Torr Metals Confirms Kilometre-Scale Geophysical Anomalies Coincident with Untested Copper Porphyry Targets at Kolos
Torr Metals Confirms Kilometre-Scale
Geophysical Anomalies Coincident with
Untested Copper Porphyry Targets at Kolos
Vancouver, British Columbia--(Newsfile Corp. - April 24, 2024) - Torr Metals Inc. (TSXV: TMET) ("
Torr"
or the "
Company
") is very pleased to announce preliminary results that have identified near-surface high
priority geophysical resistivity anomalies
extending up to >1.5 kilometers (km) depth that are
coincident with highly anomalous copper (Cu), gold (Au), and molybdenum (Mo) mineralization
at-surface
(Figure 1). These compelling exploration drill targets have been identified using a newly
completed 3D resistivity inversion voxel model, derived from the ZTEM geophysical survey completed
over the entirety of the 100% owned ~140 km
2
Kolos Copper-Gold Project in late 2023 (Figure 1).
The geophysical survey data was analyzed in conjunction with recently published soil geochemistry,
revealing
a multi-centred cluster porphyry trend spanning 7 kilometers (km)
(
see March 25, 2024
news release
). This trend encompasses
5 priority exploration targets for Cu-Au and Cu-Mo that
delineate potential porphyry centres, all of which have never been drilled
. Each target zone is
defined by >200 parts per million (ppm) Cu in soil with concentrations reaching a peaks of 1175
ppm Cu and 725 ppb Au (
Figure 1). All of the priority exploration targets are road-accessible from
Highway 5, approximately 23 km north-northeast of the city of Merritt, British Columbia.
Highlights:
Kilometre-scale Surface Exploration Targets Now Extended to Depth:
The results of the 3D
resistivity inversions have confirmed multiple untested sub-surface drilling opportunities with
3
major potential porphyry centres within the Lodi, Kirby, and Clapperton Zones together
with 2 additional satellite Cu-Au porphyry epithermal targets within the Ace and Rea
Zones
.
Multiple Broad Resistivity Anomalies Indicate Impressive Scale:
Across the Lodi, Kirby, and
Clapperton Zones,
extensive low to moderate and high resistivity anomalies span multiple
kilometers in the sub-surface, aligning with concentrated higher-grade Cu ± Au ± Mo
mineralization at the surface
(Figure 1).
Multiple Large-Scale Geophysical Anomalies Coincident with Surface Mineralization:
Analysis has confirmed an extensive anomalous resistivity signature, stretching over 4.8 km
in strike-length, connecting the Cu-Au Lodi and Kirby Zones at depth (Figure 2). Copper-gold
mineralization in both zones has a strong correlation to anomalous low to moderate
resistivity,
with anomalous signatures extending up to 1000 meters (m) in depth while
measuring ~1850 m and ~2500 m in strike-length within the Lodi and Kirby Zones
respectively
(Figure 2, Figure 3).
Anomalous copper-molybdenum in soil coincides with an at-surface high resistivity anomaly
at the Clapperton Zone, attributed to an exposed quartz-rich domain, typical of the upper
levels of a porphyry system, within a multi-phase diorite intrusive host;
resulting in an
anomalous geophysical signature measuring ~1400 m in width and >1500 m in
depth
(Figure 3).
Kirby Zone Expansion Potential:
The anomalous geophysical signature at the Kirby Zone
extends >1900 m south of the 2023 soil grid,
suggesting significant expansion potential with
further soil sampling
.
"The strong correlation between highly anomalous resistivity areas and known surface copper-gold and
copper-molybdenum mineralization is incredibly promising," said Malcolm Dorsey, President and CEO.
"We are now identifying the robust plumbing behind these prolific mineralizing systems, indicating an
immense scale of underlying potential. Torr is now equipped with the precise knowledge on where and
how to best target these anomalies in the sub-surface and with multiple untested zones delineated
across a 7 km cluster porphyry trend this is a significant opportunity for a potentially major new copper
discovery located only 30 km from Canada's largest open pit copper mine at Highland Valley."
ZTEM Geophysical Survey
ZTEM geophysics is a sophisticated technique for delineating expansive hydrothermal mineralization
and alteration systems typically associated with porphyry deposits, often spanning kilometer-scale
dimensions both horizontally and vertically. Moreover, its precision in defining intricate geological
structures proves invaluable, aiding in the identification and localization of mineralization; thereby
enhancing exploration efficiency and success.
Figure 1.
Kolos Project area with highly anomalous 2023 soil samples and ZTEM resistivity inversion at
200m vertical depth. Note that gaps in the data were caused by powerline disruption and location of
Highway 5.
To view an enhanced version of this graphic, please visit:
https://images.newsfilecorp.com/files/6794/206619_f59557ea44c5a946_001full.jpg
Figure 2.
ZTEM 3D Resistivity Inversion Model voxel slice through the Lodi and Kirby Zones, view
looking east-northeast.
To view an enhanced version of this graphic, please visit:
https://images.newsfilecorp.com/files/6794/206619_f59557ea44c5a946_002full.jpg
Figure 3.
ZTEM 3D Resistivity Inversion Model voxel slice through the Lodi and Clapperton Zones, view
looking northwest.
To view an enhanced version of this graphic, please visit:
https://images.newsfilecorp.com/files/6794/206619_f59557ea44c5a946_003full.jpg
Quality Assurance and Control
Results from samples were analyzed at ALS Global Laboratories (Geochemistry Division) in Vancouver,
Canada (an ISO/IEC 17025:2017 and ISO 9001:2015 accredited facility). A secure chain of custody is
maintained in transporting and storing of all samples. At ALS the "B" horizon soil samples underwent
screening to 180 microns under the ALS code PREP-41. The samples were digested using Aqua Regia
and analyzed via ICP-MS and ICP-AES using a 25g sample aliquot under the ALS code AuME-TL43.
The Company follows industry standard procedures for the work carried out on the Kolos Project. Due to
the reconnaissance nature of the soil sampling the Company relied on the internal quality assurance
quality control ("QA/QC") measures of ALS. Torr Metals detected no significant QA/QC issues during
review of the data.
Qualified Person
The technical content of this news release has been reviewed and approved by Michael Dufresne,
M.Sc., P.Geol., P.Geo., a consultant to the Company who is a qualified person defined under National
Instrument 43-101.
About Torr Metals
Torr Metals is a Vancouver based mineral exploration company focused on defining and developing the
substantial exploration potential of the ~140 km
2
Kolos Copper-Gold Project, located within the prolific
Quesnel Terrane in Central British Columbia. Year-round access is provided by Highway 5, with the
project being favourably located 23 km north of the city of Merritt and 286 km by highway from
Vancouver, British Columbia. For further details about the Latham Copper-Gold Project, please refer to
the Company's website or current geological Technical Report (August 24, 2021) filed on November 25,
2021 under the Company's profile on SEDAR at
www.sedar.com
.
On behalf of the Board of Directors
Torr Metals Inc.
"Malcolm Dorsey"
Malcolm Dorsey
President, CEO and Director
For further information:
Malcolm Dorsey
Telephone: 236-982-4300
Email:
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www.sedar.com
. The Company does not undertake to update any
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