Independent Study Finds Evidence of Hypogene Enrichment at Hercules, Outlining Greater Scale and Grade Potential
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Independent Study Finds Evidence of Hypogene Enrichment
at Hercules, Outlining Greater Scale and Grade Potential
Toronto, Ontario / May 5, 2025 – Hercules Metals Corp. (“Hercules” or the
“Company”) (TSX-V: BIG) (OTCQB: BADEF) (FRA: C0X) is pleased to announce the
results of a n independent study, focused on the high-grade enrichment zone at the
Company’s Hercules Property in western Idaho (“Hercules” or the “Property”). The study,
authored by independent consultant Jamie Wilkinson1 (the “Wilkinson Report”), presents
evidence that Leviathan’s shallow enrichment zone formed through a hypogene process
known as “telescoping” , in which epithermal fluids overprinted and upgraded earlier
porphyry mineralization. Unlike supergene enrichment, which is limited to narrow blankets
of near -surface weathering , telescoping implies significantly greater scale and grade
potential. The upcoming drill campaign will therefore focus on targeting the shallower levels
of the system, where the porphyry and epithermal systems are believed to overlap.
Highlights
• Telescoping of hypogene enrichment, occurs when a porphyry system is rapidly
uplifted into a shallower high-sulfidation epithermal environment.
• Microscopic examination of Leviathan’s enrichment zone reveals an assemblage of
bornite-chalcocite-digenite-covellite-pyrite, with strong quartz-muscovite and
trace advanced argillic alteration, consistent with a high-sulfidation epithermal
upgrade (hypogene enrichment).
• Vectoring towards thicker zones of hypogene enrichment requires a clear
understanding of the structural evolution . While rapid uplift can enhance
enrichment, it also heightens the risk of erosion . Preservation is highest where
enrichment zones become quickly down-dropped and buried after their formation.
1 Wilkinson, J. 2025. Final Report on the Hercules Project Based on Site Visit, Petrographic Observations, Geochemistry and SWIR
Alteration Logs. By Jamie Wilkinson. JJW Geoconsultants Ltd.
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• The Leviathan district was tilted and potentially down -dropped to the north-
northwest, suggesting potential for enhanced preservation under cover in that
direction.
• The 2025 drill campaign is designed to test the newly developed geological model
(outlined in a recent press release) which highlights potential for southeast dipping
feeder structures , along which the enrichment may root far deeper than
previously appreciated.
• Despite being truncated by a supergene leach cap, no significant supergene
enrichment is apparent.
• Intense phyllic alteration and near-complete feldspar destruction, supressed
formation of a supergene enrichment blanket beneath the leach cap. However, the
presence of native copper in the leach cap of two adjacent drill holes offers a
compelling vector for a potential exotic copper deposit.
Chris Paul, CEO and Director of the Company, commented , “Jamie’s report provides us
with important insight into the origin and preservation of high-grade hypogene enrichment,
significantly influencing our exploration strategy moving forward. Combined with input from
the new 3D geological model, and the acquisition of a strategic mineral lease in areas of
enhanced preservation potential, we’re now able to start directly testing for zones of thicker
hypogene enrichment.”
Addressing the Origin of the Enrichment Zone
The Wilkinson Report was aimed at addressing whether the high -grade enrichment at
Leviathan was the product of weathering (supergene) or a hydrothermal overprint
(hypogene). The planar upper contact of the enrichment zone led to some speculation that
it was a supergene enrichment blanket, created by erosion and leaching from above .
However, new insight provided by the Wilkinson Report demonstrates strong evidence that
the unconformity and leach cap crosscut, but do not upgrade, a pre-existing hypogene
enrichment zone.
Although not conclusively identified, negligible volumes of potential supergene copper may
occur within the high -sulfidation enrichment zone . However, the potential contribution of
any unidentified supergene copper within the enrichment zone would be trivial, if anything.
The leach capping above, however, does contain supergene native copper in two drill
holes, which may instead point to the potential for a distal exotic copper deposit.
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Rethinking Scale
New 3D geological and structural modeling highlight s a pronounced southeast dip to the
system, encompassing the hypogene enrichment zone. Earlier drilling was based on a
shallow, gently dipping blanket model; however, the enrichment is now interpreted to
extend significantly deeper along southeast -dipping feeder structures . The upcoming
northwest-oriented fence drilling campaign is specifically designed to test this revised
model and evaluate the true vertical extent of enrichment along these newly defined
structural controls.
Preservation Windows and Untested Potential
Approximately 1.6 km of Leviathan’s 4-km-long chargeability anomaly has been tested by
drilling, within which, the enrichment zone has undergone leaching and erosion. However,
new mapping and oriented core drilling has lead to a geological and structural model that
highlights areas with greater preservation potential including:
• Broad areas t o t he north and northwest, where tilting and rotation may have
preserved progressively shallower Triassic geology under post-mineral cover.
• Northwest of the BNA Fault , where the Western Deeps chargeability anomaly is
interpreted to be down-dropped by several hundred meters. Depending how quickly
the Western Deeps was down-dropped, buried and preserved, there may be much
thicker zones of enrichment preserved. The Resolution Copper project in Arizona2,
represents an analogue to this structural/deposit model.
