Technology
America’s Rare Earth Comeback Is Gathering Serious Momentum
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2 months agoon
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FN Media Group Presents Oilprice.com Market Commentary
NEW YORK, July 31, 2026 /PRNewswire/ — This is where China’s rare earth magnet monopoly ends. REalloys (ALOY) has signed a strategic agreement with permanent magnet manufacturer JS Link to develop one of the first fully integrated non-Chinese rare earth magnet platforms, bringing together feedstock, separation, metallization, and permanent magnet manufacturing under a single North American industrial strategy. Companies mentioned in today’s commentary includes: Realloys Inc. (ALOY), Apple Inc. (NASDAQ: AAPL), Microsoft Corporation (NASDAQ: MSFT), General Motors Company (NYSE: GM), Western Digital Corporation (NASDAQ: WDC), NVIDIA (NASDAQ: NVDA).
Permanent magnets power guided missiles, fighter aircraft, submarines, industrial robots, electric vehicles, AI infrastructure, and wind turbines. China manufactures the overwhelming majority of them, giving Beijing extraordinary leverage over industries now driving military modernization, advanced manufacturing and the global energy transition. The agreement creates a path to manufacturing American rare earth magnets entirely on American soil.
Rebuilding North America’s rare earths supply chain is now moving at breakneck speed. Only weeks ago, REalloys was selected by the U.S. Army for exclusive negotiations to develop heavy rare earth processing facilities at the Tooele Army Depot in Utah, placing the company at the center of Washington’s effort to rebuild domestic rare earth processing and ahead of the Department of Defense’s January 1, 2027, ban on Chinese-origin rare earth magnets. Today’s announcement carries that strategy one step further, extending it beyond processing into finished magnet manufacturing.
The U.S. Army project established the processing backbone. JS Link adds permanent magnet manufacturing. Together, they place every major stage of rare earth production–from feedstock through finished magnets–inside a single American industrial platform.
“In rare earths, strategic advantage belongs to the country that builds the magnets. That’s the capability we’re building here in the United States,” REalloys CEO Lipi Sternheim told Oilprice.com.
Building the Most Important Industrial Base of the Century
The JS Link agreement adds the final manufacturing capability. REalloys had already assembled much of the industrial chain, securing feedstock, rare earth processing, and heavy rare earth metallization before moving into permanent magnet manufacturing.
The center of that buildout is Saskatchewan. REalloys committed approximately $20.6 million to expand the Saskatchewan Research Council’s rare earth processing facility, securing preferred rights to up to 80% of its expanded output, including neodymium-praseodymium metal and separated dysprosium and terbium oxides. Commercial production is targeted to begin in early 2027.
Separated oxides are still an intermediate product. Before they can become permanent magnets, they must first be converted into high-purity metals, alloyed, and then manufactured into finished magnets.
REalloys is building that next stage as well. The company is funding a dedicated heavy rare earth metallization facility that will convert dysprosium and terbium oxides into metals, creating what is expected to become the largest heavy rare earth metallization operation outside China.
The first qualification-scale materials are expected in the fourth quarter of 2026. That would place North American-produced dysprosium, terbium and NdPr into customers’ hands for evaluation ahead of commercial production, moving the project from industrial construction into the final stage before commercial sales. And feedstock is already secured. REalloys (ALOY) holds a definitive long-term offtake agreement for 15% of Phase 1 production from Critical Metals’ Tanbreez project in Greenland, a strategic alliance and offtake commitment tied to the Sheep Creek rare earth deposit in Montana, and a proposed supply framework with Ramaco Resources for coal-hosted rare earth material from the Brook Mine platform in Wyoming. And the company continues to pursue additional supply from domestic and allied sources.
The Front-Line of Defense for an All-Out Industrial War
American rare earth companies are now operating under the assumption that access to Chinese materials can disappear overnight. Beijing is now trying to police Chinese-origin materials after they leave China. Its latest export controls prohibit foreign companies and individuals worldwide from supplying designated American firms with certain dual-use products, including rare earth producer MP Materials and rare earth magnet manufacturer USA Rare Earth.
This is not simply about blocking exports from Chinese companies. Beijing instructed organizations and individuals worldwide to suspend existing transactions and stop transferring designated Chinese-origin dual-use materials to the targeted American firms.
