{"id":82168,"date":"2025-10-01T11:13:11","date_gmt":"2025-10-01T11:13:11","guid":{"rendered":"https:\/\/qimaterials.com\/?st-import=0a4e3d57b012c181d5c513cead037d29"},"modified":"2026-05-14T15:27:42","modified_gmt":"2026-05-14T15:27:42","slug":"qimc-confirms-fourth-major-natural-hydrogen-zone-in-nova-scotia-with-soil-gas-results-up-to-4850-ppm-2-km-continuous-anomaly-along-windsor-cumberland-fault","status":"publish","type":"post","link":"https:\/\/qimaterials.com\/fr\/qimc-confirms-fourth-major-natural-hydrogen-zone-in-nova-scotia-with-soil-gas-results-up-to-4850-ppm-2-km-continuous-anomaly-along-windsor-cumberland-fault\/","title":{"rendered":"QIMC confirme l&#039;existence d&#039;une quatri\u00e8me zone majeure d&#039;hydrog\u00e8ne naturel en Nouvelle-\u00c9cosse, avec des r\u00e9sultats d&#039;analyse des gaz du sol atteignant 4\u00a0850 ppm \u2013 une anomalie continue sur 2 km le long de la faille de Windsor-Cumberland."},"content":{"rendered":"<p>Montr\u00e9al (Qu\u00e9bec) \u2013 (Newsfile Corp. \u2013 1er octobre 2025) \u2013 Quebec Innovative Materials Corp. (CSE\u00a0: QIMC) (OTCQB\u00a0: QIMCF) (FSE\u00a0: 7FJ) (\u201d\u00a0QIMC\u00a0\u201d ou la \u201d\u00a0Soci\u00e9t\u00e9\u00a0\u201d) a le plaisir d\u2019annoncer la confirmation d\u2019une quatri\u00e8me zone importante d\u2019hydrog\u00e8ne naturel en Nouvelle-\u00c9cosse, caract\u00e9ris\u00e9e par une concentration maximale de gaz du sol de 4\u00a0850\u00a0ppm. Cette nouvelle zone, situ\u00e9e dans la r\u00e9gion de Little Forks-Springhill, pr\u00e9sente un contexte g\u00e9ologique particulier o\u00f9 les conditions de la source, du r\u00e9servoir et de la barri\u00e8re se conjuguent pour cr\u00e9er une pr\u00e9sence continue d\u2019hydrog\u00e8ne sur 2\u00a0km le long de la faille bordi\u00e8re s\u00e9parant le groupe de Windsor du groupe de Cumberland.<\/p>\n<p>Le programme analytique a renvoy\u00e9 plus de 24 relev\u00e9s sup\u00e9rieurs \u00e0 500 ppm, quatre r\u00e9sultats entre 1 500 et 1 999 ppm, deux r\u00e9sultats entre 2 000 et 2 999 ppm, et un maximum de 4 850 ppm, confirmant ainsi la force et l&#039;\u00e9tendue exceptionnelles de cette anomalie.<\/p>\n<p>Cette d\u00e9couverte majeure confirme l&#039;importance remarquable des anomalies d&#039;hydrog\u00e8ne en Nouvelle-\u00c9cosse et s&#039;ajoute aux trois d\u00e9couvertes pr\u00e9c\u00e9demment annonc\u00e9es par QIMC. L&#039;identification de deux principaux corridors d&#039;hydrog\u00e8ne de part et d&#039;autre du bassin de Cumberland, l&#039;un \u00e0 l&#039;est et l&#039;autre \u00e0 l&#039;ouest de la province, distants d&#039;\u00e0 peine 1 h 15 de route, d\u00e9montre l&#039;envergure r\u00e9gionale n\u00e9cessaire au d\u00e9veloppement d&#039;un p\u00f4le de production d&#039;ammoniac propre.<\/p>\n<p><i>\u201d Cette quatri\u00e8me d\u00e9couverte confirme notre hypoth\u00e8se d&#039;exploration : la Nouvelle-\u00c9cosse poss\u00e8de les conditions g\u00e9ologiques id\u00e9ales, des r\u00e9servoirs faill\u00e9s et pliss\u00e9s, scell\u00e9s par des \u00e9vaporites imperm\u00e9ables pouvant accueillir d&#039;importantes accumulations naturelles d&#039;hydrog\u00e8ne. \u201d<\/i>\u00a0a d\u00e9clar\u00e9 John Karagiannidis, pr\u00e9sident et chef de la direction de QIMC.