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Hertz Energy Expediting Hard Rock Lithium Technology and Announces Partnership With Lithium Consultants Australasia

Hertz Energy Expediting Hard Rock Lithium Technology and Announces Partnership With Lithium Consultants Australasia

Hertz Energy加快了硬石锂技术的发展,并宣布与澳大利亚锂顾问公司建立合作伙伴关系
newsfile ·  03/11 09:16

Vancouver, British Columbia--(Newsfile Corp. - March 11, 2024) - Hertz Energy Inc. (CSE: HZ) (OTCQB: HZLIF) (FSE: QE2) (the "Company") is pleased to announce that it has entered into a consulting agreement with Lithium Consultants Australasia (LCA) to advance the development of its hard rock lithium extraction process optimization technology being conducted at Penn State University (PSU) as well as advance the Company's commercialization of the technology.

不列颠哥伦比亚省温哥华--(Newsfile Corp.,2024年3月11日)——赫兹能源公司(CSE:HZ)(OTCQB:HZLIF)(FSE:QE2)(the”公司“)很高兴地宣布,它已与澳大利亚锂咨询公司(LCA)签订了咨询协议,以推进宾夕法尼亚州立大学(PSU)正在进行的硬岩锂开采工艺优化技术的开发,并推进该公司的商业化。

Lithium Consultants Australasia (LCA) is based in Perth, Australia and assists companies to advance their lithium projects by conducting test work on their behalf which provides the necessary data required to design pilot and commercial scale plants. LCA has specialized knowledge and expertise in the extraction of lithium, along with a commitment to providing innovative solutions and exceptional support, to successfully develop rare mineral resources. Their services include test work design, flowsheet development, process modelling, lithium market intelligence, commercial plant design and development and feasibility studies.

Lithium Consultants Australasia(LCA)总部位于澳大利亚珀斯,通过代表公司进行测试工作来协助公司推进其锂项目,这些测试工作提供设计试点和商业规模工厂所需的必要数据。LCA在锂开采方面拥有专业知识和专业知识,并致力于提供创新的解决方案和卓越的支持,以成功开发稀有矿产资源。他们的服务包括测试工作设计、流程表开发、工艺建模、锂市场情报、商业工厂设计和开发以及可行性研究。

Hertz has partnered with LCA to work with PSU through their remaining optimization trials to ensure all work is performed with a near term commercialization goal. LCA will develop overall flowsheet, high-level operating cost estimates, conduct a validation study and run a pilot plant scale-up program.

赫兹已与LCA合作,在剩余的优化试验中与PSU合作,以确保所有工作都以短期的商业化目标进行。LCA将制定总体流程表、高水平的运营成本估算、进行验证研究并实施试点工厂扩大规模计划。

The Company's technology comprises a patent-pending process for the extraction of lithium from alpha-spodumene. Lithium is one of the critical elements with widespread applications in next-generation technologies, including energy storage, electric mobility and cordless devices.[1] Due to its unique applications, lithium cannot be substituted in most applications; therefore, a steady increase of 8-11% in annual demand is anticipated.[2] Meeting a rising demand for lithium requires prospecting and processing all viable resources. Two primary sources of lithium are hard rock ores (e.g., spodumene mineral) and brine, with clay sources considered secondary. Spodumene mineral is the major source of high-purity lithium; however, current technologies do not allow leaching of lithium from alpha-spodumene, and therefore most of the methods of lithium extraction from spodumene are focused on modifying the crystal structure of concentrated spodumene mineral into beta-spodumene using conventional heating (roasting) at 950-1100 degrees Celsius. However, such high-temperature roasting processes are very energy intensive and have been the bottleneck of the economic extraction of lithium from ores. Thus, there is a need for more energy-efficient and environmentally friendly methods for a high-yield extraction of lithium. The Technology is designed to satisfy these needs[3]-[4].

该公司的技术包括一项正在申请专利的从α-锂辉石中提取锂的工艺。锂是下一代技术(包括储能、电动汽车和无线设备)中广泛应用的关键元素之一。[1] 由于其独特的应用,锂在大多数应用中无法取代;因此,预计年需求将稳步增长8-11%。[2] 满足不断增长的锂需求需要勘探和加工所有可行的资源。锂的两个主要来源是硬岩矿石(例如锂辉石矿物)和盐水,粘土来源被视为次要来源。锂辉石矿物是高纯度锂的主要来源;但是,当前的技术不允许从α-锂辉石中浸出锂,因此,从锂辉石中提取锂的大多数方法都侧重于在950-1100摄氏度下使用常规加热(烘烤)将浓缩锂辉石矿物的晶体结构改性为β-锂辉石。但是,这种高温焙烧过程非常耗能,一直是从矿石中经济开采锂的瓶颈。因此,需要采用更节能和更环保的方法来高产地提取锂。该技术旨在满足这些需求[3]-[4]

The Company's technology begins with taking spodumene concentrate, introducing sodium hydroxide, and then proceeding with conventional or microwave roasting which transforms the alpha-spodumene into a soluble phase and is followed by a water leaching process to recover lithium.

