Hydrothermal enrichment of lithium in intracaldera illite-bearing claystones

Author:

Benson Thomas R.12ORCID,Coble Matthew A.3ORCID,Dilles John H.4ORCID

Affiliation:

1. Lithium Americas Corporation, Vancouver, Canada.

2. Lamont-Doherty Earth Observatory, Columbia University, Palisades, NY, USA.

3. GNS Science, Lower Hutt, New Zealand.

4. College of Earth, Ocean and Atmospheric Sciences, Oregon State University, Corvallis, Oregon, USA.

Abstract

Developing a sustainable supply chain for the global proliferation of lithium ion batteries in electric vehicles and grid storage necessitates the extraction of lithium resources that minimize local environmental impacts. Volcano sedimentary lithium resources have the potential to meet this requirement, as they tend to be shallow, high-tonnage deposits with low waste:ore strip ratios. Illite-bearing Miocene lacustrine sediments within the southern portion of McDermitt caldera (USA) at Thacker Pass contain extremely high lithium grades (up to ~1 weight % of Li), more than double the whole-rock concentration of lithium in smectite-rich claystones in the caldera and other known claystone lithium resources globally (<0.4 weight % of Li). Illite concentrations measured in situ range from ~1.3 to 2.4 weight % of Li within fluorine-rich illitic claystones. The unique lithium enrichment of illite at Thacker Pass resulted from secondary lithium- and fluorine-bearing hydrothermal alteration of primary neoformed smectite-bearing sediments, a phenomenon not previously identified.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

Reference93 articles.

1. Benchmark Mineral Intelligence “Lithium Forecast Q4 2022”; www.benchmarkminerals.com/forecasts/.

2. U.S. Geological Survey (USGS) “Mineral commodity summaries 2023” (USGS 2023); doi:10.3133/mcs2023.

3. “FACT SHEET: Securing a made in America supply chain for critical minerals ” The White House 22 February 2022; www.whitehouse.gov/briefing-room/statements-releases/2022/02/22/fact-sheet-securing-a-made-in-america-supply-chain-for-critical-minerals/.

4. Lithium in the McDermitt caldera, Nevada and Oregon

5. J. J. Rytuba R. K. Glanzman Relation of Mercury Uranium and Lithium deposits to the McDermitt Caldera Complex Nevada-Oregon (U.S. Geological Survey Open-File Report 78-926 1978).

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