White Cliff Minerals Copper Project Expansion Reveals Multiple Regional Targets

White Cliff Minerals Ltd-WCN-WCN carved in snowy mountainous landscape.

White Cliff Minerals Ltd

  • ASX Code: WCN
  • Market Cap: $51,416,299
  • Shares On Issue (SOI): 2,438,386,146
  • This is a special feature article produced for our partner. 

    Major Breakthrough: White Cliff Minerals Expands Danvers Copper Project with Multiple Regional Targets

    White Cliff Minerals (ASX: WCN; OTCQB: WCMLF) has announced significant findings from its airborne geophysical survey at the Rae Copper Project in Nunavut, Canada, revealing multiple high-priority targets along the Teshierpi fault zone that hosts the Danvers copper deposit.

    Geophysical Survey Identifies Significant Regional Upside

    The recent airborne geophysical survey has uncovered several previously unidentified high-priority targets adjacent to the Danvers deposit, pointing to substantial regional potential. Most significantly, these targets have been identified along a discrete 10km strike of the Teshierpi fault zone, the same structure that hosts the known Danvers mineralisation.

    "Preliminary results from the airborne magnetic survey have identified the potential for multiple Danvers-style deposits along the length of the Teshierpi Fault Zone," said Troy Whittaker, Managing Director of White Cliff Minerals. "These targets hold a similar magnetic signature, prove a continuous fluid pathway and are untested."

    The structure has been further validated by sulphide intersections in drill hole DAN25019, located approximately 4km south of the main Danvers mineralisation, confirming the extensive mineralising system along this fault corridor.

    Digitisation of Historic Resource Shows Potential Upside

    White Cliff Minerals is on the verge of releasing results from its review and digitisation of the Danvers historical resource. Preliminary findings suggest there could be material upside to the historic deposit footprint, which previously reported 4.16 million tons at a grade of 2.96% Cu.

    The company is now embarking on mineralogical studies, metallurgical test work, and scoping studies to identify the optimal method for treating the copper-rich ores and assess suitability for direct shipping.

    Advanced Exploration Techniques Reveal Promising Targets

    The airborne magnetic data shows a clear magnetic low associated with the known Danvers deposit, which is part of a much larger northeast/southwest striking Teshierpi Fault zone. The company has identified numerous high-priority geophysical targets with similar structural settings and geophysical responses to Danvers along this fault zone.

    What makes these findings particularly significant is that the magnetic low zones have been untested by drilling and now present as high-priority exploration targets for future drilling campaigns.

    Understanding Airborne Electromagnetic Surveys in Mineral Exploration

    Airborne Electromagnetic (AEM) geophysical surveys represent an advanced exploration technique designed to detect subsurface conductive anomalies without the need for ground disturbance. These surveys are particularly effective for identifying metallic mineral deposits that contain conductive materials such as copper sulphides.

    The technique works by generating electromagnetic fields from an aircraft and measuring the response from the ground below. Mineralised zones with higher conductivity will produce stronger responses, allowing geologists to identify potential deposit locations beneath the surface.

    This technology is especially valuable in remote regions like Nunavut, where ground access can be challenging and environmental considerations are paramount. By using AEM surveys, White Cliff can rapidly and cost-effectively identify high-priority drilling targets across large areas.

    The company deployed two specific types of airborne surveys at the Rae Copper Project:

    1. HeliTEM Survey: A helicopter-borne electromagnetic/magnetic survey flown with lines oriented perpendicular to the Teshierpi Fault Zone, with 100m line spacing.

    2. MobileMTd Survey: A drone-based mobile magneto-tellurics survey conducted across select parts of the Danvers mineral lease, with line spacing of 100m over the main deposit and 200m outside this zone.

    Future Exploration Plans and Timeline

    White Cliff Minerals has a structured approach to advancing the Rae Copper Project:

    1. Complete analysis of the second data set from the airborne electromagnetic survey
    2. Conduct trial downhole electromagnetic surveys at Danvers to guide future drilling along strike and down dip of the main mineralised breccia bodies
    3. Integrate 2025 drilling data with newly acquired geophysics to enhance subsurface understanding
    4. Generate a maiden exploration target in the coming months
    5. Plan drilling campaigns to test newly identified targets along the Teshierpi Fault Zone

    The company is also awaiting assay results from sedimentary prospects (including the Hulk prospect), which are currently undergoing final QA/QC signoff from the laboratory.

    Investment Thesis: A Copper Explorer with Significant Growth Potential

    White Cliff Minerals is strategically positioned in the Great Bear Lake area, identified as having Canada's highest probability for hosting iron-oxide-copper-gold-uranium plus silver-style mineralisation in the country. The Rae Copper Project contains numerous high-grade copper occurrences and hosts all first-order controls for a sediment-hosted copper deposit.

    The investment case for White Cliff Minerals copper project expansion is strengthened by several factors:

    1. Multiple Deposit Types: The project hosts both breccia-style copper mineralisation (Danvers) and sediment-hosted copper potential, diversifying discovery opportunities.

    2. Exceptional Grades: Previous exploration has yielded impressive results, including drill intercepts of 175m @ 2.5% Cu & 8.66g/t Ag, 90m @ 4% Cu & 7.5g/t Ag, and 58m @ 3.08% Cu & 13.3g/t Ag.

    3. Regional Scale Potential: The newly identified targets along the 10km Teshierpi fault zone suggest multiple Danvers-style deposits could exist within the project area.

    4. Historical Resource Base: The historic Danvers resource provides a solid foundation, with 4.16 million tons at 2.96% Cu, and recent work suggests potential upside to this estimate.

    5. Strong Technical Approach: The company is using advanced exploration techniques, including airborne geophysics, to efficiently identify high-priority targets.

    Why Investors Should Follow White Cliff Minerals

    White Cliff Minerals represents a compelling opportunity for investors interested in the copper sector. With copper prices projected to rise due to growing demand from renewable energy technologies and electric vehicles, the company's high-grade copper project is well-timed.

    The combination of an existing historical resource, exceptional drill results, and newly identified regional targets provides multiple pathways to value creation. As the company advances toward a maiden exploration target in the coming months, investors can anticipate a steady flow of news catalysts.

    The use of modern exploration techniques to reassess an area with known high-grade copper mineralisation demonstrates a smart technical approach that could unlock significant value. For investors seeking exposure to copper exploration with near-term development potential, White Cliff Minerals warrants close attention as it continues to expand the scope and scale of the Rae Copper Project.

    Want to Be Part of White Cliff Minerals' Copper Expansion Story?

    Discover how White Cliff Minerals is unlocking significant value at its Rae Copper Project with multiple high-priority targets along the Teshierpi fault zone. As the company progresses toward its maiden exploration target and advances its drilling campaigns, now is the perfect time to learn more about this compelling copper investment opportunity. For comprehensive information about White Cliff Minerals and its expanding copper projects in Canada's mineral-rich Nunavut region, visit their website today.

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