Austral Gold Reports New Drilling Results from Jaguelito
Austral Gold Reports New Drilling Results
from Jaguelito
HIGHLIGHTS
Final assays received from the last 623 meters drilled at Jaguelito Sur. Since December 2022,
Austral drilled a total of 4,331 meters at Jaguelito Norte and Sur in accordance with the option
agreement with Mexplort to acquire up to 50% of the project.
Best intercept from latest drilling results:
Sagitario target
(Sur Zone)
DJS-001A: 14m @ 0.70 gpt gold and 17 gpt silver
Including 4.4m@ 1.44 gpt gold and 30 gpt silver
Sydney, Australia--(Newsfile Corp. - September 11, 2023) -
Established gold producer Austral Gold
Limited
(ASX: AGD) (TSXV: AGLD) (OTCQB: AGLDF) (the
"Company"
or
"Austral"
) has completed
the first stage of drilling at the Jaguelito Project in Argentina's prolific El Indio Gold Belt.
At the Sagitario target at Jaguelito Sur (see Figure 2 below), drill hole DJS-001A intersected 14.0 m @
0.7 gpt Au & 17 gpt Ag, starting at 133m, including 4.4m @ 1.44 gpt Au & 30 gpt Ag, from 143m. The
hole reached a significant depth of over 400m, marking the largest phreatomagmatic column
encountered in the project to date. The results indicate that one of the five surface-identified centers at
Jaguelito Sur is similar to the dimensions and intensity of high-sulphidation deposits in this metallogenic
belt.
Gold and silver mineralisation, in line with our exploratory model, is high-sulfidation and hosted
predominantly in phreatomagmatic rocks. Gold is associated with grey silica flooding in vuggy silica and
quartz-alunite-jarosite hydrothermal alteration.
Austral drilled a total of 4,331m across two sectors at the Jaguelito project: Jaguelito Norte
1
and
Jaguelito Sur.
In accordance with the Company's agreement with Mexplort Perforaciones Mineras SA ("Mexplort")
[1]
,
Austral intends to exercise its option to acquire 50% of the project by drilling additional 700m to satisfy
the 5,000m drilling commitment under Stage 1 of the agreement. The 700m are expected to be drilled in
a new program to be jointly developed with Mexplort later this year. As of 31 August 2023, drilling
campaign costs totalled approximately US$4.7M.
Austral Gold's Chief Executive Officer
,
Stabro Kasaneva
said: "We are pleased initial drilling at
Jaguelito has confirmed northwest structural mineralisation controls, which are crucial for HS-type
epithermal deposits during the Miocene era in the region. Based on the results obtained to date, we are
planning a new drill program."
Figure 1.
Jaguelito Project located in the Indio Belt, Argentina
To view an enhanced version of this graphic, please visit:
https://images.newsfilecorp.com/files/690/180175_99411867b444581f_002full.jpg
Table 1:
Jaguelito Sur Drill results
To view an enhanced version of this graphic, please visit:
https://images.newsfilecorp.com/files/690/180175_austral1en.jpg
Figure 2.
Jaguelito Sur drill hole locations
To view an enhanced version of this graphic, please visit:
https://images.newsfilecorp.com/files/690/180175_99411867b444581f_004full.jpg
Neither TSX Venture Exchange nor its Regulation Services Provider (as that term is defined in the
policies of the TSX Venture Exchange) accepts responsibility for the adequacy or accuracy of this
release.
Release approved by the Chief Executive Officer of Austral Gold, Stabro Kasaneva.
For more information please contact:
Jose Bordogna
Chief Financial Officer
Phone: +61 466 892 307
Gareth Quinn
Media and Investor Relations
Phone +61 417 711 108
Forward Looking Statements
Statements in this news release that are not historical facts are forward-looking statements.
Forward-
looking statements are statements that are not historical, and consist primarily of projections -
statements regarding future plans, expectations and developments.
Words such as "expects", "intends",
"plans", "may", "could", "potential", "should", "anticipates", "likely", "believes" and words of similar
import tend to identify forward-looking statements.
Forward-looking statements in this news release
include Austral intends to exercise its option to acquire 50% of the project by drilling an additional 700
meters to satisfy its 5,000m drilling commitment under Stage 1 of the agreement, the 700 meters are
expected to be drilled in a new program to be jointly developed with Mexplort later this year, and the
Company's 2023 forecasted production.
All of these forward-looking statements are subject to a variety of known and unknown risks,
uncertainties and other factors that could cause actual events or results to differ from those expressed or
implied, including, without limitation, business integration risks; uncertainty of production, development
plans and cost estimates, commodity price fluctuations; political or economic instability and regulatory
changes; currency fluctuations, the state of the capital markets especially in light of the effects of the
novel coronavirus, uncertainty in the measurement of mineral reserves and resource estimates, Austral's
ability to attract and retain qualified personnel and management, potential labour unrest, reclamation and
closure requirements for mineral properties; unpredictable risks and hazards related to the development
and operation of a mine or mineral property that are beyond the Company's control, the availability of
capital to fund all of the Company's projects and other risks and uncertainties identified under the
heading "Risk Factors" in the Company's continuous disclosure documents filed on the ASX and on
SEDAR.
