DISTRICT-SCALE PROJECT IN PROVEN GEOLOGICAL ENVIRONMENT, DEMONSTRATING POTENTIAL HALLMARKS OF A SIGNIFICANT AU-CU DISCOVERY OPPORTUNITY IN NEW BRUNSWICK
2 CLAIMS PACKAGES, MCINTYRE BROOK AND RILEY BROOK, FORM A LARGE ~445 KM² UNDER-EXPLORED LANDHOLDING IN NEW BRUNSWICK AND THE CORE OF ACADIAN GOLD, WITH THE POTENTIAL FOR A SIGNIFICANT AU-CU DISCOVERY OPPORTUNITY
50% STAKE AND OPERATOR ROLE IN JOINT VENTURE WITH GOLD OROGEN RESOURCES CORP. ACROSS 2 CLAIMS PACKAGES IN AN EMERGING GOLD-COPPER CAMP


Project Highlights

01
Top Jurisdiction
Positioned within the Appalachian Gold Corridor along major orogenic structures, Rocky Brook–Millstream and Woodstock–Catamaran Faults—corridors hosting world-class projects like Queensway (New Found Gold) and Valentine Lake (Equinox Gold)

02
Proven Analogues & Upside
Structure hosts both orogenic and intrusion-related gold ±Cu systems—allowing multiple exploration models, open-ended potential​
McIntyre Brook geology mirrors Puma’s Williams Brook, currently optioned to Kinross, providing a strong peer comparison

03
McIntyre Brook: 3 km Trend
Potential for extensive gold system at McIntyre Brook, adjacent to Puma Exploration’s Williams Brook Project (Kinross Gold option), on strike with Puma’s Lynx showing (50m @ 5.5g/t Au)
3 km gold-bearing horizon with highlights of 1.2 g/t Au over 20 metres (2019 drilling), 1.19 g/t Au over 5.3 metres (2025 trenching), and grab samples up to 7 g/t Au​

04
Large Untested Anomalies
Riley Brook soil sampling (10% coverage) outlined a 4 km x 2 km geochemical anomaly (Au–W–As–Sb) coincident with EM and radiometric signatures, pointing to epithermal or intrusion-related systems

05
Expanding Horizon, New Drilling
McIntyre Brook historical drilling intersected 1.205 g/t Au over 20 m, including 5.83 g/t Au over 2 m (MB19-04)
Trenching extended favourable felsic horizon to a 3 km strike extension, grab samples up to 6.95 g/t Au
Planned 2,500 metre drill program across McIntyre Brook and Riley Brook

06
Large-Scale Potential
419 km² HeliTEM² survey delivered high-resolution EM, magnetics, and radiometrics, mapping structures, alteration, and sulphides—critical for precise drill targeting​
