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Showing posts sorted by date for query terbium. Sort by relevance Show all posts

Iluka Rare Earths Offtake Secures Automotive Demand for Eneabba Refinery

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Iluka Rare Earths Offtake Secures Automotive Demand for Eneabba Refinery
Iluka

Iluka rare earths offtake has moved into a binding agreement with an unnamed global automotive company, giving the Australian producer long-term demand visibility for magnet materials including neodymium, praseodymium, dysprosium and terbium.

Iluka rare earths offtake will begin in 2028 and run for an initial four years under a take-or-pay structure. The agreement covers 1,200t of rare earth oxides, equal to about 10% of Iluka’s planned production over the period.

Iluka rare earths offtake is strategically important because it links future Australian rare earth output directly to the automotive magnet supply chain. The pricing structure also gives Iluka downside protection, with sales priced at the higher of minimum or market-linked values for each product.

The agreement strengthens the commercial case for Iluka’s Eneabba rare earths refinery in Western Australia, which is now more than 50% complete and scheduled for commissioning in mid-2027.

Take-or-Pay Structure Strengthens Project Bankability

The four-year take-or-pay structure gives Iluka greater revenue visibility ahead of Eneabba’s start-up. This is especially important in rare earth markets, where volatile prices and uncertain demand can complicate project financing.

The agreement covers both light and heavy rare earths. Neodymium and praseodymium are core inputs for NdFeB permanent magnets, while dysprosium and terbium improve magnet performance at elevated temperatures.

These materials are critical for electric vehicles, hybrid vehicles, industrial motors, robotics and other high-performance applications. Automotive customers increasingly want long-term access to non-China rare earth supply.

The minimum-price mechanism is also important. It reduces exposure to severe price weakness and helps protect project economics against periods of market oversupply or aggressive Chinese pricing.

This model is becoming more common across strategic minerals. Buyers gain secure supply, while producers gain demand certainty and a clearer financing case.

Eneabba Builds Australia’s Downstream Rare Earth Position

Iluka’s 23,000 t/yr Eneabba refinery is central to Australia’s effort to move beyond mineral extraction and into rare earth separation and refining.

Export Finance Australia has confirmed access to a A$1.65bn non-recourse federal government loan for the project. The refinery’s total capital estimate remains at A$1.7bn-1.8bn.

The scale of government support shows how strategically important downstream rare earth processing has become. Australia has strong mineral resources, but long-term value depends on converting those resources into separated oxides that magnet and industrial customers can use.

Construction firm Civmec has been awarded work covering structural, mechanical, piping, electrical and instrumentation activities. With the project already more than halfway complete, execution risk is now shifting from financing toward construction, commissioning and product qualification.

If Eneabba starts on schedule, Iluka could become an important non-China supplier of both light and heavy rare earth oxides. The automotive offtake agreement gives the refinery an early anchor customer and strengthens its route to market.

The Metalnomist Commentary

Iluka’s agreement shows that rare earth diversification is becoming commercially real when long-term offtake, price protection and government finance align. Eneabba’s strategic value lies in supplying qualified NdPr, dysprosium and terbium outside the China-dominated refining chain.

China Heavy Rare Earth Exports Stall as Curbs Hit Japan and US

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China Heavy Rare Earth Exports Stall as Curbs Hit Japan and US
Ru

China heavy rare earth exports stalled in May as export restrictions continued to disrupt shipments of terbium, dysprosium and lutetium products to key buyers. The data show how Beijing’s licensing controls are reshaping trade flows for materials used in magnets, defence, aerospace and advanced manufacturing.

China heavy rare earth exports were especially weak for products exposed to US and Japanese demand. China recorded no May exports of terbium oxide, dysprosium metal and several other key heavy rare earth products, while yttrium oxide shipments fell sharply from April.

China heavy rare earth exports are now being driven less by normal spot demand and more by policy clearance, end-use approval and bilateral tensions. This makes supply planning increasingly difficult for downstream users that need small but critical volumes.

Light rare earth exports moved in the opposite direction. Shipments of cerium oxide, lanthanum carbonate and neodymium metal increased in May as stronger downstream demand and firmer export prices encouraged buyers to purchase more material.

Heavy Rare Earth Controls Tighten Supply to Japan

Japan has been the clearest casualty of China’s heavy rare earth restrictions. It was previously a major consumer of Chinese yttrium oxide, accounting for 57-60% of total shipments.

That flow has changed sharply since January, when Beijing banned exports of dual-use items for Japanese military use or any end-use that could enhance Japan’s military capabilities. The measure followed deteriorating relations after comments on Taiwan by Japanese prime minister Sanae Takaichi.

