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QIMC Announces Major Milestones: Completion of Line 1 Extension to the West and Hydrogen Model

QIMC Announces Major Milestones: Completion of Line 1 Extension to the West and Hydrogen Model

QIMC宣布重大里程碑:线路1向西延伸和氢模型完成
newsfile ·  08/15 10:48

Lachute, Quebec--(Newsfile Corp. - August 15, 2024) - Quebec Innovative Materials Corp. (CSE: QIMC) (FSE: 7FJ) ("QI Materials", "QIMC" or the "Company"), is pleased to announce the successful extension of Line 1 to the west, executed in partnership with INRS (Institut National de la Recherche Scientifique) doubling Line 1's area of high hydrogen values to over 3.25 kms. Additionally, we are proud to present the comprehensive hydrogen model developed by Professor Marc Richer-Lafleche and share insights into the sources of the clean natural renewable identified in the Ville Marie project. "The potential for developing a robust hydrogen infrastructure at Ville Marie and St-Bruno-de-Guigues is crucial for meeting local community needs and supporting Quebec's broader clean emission goals.." notes John Karagiannidis, CEO of QIMC. "This initiative is expected to play a vital role in reducing Quebec's greenhouse gas emissions and fostering sustainable energy practices."

魁北克省拉舒特--(Newsfile Corp. - 2024年8月15日) - 魁北克创新材料企业集团(cse:QIMC)(FSE:7FJ)("QI Materials","QIMC"或"公司")很高兴地宣布,与国家科学研究所(INRS)合作成功将第一条线路向西延伸,并将第一条高氢值区域的面积扩大到超过3.25公里。此外,我们很自豪展示了马克·丽特-拉夫莱切教授开发的全面氢模型,并分享了Ville Marie项目中清洁、天然、可再生的能源来源的见解。QIMC首席执行官约翰·卡拉吉安尼迪斯指出:"在Ville Marie和St-Bruno-de-Guigues开发健全的氢气基础设施对于满足当地社区需求和支持魁北克更广泛的清洁排放目标至关重要。""。"这项倡议有望在减少魁北克温室气体排放、促进可持续能源实践方面发挥至关重要的作用。"

Completion of Line 1 Extension to the West

第一条线路向西延伸完成

To delineate the area of high hydrogen values observed along line 1 of the July 2024 soil-gas survey, the field crew extended line 1 westward during the first week of August 2024. The extension starts at the end of the forest trail and ends near the chemin des secondes et troisièmes rangs of St-Bruno-de-Guigues (line 7), thus doubling the length of line 1. Professor Marc Richer-Laflèche, head of the QIMC hydrogen program and INRS's scientific head of Applies Geoscience Laboratory notes: "The concentration distribution of the hydrogen soil anomalies (figure 1) emphasizes a westward delineation of the hydrogen anomaly domain. This spatial variability may reflect, among other things, the presence of contrasting geological units (arkosic sandstones, Cobalt Group conglomerates, Ordovician dolomitic limestones) and also the probable presence of the Rivière-Blanche fault, which may be present in the St-Bruno-de-Guigues area beneath the thick glacial-lacustrine sediments." "We believe that this fault is partly responsible for the emplacement of hydrogen in the St-Bruno-de-Guigues area." said John Karagiannidis, President of QIMC. "The location of this fault is a priority for QIMC and INRS and will be the subject of a high spatial resolution audiomagnetotelluric survey to be carried out in the fall of 2024."

为了描绘2024年7月土气调查所观察到的第一条线路沿线高氢值区域,野外工作人员于2024年8月的第一周向西延伸第一条线路。 延伸线路起点在森林小径的尽头,终点位于St-Bruno-de-Guigues(第二和第三排的路线)的chemin des secondes et troisièmes rangs路线附近(即第7条线路),将第一条线路的长度翻倍。 QIMC氢能源项目负责人马克·丽特-拉夫莱切教授和INRS应用地球科学实验室的科学负责人指出:"氢气土壤异常的浓度分布(图1)强调了对氢气异常区域的西向界定。这种空间变异可能反映了包括长石石英砂岩、科拜尔特阶凝灰岩和奥陶纪白云石等地质单元的存在,也可能反映了Rivière-Blanche断层的可能存在,该断层可能存在于St-Bruno-de-Guigues地区的厚发现期冰碛-湖相沉积物下面。" "我们认为这个断层在St-Bruno-de-Guigues地区的局部责任。"QIMC总裁约翰·卡拉吉安尼迪斯表示:"这个断层的位置是QIMC和INRS的重点,将在2024年秋季进行高空间分辨率听磁测量调查。"

Diagram showing the variation of soil H2 concentrations along the St-Bruno-de-Guigues section of Line 1. The new data presented in this release correspond to stations from 1700 m to 3250 m.

