Toronto, Ontario — February 17, 2026 — Leads & Copy — Geiger Energy Corp. (TSXV: BEEP) (OTCQB: BSENF) has released final geochemical results from its 2025 drill program at its 100% owned Aberdeen Project, confirming widespread uranium enrichment and large-scale hydrothermal systems across four priority targets: Loki, Bjorn, Tarzan, and Lobster.
The company completed a total of 5,300 meters of drilling, with every target intersecting alteration and geochemical signatures typical of significant uranium mineralization systems. Results from the Loki area are particularly compelling, with uranium enrichment present in all drill holes through the sandstone column and the first confirmed uranium intersections at the unconformity in the northeast Thelon Basin.
According to Rebecca Hunter, President and CEO of Geiger, consistent uranium enrichment across the entire sandstone column in every Loki drill hole is a highly significant result. Hunter noted that background uranium in sandstone is typically less than 1 ppm. At Loki, sustained values are well above that threshold, locally exceeding 100 ppm, which is exceptionally anomalous. Hunter added that this type of enrichment has not previously been documented in the Thelon Basin and materially upgrades the regional potential for major unconformity-style uranium deposits.
The 2025 results significantly advance Aberdeen as a new, emerging uranium district. Across multiple targets, drilling has confirmed:
Active uranium-bearing fluid systems.
Large-scale structural preparation.
Extensive alteration halos comparable to known deposits.
Multiple targets with scale, continuity, and room to grow.
Loki represents the most advanced target, while Bjorn, Tarzan, and Lobster each demonstrate distinct but complementary signatures consistent with major uranium systems at various levels of exposure.
Loki shows all the hallmarks of a large, fertile unconformity uranium system and is now a priority for step-out and deeper drilling.
Uranium enrichment (>1 ppm U) intersected in 7 of 9 drill holes, locally up to 111 ppm U.
Broad sandstone-hosted intervals with weighted averages of 1-3+ ppm U over 120-150 m.
Uranium intersected directly at the unconformity, a first for the NE Thelon Basin.
Highly anomalous Pb-isotope ratios indicative of radiogenic uranium sources.
Extensive clay alteration, bleaching, sulphides, and post-sandstone faulting.
Pathfinder elements (Mo, Ni, Co, B) consistently elevated.
The Loki target is an almost 4 km gravity low trend that hosts Thelon sandstone cover less than 175 m thick. A total of nine drill holes tested the Loki area in 2025.
Enriched uranium at the unconformity interested in LOK25-007 with values of 119 ppm U over 0.6 m (164.1 to 164.7 m), LOK25-008 with values of 6.4 ppm U over 6.8 m (159.0 to 165.8 m), and in LOK25-010 with values of 43.1 ppm over 0.7 m (171.3 to 172.0 m).
LOK25-004, -006, -007, -008, -009, -010 and -012 all intersected elevated (> 1 ppm U) in the sandstone and up to 77 ppm. Notable weighted average intercepts include:
2.75 ppm U over 152.9 m (15.3 to 168.2 m) – LOK25-004 Maximum value – 77.7 ppm U over 0.1 m at 96.9 m
1.35 ppm U over 121.8 m (24.7 to 146.5 m) – LOK25-006 Maximum value – 3.81 ppm U over 10 m at 84 m
2.33 ppm U over 140.3 m (24.4 to 164.7 m) – LOK25-007 Maximum value – 12.7 ppm (partial) over 10 m at 93 m and 119 ppm U over 0.6 m at 164.1 m
6.44 ppm U over 6.8 m (159.0 to 165.8 m) – LOK25-008
1.83 ppm U over 40 m (67.0 to 107.0 m) – LOK25-009 Maximum value – 2.82 ppm U at 67 m
2.53 ppm U over 144.7 m (27.3 to 172.0 m) – LOK25-010 Maximum value – 111 ppm U over 0.6 m at 79.3 m
2.30 ppm U over 150.2 m (24.3 to 174.5 m) – LOK25-012 Maximum value 13.1 ppm U over 10 m at 64 m
Significant Pb-isotope ratio anomalies (Pb207/Pb206 ratio) are present throughout Loki and are indicative of radiogenic uranium (related to a uranium deposit) being in the area (values under 0.7 are considered anomalous). Notable anomalies are present in all the drill holes but especially LOK25-004. Select intercepts are as follows:
Pb207/Pb206 of 0.46 over 139.7 m (15.3 to 155.0 m) – LOK25-004
Pb207/Pb206 of 0.54 over 50.0 m (63.0 to 113.0 m) – LOK25-007
Pb207/Pb206 of 0.64 over 50.0 m (67.0 to 117.0 m) – LOK25-009
Pb207/Pb206 of 0.53 over 35 m (67.0 to 102.0 m) – LOK25-010
Similarly, the Pb206/Pb204 ratios show complimentary anomalies with several samples with values greater than 30. Drill holes LOK24-003 (2024 drill hole) and LOK25-004 show significant anomalies suggesting that the Loki target area has been affected by radiogenic fluids in all the areas that have been drilled so far.
Pervasive clay alteration, bleaching, sooty sulphide and limonite has been intersected in the sandstone column in 7 of the 9 drill holes. Abundant altered brittle structures cross-cut the sandstone column as well, which shows post Thelon fault movement that would drive an unconformity mineralization system.
