References
- Y. Zhang, L. Wang, W. Sun, H. Hu, H. Tang, Membrane
technologies for Li+/Mg2+ separation from salt-lake brines and
seawater: a comprehensive review, J. Ind. Eng. Chem., 81 (2020)
7–23.
- X. Zhao, H. Zhang, Y. Yuan, Y. Ren, N. Wang, Ultra-fast and
stable extraction of Li metal from seawater, Chem. Commun.,
56 (2020) 1577–1580.
- X. Zhao, H. Yang, Y. Wang, Z. Sha, Review on the electrochemical
extraction of lithium from seawater/brine, J. Electroanal. Chem.,
850 (2019) 113389, doi: 10.1016/j.jelechem.2019.113389.
- Z. Qiu, M. Wang, Y. Chen, T. Zhang, D. Yang, F. Qiu, Li4Mn5O12
doped cellulose acetate membrane with low Mn loss and
high stability for enhancing lithium extraction from seawater,
Desalination, 506 (2021) 115003, doi: 10.1016/j.desal.2021.115003.
- C. Yu, J. Lu, J. Dai, Z. Dong, X. Lin, W. Xing, Y. Wu, Z. Ma, Bioinspired
fabrication of ester-functionalized imprinted composite
membrane for rapid and high-efficient recovery of lithium
ion from seawater, J. Colloid Interface Sci., 572 (2020) 340–353.
- T. Kato, K. Kawata, Polymer Composition for Capturing
Lithium from Seawater to Use as Lithium Ion battery, PCT
Patent, WO2018-JP36499, 2018.
- S. Katsutai, T. Nakamura, Solid-phase extraction of lithium in
seawater with porous polymer resin impregnated with lithiumion
selective metallohost, Nippon Kaisui Gakkaishi, 71 (2017)
298–299.
- C. Liu, Y. Li, D. Lin, P.-C. Hsu, B. Liu, G. Yan, T. Wu, Y. Cui,
S. Chu, Lithium extraction from seawater through pulsed
electrochemical intercalation, Joule, 4 (2020) 1459–1469.
- G.R. Harvianto, S.H. Kim, C.S. Ju, Solvent extraction and
stripping of lithium ion from aqueous solution and its
application to seawater, Rare Metals, 35 (2016) 948–953.
- Y.S. Kurniawan, R.R. Sathuluri, K. Ohto, W. Iwasaki,
H. Kawakita, S. Morisada, M. Miyazaki, Jumina, A rapid and
efficient lithium-ion recovery from seawater with tripropylmonoacetic
acid calix[4]arene derivative employing dropletbased
microreactor system, Sep. Purif. Technol., 211 (2019)
925–934.
- C. Paredes, E. Rodríguez de San Miguel, Selective lithium
extraction and concentration from diluted alkaline aqueous
media by a polymer inclusion membrane and application
to seawater, Desalination, 487 (2020) 114500, doi: 10.1016/j.desal.2020.114500.
- Z. Li, C. Li, X. Liu, L. Cao, P. Li, R. Wei, X. Li, D. Guo, K.-W. Huang,
Z. Lai, Continuous electrical pumping membrane process for
seawater lithium mining, Science, 14 (2021) 3152–3155.
- S. Yang, F. Zhang, H. Ding, P. He, H. Zhou, Lithium metal
extraction from seawater, Joule, 2 (2018) 1648–1651.
- B.W. Jaskula, Lithium, United States Geological Survey –
Mineral Commodity Summaries, 2021. Available at: https://pubs.usgs.gov/periodicals/mcs2021/mcs2021-lithium.pdf
- T. Dukovcic, J. Graindorge, J. Witley, Developing High Purity
Lithium Chemicals from Lepidolite: AGM Presentation,
2019. Available at: https://www.lepidico.com/wp-content/uploads/2019/11/LPD-191121–2019-AGM-Corporate-
Presentation.pdf
- D.E. Garrett, Handbook of Lithium and Natural Calcium
Chloride – Their Deposits, Processing, Uses and Properties, 1st
ed., Elsevier Academic Press, 2004.
- V. Flexer, B.C. Fernando, C.I. Galli, Lithium recovery from
brines: a vital raw material for green energies with a potential
environmental impact in its mining and processing, Sci. Total
Environ., 639 (2018) 1188–1204.
- A. Alsabbagh, S. Aljarrag, M. Almahsaneh, Lithium enrichment
optimization from Dead Sea end brine by chemical precipitation
technique, Mater. Eng., 170 (2021) 1097038, doi: 10.1016/j.
mineng.2021.107038.
- S.H. Mohr, G.M. Mudd, D. Giurco, Lithium resources and
production: critical assessment and global projections, Minerals,
2 (2012) 65–84.
- T. Johnston, Cost Structures for Lithium Carbonate Production
– A World View, Hatch, 2019.
- L. Yang, Salt Lake Lithium Extraction: Technological Revolution,
Cost Reduction, and Production Expansion Expected, Orient
Securities, 2021.
- D.A. Garcia, Exclusive-Top Mexican Geologist Touts
‘Very Good’ Bacanora Lithium Deposit, Commodities
News, 2021. Available at: https://www.reuters.com/article/us-mexico-mining-lithium-exclusive-idUSKCN2E52FN
- J. Lee, Extraction of lithium from lepidolite using mixed
grinding with sodium sulfide followed by water leaching,
Minerals, 5 (2015) 737–743.
- Karibib, Lepidico, 2021. Available at: https://www.lepidico.
com/projects/karibib/
- Q. Yan, X. Li, Z. Wang, X. Wu, H. Guo, Q. Hu, W. Peng, J. Wang,
Extraction of valuable metals from lepidolite, Hydrometallurgy,
117–118 (2012) 116–118.
