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Montero Identifies Large Hydrothermal System with Epithermal and Porphyry-Style Characteristics at Elvira Gold Project

Exploration Programs

Montero Identifies Large Hydrothermal System

with Epithermal and Porphyry-Style

Characteristics at Elvira Gold Project

Toronto, Ontario--(Newsfile Corp. - March 24, 2026) - Montero Mining and Exploration Ltd. (TSXV:

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

Montero

" or the "

Company

") is pleased to report

geochemical results from its Elvira gold project in Chile's Maricunga Gold Belt.

This work forms part of the Company's ongoing integrated exploration program combining geological

mapping, geophysical surveys, geochemical datasets and artificial intelligence-assisted modelling to

refine exploration targets within the Elvira hydrothermal system. A regional location map of the project

and a detailed map of the project area are shown in Figures 1 and 2.

Figure 1: Regional location map of the Elvira Project, Maricunga Belt, Chile.

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

https://images.newsfilecorp.com/files/11789/289716_2bd47b7954bfdb71_003full.jpg

Figure 2: Elvira Project concession boundary and simplified geological map.

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

https://images.newsfilecorp.com/files/11789/289716_2bd47b7954bfdb71_004full.jpg

Dr. Tony Harwood, President and CEO of Montero, commented:

"Geochemistry at Elvira highlights a

large hydrothermal system with strong geochemical vectors consistent with shallow epithermal

mineralization and deeper porphyry-style target concepts. This work will be integrated and interrogated

using artificial intelligence-assisted modelling, together with alteration, geological, structural and

geophysical datasets, to develop a drill target model."

Geochemical Results

Sampling at Elvira was conducted between October and December 2025. A total of 38 rock samples

were collected and analyzed using four-acid digestion ICP-MS methods for high-sensitivity multi-element

analysis, forming the basis for geochemical vectoring work. In addition, 47 rock samples and 47 soil

samples were collected and analyzed using fire assay for gold and silver, together with multi-element

ICP analysis (32-element suite), at ALS and AAA laboratories in Santiago, Chile.

Geochemical results confirm widespread arsenic (As) enrichment across the project area, with localized

molybdenum (Mo) anomalism, consistent with hydrothermal zoning patterns observed in porphyry-

epithermal systems.

The geochemical signature is interpreted to reflect high-sulphidation hydrothermal alteration that may

overlie a porphyry source, consistent with patterns observed in high-sulphidation systems elsewhere in

the Maricunga Belt. Elevated arsenic (As) values are spatially associated with areas of mapped

advanced argillic alteration, consistent with a high-sulphidation epithermal environment, while localized

molybdenum (Mo) anomalism occurs within the central portion of the system and may indicate proximity

to a deeper porphyry-style source.

Multi-Element and Ratio-Based Geochemical Analysis

Multi-element and ratio-based anomaly mapping has been used to further evaluate geochemical

zonation within the Elvira hydrothermal system.

Epithermal signatures are highlighted by strong mercury (Hg) anomalism, together with lead-to-arsenic

(Pb/As) and copper-to-arsenic (Cu/As) ratios, as well as composite As+Sb+Hg responses.

Porphyry-oriented indicators include zinc (Zn), molybdenum-to-arsenic ratios (Mo/As), and composite

multi-element responses including Mo+Bi+Te+Hg, which define discrete zones interpreted to represent

potential higher-temperature centres and potential vectors toward a deeper porphyry-style source.

The combined use of element distributions, ratios and composite anomaly mapping supports an

interpretation consistent with a vertically zoned porphyry-epithermal system and helps identify vectors

toward potential higher-temperature centres at depth.

Figure 3: Rock sample locations coloured by (A) arsenic (As) concentration and (B) molybdenum (Mo)

concentration. Arsenic defines a broad high-sulphidation epithermal footprint, while molybdenum

highlights more localized anomalous zones that may represent higher-temperature centres within the

hydrothermal system.

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

https://images.newsfilecorp.com/files/11789/289716_2bd47b7954bfdb71_005full.jpg

Figure 4: Rock sample locations coloured by (A) mercury (Hg) concentration, (B) lead to arsenic

(Pb/As), (C) copper to arsenic (Cu/As) ratios, and (D) composite As+Sb+Hg responses, showing strong

enrichment typical of high-sulphidation epithermal systems.