China exported only 7t of yttrium oxide to Japan in May, while total May yttrium oxide exports fell to 90t from 161t in April. Germany received 55t, France 14t, Russia 6.9t and South Korea 6.2t.

For January-May, China exported 454t of yttrium oxide. South Korea received 111t, Austria 100t, the US 80t, Germany 69t, Vietnam 40t, Russia 20t and Japan only 14t.

Dysprosium flows were also tightly controlled. China exported 8.4t of dysprosium oxide in May, up slightly from April and March, but all shipments in April-May went to South Korea.

Dysprosium metal exports stopped in May after 3t moved to South Korea in April. Exports to Japan have been suspended since January, after 2t was shipped in December 2025.

Terbium exports were even more constrained. China exported no terbium oxide in May after shipping only 0.2t in April. Total January-May exports reached 5.7t, mostly to South Korea.

Terbium metal exports were almost absent in May, while shipments to Japan have been suspended since January. Lutetium oxide exports were also almost absent after 5t moved to the US in April.

Magnet and Aerospace Users Face Licensing Risk

The latest export pattern matters because heavy rare earths are small-volume materials with large strategic importance. Dysprosium and terbium are used to improve high-temperature performance in rare earth permanent magnets.

Those magnets are critical for electric vehicles, wind turbines, robotics, aerospace systems, defence equipment and high-performance industrial motors. Yttrium is also important for ceramics, phosphors, alloys, coatings and aerospace-related applications.

Lutetium is a smaller market, but its supply risk is strategically relevant because many specialty rare earths have few alternative sources. Even small interruptions can affect qualified users because substitution is difficult.

The May data show that South Korea has remained a permitted destination for some heavy rare earth products, especially dysprosium oxide. This could reflect licensing approvals for civilian or qualified end uses.

But the broader message is that buyers cannot rely only on market availability. They must also track export licences, end-user reviews and political relations with Beijing.

The divergence between light and heavy rare earth exports is also important. Light rare earth demand can still rise when prices and downstream consumption support trade, while heavy rare earth flows remain vulnerable to strategic controls.

For non-China supply chains, this reinforces the need for separation, metallization, magnet recycling and heavy rare earth sourcing outside China. However, building that capacity will take time, capital and customer qualification.

Japan’s exposure is especially important because the country has deep magnet, electronics, automotive and precision manufacturing industries. Reduced access to yttrium, dysprosium, terbium and lutetium could force buyers to accelerate inventory strategies and non-China sourcing.

The market should therefore treat May’s export data as more than a trade statistic. It is another signal that heavy rare earth supply is becoming a managed geopolitical channel.



The Metalnomist Commentary

China’s May export data show that rare earth risk is now concentrated in licensing, not only price. For Japan, the US and other advanced manufacturing economies, heavy rare earth security will depend on building supply routes that can survive political friction.

NioCorp Scandium Supply Plan Targets Latent Demand From Elk Creek

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NioCorp Scandium Supply Plan Targets Latent Demand From Elk Creek
NioCorp

NioCorp scandium supply plans could reshape a small but strategically important market if the company brings its Elk Creek critical minerals project in Nebraska into production. The US junior miner says reliable scandium availability could unlock demand that has remained dormant because customers lack secure supply.

NioCorp scandium supply would come from a polymetallic carbonatite ore body that also contains niobium, titanium and rare earths. The company plans to produce neodymium, praseodymium, dysprosium and terbium oxides alongside its main niobium product.

NioCorp scandium supply is important because scandium can strengthen and lighten aluminium alloys when added in small quantities. This gives the metal potential relevance for automotive, aerospace, defence and lightweight structural applications.

Construction at Elk Creek is expected to begin in the third or fourth quarter, once financing is secured. The company expects three years of construction, followed by ramp-up, with a full year of production targeted by 2030.

Elk Creek Financing Links Niobium, Scandium and Rare Earths

NioCorp is seeking a loan of around $780mn from the US Export-Import Bank. That financing could cover up to 65% of total capital expenditure through debt.

The company’s 2022 feasibility study estimated total capital expenditure at $1.2bn for underground and surface facilities. NioCorp has raised more than $500mn over the past 14 months and may still need another $200mn-400mn in cash support.

All planned production is covered under a 10-year commercial agreement with Traxys. This gives the project a route to market across its diversified product stream.

The diversified ore body reduces dependence on a single commodity. Niobium remains the main focus, but scandium, titanium and rare earths can broaden revenue and reduce exposure to one price cycle.

Niobium supply risk is a major strategic issue. Brazil produces about 95% of global niobium supply, while the US and EU import all the niobium they need.