图示了沿St-Bruno-de-Guigues第1线路的土壤H2浓度变化。此次发布的新数据对应于从170000万到325000万的站点。

Hydrogen Model

氢模型

Professor Marc Richer Laflèche observes: "In addition to bedrock lithological contrasts, local Quaternary features may explain some of the trends observed in the distribution of soil hydrogen concentrations. For example, MRNF drill data from the Line 1 sector (intersection of Route 101 and Chemin du 4e Rang) indicate the presence of a 6 m thick gravel unit above the bedrock. This is overlain by 55 m of sandy-silty sediments of glaciolacustrine origin (MacIntosh, 1973: GM 29616; SIGEOM). Thickness variations from east to west of the gravelly unit (a more permeable, porous and lenticular unit) may partially control the distribution of hydrogen along Line 1." John Karagiannidis, president of QIMC notes: "This will be further verified by a geoelectric tomography (ERT) survey in the fall of 2024 and by a series of geotechnical boreholes in the spring of 2025."

马克·丽特·拉夫莱切教授观察到:"除了基岩岩层对比之外,当地的第四纪地貌特征也可能解释了在土壤氢浓度分布中观察到的一些趋势。例如,MRNF测量数据显示,Line 1区的岩层(101号公路和第四排道路的交界处)下面有一个厚度为600万的砾石层。这下面覆盖着5500万年的含沙泥状沉积物,这些沉积物是冰碛-湖相的来源(MacIntosh,1973: Gm 29616;SIGEOM)。这个砾石层从东到西的厚度变化(一个更渗透、多孔、透镜体的层)可能部分控制了沿第一条线的氢的分布。"QIMC总裁约翰·卡拉吉安尼迪斯指出:"这将在2024年秋季通过地球电法层析肖梦研究(ERT)和2025年春季的一系列地质勘探孔进一步验证。"

Sources of natural clean renewable hydrogen at St-Bruno-de-Guigues

St-Bruno-de-Guigues的天然清洁可再生氢的来源

The geological map in Figure 2 shows the local geology in the vicinity of Line 1 at St-Bruno-de-Guigues. The volcanic belt of the Baby Group, including 4 units of iron formations (with extensions of the order of 10 km), basaltic tholeiites (iron-rich amphibolites) and peridotites and komatiites (ultramagnesian rocks), is perpendicular to the graben and basins of Huronian (Cobalt Gp) and Ordovician (New-Liskeard Gp) sedimentary rocks (Richer-LaFlèche et al., 2020). "This overlap implies the presence of Fe- and Mg-rich Archean rocks beneath the Proterozoic sedimentary rocks of the graben." states Professor Marc Richer-Laflèche. "Furthermore, this interpretation is supported by MRNF aeromagnetic data (SIGEOM interactive map), which show a westward continuity of magnetic anomalies originating from the magnetic rocks of the Baby Gp. The presence of mafic and ultramafic rocks that may contain olivine relics and a high proportion of amphiboles could explain the hydrogen production." explains Professor Marc Richer- Laflèche. "Note that during the hydration process, H2O is reduced to H2 by Fe2+-rich mafic and ultramafic minerals. On the other hand, Cobalt Group arkosic sandstones, which are particularly rich in potassium and actinides, are ideal for the production of radiolytic hydrogen. The interaction of deep groundwater with these rocks could produce radiolytic hydrogen. This hydrogen could mix with hydrogen produced by mineral hydrolysis."

