Appia Confirms High-Grade Gallium Mineralization in all Zones on Alces Lake Property
500-2 Toronto St.
Toronto ON
M5C 2B6
PH: 416 546-2707
FAX: 416 218-9772
Email: [email protected]
Website: www.appiaenergy.ca
NEWS RELEASE
APPIA CONFIRMS HIGH-GRADE GALLIUM MINERALIZATION IN ALL ZONES ON
ALCES LAKE PROPERTY
TORONTO, ONTARIO, March 25, 2021 - Appia Energy Corp. (the “Company” or “Appia”)
(CSE:API, OTCQB:APAAF, Germany: “A0I.F”, “A0I.MU”, “A0I.BE”) is pleased to announce that high-
grade gallium has been consistently reported from lithogeochemical assay results from all of the high-grade
rare earth element (“ REE”) zones on the Company’s Alces Lake property (the “ Property”), northern
Saskatchewan.
Following up on the results from an electron microprobe study that successfully showed monazite was the
mineral host for gallium as well as REEs (see News Release dated February 17, 2021), the Company re-
analyzed select samples with high-grade rare earth oxide (“ REO”) results from each zone to determine the
extent of gallium mineralization over the Property (Table 1). The results from the recent study shows gallium
concentrations ranging from 0.01 to 0.104 wt% Ga 2O3, and a positive linear correlation between gallium and
REO suggests that all monazite on the Property contains gallium: more monazite means more REO and
gallium. High-grade gallium is considered anything greater than 0.010 wt% Ga2O3.
Frederick Kozak, Appia’s President, comments: “The gallium concentrations on the Property are remarkable.
Gallium was found in naturally occurring high-concentrations on the Property that far-exceed current
concentrations required for global production of gallium. The presence of gallium in the high-grade REO
system on the Alces Lake property helps distinguish the Property as a potential world-class asset for high-
valued critical elements required for sustainable production of advanced technological applications”.
The current price of high-grade gallium metal (99.99%) is US$376.71/kg. On January 31 st, 2021, the price of
high-grade gallium metal (99.99%) was US$306.72/kg, and on October 31 st, 2020, the price of high-grade
gallium metal (99.99%) was US$189.43/kg (all prices were derived from Shanghai Metals Market). These
represent a 23% price increase over 2 months and 99% price increase over 5 months. In 2011, the price for
low-grade gallium oxide (99%) peaked at US$1,150/kg.
Up to 90% of primary global gallium supply is a by-product of processing of bauxite (alumina ore) with lesser
amounts derived from sphalerite (ZnS) production. Production of gallium is therefore limited by global
economic and social factors that influence the production of the principal mineral commodities (i.e.,
aluminum or zinc). It takes multiple cycles of bauxite processing before the gallium content reaches its
production starting concentration point of approximately 100 – 125 ppm Ga 2O3, whereas Ga 2O3 from Alces
Lake monazite would have approximately 10x to 20x higher starting concentrations.
Gallium is one of several elements deemed “critical” by the United States Government (i.e., restricted supply
by China, Kazakhstan and Ukraine, and in high-demand) that is used in numerous modern technological
applications, in wireless communications such as 5G, cell phones, laser diodes, semiconductors, solar energy
magnetic materials, and military defense. A significant potential exists for bottlenecks in the gallium supply
chain because of rapid growth in areas of green/clean energy technologies.
Much like rare earth elements, gallium is widely dispersed in nature but rarely found in economically
extractable quantities. For example, the Apex mine, southwestern Utah, USA, was the only primary mined
source of gallium (and germanium) until its closure in 2011 by Teck Resources Limited. The mine operated
intermittently over 100 years since 1884. A historic estimate for the average concentration of gallium was
0.032 wt%, with locally occurring grades up to 0.148 wt% gallium (USGS - Gallium Statistics and
Information).
All lithogeochemical assay results were provided by Saskatchewan Research Council’s Geoanalytical
Laboratory, an ISO/IEC 17025:2005 (CAN-P-4E) certified laboratory in Saskatoon, SK, for lead isotope,
uranium and gallium analysis by lithium metaborate fusion.
All analytical results reported herein have passed internal QA/QC review and compilation. The technical
content in this news release was reviewed and approved by Dr. Irvine R. Annesley, P.Geo, Advisor to Appia’s
Board of Directors, and a Qualified Person as defined by National Instrument 43-101.
ALCES LAKE SUMMARY
Since detailed exploration began at Alces Lake in 2017, a total of seventy-four (74) REE, gallium and uranium
bearing surface zones and occurrences over 45 km of the System have been discovered on the Property. To
date, less than 1% of the Property has been explored with diamond drilling. The Property is in Saskatchewan,
the provincial jurisdiction that is developing a “first-of-its-kind” rare earth processing facility in Canada,
scheduled to become operational by 2022.