该公司的技术首先是提取锂辉石浓缩物,引入氢氧化钠,然后进行常规或微波焙烧,将α-锂辉石转化为可溶相,然后进行水浸过程以回收锂。

More recently, the team at PSU has conducted a multi-step optimization phase on the current extraction process. To date, they have concluded optimization on the stage 1 roasting and water leaching process. The efforts of the optimization work have resulted in advancement of the alpha-spodumene extraction process running a two-stage roasting and leaching method with Li recovery now reaching over 99%. Updates to the patent applications have been filed with the proper authorities to encompass the breakthrough achieved by Mohammad Rezaee and his team at Penn State.

最近,PSU的团队对当前的提取过程进行了多步优化阶段。迄今为止,他们已经完成了对第一阶段烘焙和水浸工艺的优化。优化工作的努力推动了α-锂辉石提取工艺的进步,该工艺运行两阶段的焙烧和浸出方法,锂回收率现已达到99%以上。专利申请的更新已提交有关当局,以涵盖穆罕默德·雷扎伊及其团队在宾夕法尼亚州立大学取得的突破。

Furthermore, Hertz is continuing in-depth discussions with a major international mining conglomerate for collaboration on the development of the hard rock lithium extraction technology in partnership with Penn State University and LCA. This potential agreement will allow for funding and expertise from the third-party towards the validation study and pilot plant program as well as additional expertise to aid in the commercialization of the extraction technology."With hard rock lithium becoming a focus for lithium supply and many new hard rock lithium discoveries occurring around the world, including the world class Patriot Battery Metals' Corvette discovery, in Quebec, the need for updated and efficient extraction technology is urgent. I commend the great work being conducted by our teams at Hertz and Penn State and the recent advancement of the IP being generated. We are excited to have Grant Harman and his team at LCA run the commercialization efforts for our extraction technology," states Kal Malhi, CEO & Director of Hertz Energy. Mr. Malhi continues, "They are top tier in the lithium extraction world and we have all the confidence in their ability to guide the remaining optimization efforts and bring the technology towards commercialization in an expedited fashion."

此外,赫兹将继续与一家大型国际矿业集团进行深入讨论,与宾夕法尼亚州立大学和LCA合作开发硬岩锂提取技术。这项潜在的协议将允许第三方为验证研究和试点工厂计划提供资金和专业知识,以及其他专业知识,以帮助提取技术的商业化。”随着硬岩锂成为锂供应的重点,以及世界各地出现了许多新的硬岩锂发现,包括世界一流的爱国者电池金属公司在魁北克的Corvette发现,迫切需要更新和高效的提取技术。我赞扬我们在赫兹和宾夕法尼亚州立大学的团队所做的出色工作,以及最近在知识产权领域取得的进展。我们很高兴格兰特·哈曼及其在LCA的团队负责我们开采技术的商业化工作。” 赫兹能源首席执行官兼董事卡尔·马尔希说。马尔希先生继续说:“它们是锂开采领域的顶级产品,我们完全相信他们有能力指导剩余的优化工作,并迅速将该技术推向商业化。”

About Hertz Energy Inc.

关于赫兹能源公司

Hertz Energy is a British Columbia based junior exploration company primarily engaged in the acquisition and exploration of mineral properties. The Company recently entered into the Definitive Agreement to acquire the Cominco Uranium Property located in Bathurst Inlet, Nunavut, Canada. Hertz rebrand to "Hertz Energy" to better reflect the Company's commitment to critical mineral exploration in support of the global green energy transition. The Company's lithium exploration projects include the Lucky Mica Lithium Project, the ACDC Lithium Project and the Patriota Lithium Projection. The Lucky Mica Project is 939 hectares located within the Arizona Pegmatite Belt in the Maricopa County of Arizona, USA. The ACDC Project is 26,500 hectares located in the renowned James Bay Lithium District in Quebec, Canada, just 26kms southeast of the Covette Lithium Project owned by Patriot Battery Metals and is contiguous to Rio Tinto's Kaanaayaa project claims. The Patriota Lithium Project is 2,963 hectares located within the Eastern Brazilian Pegmatite Province in Minas Gerais, Brazil and host to similar geology as Sigma's "Green Lithium Mine". The Company also holds a long-term, exclusive license for a patent-pending process for extracting lithium directly from lithium-bearing materials, including but not limited to alpha-spodumene and other hard rock hosted minerals. Such process was invented by researchers affiliated with Penn State and is co-owned by the Penn State Research Foundation and North Carolina State University.