That concentration creates geopolitical vulnerability. NioCorp argues that Brazil could use niobium as leverage in the same way China has used rare earths in trade and strategic disputes.

Elk Creek therefore matters for more than one mineral. It could give the US domestic access to niobium, scandium and rare earth oxides from a single integrated project.

Scandium Demand Case Depends on Reliable Domestic Supply

The global scandium market is currently tiny, with only about 30-35t produced annually. NioCorp plans to produce 100t, which has raised concerns that new supply could overwhelm demand.

The company takes the opposite view. It argues that applications are waiting on the shelf because users do not trust the availability of scandium supply.

NioCorp estimates latent demand could reach about 3,000 t/yr if secure supply becomes available. It is working with companies including Aston Martin and Jaguar Land Rover to demonstrate scandium-aluminium alloy performance.

This is the key industrial point. Scandium demand cannot develop without reliable supply, but reliable supply is difficult to finance without visible demand.

NioCorp is also building a downstream scandium chain in the US. The company plans to produce high-purity scandium oxide, scandium metal and scandium aluminium master alloy.

That approach fits defence and industrial supply-chain needs. Customers need not only mined material, but qualified products that can enter alloy systems and manufacturing routes.

Rare earth processing adds another layer of complexity. NioCorp says it has developed in-house capability to produce high-purity rare earth oxides, supported by staff with decades of solvent extraction experience.

Execution will decide the project’s market impact. Financing, construction, separation technology, customer qualification and downstream partnerships must all align before Elk Creek can become a meaningful US critical minerals platform.

The Metalnomist Commentary

NioCorp’s strategy shows why critical minerals demand often depends on supply confidence first. If Elk Creek reaches production, scandium could move from a niche laboratory metal into a practical aluminium alloying tool for lightweight manufacturing.

Viridis Rare Earth Output Marks First Step Toward Brazil Magnet Materials Supply

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Viridis Rare Earth Output Marks First Step Toward Brazil Magnet Materials Supply
mixed rare earth carbonate

Viridis rare earth output from its Poços de Caldas demonstration plant marks an important milestone for Brazil’s emerging role in non-China rare earth supply. Australia-based Viridis Mining and Minerals has produced its first batch of high-grade mixed rare earth carbonate in Minas Gerais.

Viridis rare earth output comes from a newly commissioned demonstration plant that processes 100 kg/hr of ionic clay feedstock. The product includes magnet-related rare earths such as neodymium, praseodymium, dysprosium and terbium.

Viridis rare earth output is strategically important because mixed rare earth carbonate is an intermediate product that can feed separation, oxide refining and eventually permanent magnet supply chains. The achievement moves the Colossus project from resource potential into early process validation.

The company has sent samples to the Australian Nuclear Science and Technology Organisation for qualification. It is still in discussions with potential offtake partners for its mixed rare earth carbonate.

Colossus Ionic Clay Project Gains Processing Momentum

The demonstration plant draws feedstock from the northern concession pits of Viridis’ nearby Colossus ionic clay project. Colossus contains a 200mn t reserve grading 2,640ppm total rare earth oxides.

That resource base gives the project strategic relevance. Ionic clay rare earth deposits can be important because they may contain valuable heavy rare earths used in high-performance magnets.

The presence of dysprosium and terbium matters especially. These heavy rare earths improve magnet performance under heat and stress, making them important for electric vehicles, wind turbines, robotics, aerospace and defence systems.

Viridis plans to build a commercial-scale plant at Colossus and is targeting first production in 2028. But the company has not yet confirmed a construction timeline.

Financing support is building around the project. Colossus has received A$50mn in loans from Export Finance Australia, along with funding commitments from Brazilian public finance institutions.

The project has also received a $100mn letter of interest from Export Development Canada and support from French export credit agency Bpifrance Assurance Export. This shows that allied governments are willing to support rare earth projects outside China.

Brazil Builds a Broader Rare Earth Processing Platform

Viridis is not only developing Colossus as a mining project. It is also planning rare earth oxide refining and magnet recycling capacity at the same Poços de Caldas location through a joint venture with Ionic Rare Earths.

That integrated approach matters. Rare earth supply chains need more than mining and carbonate production. They require refining, separation, recycling, metal-making, alloying and magnet qualification.

Brazil could become more important if it can connect resource development with processing and downstream material production. The country already has mineral potential, but the value will depend on building customer-ready products.

The Poços de Caldas site could therefore become a rare earth materials hub if the demonstration work, qualification process and future commercial plant progress as planned.

For magnet users, Brazil offers a potential alternative source of rare earth intermediates at a time when China still dominates processing and permanent magnet supply.

