Monday, September 14, 2026
MiningNewsTerminal
Monday, September 14, 2026 Admin

MON.V ·

Montero Completes Geological Logging of 625.25-Metre Drillhole at Elvira and Reports Pyrite-Bearing High-Sulphidation Alteration

Drill Results Corporate Updates

Montero Completes Geological Logging of

625.25-Metre Drillhole at Elvira and Reports

Pyrite-Bearing High-Sulphidation Alteration

Toronto, Ontario--(Newsfile Corp. - August 4, 2026) - Montero Mining and Exploration Ltd. (TSXV: MON)

(OTC Pink: MXTRF) (FSE: ES0) ("

Montero

" or the "

Company

") is pleased to provide an update on

geological logging and sampling of drillhole MON-ELV-02 at the Elvira Gold Project in northern Chile.

Drillhole MON-ELV-02, the replacement drillhole for the originally designated MON-ELV-01, was

completed to a final depth of 625.25 metres. The hole tested a high-priority integrated target, defined

through geological, geochemical, and geophysical interpretation, including geochemical vectoring, three-

dimensional modelling, and artificial intelligence and machine-learning-assisted data integration.

Detailed geological logging indicates that the hole intersected strongly altered volcanic rocks overlying a

feldspar-quartz-amphibole porphyry, together with pyrite-bearing high-sulphidation alteration. Assay

results are pending and will be reported once received, reviewed, and verified.

Geological Logging Highlights

Intersected strongly advanced-argillic-altered lithic tuff from surface to approximately 194.40

metres.

Intersected a feldspar-quartz-amphibole porphyry from approximately 194.40 metres to the end of

the hole; with hydrothermal alteration

.

Identified an interpreted faulted contact between the volcanic sequence and the underlying

porphyry at approximately 194.40 metres.

Intersected widespread quartz-alunite-pyrite alteration, extending through much of the porphyry.

Identified the base of oxidation at approximately 253 metres, below which sulphides are better

preserved.

Observed pyrite-bearing sulphide mineralisation at multiple depths below approximately 253

metres and at the end of the hole, with pyrite occurring as disseminations, aggregates, stringers,

and veinlets.

Encountered local vuggy silica, quartz-pyrite and chalcedony-pyrite veinlets, chalcedonic veins,

hydrothermal crackle breccias and local cavities.

Identified chlorite-illite alteration between approximately 415-437 metres and 488-490 metres, with

locally developed irregular pyrite veinlets.

Observed trace chalcopyrite and other possible sulphide phases that require laboratory

confirmation.

The porphyry interval extends to more than 430 metres downhole. Visual logging records disseminated

pyrite, locally accompanied by pyrite aggregates and thin sulphide-bearing veinlets. These observations

are visual and preliminary; laboratory assays are required to determine whether gold, silver, copper, or

other metals are associated with the sulphide system. The simplified geological log and chargeability

relationship are shown in Figure 1.

Dr. Tony Harwood, President and Chief Executive Officer of Montero, commented:

"Geological

logging of drillhole MON-ELV-02 has supported important elements of our high-priority target model

at Elvira. The hole intersected the predicted volcanic sequence and underlying porphyry, together with

high-sulphidation alteration and pyrite corresponding spatially to the high-chargeability anomaly.

Pyrite-bearing sulphide mineralisation and associated veining were observed at multiple depths

below approximately 253 metres and at the end of the hole at 625.25 metres. Assay results will

determine the metal content of the hydrothermal system."

Figure 1: Simplified geological log of drillhole MON-ELV-02 showing lithology, alteration,

structure and the relationship with the modelled IP chargeability response. The hole

intersected dacitic lithic-crystal tuff to approximately 194.40 metres, followed by feldspar-

quartz-amphibole porphyry to the final depth of 625.25 metres. Quartz-alunite-pyrite alteration

extends through much of the porphyry, and pyrite was observed at multiple depths below the

base of oxidation which occurs at approximately 253 metres. The light-pink zone represents

modelled chargeability of approximately 9.8-22.5 mV/V, while the dark-pink zone represents

modelled chargeability greater than approximately 22.5 mV/V. Mineral identification is based on

visual geological logging. Laboratory assays are required to determine the associated metal

content.