Hertz Energy是一家总部位于不列颠哥伦比亚省的初级勘探公司,主要从事矿产的收购和勘探。该公司最近签订了收购位于加拿大努纳武特巴瑟斯特湾的Cominco铀矿产的最终协议。赫兹更名为 “赫兹能源”,以更好地反映公司对关键矿产勘探的承诺,以支持全球绿色能源转型。该公司的锂勘探项目包括Lucky Mica锂项目、ACDC锂项目和爱国者锂业项目。Lucky Mica 项目占地 939 公顷,位于美国亚利桑那州马里科帕县的亚利桑那伟晶岩带内。ACDC项目占地26,500公顷,位于加拿大魁北克省著名的詹姆斯湾锂区,距离爱国者电池金属公司拥有的科维特锂项目东南仅26公里处,与力拓的Kaanaayaa项目索赔毗邻。Patriota锂项目占地2963公顷,位于巴西米纳斯吉拉斯州的巴西东部伟晶岩省内,地质与西格玛的 “绿色锂矿” 相似。该公司还持有一项正在申请专利的工艺的长期独家许可,该工艺用于直接从含锂材料中提取锂,包括但不限于α-锂辉石和其他硬岩承载的矿物。这种方法是由宾夕法尼亚州立大学附属的研究人员发明的,由宾夕法尼亚州立大学研究基金会和北卡罗来纳州立大学共同拥有。

About Penn State University, College of Earth and Mineral Sciences

宾夕法尼亚州立大学简介, 地球与矿物科学学院

For more than a century, Penn State's College of Earth and Mineral Sciences has been a beacon of intellectual leadership on issues of utmost importance to the welfare of the Commonwealth, the nation, and beyond. We are a vibrant, inclusive community driven by curiosity to unlock how Earth's systems, energy, and materials interact with one another and society. With our top-ranked programs; five academic departments; and more than 40 majors, minors, and certificates, we provide a comprehensive, high-quality education at the forefront of both innovative teaching and path-breaking research focused on meeting the needs of our global society.

一个多世纪以来,宾夕法尼亚州立大学地球与矿物科学学院一直是智力领导力的灯塔,这些问题关系到英联邦、国家及其他地区的福祉。我们是一个充满活力、包容性的社区,由好奇心驱动,旨在解锁地球系统、能源和物质如何相互作用和社会相互作用。我们拥有一流的课程、五个学术系以及40多个专业、副修和证书,在创新教学和开创性研究的最前沿,提供全面、高质量的教育,重点是满足全球社会的需求。

The mission of the college is to advance knowledge, talent and leadership to elucidate Earth processes and history, harness and sustain natural resources and materials, and develop novel solutions to major challenges in energy, environment and wellbeing. We continue a strong tradition of building deep disciplinary expertise along with interdisciplinary teams, focusing on the interfaces of the natural science, social science, and engineering disciplines, where answers to the most pressing problems facing society await discovery.

该学院的使命是提高知识、人才和领导力,以阐明地球的过程和历史,利用和维护自然资源和材料,并为能源、环境和福祉方面的重大挑战开发新的解决方案。我们延续了建立深厚学科专业知识和跨学科团队的悠久传统,专注于自然科学、社会科学和工程学科的交叉领域,社会面临的最紧迫问题的答案有待发现。

For further information, please contact Mr. Kal Malhi or view the Company's filings at .

欲了解更多信息,请联系Kal Malhi先生或在以下地址查看公司的文件。

On Behalf of the Board of Directors

代表董事会

Kal Malhi
Chief Executive Officer and Director
Phone: 604-805-4602
Email: kal@bullruncapital.ca

Kal Malhi
首席执行官兼董事
电话:604-805-4602
电子邮件:kal@bullruncapital.ca

Neither the Canadian Securities Exchange nor its Regulation Services Provider accepts responsibility for the adequacy or accuracy of this news release.