You are cautioned that the foregoing list is not exhaustive of all factors and assumptions which
may have been used. Austral cannot assure you that actual events, performance or results will be
consistent with these forward-looking statements, and management's assumptions may prove to be
incorrect. Austral's forward-looking statements reflect current expectations regarding future events and
operating performance and speak only as of the date hereof and Austral does not assume any obligation
to update forward-looking statements if circumstances or management's beliefs, expectations or
opinions should change other than as required by applicable law. For the reasons set forth above, you
should not place undue reliance on forward-looking statements.
Confirmation: For the purposes of ASX Listing Rule 5.23.2, Austral confirms that is not aware of any
information or data that materially affects the information included in its press release dated 24 April
2023.
Competent Person
Technical information in this media release that relates to Exploration Results is based on work
supervised, or compiled on behalf of Robert Trzebski, a Director of the Company. Dr. Trzebski, who is a
member of the Australasian Institute of Mining and Metallurgy (AusIMM) and qualifies as a Competent
Person as defined in the 2012 Edition of the 'Australasian Code for Reporting of Exploration Results,
Mineral Resources and Ore Reserves' consents to the inclusion of the technical information that he has
reviewed and approved or has been compiled on his behalf.
About Jaguelito
The Jaguelito Project is an advanced exploration stage project located in located in one of the main
districts of precious metals worldwide; the El Indio - Pascua Lama district in the Province of San Juan,
Argentina. Its deposits, of the high sulfidation epithermal type of Miocene age, include mines in
production, construction and exploration.
The Jaguelito project covers an area of 11,000 approximately hectares, and over 150 holes (~30,000m)
were drilled by previous owners (Minera Peñoles, Minera IRL) between 1996 and 2009. It is located
approximately 225km northwest of the city of San Juan in Valle del Cura, Iglesias Department, San Juan
Province, Argentina. Its central coordinates are 29° 46' 20" West Latitude, 69° 38' 15 South Longitude
and a variable altitude between 3,600 and 4,300 meters above sea level. Jagüelito is a high sulfidation
epithermal deposit related to a Miocene volcanism hosted in basement of Permo-Triassic age. Its
mineralisation is related to a hydrothermal system controlled by northeast-southwest oriented faults and
hosted in porouspermeable volcaniclastic units. These rocks allowed the circulation of precursor acidic
hydrothermal fluids that strongly altered the rocks through which they circulated, generating a secondary
porosity or vuggy silica, in the alteration cores. The high porosity product of the alteration served as a
conduit for the posthumous hydrothermal fluids responsible for the mineralisation of gold and silver.
About Austral Gold
Austral Gold is a growing gold and silver mining producer building a portfolio of quality assets
in the Americas.
Austral continues to lay the foundation for its growth strategy by advancing its attractive
portfolio of producing and exploration assets.
OPERATIONS
Guanaco and Amancaya mines, Antofagasta Province, Chile
(100% interest)
Open pit and underground.
2022 Production: 27,686 gold equivalent ounces
2023 Forecast: 32,000-36,000 gold equivalent ounces
Casposo/Manantiales Mine Complex, San Juan Province, Argentina
(100% interest)
Gold and silver mine currently in care and maintenance. Strategy is to restart profitable mining
operations.
EXPLORATION
CHILE
Paleocene Belt, Chile
Guanaco District
Amancaya District
Las Pampa District
ARGENTINA
Triassic Choiyoi Belt
Indio Belt
Deseado Massif
EQUITY INVESTMENTS
Unico Silver Limited, an ASX listed company (17% interest)
Rawhide Mine, private vehicle, Fallon, Nevada, USA (24% interest)
Ensign Minerals Inc., private vehicle, Utah, USA (12% interest)
Pampa Metals Corp, a CSE listed company (5.5% interest)
JAGUELITO EXPLORATION PROJECT
JORC Code, 2012 Edition - Table 2 Report
Section 1 Sampling Techniques and Data
(Criteria in this section apply to all succeeding sections.)
Criteria
Commentary
Sampling
techniques
Industry-standard practices were used for sampling diamond drilling.
The diamond drilling core was recovered from drill rods and stored in core's
wooden boxes, where it was geologically logged, then half core samples
were taken using an automatic core splitter, bagged, and sent to the
laboratory.
Samples were assayed for gold, mercury (cold vapor), and ICP-Mass (39
elements package) at a certified external laboratory, Asi (Argentina).
Rock chip sampling of outcropping rocks.
The outcrop geologic logging is performed by an experienced geologist who
records the alteration and other specifics geological features.
Drilling techniques
Drilling techniques used were surface core drilling rig producing core at HQ
size.
Positioning of the drilling machine using Brunton compass and clinometer.
Drill sample
recovery
Sample recovery is generally >95%.
The mineralised zone appeared to be quite competent and core recoveries
were excellent.
All core was carefully placed in HQ sized core wooden boxes and
transported a short distance to a core processing-sampling area where core
recovery, depth markup and photography could be completed.
Logging
The diamond drill core was geologically logged using predefined logging
codes for lithological, mineralogical, and physical characteristics.