Resolution as a Potential Analogue
Figures 1 and 2 present northwest facing cross -sections of the geology and alteration at
Resolution, from Hehnke et al. The Resolution porphyry system is interpreted to have
undergone rapid uplift during formation , which resulted in substantial telescoping of its
alteration and mineralization, including a late-stage high-sulfidation enrichment overprint,
represented by the blue zone of “advanced argillic” alteration on Figure 2.
As uplift continued, the shallow part of the system , above the 1% Cu shell, was eroded,
and imposed a leach cap , represented by the orange “supergene” alteration zone on
Figure 2. However, prior to erosion of the 1% Cu shell, local tectonics reversed course
quickly and down-dropped the deposit into a structural graben, burying it with over 1km of
2 This press release contains information about the Resolution Copper project in Arizona, owned by BHP (45%) and Rio Tinto (55%),
which Hercules has no right to explore or mine. Readers are cautioned that mineral deposits at the Resolution Copper project are not
indicative of mineral deposits on the Hercules Property. The geological comparison is for conceptual targeting only.
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“Whitetail Conglomerate” and other post -mineral cover rocks (Figure 1). Although the
deposit is now situated beneath 1.5 km of post-mineral cover, that rapid down -drop and
burial is ultimately what preserved the high -grade part of the system from erosion . Post-
mineral tilting has also since rotated the deposit approximately 25 degrees to the northeast
as indicated by the basal contact of the Whitetail Conglomerate.
Another interesting analogue of note is that Resolution lacks any significant supergene
enrichment.
Figure 1: Geological section through the Resolution copper deposit looking northwest3.
3 Hehnke, C., Ballantyne, G., Martin, H., Hart, W., Schwarz, A, and Stein, H. 2012. Geology and Exploration Progress at the Resolution
Porphyry Cu-Mo Deposit, Arizona. Society of Economic Geologists, Inc. Special Publication 16, pp. 147–166
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Figure 2: Alteration section through the Resolution copper deposit looking northwest.
Figure 3: Figure extracted from the Wilkinson Report comparing automated SEM scans of intense quartz -
muscovite alteration with disseminated bornite -chalcopyrite in the enrichment zone at Leviathan to a similar
style of alteration and mineralization at the Resolution copper project in Arizona2.
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Figure 4: District scale map, with dark shading over areas of post -mineral cover, indicating broad areas of
increasing enrichment potential to the north and northwest.
Potential for Exotic Copper
The 1.6 km portion of the enrichment zone which has been tested so far at Leviathan
shows effects of supergene leaching , without any immediate evidence for supergene
enrichment below. The likely reason for this is destruction of the host rocks acid buffering
capacity by the telescoped alteration. The Wilkinson report notes that extreme phyllic
alteration at Leviathan resulted in near complete destruction of feldspars, which are a
typical “trap” needed to re-precipitate copper in a supergene blanket . However, the
absence of supergene copper in an underlying blanket, signals potential for the alternative
method of supergene enrichment – a distal “exotic copper deposit” – which may occur at
greater distances if a suitable chemical trap was encountered.
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Highly acidic groundwater is interpreted to have transported copper, weathered and
leached from the enrichment zone, downslope along a paleo groundwater flow path. It is
yet to be determined which direction was downslope in a paleo -topographical setting ,
however modelling of the unconformity in 3D continue s to reveal insights to the ~200 -
million-year (Ma) paleo-topography.
Tentatively, downslope is inferred to be the same direction as tilting, to the north-northwest.
Possible evidence for this occurs in two drill holes, 24-08 and 24-11, situated to the north-
northwest, each of which encountered supergene native copper in the leach cap. The
metallic copper occurs along late carbonate veins that appear to have provided a suitable
chemical trap to react with the acidic groundwater and re-precipitate the copper leached
by weathering from the enrichment zone nearby . These may represent points along a
potential paleo groundwater flow path, from leach cap to distal exotic copper deposit, if a
larger chemical trap, such as an entire host rock composed of carbonate, rather than just
small veins of it, was encountered along the groundwater flow path.
Figure 5: Supergene native copper in drill holes 24-08 and 24-12. Note the association with late carbonate veins
(white), which appear to be near-completely replaced by metallic copper. Core is 3.3” diameter PQ.
Evidence for Hypogene Enrichment
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The following lists the important geological factors that support the conclusion of a
hypogene origin to the bornite-chalcocite dominated enrichment zone at Leviathan. Many
features were observed under either petrographic microscope or automated SEM.
A. Thin sections show bornite intergrown with pyrite – a hallmark of high-sulfidation
mineralization. Minor covellite, a typical high -sulfidation copper mineral, occurs
as well.
B. Bornite contributes the majority of grade to the enrichment zone and significant
quantities are only known to form in high temperature conditions. No significant
resources of supergene bornite are known to exist globally . Under supergene
conditions, bornite is only hypothetically stable in a very small theoretical stability
field, illustrated by the red field in Figure 6, extracted from the Wilkinson Report.
Figure 6: Eh-pH Phase diagram extracted from the Wilkinson Report, showing the very small theoretical stability
field of bornite in supergene conditions (red), within a larger stability field of chalcocite under similar conditions.