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Powered BY Cobalt … Driven BY Demand Global Energy Metals Reports JV Partner Kingsrose Mining Identifies Strongly Conductive Zones IN Geophysics at the Råna Nickel-Copper-Cobalt Project, Norway

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GLOBAL ENERGY METALS REPORTS JV PARTNER KINGSROSE

MINING IDENTIFIES STRONGLY CONDUCTIVE ZONES IN

GEOPHYSICS AT THE RÅNA NICKEL-COPPER-COBALT PROJECT,

NORWAY

Vancouver, BC / TheNewswire / July 21, 2023 / Global Energy Metals

CorporaCon TSXV:GEMC | OTCQB:GBLEF | FSE:5GE1 (“Global Energy

Metals” , the “Company” and/or “GEMC”) , a mul’-jurisdic’onal, mul’-

commodity cri’cal mineral explora’on and development company focused on

growth-oriented ba<ery metal projects suppor’ng the global transi’on to

clean energy, is pleased to report that its strategic partner, Kingsrose Mining

Limited (“Kingsrose”), has completed the acquisi’on and interpreta’on of

ground based electromagne’c (EM) and magnetotelluric (SPARTAN MT)

geophysical surveys at the Bruvann Mine area within the Råna Project,

Norway (Figures 1 and 2). In addi ’on, a ground-based MT survey at the

Rånbogen prospect and MobileMT survey over the en ’re Råna intrusive

complex are now complete and results will be interpreted over the coming

weeks.

Highlights

•Strong apparent conduc’ve bodies with the poten’al for massive sulphide

mineraliza’on have been iden’fied from SPARTAN MT and EM data in three

locali’es proximal to the past-producing Bruvann Mine (Figures 2 to 5):

•West-southwest and down plunge of mined-out massive sulphide

mineralisa’on at Bruvann Mine (Target “Bruvann 01”) (Figure 3).

•West and down plunge of disseminated mineralisa’on which remains

open at Bruvann Mine, as indicated by historical drill results including

20.4 metres at 0.45 % Ni (BG-64-01), 18.3 metres at 0.48 % Ni

(bh-1144-02), 23.0 metres at 0.42 % Ni (bh-1143-02) and 11.4 metres

at 0.67 % Ni (BG-39-01) (Target “Bruvann 02”) (Figure 4).

•Northeast of the Bruvann Mine located at the contact between

country rock and gabbronorite intrusive, locally underlying a len’cular

perido’te dyke mapped at surface (Target “Bruvann 03”) (Figure 5).

•Drill tes’ng of the targets is underway to inves ’gate the poten’al for

massive sulphide nickel-copper-cobalt mineralisa’on associated with the

conduc’ve bodies.

•An extension of the EM geophysical survey and downhole EM is expected to

be conducted in late July 2023 to further de fine the targets and provide

addi’onal confidence in future drill targe’ng.

Andrew Tunningley, Kingsrose Head of ExploraCon, commented:

“The ini’al geophysical results at Bruvann are highly encouraging in demon-

stra’ng the presence of previously uniden’fied, strongly conduc’ve bodies

proximal to the mined-out mineralisa’on. Our aim is to validate the geophysi-

cal interpreta’on with drilling and follow up detailed geophysics and work to-

wards discovery of new zones of massive sulphide nickel-copper-cobalt miner-

alisa’on.”

Fabian Baker, Kingsrose Managing Director, adds:

“Following the MT and EM results reported today, we are eagerly awai’ng the

final results and interpreta’ons from MT data at the Rånbogen prospect, as

well as the MobileMT data which covers the en’re Råna intrusion. Our sys-

tema’c approach to explora’on is designed to methodically explore the large

and prospec’ve landholding which Kingsrose has consolidated at Råna.”

Discussion of Results

Kingsrose has completed ground based MT and EM surveys at the Bruvann

Mine area, with the aim of modelling the local geology and genera’ng explo-

ra’on targets associated with zones of elevated conduc’vity which may rep-

resent massive sulphide mineralisa’on. Following is a discussion of the tech-

niques employed, and an interpreta’on of the results and targets generated.

