Electrochemical methods for water purification, ion separations, and energy conversion

MA Alkhadra, X Su, ME Suss, H Tian, EN Guyes… - Chemical …, 2022 - ACS Publications
Agricultural development, extensive industrialization, and rapid growth of the global
population have inadvertently been accompanied by environmental pollution. Water …

Lithium recovery from brine: Recent developments and challenges

A Khalil, S Mohammed, R Hashaikeh, N Hilal - Desalination, 2022 - Elsevier
Brine, in the form of seawater, salt lakes and geothermal water, holds massive amounts of
valuable minerals. Among the variety of metallic and non-metallic elements that are …

Recent progress in sustainable recycling of LiFePO4-type lithium-ion batteries: Strategies for highly selective lithium recovery

J Kumar, RR Neiber, J Park, RA Soomro… - Chemical Engineering …, 2022 - Elsevier
The demand for LiFePO 4 (LFP)-type batteries have increased remarkably in energy storage
devices due to a longer life span, improved discharge and charge efficiency, and safe …

Recent advances in magnesium/lithium separation and lithium extraction technologies from salt lake brine

Y Sun, Q Wang, Y Wang, R Yun, X Xiang - Separation and Purification …, 2021 - Elsevier
Over the past few decades, the demand for lithium resources has increased significantly with
the rapid development and extensive application of lithium-ion batteries. Extracting lithium …

Charge-transfer materials for electrochemical water desalination, ion separation and the recovery of elements

P Srimuk, X Su, J Yoon, D Aurbach… - Nature Reviews Materials, 2020 - nature.com
Reversible electrochemical processes are a promising technology for energy-efficient water
treatment. Electrochemical desalination is based on the compensation of electric charge by …

Membrane-based technologies for lithium recovery from water lithium resources: A review

X Li, Y Mo, W Qing, S Shao, CY Tang, J Li - Journal of Membrane Science, 2019 - Elsevier
Lithium production has become increasingly critical for sustainable development. The
extraction of lithium from aqueous sources, particularly salt-lake brine, has become a trend …

Lithium recovery using electrochemical technologies: Advances and challenges

L Wu, C Zhang, S Kim, TA Hatton, H Mo, TD Waite - Water Research, 2022 - Elsevier
Driven by the electric-vehicle revolution, a sharp increase in lithium (Li) demand as a result
of the need to produce Li-ion batteries is expected in coming years. To enable a sustainable …

Electrochemical methods for lithium recovery: a comprehensive and critical review

A Battistel, MS Palagonia, D Brogioli… - Advanced …, 2020 - Wiley Online Library
Due to the ubiquitous presence of lithium‐ion batteries in portable applications, and their
implementation in the transportation and large‐scale energy sectors, the future cost and …

Lithium recovery from brines: A vital raw material for green energies with a potential environmental impact in its mining and processing

V Flexer, CF Baspineiro, CI Galli - Science of the Total Environment, 2018 - Elsevier
The electrification of our world is driving a strong increase in demand for lithium. Energy
storage is paramount in electric and hybrid vehicles, in green but intermittent energy …

Recent progress on key materials and technical approaches for electrochemical lithium extraction processes

X Zhao, S Yang, Y Hou, H Gao, Y Wang, DA Gribble… - Desalination, 2023 - Elsevier
The supply and demand of lithium resources are seriously unbalanced due to the rapid
growth of energy storage technologies designed to meet proposed carbon emission …