ALX Resources Corp. Receives Analytical Results from the Gibbons Creek Uranium Project, Athabasca Basin, Saskatchewan

ALX Resources Corp. Receives Analytical Results from the Gibbons Creek Uranium Project, Athabasca Basin, Saskatchewan

alx resources corp. (TSXV: AL) (FSE: 6LLN) (OTC: ALXEF) ("ALX" or the "Company") is pleased to announce the results of the 2024 winter drilling program and upcoming summer 2024 exploration plans at its Gibbons Creek Uranium Project ("Gibbons Creek", or the "Project") located in the northern Athabasca Basin near the community of Stony Rapids, Saskatchewan.

Gibbons Creek is the subject of an option earn-in transaction with Trinex Lithium Ltd., a wholly-owned subsidiary of Trinex Minerals Limited ("Trinex"), which is a publicly-traded mineral exploration company listed on the Australian Securities Exchange. Under the terms of a definitive agreement signed in May 2024, Trinex can earn an initial 51% interest and up to a 75% participating interest in the Project in two stages over a period of five years by making cash payments and common shares payments to ALX, and by incurring exploration expenditures at the Project (see ALX news release dated May 8, 2024).

Highlights of the 2024 Exploration Program

  • Assay results and downhole probe readings confirm the presence of anomalous uranium within the Airstrip Prospect at Gibbons Creek;

  • A comprehensive helicopter-borne vertical transient electromagnetic ("VTEMTM") survey is planned to commence in June 2024, covering the Airstrip and Butler Lake Prospects and a recently identified new target known as Gibbons East;

  • Further drilling is planned following the analysis and interpretation of the VTEM data;

  • Trinex is fully-funded to complete the upcoming work programs planned for 2024.

Results of the 2024 Drilling Program

Results from the 2024 winter drilling program have confirmed low-level uranium mineralization in four of the five holes completed having intersected anomalous uranium at or near the unconformity between the Athabasca Sandstone and underlying basement metasediments, which are variably altered. Results from the drilling greater than 100 parts per million ("ppm") U3O8 are shown in Table 1.

Table 1 - Assay Results from 2024 Drill Program

Hole IDSample IDFrom
(m)
To
(m)
Interval
(m)
U3O8P
(ppm)
U3O8T
(ppm)
GC24-02422023108.92109.420.5325384
GC24-03422178109.34109.840.5156186
GC24-03422179109.84110.340.5259382
GC24-03422181110.34110.840.5147203
GC24-04422083107.18107.540.36157208
GC24-04422218107.54107.980.44641757
GC24-05422278103.06103.560.5134198

 

(P: uranium results by partial digestion; T: uranium results by total digestion)

The geochemical uranium assay results (expressed in ppm U3O8) were obtained using a standard sampling interval of 0.5 metres; smaller intervals may be used such that individual samples do not cross lithological contacts or unit boundaries. These sampling intervals are suitable for uranium mineralization such as the blebby and sporadic mineralization intersected in drill hole GC24-04 (Fig. 1). Gamma probe radiometric readings (expressed in cps) are obtained from a different (i.e., larger) volume of rock than assay samples and hand-held scintillometer cps readings, and typically give larger relative values compared to hand-held scintillometer readings.

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Fig. 1: Close-up of uranium mineralization in core sample from GC24-04 - peak radioactivity (8,662 cps) at 107.87 m

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Gibbons Creek Winter Drilling Program Summary

The 2024 winter drilling program at Gibbons Creek was designed to test for continuity of uranium mineralization first discovered in 1979 by Eldorado Nuclear ("Eldorado"). ALX defined a target area for the drill program in late 2023 by carrying out a high-resolution magnetic survey and a Soil Gas Hydrocarbon ("SGH") survey.

Drilling intersected uranium mineralization in two areas located 500 metres apart within this target area.