In effect, the restrictions follow the material itself rather than the exporter, an approach that gives Beijing another layer of influence over global supply chains built around Chinese processing. China’s Commerce Ministry justified the move on national security grounds, describing it as a response necessary to protect China’s strategic interests and fulfill its international non-proliferation obligations. That puts pressure on every Western supply chain still dependent on Chinese processing, metallization, or magnet manufacturing.
For most of the past three decades, the United States assumed global supply chains would remain open regardless of geopolitical tensions. But now, export controls, procurement rules, sanctions, and investment restrictions are becoming permanent features of the industrial economy.
In that environment, companies capable of producing defense-qualified rare earth materials entirely within North America occupy a different place in the industrial landscape than they would have only a few years ago. They are no longer simply suppliers. They are becoming part of the infrastructure supporting the next generation of American defense manufacturing.
An integrated American rare earth industry is now taking shape years faster than anyone expected. An industrial base that took China decades to build is now being reconstructed across North America in just a few years, and REalloys is now part of the frontline of defense in the biggest industrial war of our time.
Other companies working on fighting China’s rare earth dominance:
Apple (AAPL) has emerged as the clear leader among big tech companies in rare earth magnet recycling, having pioneered the use of recycled rare earth elements in consumer electronics as far back as 2019, when it introduced them in the Taptic Engine of the iPhone 11. Today, nearly all magnets across Apple’s device lineup are made with 100% recycled rare earth elements, a milestone the company has nearly achieved across its entire portfolio.
In July 2025, Apple formalized its commitment with a landmark $500 million partnership with MP Materials, the only fully integrated rare earth producer in the United States, to source American-made recycled rare earth magnets for hundreds of millions of Apple devices.
Microsoft (MSFT) has taken a multi-pronged approach to rare earth recycling, targeting the enormous volume of hard disk drives retired from its global Azure data center infrastructure. In April 2025, Microsoft announced a pilot program in collaboration with Western Digital, Critical Materials Recycling, and PedalPoint Recycling that successfully processed approximately 50,000 pounds of shredded end-of-life hard drives, recovering rare earth elements such as neodymium, praseodymium, and dysprosium — along with gold, copper, aluminum, and steel — using an acid-free chemical process.
Beyond its data center recycling efforts, Microsoft has embedded rare earth recycling into its Surface hardware product line, with new Surface Copilot+ PCs now featuring 100% recycled rare earth metals in their magnets. The company operates six global Circular Centers and achieved a 90.9% reuse and recycling rate for its Azure hardware in FY2024, exceeding its 2025 target ahead of schedule.
General Motors (GM) has been one of the earliest and most strategically significant automotive partners in the domestic rare earth magnet supply chain, entering into a long-term agreement with MP Materials in December 2021 to source U.S.-produced rare earth magnets for its Ultium Platform electric vehicle motors. The partnership covers GM’s expanding EV lineup — including the GMC HUMMER EV, Cadillac LYRIQ, and Chevrolet Silverado EV.
GM and MP Materials have also committed to exploring novel end-of-life, closed-loop recycling approaches that would eventually allow rare earth materials from retired EV motors to be recovered and reprocessed into new magnets. In addition, GM Ventures has invested in Niron Magnetics, a startup developing a rare-earth-free magnet technology based on iron nitride, as a hedge to further reduce dependence on critical minerals.
Western Digital (WDC), one of the world’s largest hard disk drive manufacturers, has taken a leading role in developing scalable rare earth recovery from its own products at end of life. In April 2025, Western Digital announced a successful at-scale pilot program conducted in collaboration with Microsoft, Critical Materials Recycling, and PedalPoint Recycling, in which approximately 50,000 pounds of shredded end-of-life hard drives were processed using an environmentally friendly, non-acid chemical extraction method to recover rare earth oxides alongside gold, copper, aluminum, and steel.
Western Digital views this initiative as a blueprint for transforming the global HDD recycling industry, with the potential to significantly offset U.S. dependence on virgin rare earth mining when scaled worldwide. By partnering with downstream processors and data center operators, Western Digital is helping to establish a feedstock network that feeds recovered rare earths back into the U.S. supply chain for applications in electric vehicles, wind turbines, and advanced electronics.