图2显示了接近St-Bruno-de-Guigues第一线路的当地地质图。宝宝集团的火山带包括4个铁矿岩单元(延伸范围约为10千米)、玄武岩玄武岩(富含铁的角闪岩)、橄榄岩和科马提质岩(超镁质岩石),与霍龙期(Cobalt Gp)和奥陶纪(New-Liskeard Gp)的断层和盆地垂直相交的沉积岩层(Richer-LaFlèche等人,2020)。"这种重叠意味着基底岩石(富含Fe和Mg)位于断层所在的前寒武纪沉积岩层下方。"马克·丽特-拉夫莱切教授说。"此外,这种解释得到了MRNF航空磁力数据(SIGEOm互动地图)的支持,这些数据显示了源自宝宝集团磁性岩石的磁性异常的西向连续性。可能含有橄榄石遗址和高比例的角闪石的镁铁质岩石和超镁质岩石的存在可以解释氢的产生。" "请注意,H2O在水化过程中由富含Fe2+的镁铁质岩石和超镁铁质岩石还原为H2。另一方面,科尔特集团的长石石英砂岩特别富含钾和锕系元素,非常适合产生放射性氢。地下水与这些岩石的相互作用可能产生放射性氢。这种氢可能与矿物水解产生的氢混合。""


Figure 2: Simplified geological map of the St-Bruno-de-Guigues and St-Eugène de Guigues regions (Source MRNF : SIGEOM).


图2:St-Bruno-de-Guigues和St-Eugene de Guigues地区的简化地质图。(来源MRNF:SIGEOM)。

"Our exploration of hydrogen within the Ville Marie project continues to yield significant results and our partner at INRS has developed a comprehensive model", states John Karagiannidis, president of QIMC. "The Ville Marie asset's geological and environmental characteristics offer a unique opportunity to establish a robust hydrogen energy network, which will play a critical role in Quebec's overall strategy to advance clean energy and support a low-carbon economy."

"我们对Ville Marie项目中氢的探索继续取得重大成果,我们的合作伙伴INRS开发了一个全面的模型",QIMC总裁约翰·卡拉吉安尼迪斯表示:"Ville Marie资产的地质和环境特性提供了建立可靠的氢能源网络的独特机会,这将在魁北克推进清洁能源和支持低碳经济方面发挥关键作用。"

REF:

参考:

Richer-LaFlèche, Moorhead, J., and Gouthier, J., 2020. Geology and geochemistry of the volcanic rocks of the Baby Group and the Archean and Proterozoic sedimentary rocks of the Pontiac and Cobalt Groups in Témiscamingue. MB 2020-12, 2020. 198 pages.

Richer-LaFlèche, Moorhead, J.,和Gouthier, J.,2020。魁北克特米斯卡明大区Baby集团和Pontiac和Cobalt Groups的火山岩和前寒武纪和前太古宙沉积岩的地质和地球化学。Mb 2020-12, 2020. 198页。

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教授还持有FRQNt拨款,与魁北克MRN和矿业行业合作,开发和优化一个土壤气体方法,用于直接检测第四纪覆盖下的矿化体和断层。除硫化气体外,氢也在2023年在阿比提比、特米斯卡明和魁北克应用山脉的许多调查中进行了系统分析。Richer-LaFlèche教授是负责本新闻发布所包含技术信息的合格人员,并已阅读此处所包含信息。

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是一家矿业勘探和开发公司,致力于探索和利用加拿大丰富的资源潜力。 QIMC在魁北克和安大略拥有物业,专注于白色(天然)氢和高品位硅石矿床的勘探,致力于可持续发展和创新。我们专注于环境管理和尖端提取工艺,旨在释放这些材料的全部潜力,以推动AI和碳中和经济的清洁能源解决方案,并为更可持续的未来做出贡献。

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:
Email: info@qimaterials.com

如需更多信息,请联系:
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则制定机构(如此项术语在CSE政策中定义)不承担对此新闻发布的充分性或准确性的责任,并且既未批准也未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.

此类假设、风险和不确定性的例子包括但不限于与一般经济条件有关的假设、风险和不确定性;不利的行业事件;采矿业未来的立法和监管发展;魁北克创新材料公司从内部和外部来源获得足够资金的能力和 / 或无法以有利的条件获得足够的资金的能力;加拿大和整个加拿大的采矿业和市场;魁北克创新材料公司实施其业务策略的能力;竞争;以及其他假设、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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