QIMC Unveils Vertically Integrated AI-Data-Centre and Natural Hydrogen Energy Model "WHERE GEOLOGY MEETS ARTIFICIAL INTELLIGENCE"
Québec Innovative Materials (OTCQB: QIMCF) unveiled a vertically integrated plan to build off-grid, carbon-neutral AI data centres powered by natural hydrogen found in its Ontario-Québec and Nova Scotia corridors.
QIMC says it has identified hydrogen-bearing fault systems and locations with hydrogen >5,000 ppm, no methane or CO2, and proximity to fibre and seaports, enabling on-site hydrogen extraction, baseload power generation and low-latency computing without grid dependence.
The company positions this model as a self-sustaining, low-emission solution for high-performance AI infrastructure that pairs geology with digital connectivity.
Québec Innovative Materials (OTCQB: QIMCF) ha svelato un piano verticalmente integrato per costruire data centre AI indipendenti dalla rete, a zero emissioni di carbonio, alimentati da idrogeno naturale trovato nei corridoi Ontario-Québec e Nova Scotia.
QIMC afferma di aver identificato sistemi di faglie idrogenate e località con idrogeno >5.000 ppm, assenza di metano o CO2, e prossimità a fibre ottiche e porti marittimi, consentendo l'estrazione di idrogeno in loco, la generazione di energia di base e il calcolo a bassa latenza senza dipendenza dalla rete.
L'azienda presenta questo modello come una soluzione autosufficiente a basse emissioni per infrastrutture AI ad alte prestazioni che unisce geologia e connettività digitale.
Québec Innovative Materials (OTCQB: QIMCF) presentó un plan de integración vertical para construir centros de datos de IA fuera de la red, neutrales en carbono, impulsados por hidrógeno natural encontrado en sus corredores Ontario-Québec y Nova Scotia.
QIMC afirma haber identificado sistemas de fallas que contienen hidrógeno y ubicaciones con hidrógeno >5,000 ppm, sin metano ni CO2, y cercanía a fibra óptica y puertos, lo que permite la extracción de hidrógeno in situ, generación de energía de base y computación de baja latencia sin dependencia de la red.
La compañía posiciona este modelo como una solución autosuficiente y de bajas emisiones para infraestructuras de IA de alto rendimiento que combinan geología con conectividad digital.
퀘벡 이노베이티브 매테리얼스 (OTCQB: QIMCF)는 온타리오-퀘벡 및 노바 스코샤 구간에서 발견된 천연 수소로 구동되는 그리드 밖의 탄소 중립 AI 데이터 센터를 구축하기 위한 수직적으로 통합된 계획을 발표했다.
QIMC는 수소를 포함하는 단층 시스템과 수소 >5,000 ppm, 메탄이나 CO2가 없고 광섬유 및 항구와의 근접성을 가진 위치를 확인했다고 말한다. 이를 통해 현장에서 수소를 추출하고 기반 전력을 생성하며 지연이 낮은 컴퓨팅을 그리드 의존 없이 수행할 수 있다.
회사는 이 모델을 지질학과 디지털 연결성을 결합한 고성능 AI 인프라를 위한 자립적이고 저배출성의 솔루션으로 제시한다.
Québec Innovative Materials (OTCQB: QIMCF) a dévoilé un plan verticalement intégré visant à construire des centres de données IA autonomes, hors réseau, neutres en carbone, alimentés par de l'hydrogène naturel trouvé dans ses corridors Ontario-Québec et Nouvelle-Écosse.
QIMC indique avoir identifié des systèmes de faille contenant de l'hydrogène et des emplacements avec hydrogène >5 000 ppm, sans méthane ni CO2, et à proximité de la fibre optique et des ports, permettant l'extraction d'hydrogène sur site, une production d'énergie de base et un calcul à faible latence sans dépendance au réseau.
L'entreprise présente ce modèle comme une solution autosuffisante et à faibles émissions pour des infrastructures IA haute performance qui associe la géologie à la connectivité numérique.
Québec Innovative Materials (OTCQB: QIMCF) hat einen vertikal integrierten Plan vorgestellt, um netzunabhängige, kohlenstoffneutrale KI-Rechenzentren zu errichten, die mit natürlichem Wasserstoff aus den Korridoren Ontario-Québec und Nova Scotia betrieben werden.