Hole GC24-01 was drilled to target a historical radon anomaly and completed at 159.0 metres. Basement rocks were intersected from 146.0 metres to end of hole at 159.0 metres. The basement rocks are fresh and unfractured pelitic to semi-pelitic metasediments that are locally garnetiferous. No significant radioactivity was identified in the hole.

Hole GC24-02 was drilled at the intersection of east-west and north-northwest faults interpreted from the 2023 ground magnetic survey and intersected fracture-controlled and disseminated blebs of uranium mineralization at 0.8 metres below the unconformity, which was reached at a depth of 108.4 metres.

An Exploranium GR-135 handheld scintillometer measured radioactivity of 220 counts per second ("cps") and a Mount Sopris 2PGA-1000 downhole gamma probe1 measured a radiometric peak of 3,321 cps within a 0.6 metre interval of anomalous radioactivity from 108.9 to 109.5 metres. Drill hole GC24-02 represents an approximately 470-metre step-out to the west of ALX's historical hole GC15-03 (0.143% U3O8 assay over 0.23 metres) and was collared approximately 350 metres to the southwest of Eldorado's 1979 hole GC-15 (1,520 ppm uranium over 0.13 metres) (see Fig. 2).

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Fig. 2: Gibbons Creek 2024 Drilling Plan

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Hole GC24-03 was drilled as a 25-metre westward step out of unconformity-related uranium mineralization in historical hole GC15-03 to test the continuity of an interpreted trend of anomalous uranium mineralization between GC15-03 and historical drill hole GC-15, which are 340 metres apart. Anomalous radioactivity and fracture-controlled uranium mineralization was intersected from 110.0 to 110.9 metres approximately 1.5 metres below the unconformity at 108.5 metres.

The Exploranium GR-135 handheld scintillometer measured a peak radioactivity value of 190 cps and the Mount Sopris 2PGA-1000 downhole gamma probe measured a radiometric peak of 2,217 cps within the noted anomalous radioactive interval. Uranium mineralization was observed as coatings on fractures in the drill core at 110.2 metres as well as other fractures between 110.0 and 110.9 metres.

1 Radioactivity is considered significant at >2000 cps on a Mount Sopris 2PGA-1000 downhole gamma probe.

Hole GC24-04 exhibited the strongest radiometric response of the program to date where uranium mineralization was intersected over 1.1 metres from 107.17 to 108.27 metres beginning immediately at and below the unconformity at 107.18 metres.

The Athabasca formation sandstone immediately above the mineralization was strongly bleached from an unaltered dusky maroon colour to white, indicative of hydrothermal activity in the location of the drill hole.

A Mount Sopris 2PGA-1000 downhole gamma probe measured a radioactive peak of 8,662 cps within the mineralized interval (Fig. 1), which shows black blebs of uranium mineralization (likely pitchblende) within dark red hematite alteration and closely associated with lesser amounts of yellow limonite alteration.

The blebs of uranium mineralization appear to follow both the foliation of the rock and to spread along some of the fine fractures. Zones of strong fracturing and fault breccias, variably strongly hematitic (paleoweathered), argillized or chloritized, were intermittently encountered down to approximately 142.0 metres.

Hole GC24-05 was drilled from the same setup as GC24-04 by tilting the drill head following an in-field interpretation of a possible fault offset of the unconformity. Fine-grained blebs of black uranium mineralization were observed between approximately 103.4 to 103.5 metres. Several of the blebs have bleached haloes and others appear within or adjacent to weak limonitic alteration haloes. Dark grey quartz grains in the vicinity of the uranium mineralization may represent a metamict alteration of the quartz structure due to the radioactivity.

Summer 2024 Drilling Program

Further drilling at the Project is planned for the summer of 2024 to search for fault offsets in the area of GC24-04, which can act as structural traps for the deposition of uranium mineralization. The interpreted extension of the southwest-trending structure that appears to be associated with mineralization at the Airstrip Prospect extends through to the Butler Lake Target, increasing the prospectivity of the area.

