Battery X Metals Announces Amended Agreement With Global Top 20 Ranked University to Accelerate Eco-Friendly Battery-Grade Material Recovery Technology
Battery X Metals Announces Amended Agreement With Global Top 20 Ranked University to Accelerate Eco-Friendly Battery-Grade Material Recovery Technology
News Release Highlights:
新闻发布要点:
Extended Research Partnership with Global Top 20 Ranked University: Battery X Metals has amended and extended its collaboration with a global Top 20 ranked university to advance the development of its proprietary eco-friendly battery-grade material recovery technology.
与全球排名前20的大学进行合作延长:Battery X Metals已修订并延长与一所全球排名前20的大学的合作,以推动其专有的环保电池级材料回收技术的发展。
Proprietary Eco-Friendly Battery-Grade Material Recovery Technology: The collaboration focuses on optimizing Battery X Metals' proprietary eco-friendly froth flotation process, a sustainable and energy-efficient method for recovering critical battery-grade materials such as graphite, lithium, nickel, and cobalt from black mass. This technology aims to enhance battery-grade material recovery while reducing environmental impact and energy consumption.
专有环保电池级材料回收技术:合作重点是优化Battery X Metals的专有环保起泡浮选工艺,这是一种可持续且节能的方法,用于从黑色原料中回收关键的电池级材料,如石墨、锂、镍和钴。该技术旨在提高电池级材料的回收率,同时降低环境影响和能源消耗。
Commitment to Clean Energy Transition & Sustainability: Battery X Metals' innovative lithium-ion battery recycling technology aligns with global efforts for cleaner energy by ensuring a steady supply of critical battery materials essential for electric vehicle (EV) battery production. This eco-friendly process supports both sustainability and economic growth in the clean energy transition.
致力于清洁能源转型与可持续发展:Battery X Metals的创新锂离子电池回收技术符合全球为了更清洁能源而进行的努力,确保为电动汽车(EV)电池生产提供关键的电池材料供应。这种环保过程既支持可持续发展,又促进清洁能源转型中的经济增长。
VANCOUVER, BC / ACCESSWIRE / September 24, 2024 / Battery X Metals Inc. (CSE:BATX)(OTCQB:BATX)(FSE:R0W, WKN:A3EMJB) ("Battery X Metals" or the "Company") is pleased to announce that its wholly-owned subsidiary, Battery X Recycling Technologies Inc., has entered into an amended research collaboration agreement (the "Agreement") with a global Top 20 ranked university (the "University"). As one of North America's largest and most advanced centers for mining engineering education and research, the University's Institute of Mining Engineering will collaborate to further advance the company's proprietary battery-grade material recovery technology. This Agreement, effective August 1, 2024, extends the partnership through June 30, 2025.
温哥华,卑诗省/ACCESSWIRE/2024年9月24日/Battery X Metals Inc.(CSE:BATX)(OTCQB:BATX)(FSE:R0W,WKN:A3EMJB)("Battery X Metals"或"公司")很高兴宣布,其全资子公司Battery X Recycling Technologies Inc.已与一所全球排名前20的大学("大学")签订了修订后的研究合作协议("协议")。作为北美最大和最先进的矿业工程教育和研究中心之一,该大学的矿业工程学院将合作推动公司的专有电池级材料回收技术的进一步发展。此项协议自2024年8月1日生效,将合作伙伴关系延长至2025年6月30日。
The Problem
问题
The global shift toward electrification is driving the clean energy transition, with lithium-ion batteries playing a central role in reducing reliance on fossil fuels1. Lithium-ion battery demand is projected to surge by 670% by 20302, with energy storage requirements rising from 700 GWh in 2022 to 4.7 TWh2, primarily due to EVs2. Regulatory initiatives, such as the US Inflation Reduction Act and Europe's "Fit for 55" program, along with the EU's 2035 ban on internal combustion engine vehicles1, are accelerating this growth. Yet, less than 5% of lithium-ion batteries are currently recycled3. EVs and battery storage will make up about half of the mineral demand growth from clean energy technologies over the next 20 years, spurred by the surging demand for battery materials4 like graphite, lithium, nickel, cobalt, manganese, and copper.