QIMC sagt, es habe wasserstoffhaltige Felsstrukturen und Standorte mit Wasserstoff >5.000 ppm identifiziert, ohne Methan oder CO2, und in der Nähe von Glasfaser und Seehäfen, was die Vor-Ort-Wasserstoffgewinnung, die Grundlastenergieerzeugung und die latenzarme Berechnung ohne Netzabhängigkeit ermöglicht.
Das Unternehmen positioniert dieses Modell als eigenständige, emissionsarme Lösung für Hochleistungs-KI-Infrastruktur, die Geologie mit digitaler Konnektivität verbindet.
Québec Innovative Materials (OTCQB: QIMCF) كشفت عن خطة متكاملة رأسياً لبناء مراكز بيانات ذكاء اصطناعي خارج الشبكة، محايدة للكربون، مدعومة بهيدروجين طبيعي موجود في ممرات أونتاريو-كيبك ونوفا سكوشا.
تقول QIMC إنها حددت أنظمة فِقْه محتملة للهيدروجين ومواقع تحتوي على هيدروجين >5,000 ppm، بدون ميثان أو CO2، وبالقرب من الألياف وبports، مما يمكّن من استخراج الهيدروجين في الموقع وتوليد طاقة أساسية وإجراء حوسبة منخفضة الكمون بدون الاعتماد على الشبكة.
وتضع الشركة هذا النموذج كحل مستقل منخفض الانبعاثات للبنية التحتية للذكاء الاصطناعي عالية الأداء التي تمزج الجيولوجيا بالاتصال الرقمي.
- Hydrogen >5,000 ppm reported in Nova Scotia zones
- Sites reported no methane and no CO2 emissions at identified zones
- Proximity to fibre and seaports supporting low-latency, off-grid data centres
- None.
Montreal, Quebec--(Newsfile Corp. - October 30, 2025) - Québec Innovative Materials Corp. (CSE: QIMC) (OTCQB: QIMCF) (FSE: 7FJ) ("QIMC" or the "Company") is proud to unveil its vertical integration strategy: the development of off-grid AI data centres powered by natural hydrogen. Under the banner "WHERE GEOLOGY MEETS ARTIFICIAL INTELLIGENCE," QIMC is aligning its clean-energy assets with cutting-edge computing infrastructure to create a self-sustaining, carbon-neutral ecosystem that unites energy independence, innovation, and digital performance.
A Natural Synergy Between Energy and Intelligence
QIMC's hydrogen discoveries across the Ontario-Québec Hydrogen Corridor and the Nova Scotia Hydrogen Corridor provide the foundation for this unique integration. In these regions, QIMC has confirmed extensive hydrogen-bearing fault systems and geological formations ideal for on-site hydrogen extraction and power generation, in areas with favorable logistics, cold climates, and high-bandwidth fiber connectivity — the perfect combination for high-efficiency, low-emission AI data-centre deployment.
These locations are strategically positioned along two emerging clean-energy corridors:
Ontario-Québec Hydrogen Corridor: spanning the Témiscamingue Graben through St-Bruno-de-Guigues, Ville-Marie, and extending into Ontario, where shallow sedimentary covers and strong structural controls favor sustained hydrogen degassing and on-site energy generation.
Nova Scotia Hydrogen Corridor: encompassing the Cumberland Basin and Advocate-Southampton fault systems, where QIMC and its partners have identified zones with hydrogen concentrations exceeding 5,000 ppm, no methane and CO₂, and direct proximity to seaport, fibre-optic infrastructure, and existing industrial hubs.
These corridors offer an unprecedented opportunity for fully off-grid AI computing, combining baseload hydrogen energy with low-latency digital infrastructure creating what QIMC describes as "the world's first geological data-centers powered by nature itself."
Reinventing the Data-Centre Model
Traditional AI data centres are increasingly constrained by energy availability and grid limitations. QIMC's approach — integrating natural hydrogen production directly into the energy architecture of data infrastructure — allows each site to operate independently from the grid, reducing energy costs, stabilizing supply, and eliminating most emissions.