About Gibbons Creek

Gibbons Creek consists of eight mineral claims comprising 13,864 hectares (34,258 acres) located along the northern margin of the Athabasca Basin.

The Project is located in a region that hosts numerous historical uranium occurrences, such as the Black Lake discoveries in several drill holes beginning in 2004, and the historical Nisto Mine, from which 500 tons of ore was shipped in 1950 to the historical Lorado Mill at Uranium City, SK, including 106 tons grading 1.6% U3O8 (Source: Saskatchewan Mineral Deposits Index, #1621). ALX holds an exploration permit for Gibbons Creek, good until October 2025, which allows for up to 20 diamond drill holes totaling approximately 5,000 metres, along with ground-based geophysics, prospecting, and geochemical sampling. Access to Gibbons Creek is via roads and trails that lead from the community of Stony Rapids, SK, which is connected to all-weather Highway 905, thereby creating flexibility for either summer or winter exploration programs. Stony Rapids has readily-available fuel, supplies and accommodations for field personnel, and an airport with daily flights to cities and towns in southern Saskatchewan.

Prior to commencement of the 2024 drilling program, ALX carried out a comprehensive review of Gibbons Creek historical exploration data and has integrated that information with the high-resolution magnetic and SGH geochemical surveys completed in November 2023. The historical data and the results of ALX's ground surveys on the 2023 exploration grid show important characteristics of the Project's potential to host uranium mineralization, which is demonstrated by the mineralization found in ALX's 2015 hole GC15-03 (0.13% U3O8 over 0.23 metres from 107.67 metres to 107.90 metres), in Eldorado's 1979 hole GC-15 (0.179% U3O8 over 0.13 metres from 134.11 to 134.24 metres), and in the holes drilled in the 2024 program.

For additional information on Gibbons Creek, please visit the ALX website: click here

National Instrument 43-101 Disclosure and Statement of Qualified Person

Geochemical analyses on samples from ALX's 2015 drill hole described in this news release were carried out by Activation Laboratories in Ancaster, Ontario using Inductively-Coupled Plasma Mass Spectrometry ("ICP-MS") methods on both partial and total digestions. Eldorado's 1979 geochemical analyses were carried out by Bondar-Clegg & Company Ltd. Laboratories, Ottawa, Ontario using Atomic Absorption, Colormetric, Fluorometric and XRF methods, which were standard methods of that exploration era.

All drill core samples from the 2024 program were shipped to SRC Geoanalytical Laboratories ("SRC") in Saskatoon, SK, an ISO/IEC 17025/2005 and Standards Council of Canada certified analytical laboratory. ALX requests multi-element analysis by ICP-MS and ICP-OES using total (HF:NHO3:HClO4) and partial digestion (HNO3:HCl), boron by fusion, and U3O8 wt% assay by ICP-OES where applicable. One half of the split core samples are retained and the other half cores are sent to the SRC for analyses. Blanks, standard reference materials, and repeats are inserted into the sample stream at regular intervals by ALX and SRC in accordance with industry-standard quality assurance/quality control ("QA/QC") procedures. Uranium assay samples may be conducted on samples that return greater than 500 ppm uranium in the initial ICP analyses.

All reported depths and intervals are drill hole depths and intervals, unless otherwise noted, and do not represent true thicknesses, which have yet to be determined. Readers are cautioned that scintillometer and gamma probe measurements of drill core are not directly indicative of uranium grades in the sample measured and should be considered only as a preliminary indication of the presence of radioactive materials.

The technical information in this news release has been reviewed and approved by Robert Campbell, P.Geo., who is a Qualified Person in accordance with the Canadian regulatory requirements set out in National Instrument 43-101.

About ALX

ALX is based in Vancouver, BC, Canada and its common shares are listed on the TSX Venture Exchange under the symbol "AL", on the Frankfurt Stock Exchange under the symbol "6LLN" and in the United States OTC market under the symbol "ALXEF."