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

https://images.newsfilecorp.com/files/11789/289716_2bd47b7954bfdb71_007full.jpg

Figure 5: Rock sample locations coloured by (A) zinc (Zn) concentration, (B) copper (Cu) concentration,

(C) molybdenum to arsenic ratio (Mo/As), and (D) composite multi-element responses including

Mo+Bi+Te+Hg, showing strong enrichment typical of porphyry systems.

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

https://images.newsfilecorp.com/files/11789/289716_2bd47b7954bfdb71_009full.jpg

Analogue to Maricunga Discoveries

Multi-element geochemistry has been an important exploration tool in high-sulphidation systems in the

Maricunga Belt and formed part of the discovery workflow at Salares Norte, where pathfinder element

assemblages including As, Bi, Hg, Pb, Sb and Te were used in combination with alteration mapping and

geophysical targeting to define drill targets (Brewer et al., 2017; Gold Fields, 2021).

At Salares Norte, the relative distribution of arsenic and antimony, together with multi-element pathfinder

geochemistry, was used to vector toward higher-temperature centres and guide drill targeting.

The presence of strong high-sulphidation epithermal geochemical signatures at surface, including

arsenic-antimony, and mercury-dominated anomalism and associated element ratios, is consistent with

interpretations of the upper portions of hydrothermal systems.

In comparable systems, including Salares Norte, such geochemical signatures have been used in

analogous deposits to vector toward mineralized centres at both shallow epithermal levels and deeper

porphyry-style zones. Element distributions and selected ratios shown in Figures 3 to 5 illustrate a broad

arsenic-defined alteration footprint with localized molybdenum enrichment that may represent higher-

temperature centres within the system.

Next Steps

The Company will continue integrating geological, geochemical and geophysical datasets using

structural interpretation and artificial intelligence-assisted modelling.

Continued exploration work will focus on:

Using geochemical data to refine exploration vectors.

Continued integration of geological, geophysical and geochemical datasets.

Refinement of three-dimensional exploration models.

Prioritization of areas for potential drill target definition.

The Company intends to provide further updates as interpretation of the integrated datasets progresses.

Qualified Person

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

by Mr. Marcial Vergara, B.Sc., and Mr. Mike Evans, M.Sc. Pr.Sci.Nat., each a Qualified Person as

defined by National Instrument 43-101 - Standards of Disclosure for Mineral Projects, and consulting

geologists to the Company.

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 currently being advanced through

exploration. The Company's board and management have experience in the discovery and development

of precious and base metal projects.

Montero is listed on the TSX Venture Exchange under the symbol MON and has 8,353,833 Common

Shares and 835,383 stock options outstanding.

For more information, contact:

Montero Mining and Exploration Ltd.

Dr. Tony Harwood

, President, and Chief Executive Officer

E-mail:

[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

includes certain "forward-looking information" within the meaning of applicable Canadian securities

laws. Forward-looking information in this press release includes, but is not limited to, statements

regarding: the integration and interpretation of geological, geochemical and geophysical data; the

application of artificial intelligence and machine learning tools; the identification, evaluation or

prioritization of areas for further exploration; the potential for mineralization; and the timing or scope of

future exploration activities, including any potential drilling. Generally, forward-looking information can be

identified by the use of forward-looking terminology such as "plans", "expects", "does not expect", "is

expected", "budget", "scheduled", "estimates", "forecasts", "intends", "anticipates", "does not

anticipate", or "believes", or variations of such words and phrases, or statements that certain actions,

events or results "may", "could", "would", "might" or "will" occur or be achieved. Such information is

based on information currently available to Montero and on assumptions management believes are

reasonable as of the date of this news release. Forward-looking information is subject to known and

unknown risks, uncertainties and other factors that may cause actual results, level of activity,

performance or achievements of the Company to be materially different from those expressed or implied

by such forward-looking information. These risks and uncertainties include, but are not limited to: risks

related to mineral exploration and development activities; uncertainties inherent in the interpretation of

geological and geophysical data; the speculative nature of mineral exploration; commodity price

fluctuations; changes in general market conditions; regulatory approvals and permitting risks; availability

of financing; operational and technical risks; and other risk factors described in the Company's public

disclosure documents filed on SEDAR+. There can be no assurance that such forward-looking

information will prove to be accurate, as actual results and future events could differ materially from those

anticipated in such statements. Readers are cautioned not to place undue reliance on forward-looking

information. Montero does not undertake to update any forward-looking information, except in

accordance with applicable securities laws.

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

https://www.newsfilecorp.com/release/289716