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Quebec Innovative Materials Outlines Deep Geological Structure Favorable for Hydrogen Following Systematic Review by INRS

Quebec Innovative Materials Outlines Deep Geological Structure Favorable for Hydrogen Following Systematic Review by INRS

魁北克创新材料公司在通过INRS的系统审核后,概述了有利于氢的深层地质构造。
newsfile ·  07/16 08:00

Quebec City, Quebec--(Newsfile Corp. - July 16, 2024) - Quebec Innovative Materials Corp. (CSE: QIMC) (FSE: 7FJ) ("QI Materials", "QIMC" or the "Company"), is pleased to announce a significant milestone in its Ville Marie hydrogen project. A rigorous and comprehensive review of data conducted by the Institut National de la Recherche Scientifique (INRS) has outlined the existence of a deep favorable geological structure, in the Témiscamingue area, as another potential source for hydrogen.

魁北克市,魁北克 - (新闻稿 - 2024年7月16日) - 魁北克创新材料公司(CSE:QIMC)(FSE:7FJ)(“QI Materials”,“QIMC”或“公司”)很高兴地宣布其维尔玛丽氢气项目取得了重要的里程碑。由国家科学研究所(INRS)进行的数据全面严谨的审查已经概述了特缅卡明格区域存在一个深层有利地质结构,可作为另一个氢气潜在来源。

The presence of this mantle source is a third potential source for hydrogen which adds to the Grennstone belt (ultramafic, iron formation) and potassic (Cobalt group arenites) sources already present on the QIMC properties. This marks a critical step forward in QIMC's efforts to establish itself as a leader in clean energy solutions.

这种地幔来源的存在是氢的第三个潜在来源,可添加到QIMC产业上已经存在的Grennstone带(超基性和铁岩形成)和钾(钴族砂岩)来源。这标志着QIMC在努力成为清洁能源解决方案领导者方面迈出了重要的一步。

Mr. John Karagiannidis, CEO of Quebec Innovative Materials, commented, "We are thrilled with the results of the INRS review, which solidifies our confidence in the feasibility and sustainability of hydrogen within our Ville Marie project. Marc Richer-Laflèche and his team at INRS have been on our Ville Marie site since July 1st and commenced the hydrogen soil gas sampling program. These developments not only support our commitment to environmental stewardship but also positions Quebec as a frontrunner in the global hydrogen economy. The geological and geophysical data and interpretations for the Témiscamingue region, and more specifically for the Témiscamingue Graben highlight QIMC and INRS' currently ongoing regional exploration program for gold natural hydrogen."

魁北克创新材料公司首席执行官约翰·卡拉吉安尼迪斯表示:“我们对INRS审查结果感到高兴,这巩固了我们对维尔玛丽项目内氢能可行性和可持续性的信心。马克·里奇 - 拉弗莱切和他的团队自7月1日以来一直在我们的维尔玛丽地点,并开始了“城市污染防治”地面氢气采集方案。这些进展不仅支持我们对环境保护的承诺,而且将魁北克定位为全球氢能源的领先者。特缅卡明各区域的地质和地球物理学数据和解释,特别是特缅卡明格拉本凸显了QIMC和INRS目前正在进行的金自然氢区域勘探计划。

Deep Geophysical Evidence

深层地球物理证据

As part of its hydrogen and helium exploration strategy in Quebec, QIMC and INRS have selected the Lake Temiskaming Graben area for its unique geological context, which marks the transition between an Archean greenstone belt rich in ultramafic (komatiites and peridotites) and iron formations (Baby's Gp) and the Cobalt Group sedimentary rock basin (Proterozoic). This transition zone is also affected by graben faults and the emplacement of a Cretaceous kimberlite field. These observations indicate that the area has been active for over 2,700 million years, as evidenced by the record of supracrustal and igneous rocks in the region. Geological Survey of Canada aquatic seismic data from Lake Témiscamingue show that a strong earthquake affected the Lake Témiscamingue basin during the Quaternary, and the very large number of epicentres recorded in the area of Lake Kipawa (southern extension of the graben) indicates that the graben is still a tectonically active zone. This geological context could be favorable for the transfer of gas from deep sources to the surface.