Elevated partial digestion values of Mo, Ni and Co are present in the sandstone in several of the Loki drill holes. Mo values ranging from 0.5 to 2.5 ppm, Ni values ranging from 1.0 to 9.2 ppm, and Co values ranging from 0.5 to 3.1 ppm are present in the sandstone.
The sandstone column in many of the drill holes is also anomalous in B total values (>200 ppm, locally up to 565 ppm).
First intersections of weak uranium mineralization in the sandstone at the unconformity in the northeast Thelon Basin.
Bjorn represents a major, largely untested system with strong scale potential.
Only two holes tested a >3 km gravity and magnetic low anomaly.
Hundreds of metres of bleached, altered sandstone and conglomerate.
Evidence of sustained hydrothermal fluid flow along the Thelon Fault.
Elevated uranium and pathfinder elements confirm system fertility.
The Bjorn Grid is a strong gravity and magnetic low anomaly along the Thelon Fault, which has Thelon Formation sandstone cover. Two drill holes tested this very broad anomaly area.
BJN25-001 intersected sandstone and conglomerate to a depth of 422 m. At the base of the drilling the conglomerate took on a very brecciated texture and indicates that the hole was moving into the main Thelon Fault trace. Alternating patchy bleaching and moderate pervasive limonite alteration is present through out the hole and is indicative of hydrothermal fluids moving through the area but distally.
BJN25-002 intersected sandstone and conglomerate to a depth of 303 m where the hole was lost. The upper sandstone column to 140 m is pervasively bleached with moderate clay alteration. Extensive broken core, sooty sulphide and limonite are present throughout the entire sandstone column. A largely hematite altered conglomeratic body is present to 246 m and then sandstone proceeds to the end of the hole. Extensive patchy to pervasive bleaching picks up at 263 m and continues to where the hole was lost at 303 m.
In BJN25-002) above background uranium was intersected in the highly altered sandstone column from 152 to 197 m (up to 3.13 ppm U). Values above background in the altered sandstone is significant and shows that uranium-bearing fluids moved through this area.
Tarzan is a high-priority deep target requiring follow-up drilling.
Alteration identical to known deposits at Tatiggaq and Qavvik.
Strong clay alteration, hematite remobilization, and structural disruption.
Highly anomalous boron and uranium values in preliminary results.
Drilling to date did not reach optimal depths.
It is located along a prospective NE trend that several deposits related to the Kiggavik Project (Orano) lie along as well as a prominent ENE fault trend. Four drill holes were completed in the Tarzan anomaly, but several holes encountered challenging drilling conditions and were not drilled to an optimal depth.
TAZ25-002, TAT25-003 and TAT25-004 intersected very strong clay, bleaching, remobilized hematite and limonite alteration in various intrusive lithologies to the end of their holes. The targets did not get to depth due to drilling difficulty. TAT25-001 intersected moderate alteration and structural disruption and was testing outside the main anomaly targeting a major NE fault.
The alteration signature is identical to the hanging wall alteration to Tatiggaq and Qavvik and testing is required at greater depths.
Highly elevated uranium values of 155 and 345 ppm were intersected in TAZ25-003 and coincide elevated B (1,100 ppm), Mo (825 ppm), Co (13.9 ppm) and Ni (147 ppm). These highly elevated values are indicative of uranium mineralization processes similar to Tatiggaq.
Elevated uranium up to 29.8 ppm was intersected in TAZ25-002 and boron values throughout the Tarzan holes largely exceeds 200 ppm with several values over 1,000 ppm. Boron is a key indicator of being in the proximal clay alteration halo of a uranium deposit.
Lobster confirms basement-hosted uranium potential and adds diversity to the discovery pipeline.
Strong alteration and fault-controlled hydrothermal activity.
Highly anomalous boron (up to 1,790 ppm) and elevated uranium.
Indicates a major fluid system capable of mineralization.
The Lobster Grid is a significant gravity and magnetic low anomaly along the Judge Sissons fault and two holes were completed in 2025 to test this large anomaly area. A few historical holes were completed in the area that intersected extensive clay alteration and fault rock that warranted further testing. This target area is a basement target with no Thelon Formation sandstone cover.
LOB25-004 and LOB25-005 intersected highly altered gneiss, intrusive rock and fault rock with significant sections of strong pervasive bleaching and clay (toothpaste consistency). The strong alteration of the fault rock (quartz stockwork) shows significant hydrothermal penetration of a largely fluid barrier rock type and indicative of a major hydrothermal system moving through the area.
Highly anomalous boron geochemical values are present throughout both drill holes with values as high a 1,790 ppm B at 125 m in LOB25-004. Elevated uranium up to 16.7 ppm was intersected at 305 m (LOB25-004).
Geiger controls approximately 390,000 hectares in Saskatchewan’s Athabasca Basin and 95,519 hectares in Nunavut’s Thelon Basin and is focused on discovering high-grade uranium deposits across both regions.
Geiger’s flagship asset, the Aberdeen Project (Thelon Basin), hosts the high-grade Tatiggaq and Qavvik discoveries. The Aberdeen Project hosts 50+ high-priority targets, many showing strong alteration and anomalous uranium from limited historical drilling, with several areas remaining completely untested.
In the Athabasca Basin, Geiger is advancing the Hook Project, which hosts the ACKIO near-surface uranium discovery. The Hook Project also contains large clay-alteration systems with elevated radioactivity, highlighting additional discovery potential beyond ACKIO.
Source: Geiger Energy Corp.