\u00a0<i>\u201d Avec la confirmation de zones \u00e0 hydrog\u00e8ne de part et d\u2019autre du corridor de Cumberland, nous examinons les fondements d\u2019un mod\u00e8le de d\u00e9veloppement r\u00e9gional, incluant la production d\u2019ammoniac, b\u00e2ti sur de multiples corridors \u00e0 fort potentiel. \u201d<\/i><\/p>\n<p>Les \u00e9quipes du QIMC et de l&#039;INRS retourneront en Nouvelle-\u00c9cosse le 5 octobre 2025 pour entamer les prochaines phases de d\u00e9veloppement.<\/p>\n<p><b>CONTEXTE DE LA R\u00c9GION DE LITTLE FORKS-SPRINGHILL<\/b><\/p>\n<p>Le site d&#039;exploration, centr\u00e9 sur la r\u00e9gion de Little Forks-Springhill, se situe \u00e0 environ 20 km au nord-est de Southampton. Les ressources naturelles de la r\u00e9gion de Springhill sont reconnues \u00e0 l&#039;\u00e9chelle nationale pour ses mines de charbon exploit\u00e9es depuis le XIXe si\u00e8cle et pour l&#039;utilisation de la ressource g\u00e9othermique pr\u00e9sente \u00e0 proximit\u00e9 de ces anciennes mines.<\/p>\n<p>Dans l&#039;ensemble, la r\u00e9gion de Little Forks-Springhill pr\u00e9sente un relief accident\u00e9 t\u00e9moignant d&#039;une g\u00e9ologie complexe, notamment marqu\u00e9e par de nombreuses failles orient\u00e9es NE-SO et E-O recoupant les roches carbon\u00e9es du bassin de Cumberland. Le programme d&#039;exploration dans cette r\u00e9gion visait \u00e0 \u00e9valuer le potentiel en hydrog\u00e8ne de l&#039;extr\u00e9mit\u00e9 ouest du synclinal d&#039;Athol (Fig. 1), et plus pr\u00e9cis\u00e9ment d&#039;une zone affect\u00e9e par la tectonique salif\u00e8re (diapirisme salin) li\u00e9e \u00e0 la mise en place de d\u00f4mes de sel et d&#039;anhydrite-gypse du Groupe de Windsor (Fig. 2). Ce contexte g\u00e9ologique, diff\u00e9rent de celui de Southampton, se caract\u00e9rise par une verticalisation des structures qui pourrait faciliter, entre autres, la remont\u00e9e d&#039;hydrog\u00e8ne \u00e0 partir de sources profondes et chaudes, en raison d&#039;un gradient g\u00e9othermique particuli\u00e8rement \u00e9lev\u00e9 dans cette partie de la Nouvelle-\u00c9cosse. La pr\u00e9sence d&#039;\u00e9vaporites au sein du Groupe de Windsor constitue une caract\u00e9ristique importante de la g\u00e9ologie locale et, dans le cadre d&#039;une \u00e9ventuelle production d&#039;hydrog\u00e8ne, ces roches pourraient servir au stockage de l&#039;hydrog\u00e8ne.<\/p>\n<p><i>\u201d Les gr\u00e8s de Ragged Reef offrent un excellent potentiel de r\u00e9servoir, les \u00e9vaporites du groupe Windsor agissent comme des barri\u00e8res et le gradient g\u00e9othermique local fournit l&#039;\u00e9nergie motrice pour la migration de l&#039;hydrog\u00e8ne. \u201d<\/i>\u00a0notes\u00a0<b>Pr Marc Richer-Lafl\u00e8che, INRS<\/b>.<\/p>\n<p><a href=\"\/fr\/\"https:><img class=\"\\\"releaseimage\\\"\" src=\"\\\"https:><\/a><\/p>\n<p><i>Figure 1. Carte g\u00e9ologique simplifi\u00e9e montrant les remont\u00e9es de socle des hautes terres de Cobequid et de Hastings et les principaux synclinaux de la r\u00e9gion de Cumberland en Nouvelle-\u00c9cosse. Modifi\u00e9e d&#039;apr\u00e8s Durling (2023).