NVIDIA (NASDAQ: NVDA) is currently less about “using” rare earths and more about “transforming” how they are extracted. At CES 2026, they doubled down on their partnership with Caterpillar, revealing a fleet of autonomous mining machines powered by the NVIDIA Jetson Thor platform. These machines use edge-AI to perform real-time mineral sorting, identifying high-grade rare earth ores at the point of extraction. This reduces the energy-intensive processing of waste rock, making domestic mining more economically viable against lower-cost overseas rivals.
The company’s stock remains the absolute heavyweight of the AI era, though early 2026 has seen some “AI fatigue” sell-offs as the market waits for the full rollout of the Vera Rubin architecture. Despite this, NVIDIA’s data center revenue continues to defy gravity, largely because their chips are the mandatory “toll booth” for every major AI project. Their software ecosystem, specifically Omniverse, is also being used by mineral refiners to create digital twins of separation facilities, optimizing the complex chemical processes needed to reach 99.9% purity for rare earth oxides.
Beyond the software, NVIDIA’s high-performance hardware—like the Blackwell and the upcoming Rubin GPUs—relies on high-speed networking and storage that utilize precision neodymium magnets. However, NVIDIA’s real market-moving power is in its “AI Factory” concept. By automating the mining sector, they are effectively providing the brainpower that helps the West rebuild a critical mineral supply chain that was almost entirely lost to international competitors over the last three decades.
By. Charles Kennedy
The AI boom is triggering an unexpected and unprecedented bull run in natural gas and power stocks. If you aren’t paying attention to the energy demands of data centers, you will miss the biggest energy story of the decade. The smart money is already quietly moving into the few companies prepared to power the trillion-dollar AI machine.
Oilprice Intelligence brings you the inside view on where the next gains will come from, breaking down the market’s biggest growth driver with analysis from veteran oilmen and experts. Click here to get this crucial intel for free
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Yann LeCun, Bob Langer, Jens Nielsen and Fabian Theis Join Cellular Intelligence Scientific Advisory Board
Published
20 minutes agoon
September 21, 2026By
Turing Award Laureate, Moderna Co-Founder, BioInnovation Institute CEO and Helmholtz Munich Computational Health Director to Advise on Decoding the Logic that Governs How Cells Change and Carrying That Knowledge Into Medicine
BOSTON, Sept. 21, 2026 /PRNewswire/ — Cellular Intelligence, the AI company building a universal foundation model of cell signaling, today announced that Yann LeCun, Robert “Bob” Langer, Jens Nielsen and Fabian Theis have joined its Scientific Advisory Board. Langer joins the company’s Board of Directors as an observer.
Between them, the four hold a Turing Award, more than 1,500 patents, the founding of Moderna, the leadership of the Novo Nordisk Foundation’s BioInnovation Institute and Germany’s highest research honor. Their work and expertise tie directly to the key problems Cellular Intelligence was founded to solve: learning predictive models from complex systems, and turning that understanding into therapeutic applications.
“We are bringing together people who have changed what is possible in AI, biology and medicine to tackle a shared question: can we learn the rules that govern how cells change, and use that knowledge to help patients? Yann, Bob, Jens and Fabian bring the scientific imagination and rigor this challenge demands. Their perspectives will be invaluable as we connect predictive models to experiments and, ultimately, to therapeutic development,” said Micha Breakstone, Ph.D., Co-founder and Chief Executive Officer, Cellular Intelligence.
Yann LeCun received the 2018 ACM A.M. Turing Award for foundational work in deep learning, founded Meta’s Fundamental AI Research lab (FAIR) and served as the company’s Chief AI Scientist from 2013 to 2025. He is Executive Chairman of AMI Labs, the world-model company he co-founded, and Silver Professor at New York University. His research centers on AI systems that learn how the world works and predict what happens when they act on it.
“The models that interest me learn how the world works from data and predict what happens when we act on it. Living cells present an extraordinarily rich version of that challenge. What excites me about Cellular Intelligence is the combination of new methods for large-scale cellular data collection, new phenomenological and causal models of cellular dynamics trained from this data, and a team with the ambition to connect the two. The possibility of learning principles that transfer across biological contexts is especially compelling,” said Yann LeCun, Scientific Advisory Board member.
Robert “Bob” Langer is an Institute Professor at MIT, the institution’s highest faculty rank, and the most cited engineer in history. He holds more than 1,500 issued and pending patents, and as a co-founder of Moderna and some 40 other companies, he has received the National Medal of Science, the National Medal of Technology and Innovation and the Queen Elizabeth Prize for Engineering for work that turned drug delivery and tissue engineering into medicines that reach patients.
