Coal and Coal By-Products as Unconventional Lithium Sources: A Review of Occurrence Modes and Hydrometallurgical Strategies for Metal Recovery

Author:

Rudnik Ewa1ORCID

Affiliation:

1. Faculty of Non-Ferrous Metals, AGH University of Krakow, Al. Mickiewicza 30, 30-059 Krakow, Poland

Abstract

Lithium, a critical material for the global development of green energy sources, is anomalously enriched in some coal deposits and coal by-products to levels that may be considered economically viable. Recovering lithium from coal, particularly from coal gangue or coal ashes, offers a promising alternative for extracting this element. This process could potentially lead to economic gains and positive environmental impacts by more efficiently utilizing coal-based waste materials. This review focuses on lithium concentrations in coal and coal by-products, modes of lithium occurrence, methods used to identify lithium-enriched phases, and currently available hydrometallurgical recovery methods, correlated with pretreatment procedures that enable lithium release from inert aluminosilicate minerals. Leaching of raw coal appears inefficient, whereas coal gangue and fly ash are more feasible due to their simpler composition and higher lithium contents. Lithium extraction can achieve recovery rates of over 90%, but low lithium concentrations and high impurity levels in the leachates require advanced selective separation techniques. Bottom ash has not yet been evaluated for lithium recovery, despite its higher lithium content compared to feed coal.

Publisher

MDPI AG

Reference160 articles.

1. (2024, July 09). Regulation (EU) 2024/1252 of the European Parliament and of the Council of 11 April 2024 Establishing a Framework for Ensuring a Secure and Sustainable Supply of Critical Raw Materials and Amending Regulations (EU) No 168/2013, (EU) 2018/858, (EU) 2018/1724 and (EU) 2019/1020 Text with EEA Relevance. Available online: https://eur-lex.europa.eu/eli/reg/2024/1252/oj.

2. Schulz, K.J., De Young, J.H., Seal, R.R., and Bradley, D.C. (2024, July 09). Lithium, Critical Mineral Resources of the United States—Economic and Environmental Geology and Prospects for Future Supply, Available online: https://pubs.usgs.gov/publication/pp1802K.

3. International Energy Agency (2024, July 09). Global Critical Minerals Outlook 2024. Available online: https://www.iea.org/reports/global-critical-minerals-outlook-2024.

4. Gielen, D., and Lyons, M. (2022). Critical Materials for the Energy Transition: Lithium, International Renewable Energy Agency.

5. Graham, J.D., Rupp, J.A., and Brungard, E. (2021). Lithium in the green energy transition: The quest for both sustainability and security. Sustainability, 13.

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