<\/i><\/p>\n<p>Pour consulter une version am\u00e9lior\u00e9e de ce graphique, veuillez visiter\u00a0:<br \/>\n<a href=\"\/fr\/\"https:>https:\/\/images.newsfilecorp.com\/files\/7968\/268627_21131fad9481da5a_001full.jpg<\/a><\/p>\n<p><b>Contexte g\u00e9ologique<\/b><\/p>\n<p>La g\u00e9ologie de la r\u00e9gion de Springhill est complexe car elle est influenc\u00e9e par la tectonique salif\u00e8re li\u00e9e \u00e0 la mise en place de diapirs de sel, de formations d&#039;anhydrite (et de gypse) remontant \u00e0 travers les roches s\u00e9dimentaires carbon\u00e9es du groupe de Cumberland (Fig. 2). Cette g\u00e9ologie particuli\u00e8re s&#039;accompagne de failles, de contacts g\u00e9ologiques profonds, de soul\u00e8vements rocheux de type horst et de plis. Ces structures peuvent cr\u00e9er des pi\u00e8ges et\/ou des voies de migration potentielles pour l&#039;hydrog\u00e8ne.<\/p>\n<p><a href=\"\/fr\/\"https:><img class=\"\\\"releaseimage\\\"\" src=\"\\\"https:><\/a><\/p>\n<p><i>Figure 2. Coupe g\u00e9ologique sch\u00e9matique illustrant l&#039;influence de la mise en place d&#039;un diapir de sel du Groupe de Windsor sur les roches du Groupe de Cumberland. Noter la verticalisation des structures \u00e0 proximit\u00e9 du diapir. Figure modifi\u00e9e d&#039;apr\u00e8s Ryan et al. (1990).<\/i><\/p>\n<p>Pour consulter une version am\u00e9lior\u00e9e de ce graphique, veuillez visiter\u00a0:<br \/>\n<a href=\"\/fr\/\"https:>https:\/\/images.newsfilecorp.com\/files\/7968\/268627_21131fad9481da5a_002full.jpg<\/a><\/p>\n<p>La carte g\u00e9ologique, qui met en \u00e9vidence le caract\u00e8re chaotique et discontinu de la g\u00e9ologie de la r\u00e9gion de Springhill, indique \u00e9galement l&#039;emplacement des sites d&#039;\u00e9chantillonnage le long des coupes de Little Fork et de Salt Spring (coupes 1 et 2) (Fig. 3). Concernant la zone d&#039;exploration de Southampton, les concentrations d&#039;hydrog\u00e8ne les plus \u00e9lev\u00e9es dans les sols sont observ\u00e9es au-dessus de la formation carbonif\u00e8re de Ragged Reef, compos\u00e9e d&#039;une alternance de gr\u00e8s fluviatiles, de conglom\u00e9rats, de mudstones, de calcaires lacustres et de rares horizons de charbon. Dans le bassin de Cumberland, les caract\u00e9ristiques des roches de cette formation g\u00e9ologique semblent tr\u00e8s favorables \u00e0 la pr\u00e9sence d&#039;hydrog\u00e8ne dans le sous-sol, notamment \u00e0 proximit\u00e9 de certaines failles r\u00e9gionales. En revanche, les r\u00e9sultats des mesures effectu\u00e9es sur les formations de sel, d&#039;anhydrite et de gypse du groupe de Windsor (Fig. 3 ; coupe de Little Fork) montrent de tr\u00e8s faibles concentrations d&#039;hydrog\u00e8ne dans les gaz du sol, de l&#039;ordre de 0 ppm, ce qui confirme la tr\u00e8s faible perm\u00e9abilit\u00e9 des formations \u00e9vaporitiques, qui semblent constituer de v\u00e9ritables barri\u00e8res limitant la remont\u00e9e de l&#039;hydrog\u00e8ne. \u201d\u00a0De plus, il est important de noter que les \u00e9vaporites sont souvent associ\u00e9es \u00e0 des pi\u00e8ges structuraux. Leur densit\u00e9 et leur rigidit\u00e9 peuvent provoquer des plis et des failles, cr\u00e9ant ainsi des pi\u00e8ges potentiels pour l\u2019hydrog\u00e8ne\u00a0\u201d, a ajout\u00e9 le professeur Richer-Lafl\u00e8che.