Plato reports on High-Resolution Airborne Magnetic and Radiometric Geophysical Survey on the Good Hope Niobium Project
Plato reports on High-Resolution Airborne Magnetic
and Radiometric Geophysical Survey on
the Good Hope Niobium Project
Toronto, Ontario – April 4, 2022 – Plato Gold Corp. (TSX-V: PGC) (OTCQB: NIOVF) (FRANKFURT:
4Y7 OR WKN: A0M2QX) (“Plato” or the “Company”) is pleased to announce the results from its recently
completed High-Resolution Airborne Magnetic and Radiometric geophysical survey over the Good Hope
Niobium Project. The geophysical survey data confirmed the Good Hope Niobium occurrences
represent a discrete intrusion distinct from Prairie Lake Carbonatite complex located to the
southeast. Geophysical data and 2018 diamond drilling indicate the potential size of the n iobium-
rich zone to be at least 500 sq m in area with a confirmed depth of 500 m. The geophysical survey was
flown by Prospectair Geosurveys Inc. of Gatineau, Québec in October of 2021.
The property is located 60 km northwest of Marathon, Ontario. Results from both the survey and a recently
expanded sampling program completed on the 2018 diamond drill core, will be used to direct exploration
work during the 2022 field season. The sampling program included 2,314 one -meter samples submitted
for analysis t o Activation Laboratories Ltd. (ActLabs) in Thunder Bay (Plato Gold News Release,
September 21, 2021).
Additional highlights of results from the recently completed geophysical survey and sampling program and
the general infrastructure related to the Good Hope Project, are provided below:
• Results from the 2018 and 2021 drill core sampling program identified numerous niobium -
rich sections including 0.307% Nb 2O5 over 32.00 m and 0.405% Nb 2O5 over 10.67 m (Table
1).
• Spectrometric data from the 2021 Prospectair survey completed by Plato and geochemical
analysis of the 2018 drill core, indicates highly anomalous potassium (Map 1), low to non -
existent thorium and uranium mineralization and a high Gamma -Ray signature (Map 2)
specific to the area of the Good Hope niobium-rich zone
• The Residual Total Magnetic Intensity map (Map 3) in the area of the Good Hope niobium -
rich zone, indicates a coincident prominent low intensity signature
• Favorable infrastructure: Road accessible property 30 km north of the Trans-Canada Hwy
17 and the recently constructed Nexbridge east-west 230-KV transmission line
Dr. Roger Mitchell, Professor Emeritus at Lakehead University and advisor to Plato Gold Inc., states that
“compared with other carbonatites currently being evaluated for their niobium potential, the Good Hope
prospect has significant economic potential because of favorable mineralogy for pyrochlore
beneficiation and the existing infrastructure”. Niobium is on the ‘technology-critical elements’ list in
the U.S., the E.U. and Canada. There are only three operating niobium mines in the world today, two in
Brazil and one in Canada. The most important uses of niobium are in the production of superconducting
alloys for jet and rocket engi nes and in superconducting magnets for MRI scanners and hydrogen fusion
projects, in addition to common uses in the electronics and steel industries. Niobium is also used as a
component in electric vehicle batteries for stability, increased capacity, fast er charging and in
protective coatings.
In 2017, Plato signed an agreement with prospector Rudy Wahl of Marathon, Ontario , by which the
company was allowed to acquire a 100% interest in the Good Hope Property in 2019 following a 5,000 m
diamond drilling program. Prior to the agreement, work conducted by Dr. Wahl, including pitting,
trenching and sampling over a well-defined radiometric anomaly, resulted in the discovery of grab samples
assaying up to 1.63% Nb2O5.
The 2018 diamond drilling program completed by Plato Gold at the Good Hope Niobium Project consisted
of nine drill holes at 100 m spacing, for a total 5016 m. All drill holes intersected zones of massive
carbonatite within a breccia system consisting of variably fenitized syenite xenoliths intruded by carbonatite
dykes and crosscutting carbonatite veins. The drilling encompassed an area of approximately 500 m by
500 m with all holes drilled in a northwesterly direction and to a vertical depth of between 285 m and 580
m. The intersection of massive pyrochlore -bearing carbonatite in every drill hole from surface to
approximately 500 m in depth, suggests that significant potential exists for a large volume of niobium
mineralization.
The diamond drilling work to date has indicated that the Good Hope Property is a discrete carbonatite
complex. The carbonatites are host to niobium mineralization which occurs principall y as
pyrochlore-apatite clasts within a carbonatite breccia. The carbonatites are distinct in their
mineralogy from the nearby Prairie Lake Complex.