作为其魁北克氢气和氦气勘探策略的一部分,QIMC和INRS选择了Temiskaming Graben湖区作为其独特地质背景的所在地,标志着Archean绿石带(超基性岩和橄榄岩)富含铁岩成分(Baby's Gp)和钴族纪沉积岩盆地(Proterozoic)之间的过渡。这个过渡带还受到格拉本断层的影响和白垩纪金伯利特岩场的外现。这些观察结果表明该地区始于超过270000万年前,并有该地区尘壳和火成岩的记录。加拿大地质调查局的《特缅卡明各地湖区的水下地震数据》显示,在冰川纪期间地震强烈地影响了特缅卡明湖盆,并且在基普瓦湖周围区域记录了大量震中,表明该凸显区仍然是一个构造活跃的区域。这种地质背景可以有利于从深层来源转移气体到地表。

Marc Richer-LaFlèche, scientific head of INRS' applied geoscience laboratory commented: "Compiling previous data from Témiscamingue and other areas, it is clear that the geology of the Témiscamingue region is just as complex and anomalous at greater depths, particularly in the continental crust and lithospheric mantle. For example, deep geophysical studies have been carried out in Abitibi, Témiscamingue (Pontiac subprovince) and the Grenville tectonic province to investigate the lithosphere to depths of over 300 km. These magnetotelluric studies were conducted as part of the Lithoprobe Transect Abitibi-Grenville (Boerner et al., 2000) and Polaris (Eaton et al., 2005) projects. 2D (Adetunji et al., 2014; 2015) and 3D (Roots and Craven, 2017) modeling of these data show geoelectric images highlighting strong anisotropies in the lithospheric mantle between 235 and 140 km and a more focused extension visible down to 60 km depth (e.g., Figure 1)."

INRS应用地球科学实验室的科学负责人Marc Richer-LaFlèche评论说:“结合特缅卡明格区域和其他地区以前的数据,显然特缅卡明格区域在更深处的地质也同样复杂和异常,特别是在大陆地壳和岩石圈幔石层中。例如,电磁测深已经在阿比提比、特缅卡明(庞蒂亚克分区)和Grenville构造省进行了深入研究,以探索深度超过300千米的岩石圈。这些磁电测深研究是作为Lithoprobe Transect Abitibi-Grenville(Boerner等人,2000)和 Polarise(Eaton等人,2005)项目的一部分进行的。针对这些数据的二维(Adetunji等人,2014;2015)和三维(Roots和Craven,2017)建模显示,地球电学图像显示在235至140千米之间的岩石圈幔层中存在强的各向异性,同时可以看到更为关注的延伸深度可见至60千米(例如,图1)。


Figure 1.Electrical resistivity model of the lithospheric crust and mantle from Abitibi in the north to Grenville in the south (source: Figure 2 of Adetunji et al., 2015). Note the strong anomaly in the Pontiac, which is attributed to Cretaceous re-fertilization of the lithospheric mantle.


图1。从北部的Abitibi到南部的Grenville的岩石圈和岩石圈幔的电阻率模型(来源:Adetunji等人,2015年2图)。请注意,Pontiac的强烈异常是归因于岩石圈幔的白垩纪重新施肥。

Marc Richer-LaFlèche commented: "The presence of strong anisotropies in the lithospheric mantle at Témiscamingue, highlighted by the magnetotelluric surveys, is corroborated by teleseismic data measured in the same region (Rondenay et al., 2000) (Fig. 2). These data indicate the presence of strong P-wave propagation anisotropies, which underscore disturbances in the structure of the lithospheric mantle.The geoelectric and seismic heterogeneities observed in the lithospheric mantle of Témiscamingue are interpreted as disturbances resulting from the emplacement of kimberlites and other alkaline magmas of Mesozoic (Cretaceous) age. The interaction of these magmas with peridotites seems to have metasomatized the mantle, modifying its chemical, mineralogical, acoustic and electrical properties. The presence of water, hydrogen or graphite could explain the observed disturbances (e.g. Selway, 2013; Roots and Craven, 2017)."

Marc Richer-LaFlèche评论说:“利用磁电测深在特缅卡明地区度量的远震数据证实了岩石圈幔的强各向异性(图2)。这些数据表明存在强的P波传播各向异性,这凸显了岩石圈幔构造的干扰。特缅卡明岩石圈幔中观察到的地球电性和地震异质性被解释为由于中生代(白垩纪)金伯利特和其他碱性岩浆的外置产生的干扰。这些岩浆与橄榄石的相互作用似乎已经改变了岩石圈幔的化学、矿物、声学和电性质。水、氢或石墨的存在可以解释观察到的干扰(例如Selway,2013;Roots和Craven,2017)。”

Circulation of H2O- and CO2-rich kimberlite magmas in fluid-saturated cratonic peridotites and metasomatic reactions with peridotites could be favorable for hydrogen production and transport, which would occur mainly by molecular diffusion and hydrogen incorporation into hydrous magmas or aqueous fluids (e.g., Demouchy and Bolfan-Casanova, 2016).

H2O与CO2丰富的金伯利特岩浆在充满流体的深层地幔橄榄石中循环和透气反应与橄榄石可能有利于氢的产生和转移,这主要是通过分子扩散和氢并入含水石浆或水溶液(例如,Demouchy和Bolfan-Casanova,2016年)。

References:

参考文献:

Adetunji, A.Q., Ferguson, I.J., Jones, A.G., 2014. Tectonophysics Crustal and lithospheric scale structures of the Precambrian Superior - Grenville margin. Tectonophysics 614, 146-169.