This strategy positions QIMC to deliver sustainable, high-performance computing solutions at the geological source of energy — a model that aligns perfectly with global demand for low-carbon AI infrastructure and distributed cloud computing.
Leadership Commentary
"With 'WHERE GEOLOGY MEETS ARTIFICIAL INTELLIGENCE', we are redefining the limits of clean technology," said John Karagiannidis, President & CEO of QIMC. "Our hydrogen corridors in Ontario-Québec and Nova Scotia represent more than exploration success — they are strategic clean natural hydrogen platforms that are capable of powering a new generation of off-grid, AI-driven infrastructure. By pairing geology with artificial intelligence, QIMC is building an entirely new class of sustainable energy-compute ecosystems."
"Our vision is simple yet transformative," added Karagiannidis. "To harness what the Earth naturally provides — clean hydrogen — and convert it into the power that fuels intelligence, innovation, and digital sovereignty."
About Québec Innovative Materials Corp. (QIMC)
Quebec Innovative Materials Corp. (CSE: QIMC) (OTCQB: QIMCF) (FSE: 7FJ) is a mineral exploration and development company dedicated to exploring and harnessing the potential of North America's abundant resources. With properties in Ontario, Quebec, Nova Scotia and Minnesota (US), QIMC is focused on specializing in the exploration of white (natural) hydrogen and high-grade silica deposits. QIMC is committed to sustainable practices and innovation. With a focus on environmental stewardship and cutting-edge extraction technology, we aim to unlock the full potential of these materials to drive forward clean energy solutions to power the AI and carbon-neutral economy and contribute to a more sustainable future.
For more information, please contact:
QUÉBEC INNOVATIVE MATERIALS CORP.
John Karagiannidis
President & CEO
Email: info@qimaterials.com
Tel: +1 514-726-7058
Neither the Canadian Securities Exchange nor its Regulation Services Provider (as that term is defined in the CSE policies) accepts responsibility for the adequacy or accuracy of this news release and has neither approved nor disapproved the contents of this news release.
Forward-Looking Statements
This news release contains statements that constitute "forward-looking statements". Such forward-looking statements involve known and unknown risks, uncertainties and other factors that may cause Québec Innovative Materials' actual results, performance or achievements, or developments in the industry to differ materially from the anticipated results, performance or achievements expressed or implied by such forward-looking statements. Forward-looking statements are statements that are not historical facts and are generally, but not always, identified by the words "expects," "plans," "anticipates," "believes," "intends," "estimates," "projects," "potential" and similar expressions, or that events or conditions "will," "would," "may," "could" or "should" occur.
Although Québec Innovative Materials believes the forward-looking information contained in this news release is reasonable based on information available on the date hereof, by their nature, forward-looking statements involve assumptions, known and unknown risks, uncertainties and other factors which may cause our actual results, performance or achievements, or other future events, to be materially different from any future results, performance or achievements expressed or implied by such forward-looking statements.
Examples of such assumptions, risks and uncertainties include, without limitation, assumptions, risks and uncertainties associated with general economic conditions in Canada and abroad; adverse industry events; future legislative and regulatory developments in the natural resources sector, in particular as regards the regulation of white (natural) hydrogen exploration, development and exploitation; the Company's ability to access sufficient capital from internal and external sources, and/or inability to access sufficient capital on favorable terms; natural resources industry and markets in Canada and generally; the ability of Québec Innovative Materials to implement its business strategies; competition; and other assumptions, risks and uncertainties.
The forward-looking information contained in this news release represents the expectations of the Company as of the date of this news release and, accordingly, is subject to change after such date. Readers should not place undue importance on forward-looking information and should not rely upon this information as of any other date. While the Company may elect to, it does not undertake to update this information at any particular time except as required in accordance with applicable laws.
Cautionary Statements This news release contains "forward-looking information" and "forward-looking statements" within the meaning of applicable Canadian securities legislation. These statements are based on expectations, estimates, and projections as of the date of this release. Forward-looking statements involve risks and uncertainties, which may cause actual results to differ materially from current expectations. Readers are cautioned not to place undue reliance on these statements, as no assurance can be provided regarding future outcomes.

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