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American Rare Earths Commences Gold, Silver, Copper and Manganese Target Review at La Paz, Arizona

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American Rare Earths (OTCQX: AMRRY) has engaged a US exploration and geoscience consultancy to review historical data and design targeted follow-up work for gold, silver, copper and manganese at its La Paz Project in La Paz County, Arizona.

The La Paz tenure comprises approximately 2,779 ha (6,866 acres) of federal claims plus a 260 ha (640 acres) state mineral lease. The review will consolidate mapping, re-log historic drill material, re-evaluate geochemistry and assess geophysics, producing a ranked inventory of precious and base metal targets and potential focused follow-up in 2026.

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News Market Reaction – AMRRY

-2.33%
-2.33% Session close to close

In the Mar 24 session, AMRRY declined 2.33%, reflecting a moderate negative market reaction.

Data tracked by StockTitan Argus on the day of publication.

Market Context

This announcement outlines a structured review of historical data at La Paz to identify gold, silver...
Analysis

This announcement outlines a structured review of historical data at La Paz to identify gold, silver, copper and manganese targets alongside existing rare earth work. It follows several Halleck Creek milestones and U.S. policy tailwinds for domestic critical minerals. Key factors to watch include any ranked target inventory from this study, details of a possible 2026 exploration program, integration with ongoing REE activities, and how results influence project prioritization across the portfolio.

Key Figures

Unpatented claims area: 2,779 ha Unpatented claims area: 6,866 acres State mineral lease area: 260 ha +4 more
7 metrics
Unpatented claims area 2,779 ha La Paz Project federal lode claims land package
Unpatented claims area 6,866 acres La Paz Project federal lode claims land package
State mineral lease area 260 ha La Paz Project state mineral lease in Arizona
State mineral lease area 640 acres La Paz Project state mineral lease in Arizona
Planned exploration timing 2026 Potential follow-up exploration program at La Paz
Halleck Creek resource 2.63 billion tonnes Whole of Property Assessment referenced in Mar 2, 2026 news
Ore supplied 5 tonnes Allanite ore from Cowboy State Mine for METALLIC consortium tests

Historical Context

5 past events · Latest: Mar 16 (Positive)
Pattern 5 events
Date Event Sentiment 24h Move Catalyst
Mar 16 Research consortium feedstock Positive +2.2% Selected to supply ore for DoE METALLIC critical minerals research program.
Mar 02 Leadership & strategy change Positive -0.0% CEO role consolidation and U.S. listing focus tied to Halleck Creek and La Paz.
Feb 09 Shareholder strategy letter Positive +4.8% Outlined Halleck Creek progress, 2026 PFS target, and permitting plans.
Jan 22 Byproduct research partnership Positive +1.5% University of Wyoming partnership to study Halleck Creek tailings and byproducts.
Jan 21 Policy commentary Positive +1.6% Commented on U.S. trade proclamation supporting domestic critical minerals.

24h Move is the share-price change in the day after each event; other market factors may also have contributed.

Pattern Detected

Recent company updates, mainly positive strategic or project milestones, have usually been followed by modestly positive price reactions, with only one near-flat divergence.

Recent Company History

This announcement expands the La Paz focus to gold, silver, copper and manganese, complementing prior emphasis on rare earths. Recent history centers on Halleck Creek: a 2.63 billion tonne resource assessment plan, production of mixed rare earth oxalate/oxide, and a planned 2026 Pre‑Feasibility Study and permit submission. Participation in the DoE METALLIC consortium and a University of Wyoming byproduct research partnership underscore technical validation and byproduct potential. Together, these steps frame La Paz’s multi‑commodity review as part of a broader U.S.-focused growth and supply-chain strategy.