Adetunji,A.Q.,Ferguson,I.J.,Jones,A.G.,2014.前寒武纪超级 - grenville边缘的地壳和岩石圈尺度结构。地球物理学杂志614,146-169。

Adetunji, A. Q., I. J. Ferguson, and A. G. Jones, 2015. Re-examination of magnetotelluric responses and electrical anisotropy of the lithospheric mantle in the Grenville Province, Canada, J. Geophys. Res. Solid Earth, 120, 1890- 1908

Adetunji,A.Q.,I.J.Ferguson和A.G. Jones,2015.重新检查加拿大Grenville省中岩石圈幔的磁电响应和电性异性.地球物理学研究杂志固态地球,120, 1890-1908

Boerner, D. E., R. D. Kurtz, and J. A. Craven, 2000. A summary of electromagnetic studies on the Abitibi-Grenville transect, Can. J. Earth Sci., 37, 427-437.

Boerner,D.E.,Kurtz,R.D.和Craven,J.A.,2000。阿比蒂比 - Grenville断层上电磁学研究的摘要,加拿大地球科学杂志,37,427-437。

Demouchy, S. et Bolfan-Casanova, N., 2016. Distribution and transport of hydrogen in the lithospheric mantle. Lithos, 240-243, 402-425.

Demouchy,S. and Bolfan-Casanova,N.,2016.配分和转运氢在岩石圈幔。石头,240-243,402-425。

Eaton, D. W., et al.,2005. Geophysical arrays to investigate lithosphere and earthquake hazards in Canada, Eos Trans. AGU, 86, 169-173, doi:10.1029/2005EO170001.

Eaton,D.W.等人,2005年。地球物理数据阵列用于研究加拿大的岩石圈和地震危害,Eos Trans AGU,86,169-173,doi: 10.1029/2005EO170001。

Rondenay, S., Bostock, M.G., Hearn, T.M., White, D.J., and Ellis, R.M., 2000. Lithospheric assembly and modification of the SE Canadian Shield- Abitibi-Grenville teleseisrnic experiment. J. of Geophysical Research, vol. 105, No. B6, 13735-13754.

Rondenay,S.,Bostock万。G.,Hearn万亿。m.,White,D.J.和Ellis,R.m.,2000.K诉讼下的SE加拿大盾构-阿比蒂比-Grenville televctic实验。地球物理杂志,第105卷,B6,13735-13754。

Roots, E. and Craven, J.A., 2017. 3-D modelling of magnetotelluric data from the Abitibi and Pontiac subprovinces of the Superior Province, Ontario and Quebec. Geological Survey of Canada Open File 8233. 24 pages.

Roots,E.和Craven,J.A.,2017年。来自安大略省和魁北克省的超级省的磁电法数据的3D建模折线图,第8233页,加拿大地质调查局开放文件。 24页。

Selway, K., 2013. On the causes of electrical conductivity anomalies in tectonically stable lithosphere. Surv. Geophys..

Selway万亿。2013年。关于构造稳定岩石圈中电导率异常的原因的研究。地球物理调查。

About the INRS and Pr. Marc Richer-LaFlèche, P.Geo.

关于INRS和Marc Richer-LaFlèche教授,地质专业工程师

The Institut National de la Recherche Scientifique ("INRS") is a high-level research and training institute. Pr. Richer-LaFlèche's team has exceptional geological, geochemical and geophysical experience specifically in the regions of QIMC's newly acquired claims. They have carried out over six years of geophysical and geochemical work and collected thousands of C1-C4 Soil-Gas analyses.

国家科学研究所(“INRS”)是一家高水平的研究和培训机构。Pr. Richer-LaFlèche团队在QIMC新收购的权利范围内,具有特殊的地质、地球化学和地球物理经验。他们进行了超过6年的地球物理和地球化学工作并收集了数千个C1-C4土壤气体分析。

M. Richer-LaFlèche also holds an FRQNT grant, in partnership with Quebec MRN and the mining industry, to develop and optimize a Soil-Gas method for the direct detection of mineralized bodies and faults under Quaternary cover. In addition to sulphide gases, hydrogen was systematically analyzed in the numerous surveys carried out in 2023 in Abitibi, Témiscamingue and also in the Quebec Appachian. M. Richer-LaFlèche is the Qualified Person responsible for the technical information contained in this news release and has read the information contained herein.