Magnetotelluric Data

MT is an electromagne’c technique that maps resis’vity, to infer sub-surface

geology and iden’fy zones of low resis’vity (high conduc’vity) which may

correspond with massive sulphide mineralisa’on. MT is a passive technique

which uses natural sources of electromagne’c fields such as lightning and so-

lar flares and is a highly portable technology, capable of detec ’ng a large

range of frequencies, resul’ng in high quality data acquisi’on to great depths.

The MT survey at Bruvann was conducted using a rela’vely ’ght sta’on spac-

ing of 200 metres, with the aim of mapping to at least 1000 metres below sur-

face. A three-dimensional model of resis’vity was produced to aid interpreta-

’on of geology, structure and zones of poten’al massive sulphide mineralisa-

’on. Three zones of high conduc’vity have been observed in the Bruvann MT

data (Figure 2):

•Immediately south of the Bruvann Mine (Figure 2).

•West and down plunge from the Bruvann Mine, 650 metres below surface

(targets “Bruvann 01” and “Bruvann 02”) (Figures 3 and 4).

•One kilometre northeast of the Bruvann Mine at the contact between

gneiss wall rock and perido’te intrusive rock, from surface and extending to

over 1000 metres depth (“Bruvann 03”) (Figure 5).

Mined-out massive sulphide mineralisa’on occurred at the gradient between

very high and moderate conduc’vi’es (Figures 2 and 3). The observa’on that

massive sulphide mineralisa’on occurs at the gradient between very high and

moderate conduc’vi’es provides Kingsrose with an important vector for tar-

ge’ng other zones of massive sulphide mineralisa’on. Perido’te, which is the

main host rock to high tenor nickel mineralisa’on, has been modelled from

logging of historical drill holes and corresponds with the same MT gradient at

the Bruvann Mine. The remainder of the Bruvann Mine occurs as disseminat-

ed sulphide mineralisa’on which is not detectable by MT techniques and

does not appear as an anomaly in the MT data, however the disseminated

mineralisa’on is hosted predominantly within perido’te.

Linear, steeply dipping zones of very high conduc’vity occur in two areas:

south of the Bruvann Mine trending east to west, and north of the Bruvann

Mine trending northeast (Figure 2). These linear zones are inferred to repre-

sent graphi’c horizons within the gneiss wall rock and are lower priority tar-

gets. Graphi’c zones do occur proximal to massive sulphide mineralisa’on at

Bruvann, and clasts of graphite are commonly observed within the massive

sulphide, therefore the presence of graphi’c horizons proximal to the intru-

sive contact are considered a locally important control on mineralisa’on.

ElectromagneCc Data

EM surveys are used to iden’fy zones of high conduc’vity which may repre-

sent massive sulphide mineralisa’on. EM is an ac’ve technique where power

generators are used to create electromagne’c fields in the sub-surface. Mod-

elling of the data creates conduc’ve ‘plates’ , or tabular zones, which are

modelled to fit the EM data and aid geological interpreta’on for detailed drill

targe’ng. Three broad zones of high conduc’vity were modelled from the EM

data:

1.Immediately south of the Bruvann Mine, where the modelled plates

strike east-west over 800 metres and dip steeply south, coincident

with mapped graphite (modelled to a consistent value of around 2000

siemens). However, a sub-parallel plate west of the Bruvann Mine and

coincident with a narrow zone of nickel sulphide mineralisa’on drilled

historically represents an important explora’on target (Bruvann 01)

(Figures 2 and 4).

2.350 metres west of and down-plunge from the Bruvann Mine, at the

western limit of the EM survey. Three alterna’ve flat lying plates have

been modelled at depths between 350 and 1000 metres below sur-

face, and an extension to the EM survey to be<er define this target

(Bruvann 02) (Figures 2 and 4) is planned for late July 2023.

3.Northeast trending, steeply northwest dipping plates located one

kilometre northeast of the Bruvann Mine, parallel to the contact be-

tween gneiss and the gabbronorite intrusion (Figures 2 and 5). Whilst

graphite is mapped at surface in this area, a zone of complex EM

plates in the northeast is proximal to a mapped perido’te dyke within

the gabbronorite and is undrilled (Bruvann 03).