Key Terms

rare earth element, sulphide, oxide, geophysical surveys, +3 more
7 terms
rare earth element technical
"beyond the rare earth element (REE) mineralization on which prior work..."
A rare earth element is one of a set of 17 metallic chemical elements used as essential ingredients in many high-tech products, from smartphones and electric motors to wind turbines and defense systems. Investors care because these metals are critical inputs whose limited, geographically concentrated supply and complex extraction processes can drive price swings and create strategic risks or advantages for companies that mine them or depend on them—like a key spice that can make or break a recipe.
sulphide technical
"zones of sulphide, oxide or manganese enrichment that were not the focus..."
A sulphide is a chemical compound in which sulfur is bound to a metal or other element, commonly found in mineral ores such as pyrite or chalcopyrite. For investors, sulphide content matters because it determines how easy or costly it is to extract valuable metals, the type of processing required, and environmental risks like acid mine drainage that can raise cleanup costs and regulatory hurdles — like finding a rotten core in a piece of fruit that needs special handling.
oxide technical
"zones of sulphide, oxide or manganese enrichment that were not the focus..."
An oxide is a chemical compound formed when oxygen bonds with another element—common examples include rust on iron or the glassy coating on some metals. Investors care because oxides affect how materials behave (durability, conductivity, or reactivity), influence manufacturing costs and yields, and can trigger safety or environmental rules; changes in oxide-related technology or regulation can therefore alter a company’s expenses, product performance, or market position.
geophysical surveys technical
"Assessment of historic geophysical surveys (magnetic, radiometric and other..."
Geophysical surveys are non-invasive tests that use tools like sound waves, magnets, or electrical signals to map what lies beneath the ground without digging. Think of it as an ultrasound or metal detector for large areas: it reveals hidden structures, rock types, or buried resources. Investors care because these surveys help estimate where valuable minerals, oil, gas, or groundwater might be, reducing exploration uncertainty, cost and risk before costly drilling or mining begins.
magnetic technical
"Assessment of historic geophysical surveys (magnetic, radiometric and other..."
Magnetic describes a material’s ability to attract or be influenced by magnets and magnetic fields, like iron pulling toward a fridge magnet; it’s a physical property tied to the internal arrangement of atoms that creates a north and south pole. Investors care because magnetic materials and components are critical in many products and industries—motors, generators, data storage, medical devices and sensors—so changes in supply, cost, or performance can affect product demand, manufacturing costs and regulatory scrutiny.
radiometric technical
"Assessment of historic geophysical surveys (magnetic, radiometric and other..."
Radiometric describes tools or methods that detect and measure radiation — from visible light and heat to X-rays and gamma rays — and turn those signals into numerical readings. Investors care because radiometric accuracy and reliability determine product performance, safety, regulatory approval and market demand across medical imaging, environmental monitoring, security and remote sensing — like how a thermometer’s precision affects trust in a weather report.
resistivity technical
"e.g., induced polarization or resistivity for sulphide-rich systems..."
Resistivity measures how strongly a material opposes the flow of electric current; low resistivity means electricity flows easily, high resistivity means it does not. For investors, resistivity affects the value and suitability of materials used in electronics, power lines, batteries, and sensors—think of it like how narrow or wide a pipe affects water flow: materials with the ‘right’ resistivity can improve product performance, reduce energy losses, or open market opportunities, while the wrong resistivity can limit demand or require costly processing.

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DENVER, March 24, 2026 (GLOBE NEWSWIRE) -- American Rare Earths (ASX: ARR | OTCQX: ARRNF | ADR: AMRRY) (“ARR” or the “Company”) is pleased to announce that it has engaged an experienced US-based exploration and geoscience consultancy to undertake a comprehensive review of historical data and to design a targeted follow-up work program focused on gold, silver, copper and other non-rare earth critical minerals prospectivity at its La Paz Project in La Paz County, Arizona.

The La Paz Project covers a large, contiguous land package of unpatented federal lode claims, covering approximately 2,779 ha and 6,866 acres, and a state mineral lease, covering approximately 260 ha and 640 acres, in an established mining jurisdiction, where historic activities have included precious and base metal production. Against this backdrop, American Rare Earths sees an opportunity to systematically reassess the multi-commodity potential of the property, beyond the rare earth element (REE) mineralization on which prior work has primarily focused.

Comprehensive review of historical data

The newly engaged US exploration and geoscience firm will lead a multi-phase technical review of all available historical information relating to gold, silver, copper and manganese on the La Paz land position. This work is expected to include:

Consolidation and reinterpretation of historic geological mapping, including structures, alteration patterns and lithological contacts that may control precious and base metal mineralization.

Review and re-logging (where available) of historical drill core and chips to identify untested or under-recognized zones of sulphide, oxide or manganese enrichment that were not the focus of earlier REE-centric programs.

Compilation and re-evaluation of historical geochemical datasets, including multi-element soil, rock chip and stream sediment sampling, with a specific emphasis on pathfinders and anomalism associated with gold, silver, copper and manganese systems.

Assessment of historic geophysical surveys (magnetic, radiometric and other available datasets) to highlight structures and lithological contrasts that could host or focus metallic mineralization.

The outcome of this phase will be a ranked inventory of gold, silver, copper and other critical mineral targets within the broader La Paz tenure, supported by updated geological interpretations and modern geoscientific workflows.