ALX's mandate is to provide shareholders with multiple opportunities for discovery by exploring a portfolio of prospective mineral properties in Canada, which include uranium, lithium, nickel-copper-cobalt and gold projects. The Company uses the latest exploration technologies and holds interests in over 240,000 hectares of prospective lands in Saskatchewan, a stable jurisdiction that hosts the highest-grade uranium mines in the world, a producing gold mine, diamond deposits, and historical production from base metals mines.

ALX's uranium holdings in northern Saskatchewan include 100% interests in the Gibbons Creek Uranium Project (now the subject of an option earn-in agreement with Trinex Minerals Limited), the Sabre Uranium Project, the Bradley Uranium Project, and the Javelin and McKenzie Lake Uranium Projects, a 40% interest in the Black Lake Uranium Project (a joint venture with Uranium Energy Corporation and Orano Canada Inc.), and a 20% interest in the Hook-Carter Uranium Project, located within the uranium-rich Patterson Lake Corridor with Denison Mines Corp. (80% interest) as operator of exploration since 2016.

ALX also owns 100% interests in the Firebird Nickel Project, the Flying VeeNickel/Gold and Sceptre Gold projects, and can earn up to an 80% interest in the Alligator Lake Gold Project, all located in northern Saskatchewan, Canada. ALX owns, or can earn, up to 100% interests in the Electra Nickel Project and the Cannon Copper Project located in historic mining districts of Ontario, Canada, and in the Vixen Gold Project (now under option to First Mining Gold Corp., who can earn up to a 100% interest in two stages).

ALX owns a 50% interest in eight lithium exploration properties staked in 2022-2023 collectively known as the Hydra Lithium Project, located in the James Bay region of northern Quebec, Canada, a 100% interest in the Anchor Lithium Project in Nova Scotia, Canada, and 100% interests in the Crystal Lithium Project and the Reindeer Lithium Project, both located in northern Saskatchewan, Canada.

For more information about the Company, please visit the ALX corporate website at www.alxresources.com or contact Roger Leschuk, Manager, Corporate Communications at: PH: 604.629.0293 or Toll-Free: 866.629.8368, or by email: rleschuk@alxresources.com.

On Behalf of the Board of Directors of alx resources corp.

"Warren Stanyer"

Warren Stanyer, CEO and Chairman

FORWARD-LOOKING STATEMENTS

Statements in this document which are not purely historical are forward-looking statements, including any statements regarding beliefs, plans, expectations or intentions regarding the future. Forward-Looking statements in this news release include: ALX's 2024 exploration results and future exploration plans at the Gibbons Creek Uranium Project, and ALX's ability to continue to expend funds on its other mineral exploration projects. It is important to note that the Company's actual business outcomes and exploration results could differ materially from those in such forward-looking statements. Risks and uncertainties include that ALX may not be able to fully finance exploration on our exploration projects, including drilling; our initial findings at our exploration projects may prove to be unworthy of further expenditures; commodity prices may not support further exploration expenditures; exploration programs may be delayed or changed due to any delays experienced in consultation and engagement activities with First Nations, Metis communities and local landowners in the region, and the results of such consultations;and economic, competitive, governmental, societal, public health, weather, environmental and technological factors may affect the Company's operations, markets, products and share price. Even if we explore and develop our projects, and even if uranium, lithium, nickel, copper, gold or other metals or minerals are discovered in quantity, ALX's projects may not be commercially viable. Additional risk factors are discussed in the Company's Management Discussion and Analysis for the Three Months Ended March 31, 2024, which is available under the Company's SEDAR profile at www.sedarplus.ca. Except as required by law, we will not update these forward-looking statement risk factors.

Neither the 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.

To view the source version of this press release, please visit https://www.newsfilecorp.com/release/212821

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o Geological similarities confirmed with the nearby Silver Peak lithium brine producer Albemarle, in Clayton Valley Nevada, with encouraging initial lithium assay results, aquifers and salinity.

