Nimy Resources Highlights Multi-Metal Anomalies at Mons Project Ahead of EM Survey

Nimy Resources has confirmed extensive soil geochemistry anomalies for gold and base metals at its Mons Project in Western Australia, setting the stage for a detailed ground electromagnetic survey and maiden drilling.

  • Multiple parallel gold trends identified by soil sampling
  • Large copper-zinc-silver VHMS anomaly detected at Masson NE
  • Ground EM survey commencing to refine base metal targets
  • Prospectivity extends over ~18km with open-ended mineralisation
  • Further soil sampling and maiden drill plan underway
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Soil Sampling Uncovers Extensive Gold and Base Metal Anomalies

Nimy Resources (ASX:NIM) has revealed compelling results from an extensive soil geochemistry program at its 100%-owned Mons Project in Western Australia’s Murchison Domain. The latest assays, derived from 4,594 soil samples analysed via LabWest’s patented Ultrafine™ assay method, have delineated three parallel gold mineralisation trends at the Masson, Masson NE, and Thompson prospects. These newly identified gold corridors add to previously reported large anomalies at Corporate James and Corporate James South, collectively extending the prospective gold corridor to approximately 18 kilometres with mineralisation open along strike.

Base Metal Potential Strengthened by VHMS-Style Copper-Zinc-Silver Anomaly

Beyond gold, the geochemistry highlights a significant base metal anomaly at Masson NE, interpreted as potential volcanic-hosted massive sulphide (VHMS) mineralisation rich in copper, zinc, and silver. Additional discrete zones of base metal anomalism have been detected at central and southeast Thompson. Cobalt anomalies have also been instrumental in identifying possible intrusive-related copper-nickel-PGE mineralisation associated with magnetic and gravity highs beneath the Masson Dome, although this target remains concealed beneath extensive aeolian cover and will require drilling to confirm.

Ground Electromagnetic Survey to Commence This Week

Building on these encouraging geochemical footprints, Nimy is mobilising a ground electromagnetic (EM) survey this week across key Mons prospects including Masson, Masson NE, Sneaky Squirrel, and Block 3. The survey aims to detect conductive sulphide bodies that could represent massive sulphide mineralisation, refining drill targets ahead of the company’s maiden drilling campaign. The EM data will be integrated with soil geochemistry, airborne magnetics, gravity, and existing VTEM datasets to prioritise targets within the newly interpreted geological corridors.

Geological Interpretation Points to Diverse Mineralisation Styles

Recent geophysical surveys and regional data have led Nimy to interpret the Mons Greenstone Belt as a two-stage volcano-sedimentary sequence with a newly identified mafic-ultramafic intrusive province. The older Stage 1 greenstones, aged 2950-3000 million years, are prospective for komatiite-hosted nickel sulphides, VHMS copper-zinc sulphides, and gallium-bearing chlorite-talc schists, while the younger Stage 2 sequence may host intrusion-related gold systems. Multiple 330°-oriented shear zones enriched in pathfinder elements such as arsenic, bismuth, molybdenum, antimony, and tellurium suggest orogenic gold mineralisation is widespread across the belt and its granite margins.

Next Steps Focus on Integration and Drilling

Nimy plans to extend and infill soil geochemistry to close off open anomalies along strike and finalise a maiden drill program targeting priority zones within the Masson-Thompson corridor. The company is also assessing the potential for rare earth elements and gallium mineralisation, complementing its existing Block 3 Ga-REEs inferred resource. The upcoming drilling will be critical to test the geological interpretations and confirm the economic potential of the polymetallic anomalies identified.

While the current data reinforce Mons as a multi-commodity frontier with significant exploration upside, the true scale and grade of mineralisation remain to be established through drilling. The integration of EM results with geochemical and geophysical datasets will be pivotal in refining targets for the next phase of exploration.

Bottom Line?

Nimy’s comprehensive geochemical and geophysical groundwork at Mons primes the project for a decisive drilling phase that will test its multi-metal potential.

Questions in the middle?

  • How will the upcoming ground EM survey refine the prioritisation of drill targets at Mons?
  • What scale and grade of mineralisation might the maiden drilling campaign reveal along the Masson-Thompson corridor?
  • Could the assessment of rare earth elements and gallium add new dimensions to Mons’ resource potential?