<\/p>\n<p>En th\u00e9orie, il serait envisageable que des r\u00e9servoirs se forment dans la formation de Ragged Reef, car celle-ci contient des unit\u00e9s de gr\u00e8s grossiers (gr\u00e8s sublithar\u00e9nitiques et subarkosiques) et des conglom\u00e9rats issus de milieux fluviaux \u00e0 forte \u00e9nergie, potentiellement favorables \u00e0 la formation de r\u00e9servoirs de qualit\u00e9. Ces unit\u00e9s sont localement recouvertes de schistes argileux et de siltites pouvant former des membranes relativement imperm\u00e9ables.<\/p>\n<p><a href=\"\/fr\/\"https:><img class=\"\\\"releaseimage\\\"\" src=\"\\\"https:><\/a><\/p>\n<p><i>Figure 3. Carte g\u00e9ologique de la r\u00e9gion de Little Fork-Springhill et localisation des lev\u00e9s g\u00e9ochimiques d&#039;hydrog\u00e8ne dans les sols. Carte modifi\u00e9e d&#039;apr\u00e8s Ryan et al. (1990).<\/i><\/p>\n<p>Pour consulter une version am\u00e9lior\u00e9e de ce graphique, veuillez visiter\u00a0:<br \/>\n<a href=\"\/fr\/\"https:>https:\/\/images.newsfilecorp.com\/files\/7968\/268627_21131fad9481da5a_003full.jpg<\/a><\/p>\n<p><b>R\u00c9SULTATS ANALYTIQUES DES \u00c9TUDES DE GAZ DU SOL DANS LA R\u00c9GION DE SPRINGHILL<\/b><\/p>\n<p>Les travaux ont \u00e9t\u00e9 r\u00e9alis\u00e9s du 8 au 9 ao\u00fbt 2025 par temps ensoleill\u00e9 (temp\u00e9rature moyenne de 30,7 \u00b0C, pression atmosph\u00e9rique moyenne de 1011,7 hPa et humidit\u00e9 relative moyenne de 33,7 %). Au total, 208 \u00e9chantillons ont \u00e9t\u00e9 pr\u00e9lev\u00e9s sur 3 tron\u00e7ons totalisant 19,9 km le long des routes publiques de la r\u00e9gion de Springhill.<\/p>\n<p>Les concentrations moyennes et m\u00e9dianes d&#039;hydrog\u00e8ne mesur\u00e9es dans les sols de ce secteur sont particuli\u00e8rement variables. Les concentrations minimales, maximales et moyennes sont pr\u00e9sent\u00e9es dans le tableau 1. Les sections des lev\u00e9s de gaz du sol sont pr\u00e9sent\u00e9es sur la figure 4 et la carte de r\u00e9partition spatiale des anomalies d&#039;hydrog\u00e8ne est pr\u00e9sent\u00e9e sur la figure 3.<\/p>\n<p><i>Tableau 1\u00a0: G\u00e9ochimie des gaz du sol (H2) sur les routes publiques de la r\u00e9gion de Little Forks-Springhill<\/i><\/p>\n<p><a href=\"\/fr\/\"https:><img class=\"\\\"releaseimage\\\"\" src=\"\\\"https:><\/a><\/p>\n<p>Pour consulter une version am\u00e9lior\u00e9e de ce graphique, veuillez visiter\u00a0:<br \/>\n<a href=\"\/fr\/\"https:>https:\/\/images.newsfilecorp.com\/files\/7968\/268627_qimc%20table%201.jpg<\/a><\/p>\n<p><a href=\"\/fr\/\"https:><img class=\"\\\"releaseimage\\\"\" src=\"\\\"https:><\/a><\/p>\n<p><i>Figure 4. Sections montrant la variabilit\u00e9 des concentrations d&#039;hydrog\u00e8ne dans le sol le long des sections Little Fork et Salt Springs 1 et 2 de la r\u00e9gion de Springhill.