovery of lithium by pseudocapacitive electrodes in capacitive deionization
    Faheem, Muhammad
    Alam, Rahat
    Alhajaj, Ahmed
    Zou, Linda
    ELECTROCHIMICA ACTA, 2024, 489
  • [7] Selective recovery of lithium ions from acidic medium based on capacitive deionization-enhanced imprinted polymers
    Han, Ning
    Gao, Ruize
    Peng, Haisen
    He, Qiongqiong
    Miao, Zhenyong
    Wan, Keji
    JOURNAL OF CLEANER PRODUCTION, 2022, 373
  • [8] Selective lithium recovery from aqueous solution using a modified membrane capacitive deionization system
    Lee, Dong-Hee
    Ryu, Taegong
    Shin, Junho
    Ryu, Jae Chun
    Chung, Kang-Sup
    Kim, Young Ho
    HYDROMETALLURGY, 2017, 173 : 283 - 288
  • [9] Four-step constant voltage operation of hybrid capacitive deionization with composite electrodes for bifunctional deionization and lithium recovery
    Bae, Sungho
    Jeon, Sung-il
    Lee, Woonghee
    Kim, Yerin
    Cho, Kangwoo
    DESALINATION, 2023, 565
  • [10] Novel anion exchange membrane for concentration of lithium salt in hybrid capacitive deionization
    Siekierka, Anna
    Bryjak, Marek
    DESALINATION, 2019, 452 : 279 - 289