- Lithium brine specialists have proposed additional drilling to intersect deep lithium brines in the centre of the basin, in a more favourable setting, further west of recent drilling.

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- QXR and IG Lithium Option Agreements are being amended to facilitate undertaking further drilling.

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Porous conglomerates saturated with brines were intersected beneath fine grained lake sediments with sandy layers. The geology intersected is very encouraging as it is similar to the producing sequences of Clayton Valley Nevada, where Albemarle's producing lithium brine deposit is located. Detailed downhole geophysics together with initial downhole brine sampling (packer sampling) shows increasing salinity with depth, together with large brine volumes, both encouraging for discovering a potentially economic lithium brine deposit in the properties.

Although the maximum lithium assay values were 50mg/l Li over 15 metres near the base of hole #2 (Table 2*), the salinity and conductivity increased with depth, at levels similar to known producers. Ingress of fresh water into the aquifers may explain the lower lithium values in drill holes #1 and #2 being located close to a range front fault on the edge of the basin. These initial holes were located near the edge of the basin in part for logistics and access reasons as well as the surface lithium anomaly.

Hole #2 also intersected thick porous brine horizons - critical for future success- which is considered encouraging, together with the geological similarity to Clayton Valley NV (Albemarle's Silver Peak mine). These similarities include basal porous conglomerate units containing brine beneath finer grained lake sediments.

However, the best producing horizons at Clayton Valley are tuff units within the sediment package which have not been intersected in drillholes to date, but which outcrop 4km to the southwest of hole #2 (Figure 4*).

Results were analysed by external lithium brine specialists to produce interpretations, including the globally recognised Hydrominex Geoscience Consulting. Lithium brine specialists have advised additional drilling is required to potentially intersect deep lithium brines in the centre of the basin, further west of drilling undertaken by QXR, based on lab results to date.

QXR Managing Director, Stephen Promnitz, said: "QXR has defined a new large scale brine basin, saturated with brines, at the Liberty Lithium Brine Project. A large near-surface brine field with lithium potential is rare to date in the USA. The geological setting, with conglomerates loaded with brines, is similar to Albemarle's producing deposit. We are yet to find tuff horizons similar to Clayton Valley, which are the best brine aquifers - although they do outcrop nearby, suggesting they may exist within the basin. Surface and downhole geophysics make it compelling for further drilling to the west, in the centre of the basin under deeper sediments, which may intersect higher grade lithium brine, compared to the drilling to date."

Next Steps

Applications for further drillholes were submitted some time ago. To provide operational flexibility, an amended drill program has been submitted to regulators for approval. Bulk volumes of brine will be submitted for testwork with selected direct lithium extraction (DLE) providers, as well as with lithium refiner Stardust Power Inc, with whom QXR holds at Letter of Intent (ASX announcement 29 Feb 2024). Stardust expects to list on NASDAQ in June via a c.US$490m deal and then plans to build a lithium refinery in Oklahoma.

Discussions continue with various USA based battery supply participants who are keen to work with potential new lithium developers within the USA.

QXR and IG Lithium are currently discussing amendments to the Option Agreements to facilitate the undertaking of further drilling.

Background

The Liberty Lithium Brine Project, located in SaltFire Flat, California, covers contiguous claims over 102km2 (25,300 acres), being one of the largest single lithium brine projects in the USA (Figure 1*). The Company entered an Option to Purchase Agreement and an Operating Agreement (Option Agreements) to earn a 75% interest in the large scale Liberty Lithium brine project in California, USA, from vendor IG Lithium LLC (ASX announcement 5 October 2023). Based on results received to date, the Company is currently in discussion with IG Lithium regarding potential renegotiation of the Option Agreements to allow a longer period of time to conduct additional drilling prior to any future commitments.

Two vertical diamond drill holes were completed (369m & 443 metres depth), spaced 4km apart (Figure 2, 3*).

