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GREENLAND MINES ENTERS INTO LOI TO EVALUATE BROWNFIELD DOWNSTREAM ICELANDIC INDUSTRIAL PROCESSING SITE, OUTLINES STRATEGIC SUPPLY CHAIN SECURITY PROGRAM

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Greenland Mines (Nasdaq: GRML) signed a non-binding Letter of Intent to evaluate a brownfield Icelandic industrial site and is reviewing multiple North Atlantic locations as potential downstream processing hubs for its Skaergaard metals project.

The program targets 100,000–200,000 m2 industrial zones, low‑carbon geothermal/hydro power (potentially below US$0.03/kWh), refurbished facilities and logistics advantages that the company says could exceed $1 billion life‑of‑mine energy savings versus diesel-powered Arctic processing.

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Positive

  • Potential >$1B life‑of‑mine energy savings
  • Target power costs reduced to below $0.03/kWh
  • Sites sized 100,000–200,000 m2 with deep‑water access
  • 50 MW continuous demand example (≈430 GWh/year) illustrating scale

Negative

  • Letter of Intent is non‑binding, so site deal is not guaranteed
  • Any development subject to full permitting, impact assessments and approvals
  • Material execution depends on future technical studies and stakeholder support

News Market Reaction – GRML

+4.17%
9 alerts
+4.17% News Effect
+21.6% Peak in 30 hr 25 min
+$2M Valuation Impact
$54.55M Market Cap
1.1x Rel. Volume

On the day this news was published, GRML gained 4.17%, reflecting a moderate positive market reaction. Argus tracked a peak move of +21.6% during that session. Our momentum scanner triggered 9 alerts that day, indicating moderate trading interest and price volatility. This price movement added approximately $2M to the company's valuation, bringing the market cap to $54.55M at that time.

Data tracked by StockTitan Argus on the day of publication.

Market Context

This announcement outlines a non-binding LOI and broader program to evaluate Icelandic industrial si...
Analysis

This announcement outlines a non-binding LOI and broader program to evaluate Icelandic industrial sites as a downstream hub for Skaergaard material, targeting power costs potentially below US$0.03/kWh and life-of-mine savings over $1 billion. It builds on recent environmental and logistics steps at Skaergaard. Investors may watch for concrete site selection, follow‑on technical studies, permitting progress, and how these plans support regaining Nasdaq bid-price compliance by September 14, 2026.

Key Figures

Life-of-mine power savings: $1 billion Site size range: 100,000–200,000 square meters Diesel power cost: US$0.20 per kWh +5 more
8 metrics
Life-of-mine power savings $1 billion Potential savings versus diesel-based Arctic operation over project life
Site size range 100,000–200,000 square meters Target industrial-zoned areas in Iceland for processing hub
Diesel power cost US$0.20 per kWh Illustrative all-in power cost in remote Arctic diesel scenarios
Target power cost US$0.03 per kWh Objective for large industrial processing using Iceland geothermal and hydropower
Plant power demand 50 MW Illustrative continuous demand for full-scale processing facility
Annual power use 430 GWh per year Estimated consumption at illustrative 50 MW continuous load
Distance to Iceland port 400 km Distance from Skaergaard to deep-water facilities in northwestern Iceland
Sailing time 20–30 hours Estimated bulk-carrier sailing time from East Greenland to Iceland

Historical Context

4 past events · Latest: Apr 02 (Positive)
Pattern 4 events
Date Event Sentiment 24h Move Catalyst
Apr 02 Local engagement Positive -1.6% Subsidiary joined Greenland Business Association to deepen local engagement and opportunities.
Mar 25 Logistics secured Positive -5.2% Chartered icebreaker M/V Argus to support 2026 Skaergaard field program logistics.
Mar 23 Listing compliance Positive +3.4% Received 180-day Nasdaq extension to regain $1.00 minimum bid price compliance.
Mar 19 Environmental studies Positive -4.5% Engaged WSP Denmark for comprehensive environmental baseline and impact assessment work.