The next challenge is commercialisation. Viridis must qualify its product, secure offtake partners, complete project financing and prove that Colossus can scale from demonstration output to reliable industrial supply.

The Metalnomist Commentary

Viridis’ first rare earth output is small in volume but important in direction. Brazil’s rare earth opportunity will depend on whether projects like Colossus can move beyond resource statements into qualified carbonate, refined oxides and magnet-ready supply.

IonicRE Rare Earth Oxide Supply to AML Advances US Defence Magnet Chain

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IonicRE Rare Earth Oxide Supply to AML Advances US Defence Magnet Chain
Ionic Rare Earth

IonicRE rare earth oxide supply to Advanced Magnet Lab marks a small but strategic step in building a non-China supply route for defence-grade permanent magnets. The Australian rare earths miner, refiner and recycler has started shipping high-purity rare earth oxides from its Belfast recycling facility to the US magnet producer.

IonicRE rare earth oxide supply currently involves kilogram-scale volumes of neodymium, praseodymium and dysprosium oxides. The material has 99.5-99.9% purity and will be used by AML to produce high-grade sintered neodymium-iron-boron magnets for US defence customers.

IonicRE rare earth oxide supply is important because magnet qualification starts with small, tightly controlled shipments. These early volumes help validate chemistry, process compatibility and performance before larger commercial deliveries begin.

The companies are already discussing a second sale of neodymium and dysprosium. They have also signed a non-binding memorandum of understanding for longer-term cooperation, with future commercial volumes likely to reach tonnes in 2027.

Belfast Recycling Turns Magnet Scrap Into Strategic Feedstock

IonicRE’s Belfast facility currently has 10 t/yr of rare earth recycling capacity. While modest, it gives western magnet producers a practical source of recycled rare earth oxides from end-of-life and industrial magnet scrap.

The supply chain includes used NdFeB magnet feedstock from German manufacturer Vacuumschmelze and scrap handler European Metal Recycling. IonicRE also has offtake relationships with automotive companies including Ford, Bentley and Wrightbus.

This structure matters because rare earth recycling can shorten supply chains and improve traceability. It also reduces dependence on newly mined material at a time when rare earth separation and magnet production remain highly concentrated in China.

The company’s planned additional Belfast facility received £12mn from the UK government in January. That plant is expected to produce 400 t/yr of light rare earths neodymium-praseodymium, as well as heavy rare earths dysprosium and terbium, by the first half of 2028.

Dysprosium is particularly important for defence magnets because it helps maintain magnetic performance under heat and stress. That makes recycled heavy rare earth recovery strategically valuable, even at relatively small volumes.

AML Link Connects Recycling to Defence Magnet Production

AML will use IonicRE’s oxides to produce high-grade sintered NdFeB magnets for defence applications. This connects recycled rare earth feedstock directly to one of the most sensitive parts of the US critical minerals supply chain.

The US is trying to secure rare earth permanent magnet supply outside China after Beijing imposed export controls on rare earth permanent magnets in April 2025. China controls about 90% of the supply chain, leaving US defence and industrial users exposed to licensing risk.

IonicRE brings a wider rare earth platform to the partnership. The company owns 60% of Uganda’s Makuutu rare earth project, holds a 50% stake in a Brazilian rare earth refining joint venture with Viridis, and has signed an MoU with US Strategic Metals for a Missouri recycling facility.

That portfolio gives IonicRE several possible feedstock and processing routes. But the AML shipment is important because it moves from strategy into physical supply.

The key challenge now is scale. Kilogram shipments can support qualification, but defence and industrial magnet markets will need repeatable tonne-scale supply, consistent purity and reliable delivery.

If IonicRE and AML can move from pilot volumes to commercial supply, the partnership could become a useful building block in the US rare earth magnet chain. It would also show how recycling can complement mining and refining in reducing China exposure.

The Metalnomist Commentary

This shipment is small in volume but large in strategic meaning. Non-China rare earth supply chains will be built through qualification steps like this, where recycled oxides prove they can become defence-grade magnets.

ReElement Posco Magnet Production JV Targets Integrated US Rare Earth Supply Chain

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ReElement Posco Magnet Production JV Targets Integrated US Rare Earth Supply Chain
ReElement, Posco

ReElement Posco magnet production plans will create a new US-based platform for rare earth separation, metallization and permanent magnet manufacturing. ReElement Technologies has formed a joint venture with South Korea’s Posco International to develop integrated rare earth and magnet capacity in the US.

ReElement Posco magnet production is strategically important because the US still lacks a complete domestic supply chain for rare earth magnets. Mining and separation alone are not enough. The country needs oxide refining, metal production, alloying and finished magnet manufacturing.