“I have been deeply impressed by the team Cellular Intelligence has brought together. What draws me to this company is the opportunity to connect a fundamental understanding of cell behavior with the practical work of developing medicines. If we can better predict how cells respond to an intervention, we can ask more precise questions, design better experiments and open new possibilities for patients. I am excited to help the team pursue that potential,” said Robert “Bob” Langer, Scientific Advisory Board member and Board Observer.
Jens Nielsen is Chief Executive Officer of the BioInnovation Institute, the Novo Nordisk Foundation’s DKK 3 billion-plus engine for founding and scaling life-science companies in Copenhagen, and Professor of Systems Biology at Chalmers University of Technology. Author of more than 900 scientific publications and founder of several biotech companies, he was knighted by Her Majesty Queen Margrethe II of Denmark in 2019 and is a member of the U.S. National Academies of Sciences and Engineering, the Royal Swedish Academy of Sciences and the Royal Danish Academy of Sciences and Letters.
“Understanding a cell means understanding how its many systems work together. Cellular Intelligence is bringing quantitative models and carefully designed experiments to that problem at an ambitious scale. I am excited by the opportunity to help turn that understanding into more predictable cell engineering and new therapeutic possibilities,” said Jens Nielsen, Scientific Advisory Board member.
Fabian Theis is Director of the Computational Health Center at Helmholtz Munich, Scientific Director of Helmholtz AI and Professor of Mathematical Modeling of Biological Systems at the Technical University of Munich. A co-founder of the Human Cell Atlas and a member of its Board of Directors, he received the 2023 Gottfried Wilhelm Leibniz Prize, Germany’s highest research honor, for machine-learning methods that predict how cells develop and respond to drugs, and is a member of the Leopoldina, the German National Academy of Sciences, and EMBO.
“Progress in modeling cells depends on the quality of the questions our data allow us to ask. What excites me about Cellular Intelligence is its ambition to build rich experimental data and predictive models together. That combination creates an opportunity to test how well models generalize across biological contexts and to learn systematically from where they fall short,” said Fabian Theis, Scientific Advisory Board member.
The appointments follow Arjun Raj’s arrival as Chief Scientific Officer and scientific co-founder, and the company’s acquisition of STEM-PD, an investigational Parkinson’s disease cell therapy with FDA Fast Track designation, from Novo Nordisk in May 2026. Manufacturing and clinical data from the program flow back into the company’s models. The company’s investors include Khosla Ventures, the Chan Zuckerberg Initiative and Novo Nordisk.
About Cellular Intelligence
Cellular Intelligence is a clinical-stage AI company building a universal foundation model of cell signaling to understand, predict and ultimately control cellular behavior. Based in Boston, the company runs experimental biology, machine learning and therapeutic development as a single program, with regenerative medicine at its core. Learn more at www.cellularintelligence.com.
STEM-PD is an investigational therapy. Its safety and efficacy have not been established.
Media contact: Media-Relations@CellularIntelligence.com
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SOURCE Cellular Intelligence
Technology
Huawei Releases an AIFW Technical White Paper to Facilitate Firewall Upgrade
Published
20 minutes agoon
September 21, 2026By
SHANGHAI, Sept. 21, 2026 /PRNewswire/ — On September 17 at HUAWEI CONNECT 2026, Huawei released the Huawei AIFW Technical White Paper during the session themed “Solidifying Network Security Foundations to Safeguard Industrial Intelligence Implementation.” The White Paper systematically presents the architectural concept and key technologies of next-generation AI firewalls (AIFW) tailored for the AI era. Richard Wu, President of the Security Product Domain of Huawei’s Data Communication Product Line, and Jeff Wang, President of Huawei Cyber Security & Privacy Dept, jointly attended the launch ceremony.
From Rule-Driven to Intent-Aware: Reshaping Security Defense Logic
As LLMs, AI agents, and compute clusters scale across industries, the cyber threat landscape is fundamentally shifting. Confronted with emerging risks like prompt injection, sensitive data leakage, and compute misuse, traditional rule-matching systems fall short due to delayed rule updates and limited semantic understanding.