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

Pattern Detected

Operational and strategy updates have often seen muted or negative immediate reactions, with 3 divergences versus 1 alignment between positive news and next‑day price moves.

Recent Company History

Over recent months, Greenland Mines has advanced Skaergaard through logistics, environmental, and listing-related steps. On Mar 19, 2026, it engaged WSP Denmark for a full EIA baseline program, followed by a Mar 23 Nasdaq bid-price compliance extension to September 14, 2026. Subsequent updates included securing the icebreaker M/V Argus and joining the Greenland Business Association. Today’s Iceland downstream-processing LOI extends this steady de-risking and infrastructure-focused strategy around Skaergaard.

Key Terms

brownfield industrial complexes, deep-water harbor access, geothermal and hydropower system, environmental and social impact assessments, +2 more
6 terms
brownfield industrial complexes technical
"Several of the sites under review and discussion include substantial brownfield industrial complexes"
Brownfield industrial complexes are former or existing factory, warehouse, or plant sites that may have leftover pollution, aging infrastructure, or special regulatory rules but also include existing land, buildings and utilities that can be reused. For investors they matter because redeveloping such sites can mean lower purchase costs and faster access to infrastructure, but also brings cleanup expenses, permitting delays and potential liability — similar to renovating an older house that may need major repairs but sits in a desirable neighborhood.
deep-water harbor access technical
"industrial-zoned areas in Iceland in the range of approximately 100,000–200,000 square meters, with deep-water harbor access"
Deep-water harbor access means a location where the water is naturally or artificially deep enough for large oceangoing vessels to dock, load and unload goods without special measures. For investors it signals lower shipping costs, the ability to handle bulk exports or imports, and stronger links to global markets—think of it as having direct access to a major freight highway that reduces delays, extra handling and supply-chain risk.
geothermal and hydropower system technical
"power-grid connections to Iceland's low-carbon geothermal and hydropower system"
A geothermal and hydropower system is a combination of facilities that produce electricity by tapping heat from beneath the ground and by capturing the energy of moving water, like two different power taps working together. For investors, this matters because these technologies are long‑lived, often low‑cost to run once built, and can provide steady, diversified revenue streams—similar to owning both a reliable boiler and a running stream—while carrying upfront construction and resource‑supply risks.
environmental and social impact assessments regulatory
"including complete permitting, environmental and social impact assessments and structured community consultation"
Environmental and social impact assessments are systematic reviews that evaluate how a project or business activity affects the natural environment, local communities, workers and public health. They matter to investors because the findings reveal regulatory risks, potential cleanup or mitigation costs, and community opposition that can delay or reduce returns—like a home inspection that uncovers hidden problems before you buy, helping assess whether the investment’s rewards justify the risks.
environmental impact assessment regulatory
"full Environmental Impact Assessment (EIA) baseline program for the Skaergaard"
An environmental impact assessment is a process that evaluates how a planned project or development might affect the natural environment, including air, water, land, and wildlife. It helps identify potential risks and suggests ways to minimize harm before the project begins. For investors, it matters because projects with significant environmental risks may face delays, increased costs, or restrictions, affecting their overall viability and returns.
critical-minerals supply chains technical
"into European and North American critical-minerals supply chains"
The network of mines, processors, transport routes, factories and recycling systems that bring essential raw metals and minerals—like lithium, cobalt, nickel and rare earths—from the ground to finished products. Investors care because breaks or delays anywhere in that chain can raise costs, slow production of batteries, electronics and clean-energy equipment, and create geopolitical or regulatory risks that affect companies’ earnings and stock values, much like a broken part stopping an assembly line.

AI-generated analysis. How Rhea-AI works. Not financial advice.

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CHARLOTTE, N.C., April 16, 2026 /PRNewswire/ -- Greenland Mines Ltd ("Greenland Mines" or the "Company") (Nasdaq: GRML) has entered into a non-binding Letter of Intent with an Icelandic industrial site owner, providing a concrete framework for technical, commercial, and permitting discussions.