ReElement Posco magnet production will be backed by a planned $200mn investment. The partners are still finalising site selection, while ownership details have not been disclosed.

The joint venture aims to produce around 3,000 t/yr of separated rare earth oxides by 2028. Capacity is expected to expand to 6,000 t/yr by 2030.

Separation and Metallization Fill Key US Supply Gaps

The joint venture will develop feedstock sourcing, light and heavy rare earth metallization and permanent magnet manufacturing. This gives the project a wider scope than a conventional refining facility.

Separated rare earth oxides are an important step, but magnet supply chains require further conversion. Oxides must be turned into metals, then alloys, then finished magnets before they can serve automotive, defence, industrial and electronics customers.

Metallization remains one of the biggest bottlenecks outside China. Without it, separated oxides cannot easily become usable magnet inputs.

ReElement will contribute its separation and refining technologies to the joint venture. This gives the project a technology platform for producing refined rare earth products in the US.

The inclusion of both light and heavy rare earth metallization is also important. Heavy rare earths such as dysprosium and terbium are critical for high-performance magnets that must withstand heat and stress.

Posco Adds Automotive and Industrial Market Access

Posco International brings strong relationships in automotive and industrial markets. That customer access is important because rare earth projects need demand visibility, qualification pathways and long-term commercial outlets.

The partnership also adds South Korean industrial depth to the US rare earth strategy. South Korea is a major manufacturing economy with strong positions in automotive, batteries, steel, electronics and industrial materials.

For US magnet supply chains, the JV could help connect rare earth processing with downstream users that need qualified, reliable and non-China material. That is increasingly important as manufacturers seek supply security around electric motors, robotics, defence systems and industrial automation.

The 2028 and 2030 capacity targets show a staged approach. The first phase would establish oxide separation, while later expansion could support deeper integration into metal and magnet production.

Execution will be the key test. The project must secure feedstock, complete site selection, scale technology, qualify products and build customer confidence.

If successful, the ReElement-Posco venture could become a meaningful building block in the US effort to create a complete rare earth magnet supply chain.

The Metalnomist Commentary

The ReElement-Posco JV shows that rare earth strategy is moving from isolated projects toward integrated industrial partnerships. The decisive advantage will come from connecting feedstock, separation, metallization, magnets and qualified customers in one supply chain.

REalloys Tanbreez Rare Earth Offtake Strengthens Heavy Rare Earth Supply Route

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REalloys Tanbreez Rare Earth Offtake Strengthens Heavy Rare Earth Supply Route
REalloys

REalloys Tanbreez rare earth offtake has moved into a binding 15-year agreement, giving the US rare earth producer long-term access to concentrate from Critical Metals’ Phase 1 Tanbreez project in southern Greenland. The deal replaces a previous letter of intent and strengthens REalloys’ feedstock position for heavy rare earth metals and alloys.

REalloys Tanbreez rare earth offtake covers 15% of monthly production from the project. Phase 1 Tanbreez is expected to produce up to 15,000 t/yr of rare earth concentrate once operations begin.

REalloys Tanbreez rare earth offtake is strategically important because Tanbreez is one of the world’s largest known heavy rare earth element deposits. The project contains significant quantities of dysprosium and terbium, two of the most critical inputs for high-performance permanent magnets.

Pricing will be based on a market-referenced formula with floor-price protection on specified payment elements, subject to finalisation. That structure gives both sides exposure to market value while adding downside protection for selected materials.

Tanbreez Feedstock Supports Heavy Rare Earth Security

Tanbreez gives REalloys a potential long-term concentrate source outside China. That matters because heavy rare earth supply remains one of the most constrained parts of the magnet value chain.

Dysprosium and terbium are especially important because they help permanent magnets maintain performance at high temperatures. These materials are used in electric vehicles, wind turbines, robotics, defence systems, aerospace platforms and advanced industrial motors.

Critical Metals owns 92.5% of the Tanbreez project. The binding offtake agreement gives the project a stronger commercial link to downstream processing and metal production.

The agreement also shows how rare earth buyers are moving earlier into project supply. Securing concentrate before production begins can reduce future feedstock risk and support project financing logic.

However, Tanbreez still needs to move from resource potential to operating supply. The company has not indicated when production will begin, so the timing of actual concentrate deliveries remains a key uncertainty.

REalloys Builds Processing Platform Across Allied Markets

REalloys is positioning itself as a processor and producer of rare earth metals and alloys, not only a project developer. The company aims to begin commercial-scale production of dysprosium, terbium and neodymium metals and alloys in January 2027.

That target is important because rare earth oxides and concentrates must be converted into metals and alloys before they can fully support magnet manufacturing. Metallisation remains a major bottleneck in non-China rare earth supply chains.