全球向电气化的转变推动了清洁能源转型,其中锂离子电池在减少对化石燃料依赖方面发挥着核心作用。到2030年,锂离子电池的需求预计将增长670%,能源储存需求从2022年的700 GWh增加到2032年的4.7 TWh,主要是由于电动汽车。法规倡议,如美国通胀减少法案和欧洲的“适用于55”计划,以及欧盟2035年禁止内燃发动机车辆的计划,正加速这一增长。然而,目前仅有不到5%的锂离子电池被回收利用。未来20年,EV和电池存储将占来自清洁能源技术的矿物需求增长的大约一半,其中包括石墨、锂、镍、钴、锰和铜等电池材料的需求增长。
The Solution
解决方案
Battery X Metals aims to address this critical need with its proprietary froth flotation technology, which is being developed to recover essential battery-grade materials, such as graphite, lithium, nickel, cobalt, manganese, and copper, from the residual material of end-of-life lithium-ion batteries, known as "black mass," a highly sought-after resource. The Company, in collaboration with the University, is working to validate this technology for the efficient recovery of graphite and oxides from black mass, with the intent to commercialize it upon successful validation.
Battery X Metals旨在利用其专有的泡沫浮选技术来解决这一关键需求,该技术正在开发中,旨在从终端寿命周期锂离子电池的残留材料中回收关键的电池级材料,如石墨、锂、镍、钴、锰和铜,这些残留材料被称为"黑质",是一种备受追捧的资源。公司正在与大学合作,致力于验证这一技术以有效从黑质中回收石墨和氧化物,并打算在成功验证后进行商业化。
Whereas, traditional battery recycling methods, such as hydrometallurgy and pyrometallurgy, affect graphite and metals differently. In hydrometallurgical processes, leaching agents dissolve metals like cobalt, nickel, and lithium for recovery. However, graphite, being non-metallic, is often left behind or degraded during the process, making its recovery both challenging and costly5,6. Additionally, hydrometallurgy can break down metal oxides into ionic forms, meaning an extra step is required to reconstitute the oxides for reuse if needed6,7. In pyrometallurgical processes, high-temperature smelting is employed, where graphite is burned off entirely, which makes its recovery impossible5,8. Moreover, pyrometallurgy reduces metal oxides to pure metal, necessitating a further oxidation step if oxide recovery is required7,9. While these methods efficiently recover metals such as cobalt and nickel, other valuable materials, including lithium and aluminum, are often lost in the slag, limiting their recoverability7,8.
然而,传统的电池回收方法(如水冶法和热冶法)对石墨和金属的影响有所不同。在水冶过程中,浸出剂溶解钴、镍和锂等金属以进行回收。然而,作为非金属的石墨通常被遗留或在过程中被降解,使其回收变得具有挑战性和成本高昂。此外,水冶法可以将金属氧化物分解为离子形式,这意味着如果需要,必须进行额外的步骤重新构建氧化物以供再利用。在热冶过程中,采用高温熔炼,石墨完全燃烧,从而使其回收变得不可能。此外,热冶法可以将金属氧化物还原为纯金属,如果需要氧化物回收,则需要进一步的氧化步骤。虽然这些方法可以有效回收钴和镍等金属,但其他有价值的材料,包括锂和铝,通常会在炉渣中丢失,从而限制了它们的可回收性。
Battery X Metals is focused on recovering critical battery materials in a sustainable way, avoiding the use of leaching agents, smelting, or breaking down metal oxides. This approach aims to ensure the preservation and availability of essential materials, such as graphite, lithium, lithium, nickel, cobalt, manganese, and copper, for electric vehicle (EV) battery production and other clean energy applications. By bypassing the environmentally harmful impacts associated with traditional recycling methods, Battery X Metals aims to address the growing demand for lithium-ion battery materials while significantly reducing the environmental footprint and energy consumption of the recycling process.
Battery X Metals专注于以可持续的方式回收关键的电池材料,避免使用浸出剂、熔炼或分解金属氧化物。这种方法旨在确保关键材料(如石墨、锂、锂、镍、钴、锰和铜)的保存和可用性,供电动汽车(EV)电池生产和其他清洁能源应用之需。通过避开传统回收方法带来的环境影响,Battery X Metals旨在应对锂离子电池材料日益增长的需求,同时显著减少回收过程的环境足迹和能源消耗。
Battery X Metals' Commitment to a Clean Energy Future
电池X金属致力于清洁能源未来
"Our ongoing collaboration with the University, one of North America's largest and most advanced centers for mining engineering education and research, remains a cornerstone of our strategy to develop sustainable, innovative solutions for the lithium-ion battery recycling industry," said Massimo Bellini Bressi, CEO of Battery X Metals. "This amended agreement brings us closer to validating our proprietary eco-friendly technology for recovering critical battery-grade materials, contributing to the EV revolution and clean energy transition."