The Company is also in discussions with additional parties and stakeholders in Iceland and in the broader North Atlantic region about these options and support for these.

This forms the first step in the Company's strategy as it takes advantage of its unique location, to evaluate multiple proximate industrial sites around Iceland and the North Atlantic with the purpose of identifying potential locations for a future downstream processing hub for material from the Company's Skaergaard Gold, Palladium, Platinum and Critical Metals Project in East Greenland.

Key elements of the North Atlantic processing strategy, which could save over $1 billion in life of mine energy costs while producing green Palladium, Platinum and Gold and Critical Minerals as end products, include the following:

  • Evaluating multiple large industrial zoned sites in Iceland, potentially with existing industrial buildings and facilities that can be refurbished, with deep water harbor access and robust power grid connections for a future Skaergaard processing hub
  • Leveraging Iceland's low-carbon geothermal and hydropower system to target a step-change in processing power costs and significantly lower the overall project carbon footprint
  • Refurbishing substantial brownfield industrial complexes where possible, reducing capital intensity and timelines by re-using existing buildings, heavy foundations and other infrastructure
  • Embedding Skaergaard within a broader North Atlantic critical-minerals corridor, linking world-class geology in Greenland with world-class energy, infrastructure and logistics in Iceland for secure supply into North American and European markets

Bo Møller Stensgaard, President of Greenland Mines, commented, "By moving now to evaluate multiple industrial sites in Iceland – and by already having a signed nonbinding Letter of Intent in place for such an activity with a local industrial site owner – we are turning our North Atlantic processing vision into a real, structured program. Replacing dieselbased power with hydropower can translate into tens of millions of dollars in annual savings for a fullscale plant, which is the kind of step-change that matters for a project like Skaergaard.

"Our goal is to build an integrated North Atlantic criticalminerals corridor that investors and governments alike can get behind: worldclass geology and strong regulatory resource framework in Greenland, worldclass green and cheap energy and infrastructure in Iceland, and a clear route into North American and European value chains and industrial ecosystems.  This is how we intend to differentiate Skaergaard and to keep adding value for our shareholders as we take the project through its next development phases."

The strategic program focuses on identifying large, industrial-zoned areas in Iceland in the range of approximately 100,000–200,000 square meters, with deep-water harbor access, potential for existing industrial buildings and heavy foundations, and power-grid connections to Iceland's low-carbon geothermal and hydropower system.

Several of the sites under review and discussion include substantial brownfield industrial complexes that could be relatively cost-effectively refurbished and repurposed for Skaergaard's processing requirements, potentially reducing both capital costs and construction timelines while re-using existing infrastructure in a responsible way.

A key driver behind the Iceland strategy is power cost and carbon footprint. In many remote Arctic locations, large-scale mineral processing would rely on diesel-based power generation, where all-in power costs can easily get into US$0.20 per kWh or higher.  By contrast, long-term industrial users in Iceland drawing on geothermal and hydropower have historically secured materially lower effective tariffs, and the Company believes that a realistic objective for a future large industrial-scale processing operation is to reduce power costs to potentially below US$ 0.03 per kWh.

Comparable industrial use in Iceland, for example, would be for the large aluminum smelters in Iceland that are currently in operation. At a full-scale processing facility with a continuous demand on the order of, for example, 50 MW (ca. 430 GWh per year), this illustrative represents a potential transformative improvement in project economics and resilience through the cycle. The potential cumulative Life of Mine savings could exceed $1 billion relative to a diesel-based Arctic operation.

Beyond power, Iceland offers a rare combination of year-round, ice-free deep-water ports, established industrial park frameworks, an experienced industrial workforce, and proximity to both Europe and North America. Construction cost and time for a large industrial complex would also be lower in Iceland.

