Making a Difference, The Rechargeable Revolution
Lithium resource company with a focus in Nevada
Making a Difference,
The Rechargeable Revolution
Lithium resource company focuses in Nevada
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About Us
Innovative Resource development
Pure Energy is a mineral exploration company transitioning toward a new phase of corporate growth. Following the successful option-out of its Clayton Valley Project, the Company is actively evaluating potentially transformative transactions. The Company is committed to a disciplined M&A strategy aimed at adding value to its business.
It is a public company incorporated under the laws of British Columbia and a reporting issuer in British Columbia and Alberta. Its common shares are listed and posted for trading on the TSX Venture Exchange (the “TSX.V”) under the trading symbol “PE”. In addition, the Company trades on the OTCQB trading platform in the United States under the trading symbol “PEMIF” and on the Börse Frankfurt (Stock Exchange) under the trading symbol “AHG”.
Pure Energy entered into a Letter of Intent that is valid until September 2026 to acquire rights to the Railroad Valley project, a Lithium brine exploration property located Nevada. The Company continues to evaluate the merits of the project. [News Release dated: September 4, 2024]
Historically, the Company’s primary project was the CV Project, located in Clayton Valley, Esmeralda County, Nevada. The Company entered into an Earn-In Agreement with Schlumberger Technology Corp., a subsidiary of SLB (formerly Schlumberger Limited), dated May 1, 2019 whereby the Company granted SLB an option, in favor of SLB, to acquire all of the Company’s interests in the CV Project. During the Option Period, the Company received a non-refundable minimum royalty (“MR”) payment totaling US$2,000,000. Once the property goes into production, the Company will receive an effective 1.2% net smelter royalty on the first US$111.11million of production and thereafter a 3% net smelter return royalty (“NSR”) on minerals produced on 541 claims in the CV Project. Details of the Agreement are presented in the Circular for the Annual and Special Shareholders’ Meeting, which was held on May 28, 2019, where the Agreement was approved by shareholders. Pursuant to the transfer of the CV Project to SLB upon completion of the Earn-In Agreement in March 2026, the Company retained a 3% NSR on 541 claims in the property.
WHY lithium
The essential material powering the global energy transition
Lithium is the foundation of modern battery technology — lightweight, energy-dense, and uniquely suited to the demands of electric vehicles and grid-scale energy storage. As the world accelerates its shift away from fossil fuels, lithium has become one of the most strategically important materials of our time.
Environmental Benefits
Lithium-ion batteries are integral to renewable energy solutions, facilitating solar and wind energy storage.
Lightweight
Lithium is the lightest metal, and lithium-ion batteries are much lighter than alternatives like lead-acid batteries.
Scalability
Lithium-ion technology can be scaled for small devices like smartphones or large systems like grid-scale energy storage.
Long Lifespan
Lithium-ion batteries can withstand hundreds to thousands of charge-discharge cycles with minimal loss of capacity.
High Energy Density
Lithium-ion batteries have a higher energy density compared to other rechargeable batteries, such as lead-acid or nickel-cadmium.
Environmental Benefits
Lithium-ion batteries are integral to renewable energy solutions, enabling solar and wind power to be stored and dispatched on demand. Every megawatt-hour of battery storage installed accelerates the retirement of fossil fuel generation.
Lightweight
Lithium is the lightest metal on Earth. Lithium-ion batteries are significantly lighter than alternatives like lead-acid batteries — a critical advantage in electric vehicles where weight directly affects range.
Scalability
Lithium-ion technology scales across the full spectrum — from small consumer electronics to gigawatt-hour grid storage projects. Giga-scale installations, defined as projects larger than 1 gigawatt-hour, are moving from novelty to norm.
Long Lifespan
Lithium-ion batteries can withstand hundreds to thousands of charge-discharge cycles with minimal degradation — delivering reliability that underpins their use in demanding applications like grid storage and commercial EVs.
High Energy Density
Lithium-ion batteries store more energy per unit of weight than any other rechargeable chemistry in widespread commercial use, making them the preferred choice for everything from smartphones to electric aircraft.
The Brine Advantage
Lithium brine is widely recognized as the lowest-cost source of lithium to process. Unlike hard-rock mining, brine extraction requires less energy and has a smaller environmental footprint. The emergence of Direct Lithium Extraction (DLE) technology is making brine resources even more compelling:
- DLE eliminates the 12–24 month evaporation pond residence time required by conventional methods, compressing timelines from months to hours
- Recovery rates exceeding 90%, compared to less than 50% with conventional evaporation
- Independent of weather and climate
- Significantly smaller surface footprint
- Lower projected capital and operating costs
Commercial DLE projects are already operating in Argentina and China, and the USA is expected to become a leading DLE market by 2036 — with several U.S. projects targeting commercial production before the end of this decade.