“我们与大学的持续合作,该大学是北美最大、最先进的矿业工程教育和研究中心之一,仍然是我们制定可持续创新解决方案的策略基石,用于锂离子电池回收行业,” 电池X金属的CEO Massimo Bellini Bressi表示。 “这项修订协议使我们更接近验证我们的专有环保技术,用于回收关键的电池级材料,有助于电动汽车革命和清洁能源转型。”
Collaboration Objectives & Approach
合作目标与方式
The collaboration between Battery X Metals and the University aims to develop, optimize, and validate the proprietary froth flotation process. This eco-friendly technology is designed to recover critical battery-grade materials, including graphite, lithium, nickel, cobalt, manganese, and copper, from black mass. The process aims to recover spherical graphite and preserve metals in their oxide forms, enabling their seamless reintegration into the battery manufacturing supply chain. Currently in the research and development phase at lab scale, the Company plans to provide updates on projected recovery rates and other relevant details as the research progresses. With the timing of this Agreement coinciding with the start of the school season, the Company anticipates imminent progress and will share updates accordingly.
电池X金属与大学之间的合作旨在开发、优化和验证专有的起泡浮选工艺。这种环保技术旨在从黑色物质中回收关键的电池级材料,包括石墨、锂、镍、钴、锰和铜。该工艺旨在回收球形石墨并以氧化形式保存金属,使它们能够无缝重新融入电池制造供应链。目前处于实验室规模的研发阶段,公司计划随着研究的进展提供有关预期回收率和其他相关细节的更新。由于该协议的签署时间与开学季开始时间重合,公司预计即将取得进展,并将及时分享更新。
At present, progress has been made in the research of black mass recycling. Key methodologies, such as particle size distribution (PSD), Zeta potential, and flotation tests, have been conducted on multiple black mass samples provided by Battery X Metals throughout the duration of the study and revealed distinct behaviors, with one sample exhibiting favorable characteristics for larger-scale processing. The research underscores the importance of particle behavior and surface chemistry in optimizing recycling processes, with ongoing refinement of flotation techniques using different collectors.
目前,黑色物质回收的研究取得了进展。关键方法,如粒径分布(PSD)、Zeta电位和浮选试验,已在电池X金属提供的多个黑色物质样本上进行,并揭示了明显的行为差异,其中一个样本表现出有利于大规模处理的特征。研究强调了优化回收过程中颗粒行为和表面化学在重要性上的重要性,通过使用不同的收集剂不断优化浮选技术。
The University's research team aims to further enhance the technology development by conducting individual flotation tests on each component to further refine the separation process, leveraging the insights from Zeta potential measurements.
大学的研究团队旨在通过对每个组件进行单独的浮选试验,进一步优化分离过程,利用Zeta电位测量的见解。
This partnership underscores the potential for continuous innovation in sustainable battery material recovery processes, contributing to both environmental sustainability and the broader clean energy transition.
这一合作突显了在可持续电池材料回收过程中持续创新的潜力,有助于环境可持续性和更广泛的清洁能源转型。
Payment and Intellectual Property Terms
支付和知识产权条款
As part of the Agreement, Battery X Metals will provide a total of CAD $56,350 in payments, distributed in three installments to support the continued research:
作为协议的一部分,Battery X Metals将提供总计56,350加元的付款,分三期分配,以支持持续研究:
CAD $20,000 upon signing the amendment (already paid)
CAD $20,000 by September 1, 2024 (already paid)
CAD $16,350 by October 1, 2024
在签署修正案时付款20,000加元(已付款)
2024年9月1日前支付20,000加元(已付款)
2024年10月1日前支付16,350加元
Under the Agreement, and upon receipt of payments above, Battery X Metals retains a non-exclusive, non-transferable, royalty-free license to use any joint intellectual property developed during the collaboration. In addition, Battery X and the University grant the other a reciprocal non-exclusive, non-transferable, royalty-free license to use and exploit the intellectual property developed by the other party during the contract period in the performance of the project for any commercial or non-commercial purposes.
根据协议,在收到上述付款后,Battery X Metals保留使用在合作中开发的任何联合知识产权的非排他性、不可转让、免费许可。此外,Battery X和大学互相授予对方在合同期间在项目执行中使用和利用双方在合同期间开发的知识产权的非排他性、不可转让、免费许可,用于任何商业或非商业目的。
1 EnergyX
2 McKinsey & Company
3 CAS
4 Mining Review Africa
5 MDPI (1)
6 MDPI (2)
7 MDPI (3)
8 MDPI (4)
9 MDPI (5)
1 能源X
2 麦肯锡与公司
3 cse
4 《矿业评论非洲》
5 金属期货 MDPI (1)
6 金属期货 MDPI (2)
7 金属期货 MDPI (3)
8 金属期货 MDPI (4)
9 MDPI(5)
About Battery X Metals Inc.