Plato Gold Corp
Good Hope Project
2018 Drill Holes
(Sampling 2018,
2021)
From
(m)
To
(m)
Interval
(m)
Grade
(% Nb2O5)
PGH-18-01 273.92 278.30 4.38 0.366
317.00 321.22 4.22 0.215
324.00 342.16 18.16 0.232
Incl 324.00 331.80 7.81 0.320
PGH-18-02 39.25 50.50 11.25 0.218
Incl 39.25 44.00 4.74 0.334
225.00 227.00 2.00 0.455
PGH-18-03B 188.73 196.00 7.27 0.247
218.86 223.30 4.44 0.381
254.00 257.63 3.63 0.165
411.00 418.50 7.50 0.229
PGH-18-04 498.84 507.59 8.75 0.291
527.22 551.25 24.03 0.279
Incl 537.75 549.75 12.00 0.395
PGH-18-05B 64.00 72.00 8.00 0.236
PGH-18-06 371.34 402.67 31.33 0.262
Incl 392.00 402.67 10.67 0.405
Plato Gold Corp
Good Hope Project
2018 Drill Holes
(Sampling 2018,
2021)
From
(m)
To
(m)
Interval
(m)
Grade
(% Nb2O5)
PGH-18-07 573.14 586.42 13.28 0.300
645.00 648.57 3.57 0.444
PGH-18-08 8.70 11.00 2.30 0.445
376.00 380.24 4.24 0.201
PGH-18-09 446.17 459.65 13.48 0.179
488.00 492.96 4.96 0.180
PGH-18-10A 265.95 269.55 3.60 0.348
321.77 326.45 4.68 0.237
364.24 396.24 32.00 0.307
Incl 364.24 377.30 13.06 0.391
Anomalies generated by the company’s airborne geophysical survey and assay results from the sampling
program as mentioned, will be used in targeting a concentrated phase 2 diamond drilling program at the
main discovery area on the Good Hope Property.
The technical and scientific disclosures in this news release have been reviewed and approved by Gerald
D. White, B.Sc., P.Geo., a ‘Qualified Person’ (QP) under National Instrument 43-101.
About Plato Gold Corp.
Plato Gold Corp. is a Canadian exploration company traded on the TSX Venture Exchange, OTC Markets,
and Frankfurt Exchange with projects in Timmins, Ontario, Marathon, Ontario and Santa Cruz, Argentina.
The Timmins, Ontario project includes 4 properties: Guibord, Harker, Holloway and Marriott in the
Harker/Holloway gold camp located east of Timmins, Ontario, with a focus on gold.
In Argentina, Plato owns a 95% interest in Winnipeg Minerals S.A. (“WMSA”), an Argentina incorporated
company that holds a number of contiguous mineral rights totalling 9,672 hectares with potential for gold
and silver.
The Good Hope Niobium Project consists of approximately 5,146 hectares in Killala Lake Area and
Cairngorm Lake Area Townships, near Marathon, Ontario, with the primary target being niobium.
The Pic River Platinum Group Metals (PGM) Project consists of 2,247 hectares in Foxtrap Lake and Grain
Township, near Marathon, Ontario , of which 19 claims are contiguous to the western boundary of
Generation Mining’s Marathon PGM project and is located on strike to Generation Mining’s Sally deposit.
For additional company information, please visit: www.platogold.com.
For further information, please contact:
Anthony Cohen
President and CEO
Plato Gold Corp.
T: 416-968-0608
F: 416-968-3339
www.platogold.com
NEITHER THE TSX VENTURE EXCHANGE NOR ITS REGULATION PROVIDER (AS THAT
TERM IS DEFINED IN THE POLICIES OF THE TSX VENTURE EXCHANGE) ACCEPTS
RESPONSIBILITY FOR THE ADEQUACY OF THIS RELEASE.
Forward Looking Statements
This news release contains “forward-looking statements”, within the meaning of applicable securities laws.
These statements include, but are not limited to, completion of the Offering, statements regarding the
potential mineralization and resources, exploration results, concentrations of pay minerals may offset
operating costs and f uture plans and objectives. Forward-looking statements may be identified by such
terms as “believes”, “anticipates”, “expects”, “estimates”, “may”, “could”, “would”, “will”, or “plan”.
Since forward-looking statements are based on assumptions and address future events and conditions, by
their very nature they involve inherent risks and uncertainties. Although these statements are based on
information currently available to the Company, the Company provides no assurance that actual results
will meet management’s expectations. These forward-looking statements are subject to a variety of risks
and uncertainties and other factors that could cause actual events or results to differ materially from those
projected in the forward -looking information. Risks that could change or prevent these statements from
coming to fruition include but are not limited to: changing costs for mining and processing; increased
capital costs; the timing and content of upcoming work programs; geological interpretations based on
drilling that may change with more detailed information; potential process methods and mineral recoveries
assumption based on limited test work and by comparison to what are considered analogous deposits that
with further test work may not be comparable; testing of our process may not prove successful and even it
tests are successful, the economic and other outcomes may not be as expected; the availability of labour,
equipment and markets for the products produced; conditions changing such that the minerals on our
property cannot be economically mined, or that the required permits cannot be obtained; and an inability
to predict and counteract the effects of COVID-19 on the business of the Company, including but not limited
to the effects of COVID-19 on the price of commodities, capital market conditions, restrictions on labour
and international travel and supply chains. Although management of Plato has attempted to identify
important factors that could cause actual results to differ materially from those contain ed in forward -
looking statements, there may be other factors that cause results not to be as anticipated, estimated or
intended. There can be no assurance that such statements will prove to be accurate, as actual results and
future events could differ materially from those anticipated in such statements. Accordingly, readers should
not place undue reliance on forward -looking statements. The forward -looking information contained
herein is given as of the date hereof and the Company assumes no responsibili ty to update or revise such
information to reflect new events or circumstances, except as required by law.