<\/i><\/p>\n<p>Pour consulter une version am\u00e9lior\u00e9e de ce graphique, veuillez visiter\u00a0:<br \/>\n<a href=\"\/fr\/\"https:>https:\/\/images.newsfilecorp.com\/files\/7968\/268627_21131fad9481da5a_005full.jpg<\/a><\/p>\n<p><b>\u00c0 propos du Pr Marc Richer-LaFl\u00e8che, P.Geo.<\/b><\/p>\n<p>Le Pr Richer-Lafl\u00e8che, expert qualifi\u00e9 en exploration de l&#039;hydrog\u00e8ne, a examin\u00e9, lu et approuv\u00e9 le contenu technique pr\u00e9sent\u00e9 dans ce communiqu\u00e9 de presse. Le Pr Richer-Lafl\u00e8che confirme que les m\u00e9thodologies employ\u00e9es, les donn\u00e9es pr\u00e9sent\u00e9es et les interpr\u00e9tations effectu\u00e9es sont conformes aux pratiques et normes actuelles de l&#039;industrie en mati\u00e8re d&#039;exploration de l&#039;hydrog\u00e8ne.<b>.<\/b><\/p>\n<p><b>\u00c0 propos de QIMC<\/b><br \/>\nQu\u00e9bec Mat\u00e9riaux Innovants Corp. (QIMC) est une soci\u00e9t\u00e9 d&#039;exploration et de d\u00e9veloppement minier qui se consacre \u00e0 l&#039;exploration et \u00e0 l&#039;exploitation du potentiel des abondantes ressources de l&#039;Am\u00e9rique du Nord. Poss\u00e9dant des propri\u00e9t\u00e9s en Ontario, au Qu\u00e9bec, en Nouvelle-\u00c9cosse et au Minnesota (\u00c9tats-Unis), QIMC se sp\u00e9cialise dans l&#039;exploration de gisements d&#039;hydrog\u00e8ne blanc (naturel) et de silice \u00e0 haute teneur. QIMC s&#039;engage \u00e0 adopter des pratiques durables et \u00e0 innover. En mettant l&#039;accent sur la gestion environnementale responsable et l&#039;utilisation de technologies d&#039;extraction de pointe, nous visons \u00e0 lib\u00e9rer tout le potentiel de ces mat\u00e9riaux afin de favoriser des solutions \u00e9nerg\u00e9tiques propres pour alimenter l&#039;intelligence artificielle et une \u00e9conomie carboneutre et contribuer \u00e0 un avenir plus durable.<\/p>\n<div id=\"\\\"contactinfo\\\"\">\n<p><b>QU\u00c9BEC MAT\u00c9RIAUX INNOVANTS CORP.<\/b><br \/>\nJohn Karagiannidis<br \/>\nDirecteur g\u00e9n\u00e9ral<\/p>\n<p>Pour plus d&#039;informations, veuillez contacter\u00a0:<br \/>\nE-mail:\u00a0<a href=\"\/fr\/\"mailto:info@qimaterials.com\\\"\" rel=\"\\\"nofollow\\\"\">info@qimaterials.com<\/a><br \/>\nT\u00e9l. : +1 514-726-7058<\/p>\n<\/div>\n<p><b><span>R\u00c9F\u00c9RENCES<\/span><\/b><\/p>\n<ul>\n<li><span>Durling, P. 2023. Interpr\u00e9tation sismique-r\u00e9flexion du bassin carbonif\u00e8re de Cumberland, nord de la Nouvelle-\u00c9cosse. Commission g\u00e9ologique du Canada, dossier public 2816-7155; 8937. 64 pages.<\/span><\/li>\n<li><span>Ryan, RJ, Boehner, RC et Deal, A., 1990. Cartes ME 1990-012 et ME 1990-013\u00a0: Carte g\u00e9ologique du bassin de Cumberland. Comt\u00e9 de Cumberland. Gouvernement de la Nouvelle-\u00c9cosse, minist\u00e8re des Ressources naturelles et des \u00c9nergies renouvelables.<\/span><\/li>\n<\/ul>\n<p>N<i>Ni la Bourse canadienne des valeurs mobili\u00e8res ni son fournisseur de services de r\u00e9glementation (tel que ce terme est d\u00e9fini dans les politiques de la CSE) n&#039;acceptent la responsabilit\u00e9 de l&#039;exactitude ou de l&#039;exhaustivit\u00e9 du pr\u00e9sent communiqu\u00e9 et n&#039;ont ni approuv\u00e9 ni d\u00e9sapprouv\u00e9 son contenu.