The Property encompasses some of the highest-grade total and critical rare earth elements (“ CREE”) and
gallium mineralization in the world. CREE is defined here as those rare earth elements that are in short-
supply and high-demand for use in permanent magnets and modern electronic applications such as electric
vehicles and wind turbines, (i.e: neodymium (Nd), praseodymium (Pr) dysprosium (Dy), and terbium (Tb)).
The Alces Lake project area is 17,577 hectares (43,434 acres) in size and is 100% owned by Appia. The
project is located close to an old mining camp with existing support services, such as transportation (i.e., 15
km from the nearest trail), energy infrastructure (hydroelectric power), a 1,200 m airstrip that receives daily
scheduled services, and access to heavy equipment.
Appia is planning to aggressively explore the Property during the summer months of 2021. The Company is
fully-funded and committed to complete the largest exploration and diamond drilling program on the Property
to date.
About Appia
Appia is a Canadian publicly-listed company in the uranium and rare earth element sectors. The Company is
currently focusing on delineating high-grade critical rare earth elements and uranium on the Alces Lake
property, as well as prospecting for high-grade uranium in the prolific Athabasca Basin on its Loranger, North
Wollaston, and Eastside properties. The Company holds the surface rights to exploration for 65,601 hectares
(162,104 acres) in Saskatchewan.
The Company also has a 100% interest (subject to a 1% Uranium Production Payment Royalty and a 1% Net
Smelter Return Royalty on any precious or base metals payable, provided that the price of uranium is greater
than US$130 per pound) in 12,545 hectares (31,000 acres), with rare earth element and uranium deposits over
five mineralized zones in the Elliot Lake Camp, Ontario. The Camp historically produced over 300 million
pounds of U 3O8 and is the only Canadian camp that has had significant rare earth element (yttrium)
production. The deposits are largely unconstrained along strike and down dip.
Appia has 94.4 million common shares outstanding, 110.4 million shares fully diluted.
For more information, visit Appia’s website at www.appiaenergy.ca.
Cautionary Note Regarding Forward-Looking Statements : This News Release contains forward-looking statements
which are typically preceded by, followed by or including the words “believes”, “expects”, “anticipates”,
“estimates”, “intends”, “plans” or similar expressions. Forward-looking statements are not guarantees of
future performance as they involve risks, uncertainties and assumptions. We do not intend and do not assume
any obligation to update these forward- looking statements and shareholders are cautioned not to put undue
reliance on such statements.
Neither the Canadian Securities Exchange nor its Market Regulator (as that term is defined in the policies of
the CSE) accepts responsibility for the adequacy or accuracy of this release.
For further information, please contact:
Tom Drivas, CEO and Director: (cell) 416-876-3957, (fax) 416-218-9772 or (email) [email protected]
Frederick Kozak, President: (cell) 403-606-3165 or (email) [email protected]
James Sykes, VP Exploration & Development, (tel) 306-221-8717 or (email) [email protected]
Frank van de Water , Chief Financial Officer and Director, (tel) 416-546-2707, (fax) 416-218-9772 or
(email) [email protected]
Table 1 – Lithogeochemical results for Gallium (Ga2O3), Thorium (ThO2), Uranium (U3O8) and Individual, Total and Critical REOs
Zone
Boulder/
Channel
Line/ DDH
From
(m)
To
(m)
Interval
(m)
La2O3
wt%
CeO2
wt%
Pr6O11
wt%
Nd2O3
wt%
Sm2O3
wt%
Eu2O3
wt%
Gd2O3
wt%
Tb4O7
wt%
Dy2O3
wt%
Ho2O3
wt%
Er2O3
wt%
Yb2O3
wt%
Lu2O3
wt%
Y2O3
wt%
Ga2O3
wt%
ThO2
wt%
U3O8
wt%
TREO
wt%
CREO
wt%
