Metal-based adsorbents for lithium recovery from aqueous resources

H Yu, G Naidu, C Zhang, C Wang, A Razmjou, DS Han… - Desalination, 2022 - Elsevier
The continuous increase of demand for lithium (Li) chemicals in industrial applications calls
for exploring affordable Li production and sustainable options beyond land mining. Thus …

Recent advances in the lithium recovery from water resources: From passive to electrochemical methods

L Baudino, C Santos, CF Pirri, F La Mantia… - Advanced …, 2022 - Wiley Online Library
The ever‐increasing amount of batteries used in today's society has led to an increase in the
demand of lithium in the last few decades. While mining resources of this element have …

Preparation of high hydrophilic H2TiO3 ion sieve for lithium recovery from liquid lithium resources

J Sun, X Li, Y Huang, G Luo, D Tao, J Yu… - Chemical Engineering …, 2023 - Elsevier
Extraction of lithium from liquid lithium resources has become a popular research field,
among which H 2 TiO 3 material has great application potential. In this work, we further …

Adsorbents for lithium extraction from salt lake brine with high magnesium/lithium ratio: From structure-performance relationship to industrial applications

L Zhang, T Zhang, S Lv, S Song, HJO Galván… - Desalination, 2024 - Elsevier
Driven by technology advancement and wide application of lithium, the market demand for
lithium is skyrocketing. To enable the sustainable supply of lithium, it is strongly desirable to …

Lithium extraction process from low grade Na+/K+ brines dependent on high layer charge layered double hydroxides

B Sheng, H Su, J Yu, S Lin - Desalination, 2023 - Elsevier
To meet the rigorous separation demand for lithium in monovalent ion systems, high layer
charge layered double hydroxides (H-LDHs) were used to extract lithium resource from …

3D-printed titanium-based ionic sieve monolithic adsorbent for selective lithium recovery from salt lakes

J Yu, J Zhu, G Luo, L Chen, X Li, P Cui, P Wu, Y Chao… - Desalination, 2023 - Elsevier
The recovery of lithium from salt lakes through the adsorption strategy has been receiving
widespread attention, and titanium-based ion sieves stand out due to their high adsorption …

Lithium extraction from shale gas flowback and produced water using H1. 33Mn1. 67O4 adsorbent

L Tian, Y Liu, P Tang, Y Yang, X Wang, T Chen… - Resources …, 2022 - Elsevier
The rapid growth of demand for lithium, especially in lithium batteries calls for an increase in
the supply of lithium resources. We synthesized H 1.33 Mn 1.67 O 4 adsorbent by solid …

Direct lithium extraction: A new paradigm for lithium production and resource utilization

J Farahbakhsh, F Arshadi, Z Mofidi, M Mohseni-Dargah… - Desalination, 2024 - Elsevier
The growing demand for lithium batteries in various applications has increased lithium
production from multiple sources, including ores, brines, and spent batteries. Traditional …

Prelithiation-derived hierarchical TiO2 sieve with metal-organic framework gate for selective lithium recovery

H Li, T Chen, J Jiang, G Gao, C Wang, Z Lu - Chemical Engineering …, 2023 - Elsevier
Sustainable lithium supply significantly matters the healthy development of electric vehicles
markets. Selective adsorption plays an important role in aqueous lithium recovery due to low …

[HTML][HTML] Adsorption-type aluminium-based direct lithium extraction: The effect of heat, salinity and lithium content

Y Boroumand, A Razmjou - Desalination, 2024 - Elsevier
Conventional lithium production through solar evaporation is considered a time-consuming
procedure, taking a substantial 12 to 18 months with significant environmental impacts such …