Structural and geotechnical measurements and the estimation of recoveries
were quantified in nature.
The drill cores are photographed and digitally stored for visual reference.
All holes are logged from the beginning to the end.
Sub- sampling
techniques and
sample preparation
For the diamond drill holes, sample intervals are marked, and the core was
cut in half by an automatic splitter. One of the core halves is placed in a
plastic bag and tagged with a unique sample number or a code number. The
other half of the core is returned to the core wooden box for securely storing.
If assays need to be checked by a second lab (internal or external) the
second core half stored is cut in half (1/4) using one half for assays check
and the other half (1/4) is returned to the core wooden box for securely
storing.
Quality of assay
data and laboratory
tests
Drill samples are collected, bagged, coded, and sent to Asi laboratory. At
the Laboratory facility, the samples are crushed and prepared. Gold assays
are done using FA-AAS procedure on a 50g sample weight.
ICP-OES radial method with Aqua Regia 0.2 gr digestion with a total
determination of 39 elements (Accredited Method by
ISO 9001:2015
;
ISO
17025:2017
).
Mercury analysis of 0.2 gr in Aqua Regia, total determination by AAS cold
vapor.
Internal laboratory checks were made regarding sample preparation and
assaying procedures.
QA/QC procedures include the definition of a "Geochemical Check List"
where all parameters are set to ensure adequate control over the stages of
preparation and chemical analysis of diamond core samples. Blanks,
standard and field duplicate are inserted with a frequency of 5%, coarse
duplicates 2.25% and pulp duplicates 1.25%.
A new quality control configuration has been proposed which inserts 5
control samples in a batch of 40 samples. The 5 controls configuration is
defined as 2 standard control samples, 1 blank sample, 1 fine coarse
rejected sample (pulp) and 1 very coarse rejected sample.
Levels of acceptancy for standard samples are to 3sd.
Verification of
sampling and
assaying
Samples data type manually into electronic spreadsheets.
The spreadsheets are stored on servers whose hardware is securely
housed in the mine.
The data is loaded in software such as Target for ArcGIS and Leapfrog to
identify possible errors in manual data loading.
Location of data
points
The drilling collar survey used Trimble TSC3 Differential GPS, +- 1cm
precision.
The datum used was Campus Inchauspe and Gauss Kruger Argentina
coordinate system.
Downhole surveys are completed by downhole methods (Reflex EZ-TRAC)
at regular intervals (50 m and total hole).
Data spacing and
distribution
Exploration drilling per target is in sections and drill hole spacing is irregular
to confirm extensions of mineralisation, according to lithological and
structural criteria.
No sample compositing is applied during the sampling process.
Orientation of data
in relation to
geological structure
Drilling sections are designed to intercept structures as perpendicular as
possible with available surface and underground data.
Continuous saw blade channel samples trenches were transformed to sub-
horizontal drill hole traces and then incorporated into the drill hole database.
Such channels were done in outcrops across mineralized quartz vein, and
sampling included low grade or barren material taken from wall rock in both
sides of the mineralized vein.
Overall, there is considered to be no sampling bias from the orientation of
the drilling.
Sample security
Samples are transported from the sampling area to the certified external lab
via laboratory transport. The laboratory received sample dispatch
documents for every sample batch.
Laboratory returns pulp samples and excess material.
Audits or reviews
Not applicable.
Section 2 Reporting of Exploration Results
(Criteria listed in the preceding section also apply to this section)
Criteria
Commentary
Mineral tenement
and land tenure
status
Mexplort, together with Austral Gold, have an agreement with Provincial
Institute of Explorations and Mining Exploitations (IPEEM ) for the
exploration of the Jaguelito project.
The mining property includes 8 "Discovery manifestation", covering an area
of 11,700 hectares.
Exploration done by
other parties
Between 1995 and 2002, the project was explored by Peñoles, who
developed the project in an advanced manner, with more than 24,000 m of
drilling (approx. 100 drill holes), extensive geophysical coverage (Mag-Rad,
IP, CSAMT) and defined a Resource of 17.2 Mt @ 0.59 gpt Au and 52.2 gpt
Ag.
Between 1999 and 2000, the project was explored by Minera IRL, who
concentrated their activities only in Jaguelito Norte, with more than 5700 m
of drilling (52 holes) and re-defined resources of 282,000 Oz Au.
As of 2011 Mexplort, through an agreement with IPEEM, began work on the
project, consolidating historical information, with metallurgy studies and
modeling and performing a new calculation of resources.
Geology
Jagüelito is a high sulfidation epithermal deposit related to a Miocene
volcanism hosted in basement of Permo-Triassic age. Its mineralisation is
related to a hydrothermal system controlled by northeast-southwest oriented
faults and hosted in porous-permeable volcaniclastic units. These rocks
allowed the circulation of precursor acidic hydrothermal fluids that strongly
altered the rocks through which they circulated, generating a secondary
porosity or vuggy silica, in the alteration cores. The high porosity product of
the alteration served as a conduit for the posthumous hydrothermal fluids
responsible for the mineralisation of gold and silver.
Drill hole
Information
Not applicable.