有关电池X金属公司
Battery X Metals Inc. (CSE:BATX)(OTCQB:BATXF)(FSE:R0W, WKN:A3EMJB) is committed to advancing North America's clean energy transition through the development of proprietary technologies and domestic battery and critical metal resource exploration. The Company focuses on extending the lifespan of electric vehicle (EV) batteries, through its portfolio company, LIBRT1, recovering battery grade metals from end-of-life lithium-ion batteries, and exploring domestic battery and critical metals resources. For more information, visit batteryxmetals.com.
电池X金属公司(cse:BATX)(OTCQB:BATXF)(FSE:R0W,WKN:A3EMJB)致力于通过开发专有技术和国内电池技术等金属资源勘查推动北美的清洁能源过渡。该公司专注于通过其投资组合公司LIBRT1延长电动车(EV)电池的使用寿命,从报废的锂离子电池中回收电池级金属,并探索国内电池和关键金属资源。欲了解更多信息,请访问batteryxmetals.com。
149% owned Portfolio Company
持股149%的投资组合公司
On Behalf of the Board of Directors
董事会代表
Massimo Bellini Bressi, Director
马西莫·贝利尼·布雷西,董事
For further information, please contact:
如需更多信息,请联系:
Massimo Bellini Bressi
Chief Executive Officer
Email: mbellini@batteryxmetals.com
Tel: (604) 741-0444
马西莫·贝利尼·布雷西
首席执行官
邮箱:mbellini@batteryxmetals.com
电话:(604) 741-0444
Disclaimer for Forward-Looking Information
关于前瞻性信息的免责声明本新闻稿可能含有前瞻性声明。这些声明包括涉及公司的管理团队和董事会,Sanoukou Gold Project,Tilemi磷酸盐项目以及公司未来计划和目标的影响。这些声明基于目前的预期和假设,面临着风险和不确定性。实际结果可能因为在我们的中期和最近的年度财务报告的管理讨论和分析部分或其他报告和文件及TSX Venture Exchange和适用的加拿大证券法规中所讨论的因素而有所不同。我们不承担任何更新前瞻性声明的义务,除非法律规定。
This news release includes certain statements and information that may constitute forward-looking information within the meaning of applicable Canadian securities laws. Forward-looking statements relate to future events or future performance and reflect the expectations or beliefs of management of the Company regarding future events. Generally, forward-looking statements and information can be identified by the use of forward-looking terminology such as "intends," "anticipates," or "believes," or variations of such words and phrases, or statements that certain actions, events, or results "may," "could," "should," "would," or "occur." These statements and information are not historical facts but reflect the Company's current beliefs, expectations, or intentions regarding future events. Forward-looking information in this news release includes, among other things, statements regarding the development and commercialization of Battery X Metals' proprietary froth flotation technology, the potential of the technology in the lithium-ion battery and mining industries, and the expected benefits of the extended research collaboration. In making the forward-looking statements in this release, the Company has applied several material assumptions, including but not limited to, the assumption that the Company will meet its development and commercialization goals, the continued support from research and industry partners, and the ability of the Company to finance its operations. Although management believes that the expectations and assumptions on which such forward-looking statements are based are reasonable, undue reliance should not be placed on these forward-looking statements and information as there can be no assurance that they will prove to be accurate. Actual results may differ materially from those expressed or implied in such statements. The Company does not undertake any obligation to update forward-looking information, except as required by applicable securities laws.
此新闻发布包括可能构成根据适用的加拿大证券法的前瞻性信息的特定陈述和信息。前瞻性陈述涉及未来事件或未来业绩,并反映了公司管理层对未来事件的期望或信念。一般来说,前瞻性陈述和信息可以通过使用诸如"意图"、"预期"或"相信"之类的前瞻性术语,或陈述某些行动、事件或结果"可能"、"可能"、"应该"、"将"或"发生"等词语和短语变体来识别。这些陈述和信息并非历史事实,而是反映了公司关于未来事件的当前信念、期望或意图。此新闻发布中的前瞻性信息包括但不限于对Battery X Metals专有的泡沫浮选技术的开发和商业化、该技术在锂离子电池和采矿行业中的潜力以及扩展研究合作的预期收益等方面的陈述。在作出本新闻发布中的前瞻性陈述时,公司已应用了若干重要假设,包括但不限于公司将实现其开发和商业化目标、继续得到来自研究和行业伙伴的支持以及公司能够为其业务提供融资的假设。尽管管理层认为此类前瞻性陈述的期望和假设是合理的,但不应过度依赖这些前瞻性陈述和信息,因为不能保证它们将被证明是准确的。实际结果可能与此类陈述中表达或暗示的不同。除非适用证券法要求,否则公司不承担更新前瞻性信息的任何义务。
SOURCE: Battery X Metals
资讯:电池 X 金属