<\/i>se.<\/p>\n<p><b>D\u00e9clarations prospectives<\/b><\/p>\n<p><i>Ce communiqu\u00e9 contient des \u00e9nonc\u00e9s prospectifs. Ces \u00e9nonc\u00e9s prospectifs comportent des risques connus et inconnus, des incertitudes et d\u2019autres facteurs qui pourraient faire en sorte que les r\u00e9sultats, le rendement ou les r\u00e9alisations r\u00e9els de Qu\u00e9bec Mat\u00e9riaux Innovants, ou l\u2019\u00e9volution du secteur, diff\u00e8rent sensiblement des r\u00e9sultats, du rendement ou des r\u00e9alisations anticip\u00e9s, exprim\u00e9s ou sous-entendus par ces \u00e9nonc\u00e9s prospectifs. Les \u00e9nonc\u00e9s prospectifs ne constituent pas des faits historiques et sont g\u00e9n\u00e9ralement, mais pas toujours, identifi\u00e9s par des termes comme \u201d pr\u00e9voit \u201d, \u2019 planifie \u201d, \u201d anticipe \u201d, \u201d croit \u201d, \u201d a l\u2019intention de \u201d, \u201d estime \u201d, \u201d projette \u201d, \u201d potentiel \u201d et autres expressions similaires, ou par l\u2019emploi de verbes comme \u201d se produira \u201d, \u201d pourrait se produire \u201d, \u201d pourrait \u201d ou \u201d devrait se produire \u201d.<\/i><\/p>\n<p><i>Bien que Qu\u00e9bec Mat\u00e9riaux Innovants estime que les informations prospectives contenues dans ce communiqu\u00e9 de presse soient raisonnables compte tenu des informations disponibles \u00e0 la date des pr\u00e9sentes, de par leur nature, les \u00e9nonc\u00e9s prospectifs comportent des hypoth\u00e8ses, des risques connus et inconnus, des incertitudes et d\u2019autres facteurs qui pourraient faire en sorte que nos r\u00e9sultats, notre rendement ou nos r\u00e9alisations r\u00e9els, ou d\u2019autres \u00e9v\u00e9nements futurs, diff\u00e8rent sensiblement des r\u00e9sultats, du rendement ou des r\u00e9alisations futurs exprim\u00e9s ou sous-entendus par ces \u00e9nonc\u00e9s prospectifs.<\/i><\/p>\n<p><i>Ces hypoth\u00e8ses, risques et incertitudes comprennent, sans toutefois s&#039;y limiter, ceux li\u00e9s \u00e0 la conjoncture \u00e9conomique g\u00e9n\u00e9rale au Canada et \u00e0 l&#039;\u00e9tranger; les \u00e9v\u00e9nements d\u00e9favorables touchant l&#039;industrie; l&#039;\u00e9volution future de la l\u00e9gislation et de la r\u00e9glementation dans le secteur des ressources naturelles, notamment en ce qui concerne la r\u00e9glementation de l&#039;exploration, du d\u00e9veloppement et de l&#039;exploitation de l&#039;hydrog\u00e8ne blanc (naturel); la capacit\u00e9 de la Soci\u00e9t\u00e9 \u00e0 obtenir des capitaux suffisants de sources internes et externes, ou son incapacit\u00e9 \u00e0 obtenir des capitaux suffisants \u00e0 des conditions favorables; l&#039;industrie et les march\u00e9s des ressources naturelles au Canada et en g\u00e9n\u00e9ral; la capacit\u00e9 de Qu\u00e9bec Mat\u00e9riaux Innovants \u00e0 mettre en \u0153uvre ses strat\u00e9gies commerciales; la concurrence; et d&#039;autres hypoth\u00e8ses, risques et incertitudes.