- T. Samadiy, T. Deng, Lithium recovery from water resources by
ion exchange and sorption method, J. Chem. Soc. Pak., 43 (2021)
406–416.
- D. Weng, H. Duan, Y. Hou, J. Huo, L. Chen, F. Zhang, J. Wang,
Introduction of manganese based lithium-ion sieve: a review,
Prog. Nat. Sci.: Mater. Int., 30 (2020) 139–152.
- R. Chitrakar, H. Kanoh, Y. Miyai, K. Ooi, Recovery of lithium
from seawater using manganese oxide adsorbent (H1.6Mn1.6O4),
Ind. Eng. Chem. Res., 40 (2001) 2054–2058.
- M. Cheng, C. Yao, Y. Su, J. Liu, L. Xu, S. Hou, Synthesis of
membrane-type graphene oxide immobilized manganese
dioxide adsorbent and its adsorption behavior for lithium
ion, Chemosphere, 279 (2021) 130487, doi: 10.1016/j.chemosphere.2021.130487.
- L. Tang, S. Huang, Y. Wang, D. Liang, Y. Li, J. Li, Y. Wang,
Y. Xie, W. Wang, Highly efficient, stable, and recyclable
hydrogen manganese oxide/cellulose film for the extraction of
lithium from seawater, ACS Appl. Mater. Interfaces, 12 (2020)
9775–9781.
- T. Ryu, J. Shin, S.M. Ghoreishian, K.S. Chung, Y.S. Huh,
Recovery of lithium in seawater using a titanium intercalated
lithium manganese oxide composite, Hydrometallurgy,
184 (2019) 22–28.
- Y. Mu, C. Zhang, W. Zhang, Y. Wang, Electrochemical lithium
recovery from brine with high Mg2+/Li+ ratio using mesoporous
λ-MnO2/LiMn2O4 modified 3D graphite felt electrodes,
Desalination, 511 (2021) 115112.
- H. Joo, S. Kim, S. Kim, M. Choi, S.-H. Kim, J. Yoon, Pilotscale
demonstration of an electrochemical system for lithium
recovery from the desalination concentrate, Environ. Sci. Water
Res. Technol., 6 (2020) 290–295.
- G. Zante, M. Boltoeva, A. Masmoudi, R. Barillon, D. Trebouet,
Highly selective transport of lithium across a supported liquid
membrane, J. Fluoride Chem., 236 (2020) 109593, doi: 10.1016/j.
jfluchem.2020.109593.
- W.-J. Chung, R.E.C. Torrejos, M.J. Park, E.L. Vivas, L.A. Limjuco,
C.P. Lawagon, K.J. Parohinog, S.-P. Lee,
H.K. Shon, H. Kim,
G.M. Nisola, Continuous lithium mining from aqueous
resources by an adsorbent filter with a 3D polymeric nanofiber
network infused with ion sieves, Chem. Eng. J., 309 (2017)
49–62.
- U. Bardi, Extracting minerals from seawater: an energy analysis,
Sustainability, 2 (2010) 980–992.
- M.J. Park, G.M. Nisola, E.L. Vivas, L.A. Limjuco, C.P. Lawagon,
J. Gil Seo, H. Kim, H.K. Shon, W.-J. Chung,
Mixed matrix
nanofiber as a flow-through membrane adsorber for continuous
Li+ recovery from seawater, J. Membr. Sci., 510 (2016) 141–154.
- South Korea Aims to Produce Lithoum from Seawater,
Reuters, 2011. Available at: reuters.com/article/us-korea-lithium-idUSTRE70J3GG20110120
- A. Cippolina, M. Bevacqua, G. Micale, M. Papapetrou,
A. Tamburini, Procedure for the Extraction of Minerals from
Seawater, Plant for Extraction and Minerals Obtained Through
the Extraction Procedure, European Patent, EP2020–189069,
2021.
- V.G. Gude, Energy consumption and recovery in reverse
osmosis, Desal. Water Treat., 36 (2011) 239–260.
- J.E. Elliot, Peralkaline and Peraluminous Granites and Related
Mineral Deposits of the Arabian Shield, Kingdom of Saudi
Arabia, United States Geological Survey, 1983.
- D. Küster, Granitoid-hosted Ta mineralization in the Arabian–Nubian Shield: ore deposit types, tectono-metallogenetic setting
and petrogenetic framework, Ore Geol. Rev., 35 (2009) 68–86.
- T.-Y. Huang, J.R. Pérez-Cardona, F. Zhao, J.W. Sutherland,
M.P. Paranthaman, Life cycle assessment and
techno-economic
assessment of lithium recovery from geothermal brine,
ACS Sustainable Chem. Eng., 9 (2021) 6551–6560.
- C. Early, The New ‘Gold Rush’ for Green Lithium,
BBC Futures, 2020. Available at: https://www.bbc.com/future/
article/20201124-how-geothermal-lithium-could-revolutionisegreen-
energy
- C.L. Smith, Reconnaissance Investigation of Brine in the
Eastern Rub Al Khali, Kingdom of Saudi Arabia, United States
Geological Survey, 1981.
- F. Hippauf, T. Abendroth, J. Neidhardt, H. Althues, S.A. Aljlil,
R.A. Alrasheed, Y.M. Alyousef, S. Kaskel, Increasing the
stability of LiMn2O4 against harsh conditions during lithium
recovery from real brine solutions, Energy Technol., 9 (2021)
2100145.