REalloys also owns the Hoidas Lake project in Saskatchewan, Canada, and partners with the Saskatchewan Research Council on rare earth separation and processing. These links give the company a North American processing base.

The company also has collaborations in the US, Brazil and Kazakhstan. This broader network suggests REalloys is trying to build diversified feedstock and processing routes rather than relying on a single source.

For western magnet supply chains, that approach is necessary. Heavy rare earth security depends on multiple connected stages: mining, concentration, separation, metal-making, alloying and magnet production.

The Tanbreez agreement therefore adds another piece to the non-China rare earth puzzle. Its value will depend on whether Greenland concentrate can be delivered, separated and converted into qualified metal products at commercial scale.

The Metalnomist Commentary

This agreement shows that heavy rare earth strategy is moving from resource headlines toward long-term feedstock control. REalloys’ challenge is to turn Tanbreez concentrate into qualified dysprosium, terbium and neodymium products before supply-chain pressure intensifies further.

Heraeus Remloy Magnet Recycling Sale Strengthens Mkango’s European Rare Earth Platform

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Heraeus Remloy Magnet Recycling Sale Strengthens Mkango’s European Rare Earth Platform
Heraeus

Heraeus Remloy magnet recycling is set to move under Mkango Resources after Germany-headquartered Heraeus agreed to sell its rare earth magnet recycling unit to the Canadian company. The deal gives Mkango direct access to a German platform for producing neodymium-iron-boron alloy powders.

Heraeus Remloy magnet recycling is strategically important because NdFeB powders can be used by customers to manufacture new permanent magnets. These magnets are critical for electric motors, wind turbines, robotics, electronics, defence systems and advanced industrial equipment.

Heraeus Remloy magnet recycling operates from Bitterfeld in Saxony-Anhalt. The facility can produce 600 t/yr of rare earth magnetic powders, with potential to ramp up to 1,200 t/yr.

The transaction is expected to close in summer 2026, subject to regulatory approvals. Financial details were not disclosed.

Bitterfeld Facility Adds NdFeB Powder Capacity

Heraeus Remloy was developed as an in-house startup within Heraeus. Its focus on NdFeB alloy powders places it in a valuable part of the magnet recycling chain.

This matters because recycling rare earth magnets is not only about collecting scrap. The material must be processed into usable feedstock that magnet makers can qualify and reuse.

The Bitterfeld plant gives Mkango an operational base in Germany, one of Europe’s core advanced manufacturing markets. That location could support customers seeking regional rare earth magnet materials with stronger supply-chain traceability.

The facility’s 600 t/yr current capacity is modest in global terms, but meaningful for Europe’s early-stage magnet recycling industry. The option to ramp up to 1,200 t/yr adds future flexibility if demand strengthens.

For Mkango, the acquisition can deepen its downstream rare earth position. Instead of focusing only on mining or separation, the company gains a route into recycled magnet powder production.

Europe’s Magnet Recycling Chain Gains Strategic Relevance

The deal comes as Europe tries to reduce dependence on China-dominated rare earth and magnet supply chains. Recycling is becoming one of the fastest practical routes to add regional material availability.

NdFeB magnets contain neodymium and praseodymium, and some high-performance applications also use dysprosium or terbium. Recovering these materials from magnet scrap can reduce pressure on primary supply and improve circularity.

Permanent magnet recycling also supports European industrial policy. Automotive, wind power, automation and defence manufacturers increasingly need secure, traceable and lower-risk sources of magnet materials.

However, recycled powders still need customer qualification. Magnet producers require consistent chemistry, particle characteristics and performance before they can use recycled feedstock at scale.

Mkango’s challenge will be to turn the Bitterfeld asset into a reliable commercial platform. If it can expand production and secure customers, the acquisition could strengthen Europe’s rare earth recycling ecosystem.

The Metalnomist Commentary

Mkango’s purchase of Heraeus Remloy shows that rare earth recycling is moving from concept to industrial asset consolidation. Europe’s magnet security will depend on practical facilities like Bitterfeld that can convert scrap into qualified, reusable magnetic materials.

IonicRE Rare Earth Recycling Deal Targets Ex-China Magnet Supply Gap

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IonicRE Rare Earth Recycling Deal Targets Ex-China Magnet Supply Gap
Ionic rare earths

IonicRE rare earth recycling plans have gained a technology boost after the Australian rare earths miner, refiner and recycler signed a licensing agreement with US refiner Nth Cycle. The deal gives Ionic Rare Earths access to electro-extraction technology for its US and global recycling operations.

IonicRE rare earth recycling will focus on recovering rare earth oxides from neodymium-iron-boron permanent magnet dust. These oxides can then be reused in the production of new rare earth magnets.