Skaergaard is located roughly 400 km from deep-water facilities in northwestern Iceland and around 600 km from the Reykjavík area, corresponding to an estimated bulk-carrier sailing time on the order of about 20–30 hours, which further underlines the logistical fit between mine-site operations in East Greenland and a future processing hub in Iceland.

As part of this emerging North Atlantic value chain concept, Greenland Mines is also evaluating pre-processing options in Greenland, such as crushing and ore-sorting to produce a semi-upgraded product before shipment to Iceland for downstream extraction and refining in Iceland. This is one of the scenarios being considered. Such a staged approach could reduce shipping volumes and optimize energy use between Greenland and Iceland and further enhance Skaergaard's overall economic and environmental performance, subject to future technical studies and permitting.

For Skaergaard, that creates the possibility of an integrated North Atlantic value chain: ore mined and concentrated in East Greenland, shipped a relatively short distance to Iceland for low-carbon processing, and from there into European and North American critical-minerals supply chains.

The Company sees this as fully aligned with a growing policy focus on secure, transparent and geopolitically robust supply routes for critical and strategic metals, and with broader North Atlantic cooperation on infrastructure, security and economic development.

For investors, the combination of one of the world's largest undeveloped palladium-gold-platinum resources with additional potential critical and bulk metals, such as vanadium, gallium, titanium and iron, in Greenland with the prospect of a low-carbon, low-cost, infrastructure-rich processing hub in Iceland represents a powerful, differentiated opportunity. It speaks directly to project economics, ESG performance, jurisdictional quality, structural investments and developments, and long-term strategic relevance.

This North Atlantic processing initiative runs in parallel with the Company's ongoing technical, environmental and permitting work at Skaergaard, and forms a core part of its strategy to systematically de-risk the project's development pathway ahead of future study milestones.

For governments and policy-makers, the concept offers a tangible example of cross-border industrial development in the North Atlantic, leveraging complementary strengths – geology in Greenland, energy and infrastructure in Iceland, development and security in the North Atlantic and critical metals for Western allies – in a way that supports critical-minerals resilience, industrial and compliant development within robust regulatory frameworks, climate objectives and regional stability.

As a NATO member with a dormant but potentially soon-to-be-re-activated EU accession track, and with the ability to host green geothermal-powered processing of Skaergaard metals instead of diesel-generated power, Iceland provides a uniquely strategic bridge into European and North American transatlantic markets for low-carbon, security-of-supply aligned metals under evolving climate and critical-raw-materials policies. Skaergaard thereby emerges as a potential large-scale, industrial- and policy-aligned opportunity for climate-friendly "green" gold, palladium, platinum, vanadium, gallium, iron, steel and titanium.

Importantly, any potential development of activities in Iceland and Greenland will be subject to well-established environmental and social regulatory frameworks and approval, including complete permitting, environmental and social impact assessments and structured community consultation. Greenland Mines is fully committed to environmental compliance – not only to safeguard nature and the environment, but also to position Skaergaard as an attractive platform for potential strategic and financing partnerships as the project advances and as a reliable, attractive and long-term partner to downstream industrial users of precious, critical and bulk metals.

The Company expects the findings from this Iceland site‑evaluation program to feed into future technical studies for Skaergaard and will update the market as material milestones are reached.

About Greenland Mines Ltd

Greenland Mines Ltd is a Nasdaq-listed company with two operating divisions: (1) Natural Resources, focused on the exploration and development of the Skaergaard Project in Southeast Greenland, one of the largest undeveloped palladium, gold, and platinum deposits in the world; and 2) Cell and Gene Therapy, including Klotho's KLTO-202 primary indication for ALS. The Company holds, through its recent acquisition of Greenland Mines Corp., an 80% interest in, and option to acquire the remaining 20% of, the Skaergaard Project, which hosts a 2022 NI 43-101 Indicated and Inferred Mineral Resource of 25.4 Moz PdEq and 23.5 Moz AuEq with a gross undiscounted in-situ resource value of approximately $68 billion based on February 2026 metal prices. The Company is led by an experienced team of mining, geological, biotech, and capital markets professionals.