<\/i><\/p>\n<p><i>Les informations prospectives contenues dans ce communiqu\u00e9 de presse refl\u00e8tent les attentes de la Soci\u00e9t\u00e9 \u00e0 la date de publication et sont donc susceptibles d&#039;\u00e9voluer. Les lecteurs ne doivent pas accorder une importance excessive \u00e0 ces informations prospectives et ne doivent pas s&#039;y fier \u00e0 une date ult\u00e9rieure. Bien que la Soci\u00e9t\u00e9 puisse choisir de le faire, elle ne s&#039;engage pas \u00e0 mettre \u00e0 jour ces informations \u00e0 un moment pr\u00e9cis, sauf si la loi l&#039;exige.<\/i><\/p>\n<p><i>Avertissement\u00a0: Ce communiqu\u00e9 contient des \u201d\u00a0informations prospectives\u00a0\u201d et des \u201d\u00a0\u00e9nonc\u00e9s prospectifs\u00a0\u201d au sens de la l\u00e9gislation canadienne applicable en mati\u00e8re de valeurs mobili\u00e8res. Ces \u00e9nonc\u00e9s sont fond\u00e9s sur des attentes, des estimations et des projections en date du pr\u00e9sent communiqu\u00e9. Les \u00e9nonc\u00e9s prospectifs comportent des risques et des incertitudes qui pourraient faire en sorte que les r\u00e9sultats r\u00e9els diff\u00e8rent sensiblement des attentes actuelles. Il est conseill\u00e9 aux lecteurs de ne pas se fier ind\u00fbment \u00e0 ces \u00e9nonc\u00e9s, car aucune garantie ne peut \u00eatre donn\u00e9e quant aux r\u00e9sultats futurs.<\/i><\/p>","protected":false},"excerpt":{"rendered":"<p>Montreal, Quebec&#8211;(Newsfile Corp. &#8211; October 1, 2025) &#8211; Quebec Innovative Materials Corp. (CSE: QIMC) (OTCQB: QIMCF) (FSE: 7FJ) (\\&#8221;QIMC\\&#8221; or the \\&#8221;Company\\&#8221;) is pleased to announce the confirmation of a fourth major natural hydrogen zone in Nova Scotia, highlighted by a peak soil-gas concentration of 4,850 ppm. The newly identified zone, located in the Little [&hellip;]<\/p>\n","protected":false},"author":4,"featured_media":978,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"_eb_attr":"","iawp_total_views":1,"footnotes":""},"categories":[11],"tags":[],"class_list":["post-82168","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-press-releases"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.7 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>QIMC Confirms Fourth Major Natural Hydrogen Zone in Nova Scotia with Soil-Gas Results up to 4,850 ppm - 2 km Continuous Anomaly Along Windsor-Cumberland Fault - QIMC<\/title>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/qimaterials.com\/fr\/qimc-confirms-fourth-major-natural-hydrogen-zone-in-nova-scotia-with-soil-gas-results-up-to-4850-ppm-2-km-continuous-anomaly-along-windsor-cumberland-fault\/\" \/>\n<meta property=\"og:locale\" content=\"fr_CA\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"QIMC Confirms Fourth Major Natural Hydrogen Zone in Nova Scotia with Soil-Gas Results up to 4,850 ppm - 2 km Continuous Anomaly Along Windsor-Cumberland Fault - QIMC\" \/>\n<meta property=\"og:description\" content=\"Montreal, Quebec&#8211;(Newsfile Corp. &#8211; October 1, 2025) &#8211; Quebec Innovative Materials Corp. 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