Holes were centred over an extensive lithium brine surface anomaly and significant MT geophysical target, interpreted as a series of conductive brine bearing aquifers at depth. Brine horizons were intersected in both holes with numerous brine aquifers intersected in drillhole #2 (ASX announcement 8 Feb 2024).

QXR entered into a Letter of Intent with Stardust Power Inc., a development stage American manufacturer of battery-grade lithium products, to assess the lithium brines from the Liberty Lithium Brine Project. The parties intend to evaluate options to potentially supply Stardust Power with lithium brine products, dependent on results, on a non-exclusive basis for processing into battery-grade lithium materials for electric vehicles (ASX announcement 29 Feb 2024). The Company plans to share the results of the two hole drill program with Stardust as part of ongoing discussions.

Drillholes

Drillhole #1 (LLD23001) was completed at 369 metres depth. Target horizons were intersected at 49m depth and 329m depth. Fine grained sediments, gravels and coarse alluvial fan material were intersected down the length of the hole. An interpretation is that the drillhole went through the range front fault at 249m depth.

Drillhole #2 (LLD24002) was completed at 433 metres depth, located 4km to the south of drillhole #1. Both drillholes were centred over significant MT geophysical targets interpreted as a series of conductive brine bearing aquifers at depth. Both holes were positioned within an extensive lithium brine surface anomaly of over 10km defined in auger samples. An interpretation is that the drillhole went through the range front fault at 370m depth.

Figures 5 shows the increase in lithium and chloride concentration in brine with increasing depth. Figures 6-8* show interpretations of the possible geology on MT geophysical lines and the location of proposed drill holes.

The location of the proposed drill holes is also shown in Figure 9*.

Recommendations

Results were analysed by external lithium brine specialists to produce interpretations, including the globally recognised Hydrominex Geoscience Consulting, and others who have closely reviewed the geological setting of Albemarle's Silver Peak lithium brine producer in Clayton Valley, Nevada. Their recommendations included additional drilling further west of drilling undertaken by QXR, to potentially intersect deep lithium brines in the centre of the basin, based on lab results to date. Surface and downhole geophysics suggests that the basin is angled to the west with deeper sediments and brines to the west of recent drilling. Further, the geochemistry of the brine samples may suggest an ingress of fresh water into the aquifers, resulting in lower lithium grade in the two holes drilled to date, as the holes were drilled adjacent to a range front fault with significant fresh water inflows into the basin, along the basin edge.

*To view tables and figures, please visit:
https://abnnewswire.net/lnk/C58T0H5U



About QX Resources Ltd:

QX Resources Limited (ASX:QXR) is focused on exploration and development of battery minerals, with hard rock lithium assets in a prime location of Western Australia (WA), and gold assets in Queensland. The aim is to connect end users (battery, cathode and car makers) with QXR, an experienced explorer/developer of battery minerals, with an expanding mineral exploration project portfolio and solid financial support.

Lithium portfolio: QXR's lithium strategy is centred around WA's prolific Pilbara province, where it has acquired a controlling interest in four projects through targeted M&A - all of which sit in strategic proximity to some of Australia's largest lithium deposits and mines. Across the Pilbara, QXR's regional lithium tenement package (both granted or under application) now spans more than 350 km2.

Gold portfolio: QXR is also developing two Central Queensland gold projects - Lucky Break and Belyando - through an earn-in agreement with Zamia Resources Pty Ltd. Both gold projects are strategically located within the Drummond Basin, a region that has a >6.5moz gold endowment.

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Miguel Paucar Joins Lancaster Resources Advisory Board to Propel Corporate Growth and Sustainable Operations

Miguel Paucar Joins Lancaster Resources Advisory Board to Propel Corporate Growth and Sustainable Operations

Lancaster Resources Inc. (CSE:LCR) (OTCQB: LANRF) (FRA:6UF0) (" Lancaster "), a critical mineral exploration company, is pleased to announce the appointment of Miguel Paucar, B.Sc., M.Sc. to its Advisory Board. With over 28 years of extensive experience in the international mining sector, Miguel brings a wealth of knowledge and expertise from his work across diverse geographical regions including South Africa, Australia, Chile, Mexico, Peru, and Brazil. His career has encompassed significant roles in both underground and open-pit mining as well as geomechanics.