To view an enhanced version of this graphic, please visit:

https://images.newsfilecorp.com/files/11789/307920_b852f6e31474e90d_001full.jpg

Historical Drilling Context

MON-ELV-02 was drilled adjacent to historical drillhole EL-12, which was completed to a comparatively

shallow final depth of approximately 281.85 metres. Buena Vista Gold Corp. reported that EL-12

intersected 4 metres grading 4.9 g/t Au from 264-268 metres, including 1 metre grading 17.85 g/t Au,

close to the bottom of the hole. MON-ELV-02 extended the geological test by more than 340 metres

below EL-12. Pyrite-bearing sulphide mineralisation with associated veining was observed at the end of

MON-ELV-02 at 625.25 metres. Assays from MON-ELV-02 remain pending.

The historical results represent downhole lengths, and true widths are unknown. The historical collar

location, drill orientation, sampling intervals, analytical methods and QA/QC procedures have not been

verified by the Qualified Person. The Qualified Person has not completed sufficient work to verify the

historical results because complete supporting sampling, analytical and QA/QC records are not currently

available to Montero. The historical information is considered relevant because EL-12 is located

adjacent to MON-ELV-02 and is provided solely as exploration context. It should not be treated as

current exploration results or as a Mineral Resource or Mineral Reserve.

Integrated Geological, Geochemical and Geophysical Interpretation

Geological logging identified pyrite-bearing sulphide mineralisation within the porphyry in the area of the

modelled IP chargeability anomaly. Pyrite was observed at multiple depths below the base of oxidation

at approximately 253 metres and at the end of the hole, providing geological support for Montero's

integrated targeting model.

The target was developed by combining geological mapping, historical drilling, alteration and structural

interpretation, surface geochemistry, IP chargeability and resistivity, geochemical vectoring, and three-

dimensional geological modelling. AI and machine-learning tools were used to assist in evaluating

relationships between these datasets and prioritising targets for the 2026 drill programme.

Preliminary interpretation indicates that the feldspar-quartz-amphibole porphyry was overprinted by high-

sulphidation hydrothermal alteration. Quartz-alunite-pyrite alteration, local vuggy silica and observed

sulphides indicate that hydrothermal fluids penetrated deeply into the intrusive host. Representative drill

core from 348.30 metres is shown in Figure 2. The relative timing of porphyry emplacement and the

hydrothermal event remains interpretive. It remains uncertain whether the intersected porphyry was the

source of the hydrothermal fluids or whether a separate, deeper mineralising intrusion is present. If the

intersected porphyry was the source, the vertical overlap of porphyry-related and high-sulphidation

alteration may indicate a telescoped hydrothermal system.

Figure 2: MON-ELV-02 drill core at 348.30 metres showing pyrite vein with white alunite and

barite, hosted by feldspar-quartz-amphibole porphyry with a grey silica and quartz-alunite

alteration halo. Mineral identification is based on visual logging, and metal content remains

subject to laboratory confirmation.

To view an enhanced version of this graphic, please visit:

https://images.newsfilecorp.com/files/11789/307920_montero2.jpg

Sampling, QA/QC and Chain of Custody

Drill core is managed under Montero's documented core handling, logging, sampling, and dispatch

procedures and under the supervision of the Qualified Person. Core is placed sequentially in labelled

trays at the drill rig, checked against driller depth and recovery records, and transported by authorised

personnel to a secure core facility. Core movements are documented by hole number, box number,

depth interval, date, transporter, and recipient.

At the core facility, the core is checked, reconstructed where appropriate, geologically, and

geotechnically logged, and photographed before sampling. Sample intervals are selected and marked

by the responsible geologist, with major geological contacts respected where practical. Core is cut with

a diamond saw, and one consistent half is placed in a uniquely numbered sample bag; the remaining

half is retained in the original tray for reference and potential check sampling.

Certified reference materials, blanks, and duplicate samples are inserted into the sample stream at

frequencies approved by the Qualified Person. Sample bags are sealed and placed in numbered

transport sacks with tamper-evident closures. Dispatch records identify the sample and sack numbers,

seal numbers, releasing person, transporter, receiving laboratory, and laboratory acknowledgement.

Samples are transported directly to the designated independent laboratory. QA/QC results will be

reviewed by the Qualified Person before assay results are publicly reported or relied upon for technical

interpretation.

The Company is not reporting analytical results in this release. Details of the analytical methods,

laboratory accreditation and assay QA/QC performance will be disclosed when assay results are

reported. Samples have been submitted to Andes Analytical Assay SpA in Copiapó, Chile, an

independent laboratory. Details of the analytical methods and the accreditation applicable to those

methods will be disclosed when assay results are reported.