IonicRE rare earth recycling is strategically important because magnet supply chains outside China remain weak in midstream processing and recycling. The agreement helps address that gap by adding technology that can convert magnet waste into reusable rare earth oxide products.

Nth Cycle’s technology can break down NdFeB magnet dust into rare earth oxides. This supports circular supply chains for materials used in electric vehicles, wind turbines, robotics, defence systems and advanced electronics.

NdFeB Magnet Dust Becomes a Strategic Feedstock

NdFeB magnet recycling is becoming more important as demand for rare earth permanent magnets grows. Magnet production generates upstream and downstream dust, and that material contains valuable neodymium, praseodymium and heavy rare earth elements.

IonicRE already has proprietary technology for recycling REPM metal dust. Nth Cycle’s electro-extraction process adds another capability and fills a specific midstream gap in the ex-China recycling chain.

The technology could be used at IonicRE’s Belfast recycling facility in Northern Ireland. It may also support the company’s 50:50 joint venture with Viridis at a planned recycling facility in Brazil.

The US is another important target. IonicRE already supplies technology to US Strategic Metals’ Missouri recycling facility, which is expected to recover neodymium-praseodymium oxide and heavy rare earths including dysprosium, terbium, samarium, gadolinium and holmium.

This matters because recycling can reduce dependence on mined supply and improve traceability. It can also create shorter, more secure material loops for magnet makers and industrial users.

Recycling Adds Depth to Ex-China Rare Earth Supply

IonicRE remains a small player in the global rare earth chain, but its strategy connects mining, refining and recycling. The company owns 60% of the Makuutu rare earth project in Uganda, which contains 617mn t of ore grading 630ppm total rare earth oxide.

The recycling technology agreement adds another route to supply. Rather than relying only on new mined material, IonicRE can target waste streams from magnet production and end-use supply chains.

This is important because China still dominates rare earth refining. China accounted for 91% of global rare earth refining in 2024, leaving western and allied supply chains exposed to processing concentration.

Recycling will not replace primary rare earth mining. But it can provide incremental supply, improve resilience and help build processing expertise outside China.

The real value lies in integration. Recovered rare earth oxides must be refined, qualified, converted into metals or alloys, and returned to magnet production.

IonicRE’s agreement with Nth Cycle therefore supports a wider strategic goal. It helps build the technical infrastructure needed for a circular rare earth magnet supply chain outside China.

The Metalnomist Commentary

IonicRE’s licensing deal shows that rare earth recycling is moving from sustainability language into supply-chain strategy. The key opportunity is not only recovering magnet waste, but turning it into qualified oxide feedstock that can support non-China magnet production.

Australia Northern Minerals Share Sale Order Tightens Control Over Browns Range

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Australia Northern Minerals Share Sale Order Tightens Control Over Browns Range
Jim Chalmers

Australia Northern Minerals share sale order has renewed scrutiny over foreign ownership of one of the few dysprosium, terbium and yttrium-rich rare earth projects outside China. Australian treasurer Jim Chalmers has ordered five companies and one individual to sell 1.68bn shares in Northern Minerals by 2 July.

Australia Northern Minerals share sale involves 17.6% of the company’s equity, valued at about A$37mn at the latest share price. Most of the parties affected by the order are registered in China or Hong Kong.

Australia Northern Minerals share sale matters because Northern Minerals is developing the Browns Range rare earths mine and concentration plant in Western Australia. The project is expected to produce 5,000 t/yr and is one of the most strategically important heavy rare earth assets in the western supply chain.

The order follows a similar disposal action in 2024, also based on national security concerns. This makes the case more than a shareholder dispute; it is part of Australia’s broader effort to protect critical minerals assets from strategic control risk.

Browns Range Holds Strategic Heavy Rare Earth Value

Browns Range is important because it is rich in dysprosium, terbium and yttrium. These materials are difficult to source outside China and are critical to high-performance permanent magnets.

Dysprosium and terbium help magnets retain performance at high temperatures. That makes them essential for electric vehicles, wind turbines, industrial motors, defence systems, aerospace platforms and advanced electronics.

Northern Minerals is targeting a final investment decision by 30 September. Production is expected to begin in late 2028 to early 2029.

That timeline matters because western manufacturers are trying to build rare earth magnet supply chains before Chinese export controls tighten further. A project like Browns Range could help reduce dependence on China’s heavy rare earth dominance.

But ownership and governance are now central issues. The Australian government clearly wants strategic rare earth assets to remain aligned with national security and allied supply-chain objectives.

