Recycling of lithium‐ion batteries—current state of the art, circular economy, and next generation recycling

J Neumann, M Petranikova, M Meeus… - Advanced energy …, 2022 - Wiley Online Library
Being successfully introduced into the market only 30 years ago, lithium‐ion batteries have
become state‐of‐the‐art power sources for portable electronic devices and the most …

Challenges and opportunities of recovering lithium from seawater, produced water, geothermal brines, and salt lakes using conventional and emerging technologies

H Nikkhah, D Ipekçi, W **ang, Z Stoll, P Xu, B Li… - Chemical Engineering …, 2024 - Elsevier
Energy storage plays a crucial role in the modern energy landscape, with its applications
spanning from renewable energy integration to the electrification of transportation and …

[HTML][HTML] Priority Lithium recovery from spent Li-ion batteries via carbothermal reduction with water leaching

Z Yan, A Sattar, Z Li - Resources, Conservation and Recycling, 2023 - Elsevier
Lithium is one of the most valuable elements within lithium-ion batteries, but it is also one of
the least recycled metals owing to its high reactivity, solubility, and low abundance. This …

A facile new process for the efficient conversion of spent LiFePO4 batteries via (NH4) 2S2O8-assisted mechanochemical activation coupled with water leaching

G Liu, Z Liu, J Gu, H Yuan, Y Wu, Y Chen - Chemical Engineering Journal, 2023 - Elsevier
With the rapid development of the lithium-ion battery industry, safe disposal of spent LiFePO
4 batteries (SLFPBs) has gradually become a focus of attention. However, the stable olivine …

Nonaqueous solvent extraction for enhanced metal separations: concept, systems, and mechanisms

Z Li, B Dewulf, K Binnemans - Industrial & Engineering Chemistry …, 2021 - ACS Publications
Efficient and sustainable separation of metals is gaining increasing attention, because of the
essential roles of many metals in sustainable technologies for a climate-neutral society, such …

Circular recycling strategies for LFP batteries: a review focusing on hydrometallurgy sustainable processing

DS Vasconcelos, JAS Tenório, AB Botelho Junior… - Metals, 2023 - mdpi.com
The exponential growth of electric and hybrid vehicles in the last five years forecasts a waste
problem when their batteries achieve end-of-life. Li-ion batteries for vehicles have been …

[HTML][HTML] The impact of chlorides on NMC leaching in hydrometallurgical battery recycling

J Partinen, P Halli, BP Wilson, M Lundström - Minerals Engineering, 2023 - Elsevier
The current paper studies the impact of chlorides on NMC111 (LiNi 1/3 Mn 1/3 Co 1/3 O 2)
leaching mechanism. Experiments were conducted in chloride (HCl) and mixed sulfate …

Efficient extraction and separation of valuable elements from spent lithium-ion batteries by leaching and solvent extraction: A review

J Shuai, W Liu, S Rohani, Z Wang, M He, C Ding… - Chemical Engineering …, 2024 - Elsevier
With the rising demand and production of lithium-ion batteries, their recycling is gaining
increased priority. Since the cathode active material of lithium-ion batteries are rich in …

Selective Separation of Lithium, Magnesium and Calcium using 4‐Phosphoryl Pyrazolones as pH‐Regulated Receptors

J Zhang, N Tanjedrew, M Wenzel… - Angewandte Chemie …, 2023 - Wiley Online Library
Ensuring continuous and sustainable lithium supply requires the development of highly
efficient separation processes such as LLE (liquid‐liquid extraction) for both primary sources …

Liquid extraction of lithium using a mixture of alkyl salicylate and tri-n-octylphosphine oxide

AA Bezdomnikov, GV Kostikova, DV Baulin… - Separation and …, 2023 - Elsevier
Abstract Alkyl esters (C3-C8) of salicylic acid (HL) together with trioctylphosphine oxide
(TOPO) were considered in order to find new lithium-selective extraction agents for liquid …