Next Steps

Geological logging of MON-ELV-02 is complete. Core cutting and sample dispatch are continuing.

Laboratory results will be used to assess:

Whether gold, silver, copper, or other metals are associated with the intervals in which pyrite-

bearing sulphide mineralisation was observed.

The significance and distribution of the alteration and sulphide system.

The relationship between the intersected porphyry and any deeper mineralising source.

The geological information from MON-ELV-02 will be incorporated into Montero's three-dimensional

geological model, together with the geochemical, geophysical, and structural datasets, to refine

subsequent drill targeting. The model will continue to be updated as portable XRF screening, and

laboratory assay results become available. Portable XRF readings are used solely as a geological

screening tool and are not a substitute for laboratory assay results.

Caution Regarding Visual Observations

The geological observations reported in this release are preliminary and are based on visual

examination of drill core. Visual identification of alteration, sulphides and mineralogy is inherently

uncertain and should not be considered a substitute for laboratory assay results. The presence of pyrite,

alteration or other sulphide minerals does not necessarily indicate economically significant gold, silver,

or copper mineralisation. Assay results will be reported once received, reviewed, and verified by the

Company.

Qualified Person

The scientific and technical information contained in this news release has been reviewed and approved

by Mr. Marcial Vergara, B.Sc., an independent consulting geologist and a Qualified Person as defined

by National Instrument 43-101 - Standards of Disclosure for Mineral Projects. Mr. Vergara is

independent of the Company. Mr. Vergara verified the scientific and technical information disclosed in

this news release through review of the drill core, geological logs, core photographs, drill records,

sampling records, and relevant geological and geophysical data. No limitations were imposed on his

verification of the current drilling information disclosed in this release.

About Montero

Montero Mining and Exploration Ltd. is a Canadian exploration company focused on gold and copper

exploration in Chile. Montero holds a 100% interest in the Avispa copper-molybdenum project in the

Palaeocene Porphyry Cu-Mo Belt of northern Chile and has an option to acquire the Elvira and Potrero

gold projects in the Maricunga Gold Belt. These projects are being advanced through ongoing

exploration activities.

Montero is listed on the TSX Venture Exchange under the symbol MON and has 8,453,833 common

shares and 735,383 stock options outstanding.

For more information, contact:

Montero Mining and Exploration Ltd.

Dr. Tony Harwood, President and Chief Executive Officer

Email:

[email protected]

Tel: +1 604 428 7050

www.monteromining.com

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.

Cautionary Statement Regarding Forward-Looking Information

This news release contains forward-looking information within the meaning of applicable Canadian

securities laws. Forward-looking information includes statements regarding the interpretation of

geological observations; the potential relationship between alteration, sulphide mineralisation and metal

content; the timing, receipt and reporting of assay results; the refinement of the geological model; the

application of geochemical vectoring, artificial intelligence and machine-learning tools to the integration

and interpretation of exploration data; the design, sequence and timing of subsequent drillholes; and the

continuation of the 2026 Elvira drilling programme.

Forward-looking information is based on assumptions and estimates considered reasonable by

management as of the date of this release, including assumptions that laboratory analysis will be

completed within anticipated timeframes; that assay results and additional geological information can be

incorporated into the Company's geological model; that the Company will have sufficient personnel,

equipment, funding and access to continue the drilling programme; and that required permits and

regulatory approvals will remain in place.

Forward-looking information is subject to known and unknown risks, uncertainties and other factors that

may cause actual results to differ materially from those expressed or implied. These risks include the

speculative nature of mineral exploration; uncertainty in the interpretation of geological, geochemical and

geophysical data; the possibility that laboratory results may not confirm visual observations or current

geological interpretations; limitations and uncertainties associated with geochemical vectoring, artificial

intelligence and machine-learning-assisted interpretation; delays in laboratory processing or receipt of

assay results; operational and technical difficulties; adverse weather and site-access conditions;

permitting and regulatory risks; commodity-price fluctuations; availability of financing; and other risks

described in the Company's public disclosure documents filed on SEDAR+.

Readers are cautioned not to place undue reliance on forward-looking information. Montero undertakes

no obligation to update forward-looking information except as required by applicable securities laws.

To view the source version of this press release, please visit

https://www.newsfilecorp.com/release/307920