According to the White Paper, AIFW integrates AI-native hardware, LLMs, and intelligence and security knowledge bases to shift defense focus from traffic protection to behavior governance. Leveraging full-spectrum awareness, semantic understanding, risk reasoning, and intent recognition, AIFW accurately pinpoints AI-specific risks such as DGA domains, prompt injection, and unauthorized content exfiltration. This marks a transition from rule-driven to intelligence-driven and from static policies to policy autonomy to protect AI computing centers, enterprise AI agents, and LLM operations.
AI-Native Hardware Foundation: Building Native Security Resilience with High Reliability
The White Paper details the AIFW’s native hardware architecture. Leveraging hardware-software synergy, performance across post-quantum cryptography, rule matching, and AI inference achieves order-of-magnitude improvements. Featuring 99.999% carrier-grade reliability, the product utilizes hardware decoupling, software isolation, and an engine-level root of trust to deliver robust survivability and rapid recovery. By preventing vulnerability exploitation and establishing native security immunity, it ensures uninterrupted core operations during extreme network attacks or failures.
Policy Autonomy and Intelligent Operations: Advancing Toward Human-Like Closed-Loop Defense
Addressing traditional security operation pain points—such as outdated rules, insufficient synergy, and complex management—AIFW achieves policy autonomy through unified security semantics and intelligent reasoning. The AIFW automatically identifies and remediates policy gaps and dynamically optimizes policies alongside service shifts. This establishes a human-like closed loop across awareness, decision-making, and response, significantly easing the operational burden on enterprises.
Moving forward, Huawei will continue collaborating with customers and partners to build an intelligent, efficient, autonomous, and trustworthy next-generation network security ecosystem.
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Technology
Willog Becomes First Korean Company Selected for Lloyd’s Lab Cohort 17, Gaining a Foothold in the Global Insurance Market
Published
20 minutes agoon
September 21, 2026By
Selected as 1 of just 10 companies out of 280 applicants worldwide, and the only Asian company in this cohortAt Lloyd’s, where the world’s insurance risk converges, alumni companies have generated more than $400 million in cumulative GWPWillog gains the opportunity to validate a diversified global revenue model spanning solution and data sales, insurance-linked commissions, and technology licensing fees
LONDON, Sept. 21, 2026 /PRNewswire/ — Willog, an AIoT-based supply chain intelligence company co-led by CEOs Bae Seong-hun and Yoon Ji-hyun, announced that it has become the first Korean company selected for Cohort 17 of Lloyd’s Lab, the global insurtech innovation program run by Lloyd’s of London.
Willog is also the only Asia-based company in this cohort. The selection stands as a major milestone towards an entry into the global insurance market as well as a formal endorsement of Willog’s business model by a leading marketplace.
Named a Top European Startup Hub by the FT: Lloyd’s Lab, Where the World’s Insurance Innovators Converge
Lloyd’s Lab is an insurtech accelerator program that Lloyd’s established in 2018, and the Financial Times has named it one of Europe’s top startup hubs.
The program supports participating companies by providing direct support and collaboration from Lloyd’s underwriters and brokers to prepare insurance products ready for market, while not taking any equity. Program alumni have raised more than $1.4 billion in funding combined and generated $426 million in gross written premium (GWP).
Willog’s Logistics AIoT Data Fills a Gap in the Global Insurance Market
Logistics data-driven insurance products already exist in the market, but most rely on data supplied by carriers or third parties. By connecting proprietary data collected in the field by its own AIoT devices directly to insurance risk assessment and pricing, Willog makes the source of the data itself the basis for trust.
Willog’s approach of applying real-time cargo condition data to underwriting was recognized as a practical solution to a problem the Lloyd’s market has long struggled with: the lack of data infrastructure specific to logistics cargo.
Solution Revenue, Data Sales, Insurance-Linked Commissions, Technology Fees: A Foothold for Diversifying Willog’s Global Revenue Model
Willog Vision, the company’s integrated supply chain solution spanning everything from data logging to claims compensation, records data across the entire logistics process in real time and detects anomalies instantly. Therefore, dramatically lowering loss ratios, while the collected data also allows for insurance claims to cover whatever losses still occur.
During the program, Willog intends to secure insurance partners and prepare to launch a dedicated insurance product optimized for logistics with AIoT data.
Yoon Ji-hyun, Co-CEO of Willog, said, “The essence of this selection is that Lloyd’s has recognized the possibility that data from the logistics field can be translated into the language of insurance underwriting. This will be the starting point of a journey in which Willog’s logistics data becomes real infrastructure that transforms the global insurance market.
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