Miguel notably served as the Mining Director at Sigma Lithium from 2021 to 2022, where he spearheaded major advancements in lithium extraction technologies and sustainability practices. Under his leadership, the company implemented initiatives such as using 100% renewable energy and recycled water, producing "quintuple zero green" lithium with a focus on zero tailings dams and zero hazardous waste.

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CENTURY LITHIUM FILES TECHNICAL REPORT ON THE FEASIBILITY STUDY OF THE CLAYTON VALLEY LITHIUM PROJECT, NEVADA

CENTURY LITHIUM FILES TECHNICAL REPORT ON THE FEASIBILITY STUDY OF THE CLAYTON VALLEY LITHIUM PROJECT, NEVADA

Century Lithium Corp. (TSXV: LCE) (OTCQX: CYDVF) (Frankfurt: C1Z) (Century Lithium or the Company) is pleased to announce the filing of the report " NI 43-101 Technical Report on the Feasibility Study of the Clayton Valley Lithium Project, Esmeralda County, Nevada USA", with effective date April 29 2024 (Feasibility Study or Report), to support the disclosure in the Company's news release dated April 29, 2024 (see news release ). The Report was prepared in accordance with National Instrument 43-101 (NI 43-101) by Wood Canada Limited (Wood), Global Resource Engineering, Ltd. (GRE) and WSP USA Environment and Infrastructure, Inc. (WSP). All currency amounts in this news release are presented in US dollars.

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Brunswick Exploration Launches Multinational Exploration Campaign

Brunswick Exploration Launches Multinational Exploration Campaign

Brunswick Exploration Inc. (" BRW " or the " Company ") is pleased to announce that it has started a helicopter-supported prospecting campaign in Quebec with additional programs in Labrador and Greenland to begin in July and August 2024, respectively. BRW plans to systematically test hundreds of new and outcropping S-type pegmatite targets across its portfolio.

Mr. Killian Charles, President and CEO of BRW, commented: "While we continue to focus our efforts into the Mirage Project, we are thrilled to start new, ambitious grassroots initiatives throughout Eastern Canada and Greenland. These initiatives are a core pillar of BRW's strategy and, as the lithium industry remains ripe for new discoveries, we will continue to leverage our exploration expertise to rapidly identify new targets and explore in sound jurisdictions."

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NextSource Materials Signs Mandate Letter for US$91 Million Debt Facility with International Finance Corporation

NextSource Materials Signs Mandate Letter for US$91 Million Debt Facility with International Finance Corporation

NextSource Materials Inc. (TSX:NEXT)(OTCQB:NSRCF) ("NextSource" or "the Company") is pleased to announce the signing of a Mandate Letter with International Finance Corporation ("IFC"), the private sector investment arm of the World Bank Group, to lead a senior debt facility totaling US$91 million (the "IFC Debt Facility") to fund an expansion of the Molo Graphite Mine (the "Molo mine") in southern Madagascar

In December 2023, the Company released the results of a Technical Feasibility Study (the "FS") that confirmed the positive economics of a large-scale expansion of the Molo mine and processing facility from its current production capacity of 17,000 tonnes per annum (tpa) to 150,000 tpa of SuperFlake® graphite concentrate. The FS estimated a capital cost of US$161.7 million (including contingency) plus working capital of US$25.2 million, resulting in a pre-tax NPV8 (using an 8% discount rate) of US$424.1 million and a pre-tax Internal Rate of Return (IRR) of 31.1%, and a NPV8 of US$370.0 and IRR of 29.0% on a post-tax basis.

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