Ivan IV-19-012 9.70 17.60 7.90 7.130 15.219 1.735 5.748 0.805 0.010 0.400 0.027 0.071 0.007 0.012 0.002 0.000 0.173 0.067 4.058 0.105 31.339 7.591
includes 9.70 13.40 3.70 11.233 23.833 2.753 8.996 1.258 0.016 0.626 0.042 0.110 0.011 0.019 0.002 0.001 0.266 0.104 6.365 0.164 49.165 11.918
Dylan Line 10 0.48 1.50 1.02 9.657 20.789 2.250 7.042 0.907 0.012 0.521 0.026 0.086 0.009 0.028 0.001 0.001 0.205 0.078 4.926 0.133 41.534 9.417
Dylan Line 11 0.48 1.19 0.71 9.403 19.227 2.114 6.754 0.883 0.012 0.521 0.025 0.081 0.009 0.027 0.001 0.001 0.213 0.077 4.835 0.131 39.273 8.987
Dante Line 3 1.66 2.45 0.79 2.838 6.187 0.605 1.919 0.272 0.004 0.154 0.008 0.025 0.003 0.008 0.000 0.000 0.064 0.030 1.623 0.046 12.087 2.561
Dante DT-19-004B 16.30 17.50 1.20 5.313 11.715 1.239 4.470 0.626 0.007 0.304 0.022 0.051 0.006 0.006 0.001 0.000 0.132 0.051 3.141 0.078 23.891 5.789
WRCB CH-18-008 0.00 1.55 1.55 1.096 2.371 0.248 0.814 0.122 0.002 0.075 0.005 0.020 0.003 0.006 0.001 0.000 0.077 0.013 0.568 0.017 4.841 1.090
WRCB CH-18-008 9.00 12.55 3.55 2.400 4.886 0.545 1.685 0.240 0.003 0.137 0.007 0.025 0.003 0.008 0.001 0.000 0.076 0.023 1.274 0.038 10.017 2.265
WRCB RI-20-004 8.60 9.10 0.50 2.533 5.479 0.570 1.936 0.270 0.003 0.113 0.009 0.025 0.003 0.003 0.001 0.000 0.067 0.028 1.377 0.039 11.011 2.543
WRCB RI-20-004 10.60 13.40 2.80 2.566 5.468 0.599 1.909 0.270 0.003 0.111 0.009 0.025 0.003 0.003 0.001 0.000 0.069 0.025 1.437 0.037 11.035 2.546
WRCB RI-20-005 10.15 10.90 0.75 1.728 3.659 0.404 1.389 0.190 0.003 0.098 0.007 0.022 0.002 0.004 0.001 0.000 0.066 0.019 0.908 0.024 7.573 1.825
WRCB WI-18-004 16.80 17.85 1.05 3.613 7.620 0.831 2.687 0.363 0.005 0.198 0.010 0.033 0.004 0.010 0.000 0.000 0.091 0.033 1.904 0.051 15.465 3.566
Danny Boulder 1.935 4.471 0.476 1.842 0.275 0.002 0.145 0.015 0.049 0.001 0.026 0.005 nr 0.156 0.022 1.096 0.029 9.400 2.385
Danny Boulder 2.639 6.007 0.672 2.437 0.348 0.003 0.176 0.018 0.048 0.001 0.030 0.003 nr 0.150 0.031 1.113 0.040 12.532 3.178
Danny Boulder 2.850 6.511 0.761 2.635 0.385 0.003 0.196 0.020 0.054 0.001 0.034 0.003 nr 0.171 0.029 0.452 0.057 13.626 3.474
Danny Boulder 0.482 1.137 0.124 0.494 0.072 0.001 0.042 0.005 0.015 0.001 0.008 0.001 nr 0.047 0.008 0.092 0.006 2.430 0.640
Danny Boulder 2.111 4.778 0.509 1.901 0.266 0.001 0.125 0.012 0.026 0.001 0.019 0.001 nr 0.065 0.025 0.996 0.027 9.815 2.449
Danny Boulder 2.533 5.823 0.674 2.297 0.327 0.002 0.150 0.013 0.032 0.002 0.023 0.001 nr 0.074 0.028 1.377 0.033 11.951 3.019
Biotite Lk. Boulder 0.562 1.241 0.137 0.462 0.074 0.002 0.042 0.003 0.011 0.001 0.002 0.001 0.000 0.032 0.010 0.403 0.019 2.568 0.614
Biotite Lk. Boulder 0.538 1.107 0.128 0.441 0.068 0.001 0.039 0.003 0.010 0.001 0.002 0.001 0.000 0.028 0.010 0.382 0.016 2.367 0.583
Ermacre Boulder 0.908 1.965 0.239 0.821 0.128 0.001 0.059 0.005 0.017 0.002 0.004 0.002 0.000 0.057 0.012 0.506 0.012 4.209 1.084
Hinge Line 1 0.97 1.38 0.41 0.577 1.314 0.149 0.536 0.074 0.001 0.036 0.004 0.008 0.001 0.006 0.001 nr 0.019 0.011 0.264 0.011 2.726 0.698
Oldman Line 2 0.69 1.48 0.79 0.814 1.609 0.181 0.634 0.087 0.002 0.035 0.002 0.004 0.000 0.001 0.000 0.000 0.007 0.013 0.387 0.014 3.377 0.823
The REEs Thulium (Tm) and Promethium (Pm) are not reported because they are both extremely scarce in nature, and Pm forms as a product of spontaneous fission of U-238
TREO = Total Rare Earth Oxide = sum of La2O3+CeO2+Pr6O11+Nd2O3+Sm2O3+Eu2O3+Gd2O3+Tb4O7+Dy2O3+Ho2O3+Er2O3+Yb2O3+Lu2O3+Y2O3
CREO = Critical Rare Earth Oxide = sum of Pr 6O11+Nd2O3+Eu2O3+Tb4O7+Dy2O3
Indicates light rare earth elements
Indicates heavy rare earth elements
Indicates radioactive elements
nr = not reported
Conditions Used for Reporting Composite Results
- cutoff grade = 0.010 wt% Ga2O3
- maximum internal dilution along drill hole intervals; 2.00 m
- true thickness has not been determined for any intervals