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Canada Nickel and the University of Texas at Austin Launch Carbon Sequestration Pilot at Crawford Nickel Project

MWN-AI** Summary

Canada Nickel Company Inc. has partnered with the University of Texas at Austin to launch a one-month in-situ carbon sequestration pilot study at its Crawford Nickel Project located near Timmins, Ontario. This initiative, supported by funding from the U.S. Department of Energy's ARPA-E program, is part of Canada Nickel's broader vision to foster a Zero-Carbon Industrial Cluster in Northeastern Ontario. The pilot follows successful bench-scale studies led by Dr. Estibalitz Ukar, demonstrating the ability of magnesium-rich minerals, such as brucite, to capture CO2 and transform it into solid minerals like magnesite.

Mark Selby, CEO of Canada Nickel, expressed enthusiasm for collaborating with Dr. Ukar’s team on novel carbon sequestration methods. The pilot aims to inject carbon-enriched water sourced from the Crawford site into a 400-meter-deep well within the ultramafic rock. This method is expected to commence the mineralization process rapidly, with a majority of CO2 converting into solid rock within six months. Various monitoring techniques will be employed, including groundwater sampling and satellite-based surface tracking, to assess the process's effectiveness.

This project stands apart from Canada Nickel's existing In-Process Tailings (IPT) Carbonation Program, marking a critical step in enhancing the company’s carbon capture capabilities. The insights gained from this pilot will inform future post-mining carbon sequestration strategies, aligning with the company’s goal of sustainable mineral development. Canada Nickel is committed to responsible practices and innovation in addressing climate change, positioning itself as a leader in the integration of environmental technology within the mining sector.

MWN-AI** Analysis

Canada Nickel Company Inc. (TSXV: CNC) has made significant strides in the sustainable mining sector with the recent announcement of a carbon sequestration pilot project in collaboration with the University of Texas at Austin. This initiative, funded by the U.S. Department of Energy's ARPA-E program, represents a strategic move to enhance Canada Nickel's reputation and operational efficiency while positioning it for future growth.

The Crawford Nickel Project, located in Ontario, presents a promising opportunity to leverage in-situ carbon injection technology to mitigate carbon emissions effectively. This pilot study follows preliminary bench-scale research demonstrating the ability of the magnesium-rich brucite found in Crawford's ultramafic rocks to convert CO2 into stable mineral forms like magnesite. Investors should closely monitor the outcomes of this month-long pilot, as successful implementation could considerably reduce costs and enhance the economic viability of the Crawford nickel mine.

As the global demand for nickel surges, driven by the electric vehicle and stainless-steel markets, Canada Nickel’s commitment to responsible environmental practices aligns with investor interests looking for sustainable investment opportunities. The potential establishment of a Zero-Carbon Industrial Cluster in Northeastern Ontario could further solidify Canada Nickel's leading position in the nickel market.

For investors, the current share price may represent an entry point, reflecting the company's strategic advancements in carbon capture technology. However, it’s essential to remain cautious and consider the inherent risks associated with the mining industry, including regulatory challenges and market fluctuations.

In summary, Canada Nickel stands at a pivotal junction—one that presents both significant upside potential and risks. Stakeholders should keep an eye on the results of the carbon sequestration pilot, as they may inform future investment decisions and overall market sentiment surrounding the company.

**MWN-AI Summary and Analysis is based on asking OpenAI to summarize and analyze this news release.

Source: Canada Newswire

Canada NewsWire

Highlights:

  • Canada Nickel and the University of Texas at Austin launch a one-month in-situ carbon injection pilot at the Crawford Nickel Project
  • Supported by funding from the U.S. Department of Energy's ARPA-E program
  • Pilot is independent of Canada Nickel's existing IPT Carbonation and NetCarb initiatives
  • Supports the development of a Zero-Carbon Industrial Cluster in Northeastern Ontario

TORONTO, Nov. 3, 2025 /CNW/ - Canada Nickel Company Inc. ("Canada Nickel" or the "Company") (TSXV: CNC) (OTCQB: CNIKF) is pleased to announce an in-situ carbon sequestration pilot study at its flagship Crawford Nickel Project ("Crawford"), near Timmins, Ontario. The pilot is being conducted in collaboration with the U.S. DOE ARPA-E team, led by the University of Texas at Austin.

The pilot program follows bench-scale studies conducted by the ARPA team under the direction of Dr. Estibalitz Ukar, Research Associate Professor at the University of Texas at Austin. 

Mark Selby, CEO of Canada Nickel said, "We have been very pleased to work with Dr. Ukar and her team at the University of Texas at Austin as they developed a novel carbon sequestration approach to store large volumes of CO2 and create the potential, by pre-carbonating material before it is mined, to both reduce the costs and to improve the value from processing the material.  We look forward to the results from this next stage of testing in a real-world field trial."

Dr. Ukar, said, "Canada Nickel has been an exceptional partner in this work, providing site access, geological data, and active collaboration. Their support of this pilot exemplifies their commitment to responsible mineral development, scientific innovation, and climate action. By advancing novel methods for permanent CO2 storage and supporting technologies that can scale globally, Canada Nickel is helping chart a sustainable path forward for the mining sector."