Potential follow-up exploration in 2026

Based on the results of the data review and targeting exercise, American Rare Earths might implement a focused 2026 exploration program to systematically test the most compelling precious and base metal opportunities. Potential follow-up work may include:

  • Detailed geological and structural mapping over priority areas to refine target geometries and scale.
  • Ground-based geochemical surveys (soil grids, rock chip sampling and channel sampling) to validate and expand historical anomalies for gold, silver, copper and manganese.
  • Selective ground geophysics, as appropriate for specific target styles (e.g., induced polarization or resistivity for sulphide-rich systems, detailed magnetics for structural and intrusive features).
  • The Company will prioritize work programs that can be efficiently integrated with, or run parallel to, ongoing REE-related activities, leveraging existing access, infrastructure and geological knowledge at La Paz.

Strategic rationale

By systematically reviewing historical data and designing a disciplined follow-up exploration strategy for gold, silver, copper and other critical minerals, American Rare Earths aims to:

  • Better understand the broader mineral endowment of the La Paz Project area.
  • Identify potential supplementary value streams that could complement any future REE development scenarios.
  • Position the Company to respond to growing US demand for domestic sources of critical and strategic metals.

American Rare Earths’ CEO, Mark Wall, commented:

“The La Paz Project sits in a region with a long history of gold, silver, and copper mining, yet much of the modern exploration work has understandably focused on rare earth elements. By bringing in a seasoned US geoscience team to take a fresh, multi-commodity look at the data, we are aiming to unlock additional value from this large and strategically located land package. Any success in identifying new gold, silver, copper or manganese targets would add an exciting dimension to La Paz and to our broader US growth strategy.”

This release was authorized by the Board of American Rare Earths.   

Investors can follow the Company’s progress at www.americanree.com 

 About American Rare Earths Limited:  

American Rare Earths (ASX: ARR | OTCQX: ARRNF | ADR: AMRRY) is a critical minerals company at the forefront of reshaping the U.S. rare earths industry. Through its wholly owned subsidiary, Wyoming Rare (USA) Inc. (“WRI”), the company is advancing the Halleck Creek Project in Wyoming—a world-class rare earth deposit with the potential to secure America’s critical mineral independence for generations. Located on Wyoming State land, the Cowboy State Mine within Halleck Creek offers cost-efficient open-pit mining methods and benefits from streamlined permitting processes in this mining-friendly state.  

With plans for onsite mineral processing and separation facilities, Halleck Creek is strategically positioned to reduce U.S. reliance on imports—predominantly from China—while meeting the growing demand for rare earth elements essential to defense, advanced technologies, and economic security. As exploration progresses, the project’s untapped potential on both State and Federal lands further reinforces its significance as a cornerstone of U.S. supply chain security. In addition to its resource potential, American Rare Earths is committed to environmentally responsible mining practices and continues to collaborate with U.S. Government-supported R&D programs to develop innovative extraction and processing technologies for rare earth elements.  

For more information:

Media Contact:

Susan Assadi
sassadi@americanree.com
347 977 7125

Investor Relations US Contact:

Beverly Jedynak
Beverly.jedynak@viriathus.com
312 943 1123


FAQ

What did American Rare Earths (AMRRY) announce about exploration at La Paz on March 24, 2026?

They engaged a US geoscience consultancy to review historical data and design follow-up targets. According to the company, the work will re-evaluate mapping, drill logs, geochemistry and geophysics to rank gold, silver, copper and manganese targets on the La Paz tenure.

How large is the La Paz Project that AMRRY is reassessing for gold, silver, copper and manganese?

La Paz covers about 2,779 ha of federal claims and a 260 ha state mineral lease. According to the company, that equals roughly 6,866 acres of unpatented federal claims plus 640 acres under state lease in La Paz County, Arizona.

What follow-up exploration might AMRRY undertake at La Paz in 2026?

Potential 2026 work includes detailed mapping, ground geochemical surveys and selective geophysics. According to the company, programs would target priority anomalies and integrate with ongoing REE activities to test ranked gold, silver, copper and manganese targets.

What is the strategic aim of AMRRY’s multi-commodity review at La Paz?

The aim is to understand broader mineral endowment and identify supplementary value streams to REE. According to the company, this positions AMRRY to respond to US demand for domestic critical and strategic metals while leveraging existing site access and infrastructure.

Will AMRRY use existing REE data and infrastructure for the La Paz precious and base metal review?

Yes; the company plans to integrate work with current REE activities where efficient. According to the company, leveraging existing access, infrastructure and geological knowledge will help run parallel programs and reduce mobilization needs.