Richer-LaFlèche先生还持有FRQNt拨款,与魁北克省MRN和矿业板块合作,开发和优化一种土气法,用于直接探测冰川盖层下的含矿体和断层。除硫化气体外,氢气还在2023年在阿比蒂比、特米斯卡明和魁北克阿巴拉契山脉的众多调查中进行了系统分析。Richer-LaFlèche先生是本新闻稿中包含的技术信息的负责人,已阅读其中的信息。

In addition, the INRS team has several portable gas spectrometers and the sampling equipment and logistics necessary for taking gas samples and geophysical measurements on the ground or in the aquatic environment. He is a professional geologist registered with the Ordre des géologues du Québec and is the Qualified Person responsible for the technical information contained in this news release and has read the information contained herein.

此外,INRS团队还拥有多台便携式气体光谱仪以及在陆地或水生环境中采集气体样品和地球物理测量所需的采样设备和物流。他是魁北克省地质学家协会的注册专业地质学家,是本新闻稿中包含的技术信息的负责人,已阅读其中的信息。

For more information about Quebec Innovative Materials Corp. and its products, please visit

更多关于魁北克创新材料公司及其产品的信息,请访问

About Québec Innovative Materials Corp.

魁北克创新材料公司是一家专注于勘探和开发加拿大丰富资源潜力的矿产勘探和开发公司。在安大略省和魁北克省拥有的物业中,QIMC专注于白色(天然)氢气和高品位硅石矿床的勘探。QIMC致力于可持续经营和创新。同时,QIMC专注于环境保护和尖端提取技术,旨在发掘这些材料的全部潜力,推动清洁能源解决方案以驱动人工智能和碳中和经济,并为实现更加可持续的未来做出贡献。

Québec Innovative Materials Corp. is a mineral exploration, and development company dedicated to exploring and harnessing the potential of Canada's abundant resources. With properties in Ontario and Québec, 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.

魁北克创新材料公司

QUÉBEC INNOVATIVE MATERIALS CORP.

魁北克创新材料公司。

John Karagiannidis
Chief Executive Officer
Tel: +1 438-401-8271

约翰·卡拉吉亚尼迪斯。
首席执行官
电话:+1 438-401-8271。

For further information, please contact:

如需更多信息,请联系:

Email: info@qimaterials.com

电子邮件:info@qimaterials.com

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.

加拿大证券交易所及其规定服务供应商(如该术语在CSE政策中所定义)不对此新闻发布的充分性或准确性承担责任,也没有批准或驳回此新闻发布的内容。

Forward-Looking Statements

前瞻性声明

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.

本新闻稿包含构成"前瞻性声明"的陈述。这种前瞻性声明涉及已知和未知的风险、不确定性和其他因素,这些因素可能导致魁北克创新材料的实际结果、业绩或成就,或行业的发展,与所预期的结果、业绩或成就有所不同,这些前瞻性声明表达或暗示这些前瞻性声明中的财务和经营前景属于"水平的"和"确定的"范畴。前瞻性声明是不是历史事实,通常但不总是由"预计"、"计划"、"预期"、"相信"、"意图"、"估计"、"项目"、"潜力"和类似的表达方式或事件或条件"将"、"将"、"可能"、"可能"或"应该"发生来标识,或者行业中和普遍情况下。

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.

尽管魁北克创新材料相信本新闻稿中所包含的前瞻性信息在今天的基础上是合理的,但由于它们的性质,前瞻性声明涉及假设、已知和未知的风险、不确定性和其他因素,可能导致我们的实际结果、业绩或成就,或其他未来事件,与任何未来结果、业绩或成就有所不同,这些可能由这些前瞻性声明所表达或隐含的前瞻性声明造成。

Examples of such assumptions, risks and uncertainties include, without limitation, assumptions, risks and uncertainties associated with general economic conditions; adverse industry events; future legislative and regulatory developments in the mining sector; the Company's ability to access sufficient capital from internal and external sources, and/or inability to access sufficient capital on favorable terms; mining industry and markets in Canada and generally; the ability of Québec Innovative Materials Corp. to implement its business strategies; competition; and other assumptions, risks and uncertainties.

这种假设、风险和不确定性的例子包括但不限于:普遍经济状况的假设、风险和不确定性;不利的行业事件;矿业部门未来立法和监管的发展;QIMC从内部和外部获得足够资本的能力,和/或无法在有利条件下获得足够的资本;加拿大和整个加拿大以及矿业业和市场的能力;魁北克创新材料公司实施其商业策略的能力;竞争;和其他的假设、风险和不确定性。

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.

本新闻发布中包含的前瞻性信息代表了公司在本新闻发布日的预期,因此,这些信息随后可能会发生变化。读者不应过分重视前瞻性信息,并不依赖于其他任何日期的信息。虽然公司可能选择这样做,但除了符合适用法律规定的要求,公司不承担更新此信息的任何特别义务。

声明:本内容仅用作提供资讯及教育之目的,不构成对任何特定投资或投资策略的推荐或认可。 更多信息
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