加拿大证券交易所及其监管服务提供商均不对本新闻稿的充分性或准确性承担责任。

Cautionary Statement Regarding "Forward-Looking" Information

关于 “前瞻性” 信息的警示声明

This news release includes certain statements that may be deemed "forward-looking statements". All statements in this new release, other than statements of historical facts, that address events or developments that the Company expects to occur, are 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 the Company believes the expectations expressed in such forward-looking statements are based on reasonable assumptions, such statements are not guarantees of future performance and actual results may differ materially from those in the forward-looking statements. Factors that could cause the actual results to differ materially from those in forward-looking statements include market prices, continued availability of capital and financing, and general economic, market or business conditions. Investors are cautioned that any such statements are not guarantees of future performance and actual results or developments may differ materially from those projected in the forward-looking statements. Forward-looking statements are based on the beliefs, estimates and opinions of the Company's management on the date the statements are made. Except as required by applicable securities laws, the Company undertakes no obligation to update these forward-looking statements in the event that management's beliefs, estimates or opinions, or other factors, should change.

本新闻稿包括某些可能被视为 “前瞻性陈述” 的陈述。除历史事实陈述外,本新新闻稿中涉及公司预计将发生的事件或事态发展的所有陈述均为前瞻性陈述。前瞻性陈述不是历史事实,通常但并非总是以 “期望”、“计划”、“预期”、“相信”、“打算”、“估计”、“项目”、“潜在” 和类似表达方式来识别,或者说事件或条件 “将”、“将”、“可能” 或 “应该” 发生。尽管公司认为此类前瞻性陈述中表达的预期是基于合理的假设,但此类陈述并不能保证未来的业绩,实际业绩可能与前瞻性陈述中存在重大差异。可能导致实际业绩与前瞻性陈述中存在重大差异的因素包括市场价格、资本和融资的持续可用性以及总体经济、市场或商业状况。提醒投资者,任何此类陈述都不能保证未来的业绩,实际业绩或发展可能与前瞻性陈述中的预测存在重大差异。前瞻性陈述基于公司管理层在陈述发表之日的信念、估计和观点。除非适用的证券法有要求,否则如果管理层的信念、估计或观点或其他因素发生变化,公司没有义务更新这些前瞻性陈述。


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1 Meshram,P.,Pandey,B.D. 和 Mankhand,T R.(2014)“通过预处理、浸出和分离从主要和次要来源提取锂:全面审查。湿法冶金,” 150,192-208。;Martin,G.,Rentsch,L.,Hoeck,M,Bertau,M(2017)。“锂市场研究——全球供应、未来需求和价格发展。”储能材料,6,171-179。

2 Baylis, R, 2013, January. "Evaluating and forecasting the lithium market from a value perspective." In Roskill presentation, 5 the Lithium Supply and Markets Conference, Las Vegas (pp. 29-31); ENTR, E (2014). "Report on Critical Raw Materials for the EU Ares" (2015), 1819503.

2 贝利斯,R,2013 年 1 月。“从价值的角度评估和预测锂市场。”在罗斯基尔的演讲中,5 拉斯维加斯锂供应与市场会议(第 29-31 页);ENTR,E(2014)。“欧盟地区关键原材料报告”(2015),1819503。

3 Shihua, H., Daulet, S., Pan, J., Vaziri Hassas, B., Akbari, H., Mensah-Biney, R. Rezaee, M.*, (2022). Direct Extraction of lithium from α-spodumene by salt roasting-leaching process. ACS Sustainable Chemistry and Engineering.

3 Shihua,H.,Daulet,S.,Pan,J.,Vaziri Hassas,B.,Akbari,H.,Mensah-Biney,R. Rezaee,M.*,(2022年)。通过盐焙烧浸出过程直接从α-锂辉石中提取锂。ACS 可持续化学与工程。

4 Rezaee, M., Shihua, H., Daulet, S., Vaziri Hassas, B., Slawecki, T. M., Agrawal, D., Akbari, H., Mensah-Biney, R. (2022). Microwave-assisted calcination of spodumene for efficient, low-cost, and environmentally friendly extraction of lithium. Powder Technology, 397, 116992.

4 Rezaee,M.,Shihua,H.,Daulet,S.,Vaziri Hassas,B.,Slawecki,T.M.,Agrawal,D.,Akbari,H.,Mensah-Biney,R.(2022)。微波辅助焙烧锂辉石可高效、低成本、环保地提取锂。粉末技术,397,116992。

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