Forward-Looking Statements

This press release contains forward-looking statements. These statements are made under the "safe harbor" provisions of the U.S. Private Securities Litigation Reform Act of 1995. These forward-looking statements generally are identified by the words "believe," "project," "expect," "anticipate," "estimate," "intend," "strategy," "future," "opportunity," "plan," "may," "should," "will," "would," "will be," "will continue," "will likely result," and similar expressions. Without limiting the generality of the foregoing, the forward-looking statements in this press release include descriptions of the Company's future commercial operations. Forward-looking statements are predictions, projections and other statements about future events that are based on current expectations and assumptions and, as a result, are subject to risks and uncertainties. Many factors could cause actual future events to differ materially from the forward-looking statements in this press release, such as the Company's inability to implement its business plans, identify and realize additional opportunities, or meet or exceed its financial projections and changes in the regulatory or competitive environment in which the Company operates. You should carefully consider the foregoing factors and the other risks and uncertainties described in the documents filed or to be filed by the Company with the U.S. Securities and Exchange Commission (the "SEC") from time to time, which could cause actual events and results to differ materially from those contained in the forward-looking statements. All information provided herein is as of the date of this press release, and the Company undertakes no obligation to update any forward-looking statement, except as required under applicable law.

The Mineral Resource Estimates referenced in this press release were prepared in accordance with NI 43-101 by SLR Consulting as disclosed in the technical report dated November 22, 2022. Mineral Resources are not Mineral Reserves and do not have demonstrated economic viability. The gross undiscounted in-situ metal values expressed herein are illustrative calculations using February 2026 metal prices and do not account for mining recoveries, metallurgical losses, capital costs, operating costs, royalties, taxes, permitting requirements, or any other technical or economic factors. These values are not indicative of future revenue, project economics or net present value. No preliminary economic assessment, pre-feasibility study, or feasibility study has been completed on the Skaergaard Project, and there is no certainty that the Mineral Resources disclosed will be converted to Mineral Reserves or that an economically viable mining operation can be established.

Investor Contact and Corporate Communications:
ir@greenlandmines.com

Website: www.greenlandmines.com

Cision View original content to download multimedia:https://www.prnewswire.com/news-releases/greenland-mines-enters-into-loi-to-evaluate-brownfield-downstream-icelandic-industrial-processing-site-outlines-strategic-supply-chain-security-program-302743969.html

SOURCE Greenland Mines Ltd

FAQ

What did Greenland Mines announce about the Iceland LOI and Skaergaard processing (GRML, April 16, 2026)?

They entered a non‑binding LOI to evaluate a brownfield Iceland industrial site and are reviewing multiple North Atlantic options. According to the company, the program aims to identify low‑carbon hubs for downstream processing of Skaergaard metals.

How much energy cost savings does Greenland Mines expect from processing in Iceland (GRML)?

The company estimates cumulative life‑of‑mine energy savings could exceed $1 billion versus diesel-based Arctic processing. According to the company, lower tariffs from geothermal and hydropower could enable power below $0.03/kWh.

What site characteristics is Greenland Mines targeting in Iceland for Skaergaard (GRML)?

Greenland Mines is targeting large industrial zones of 100,000–200,000 m2 with deep‑water harbor access, existing buildings and power‑grid connections. According to the company, brownfield sites could reduce capital and timelines by reusing infrastructure.

How close is Skaergaard to potential Iceland processing hubs and what are logistics like (GRML)?

Skaergaard lies about 400 km from northwestern Iceland and ~600 km from Reykjavík, implying bulk‑carrier sailing times of ~20–30 hours. According to the company, this supports short shipping routes and supply‑chain fit.

What approvals and conditions are required before Greenland Mines can develop processing in Iceland (GRML)?

Any development requires complete permitting, environmental and social impact assessments and structured community consultation. According to the company, projects remain subject to those regulatory frameworks and future technical studies.