Target generaCon from EM and MT data interpretaCon

Geological mapping, interpreta’on of historical drill data and processing of

MT and EM geophysical data has resulted in the defini’on of three main tar-

get areas at Bruvann (Figure 2):

1.Bruvann 01: A strong, 400 by 600 metre MT conduc’ve body is locat-

ed west and down plunge of the mined-out massive sulphide mineral-

isa’on, which is blind at surface and has not been drill tested (Figures

2 and 3). An EM plate has been modelled coincident with the gradient

of the MT conductor and is proximal to narrow massive sulphide his-

torical drill intercepts of 1.1 metres at 0.9 % Ni from 278.4 metres and

0.1 metres at 2.7 % Ni from 299.5 metres (P-8-96), which are open in

all direc’ons (Figure 4).

2.Bruvann 02: The northern gradient of the above MT conductor is co-

incident with poorly constrained EM plates at the western extremity

of the survey area (Figures 2 and 4). This target is 350 metres west

and down dip of the Bruvann Mine where mineralisa’on is open, in-

cluding historical drill intercepts from underground drill sta’ons, for

example 20.4 metres at 0.45 % Ni (BG-64-01), 18.3 metres at 0.48 %

Ni (bh-1144-02), 23.0 metres at 0.42 % Ni (bh-1143-02) and 11.4 me-

tres at 0.67 % Ni (BG-39-01)

3.Bruvann 03: An MT conductor coincident with a modelled EM plate

occurs at the contact between gneiss and a perido’te dyke hosted in

gabbronorite, located one kilometre northeast of the Bruvann Mine

(Figures 2 and 5). The conductor con’nues from surface to over one

kilometre below surface and drilling will test both the EM plate and

the gradient between very high and moderate conduc’vi’es. This is

inferred to represent a zone of poten’al massive sulphide mineralisa-

’on at the contact between perido ’te and gneiss wall rock with

graphite horizons.

Follow up work to test the above targets will include diamond drilling as part

of the current program and an extension to the ground EM survey, due to

commence at the end of July 2023. The purpose of this is to be<er define the

loca’on and orienta’on of the Bruvann 02 target prior to drill tes ’ng.

Downhole EM surveys will be completed at the same ’me as the extension to

the ground EM, to generate and refine addi’onal drill targets.

Figure 1: Råna Project area and loca’on of 2023 geophysical programs

Figure 2. Map showing priority explora’on targets at the Bruvann Mine Area,

Råna Project

Figure 3: Long sec’on (Sec’on A-A’) showing MT data and explora’on targets

at Bruvann Mine. Note that mined out high grade mineralisa’on occurs on a

strong MT gradient between high and moderate conduc’ve zones.

Figure 4: Cross sec’on (Sec’on B-B’) showing modelled EM plates and deep

MT conduc’ve target to the west of Bruvann Mine.

Figure 5: Cross sec’on (Sec’on C-C’) showing MT data and modelled MT

plates. The large MT conduc’ve body is located at the contact between host

gneiss and the Råna intrusion, and underlies a perido ’te dyke mapped at

surface.

Kingsrose Mining Limited

Kingsrose is a leading sustainability-conscious and technically pro ficient

mineral explora’on company listed on the ASX. The Company has a discovery-

focused strategy, targe’ng the acquisi’on and explora’on of cri’cal mineral

deposits having Tier-1 poten’al, that has resulted in the acquisi’on of, or joint

venture into, the Råna nickel-copper-cobalt, Penikat PGE and Porsanger PGE-

nickel-copper projects in Finland and Norway. Addi’onally, Kingsrose has been

selected for the first cohort of the BHP Xplor explora’on accelerator program

which commenced in January 2023.

Qualified Person

Mr . Paul Sarjeant, P . Geo., a Director and shareholder is the qualified person

for this release as defined by Na’onal Instrument 43-101 - Standards of

Disclosure for Mineral Projects.

For Further InformaCon:

Global Energy Metals Corpora’on

#1501-128 West Pender Street

Vancouver, BC, V6B 1R8

Email: [email protected]

t. + 1 (604) 688-4219

www.globalenergymetals.com

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