Bench-scale studies of the Crawford ultramafic rocks have demonstrated that the magnesium-rich mineral brucite captures CO2 by transforming into secondary minerals such as magnesite and nesquehonite. Building on these findings, the month-long pilot will inject carbon-enriched water sourced from the Crawford site into a 400 metre-deep well within the ultramafic body to evaluate large-scale carbon capture under natural conditions.

The CO2-to-rock mineralizing process is anticipated to begin within hours of the injection, with most of the CO2 turning into solid rock within six months. The pilot will use various monitoring techniques, including groundwater sampling, seismic sensors, gas detectors, and satellite-based surface tracking.

This initiative is independent of Canada Nickel's In-Process Tailings (IPT) Carbonation Program and represents a key step in expanding the Company's carbon capture and storage capabilities. Results from this study will help guide future post-mining carbon sequestration strategies, further strengthening Canada Nickel's vision for a Zero-Carbon Industrial Cluster in Timmins.

Qualified Person

Arthur G. Stokreef, P.Eng (ON), Manager of Process Engineering & Geometallurgy and a "qualified person" as such term is defined by National Instrument 43-101, has reviewed and approved the technical information in this news release on behalf of Canada Nickel Company Inc.

About Canada Nickel Company

Canada Nickel Company Inc. is advancing the next generation of nickel-sulphide projects to deliver nickel required to feed the high growth electric vehicle and stainless-steel markets. Canada Nickel Company has applied in multiple jurisdictions to trademark the terms NetZero NickelTM, NetZero CobaltTM, NetZero IronTM and is pursuing the development of processes to allow the production of net zero carbon nickel, cobalt, and iron products. Canada Nickel provides investors with leverage to nickel in low political risk jurisdictions. Canada Nickel is currently anchored by its 100% owned flagship Crawford Nickel-Cobalt Sulphide Project in the heart of the prolific Timmins-Nickel District. For more information, please visit www.canadanickel.com.

For further information, please contact

Mark Selby

CEO

Phone: 647-256-1954

Email: info@canadanickel.com

Cautionary Note and Statement Concerning Forward Looking Statements

This press release contains certain information that may constitute "forward-looking information" under applicable Canadian securities legislation. Forward looking information includes, but is not limited to, the potential and viability of carbon sequestration generally, the impact of drilling on the definition of any resource, timing and completion (if at all) of additional mineral resource estimates, the potential of the Timmins Nickel District, strategic plans, including future exploration and development plans and results, and corporate and technical objectives.  Forward-looking information is necessarily based upon several assumptions that, while considered reasonable, are subject to known and unknown risks, uncertainties, and other factors which may cause the actual results and future events to differ materially from those expressed or implied by such forward-looking information. Factors that could affect the outcome include, among  others:  future prices and the supply of metals, the future demand for metals, the results of drilling, inability to raise  the money necessary to incur the expenditures required to retain and advance the property, environmental liabilities  (known  and  unknown), general business, economic, competitive, political and social uncertainties, results of  exploration programs, risks of the mining industry, delays in obtaining governmental approvals, failure to obtain  regulatory or shareholder approvals.  There can be no assurance that such information will prove to be accurate, as actual results and future events could differ materially from those anticipated in such information. Accordingly, readers should not place undue reliance on forward-looking information. All forward-looking information contained in this press release is given as of the date hereof and is based upon the opinions and estimates of management and information available to management as at the date hereof. Canada Nickel disclaims any intention or obligation to update or revise any forward-looking information, whether because of new information. Neither TSX Venture Exchange nor its Regulation Services Provider (as that term is defined in policies of the TSX Venture Exchange) accepts responsibility for the adequacy or accuracy of this release.

SOURCE Canada Nickel Company Inc.

View original content to download multimedia: http://www.newswire.ca/en/releases/archive/November2025/03/c3325.html

FAQ**

How does the collaboration between Canada Nickel Company Inc. CNC:CC and the University of Texas at Austin enhance the effectiveness of carbon sequestration at the Crawford Nickel Project?

The collaboration between Canada Nickel Company Inc. and the University of Texas at Austin enhances carbon sequestration at the Crawford Nickel Project by leveraging academic expertise in geology and engineering to optimize carbon capture techniques and improve overall project sustainability.

What specific outcomes does Canada Nickel Company Inc. CNC:CC anticipate from the in-situ carbon injection pilot after completion in one month?

Canada Nickel Company Inc. anticipates that the in-situ carbon injection pilot will provide critical data to optimize carbon sequestration methods, enhance their sustainability initiatives, and contribute to their overall goal of reducing carbon emissions in nickel production.

How will the results from the pilot project impact Canada Nickel Company Inc. CNC:CC's vision for establishing a Zero-Carbon Industrial Cluster in Northeastern Ontario?

The results from the pilot project will validate Canada Nickel Company Inc.'s plans, potentially accelerating the establishment of a Zero-Carbon Industrial Cluster in Northeastern Ontario by demonstrating the viability and environmental benefits of sustainable nickel production.

What unique advantages does the geological composition of the Crawford Nickel Project provide for the carbon sequestration process being tested by Canada Nickel Company Inc. CNC:CC and its partners?

The Crawford Nickel Project's geological composition, characterized by ultramafic rock formations rich in magnesium, enhances carbon mineralization potential by promoting rapid carbonate formation, allowing for efficient long-term carbon sequestration and reduced atmospheric CO2 levels.

**MWN-AI FAQ is based on asking OpenAI questions about Canada Nickel Company Inc. (TSXVC: CNC:CC).

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