The dispute has already involved voting freezes, court proceedings and penalties linked to non-compliance with earlier disposal orders. That shows how sensitive rare earth project control has become.

Allied Funding Raises the Project’s Geopolitical Weight

Browns Range was included in the US-Australian critical minerals joint investment agreement last October. That makes the project part of a wider allied strategy to build resilient rare earth supply chains.

Joint funding of up to $230mn from the US Export-Import Bank and Export Finance Australia was pledged to support the project. This signals that Browns Range is being treated as a strategic supply asset, not only a commercial mine.

The funding also reflects a broader policy shift. Western governments are increasingly using finance, ownership oversight and foreign investment review to shape who controls critical mineral assets.

For Australia, the renewed share sale order reinforces its role as a critical minerals gatekeeper. The country wants foreign investment, but it is drawing a clearer line around assets tied to defence, clean energy and advanced manufacturing.

For rare earth buyers, the decision may improve confidence that Browns Range will remain aligned with western supply-chain security goals. But the legal and shareholder disputes also show that development risk remains high.

The wider market signal is clear. Heavy rare earth projects outside China are becoming too important to leave ownership structure to market forces alone.

The Metalnomist Commentary

The renewed Northern Minerals order shows that heavy rare earths have moved firmly into national security territory. Browns Range is valuable not only because of its geology, but because it could anchor non-China dysprosium and terbium supply for magnets, defence and electrification.

USA Rare Earth Serra Verde Deal Faces Brazil Antitrust Review

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USA Rare Earth Serra Verde Deal Faces Brazil Antitrust Review
USA Rare Earth

USA Rare Earth Serra Verde deal is under review after Brazil’s antitrust watchdog Cade opened an investigation into the planned $2.8bn acquisition. The move adds regulatory scrutiny to one of the most strategically important rare earth transactions outside China.

USA Rare Earth Serra Verde deal is central to USAR’s mine-to-magnet integration strategy. Serra Verde owns Brazil’s only operating rare earth mine, making the asset important for non-China rare earth supply.

USA Rare Earth Serra Verde deal also carries industrial policy significance because it is linked to a 15-year offtake agreement supported by US government-funded entities. That agreement includes price floors for neodymium, praseodymium, dysprosium and terbium.

Cade said opening the investigation does not mean there are competition concerns. The regulator may close the case, clear the transaction or open a formal administrative process after its review.

Serra Verde’s Operating Status Raises Strategic Value

Serra Verde’s importance comes from its position as Brazil’s only operating rare earth mine. That gives the transaction more weight than a conventional mining acquisition.

The mine produces rare earth materials that can support magnet supply chains. These materials are critical for electric vehicles, wind turbines, robotics, defence systems, electronics and advanced manufacturing.

USAR’s acquisition strategy aims to build an integrated rare earth platform from mine supply through processing and magnets. That approach reflects the broader western effort to reduce dependence on China’s dominant rare earth value chain.

The offtake agreement adds commercial support. Price floors for neodymium, praseodymium, dysprosium and terbium can improve project economics and help protect supply from price volatility.

Those price floors are especially important for heavy rare earths. Dysprosium and terbium are required for high-performance magnets that must operate under heat and stress.

For Brazil, the deal raises a strategic question. The country wants to attract critical minerals investment, but it also wants to preserve national value from rare earth resources.

Cade Review Tests Competition and Resource Sovereignty

Cade is examining whether the transaction poses market concentration risk. The regulator is also assessing whether formal notification is mandatory and whether the deal requires a deeper competitive impact review.

This does not automatically threaten the transaction. But it shows that rare earth deals are now being viewed through competition, supply security and strategic resource lenses.

The review also comes as Brazil is trying to build a stronger domestic critical minerals policy. Rare earths are no longer treated only as mine output. They are increasingly linked to industrialisation, processing, export strategy and geopolitical alignment.

USAR’s structure may attract attention because the deal connects a Brazilian operating mine with US-backed offtake and a broader American supply-chain strategy. That could raise questions over market access, pricing influence and long-term control of strategic material flows.

For global rare earth buyers, the review is important because Serra Verde is one of the few operating alternatives to China-linked supply. Any delay could affect the pace of non-China magnet material diversification.

The case also shows that western rare earth supply chains still face regulatory complexity. Even when capital, offtake and strategic demand are aligned, national regulators can still shape the final route to market.

The Metalnomist Commentary

Cade’s review shows that rare earth assets are becoming too strategic to change hands without scrutiny. Brazil will need to balance foreign-backed supply-chain investment with its own ambition to capture more value from critical minerals.


MP Materials NdPr Production Rises as US Magnet Supply Chain Expands

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MP Materials NdPr Production Rises as US Magnet Supply Chain Expands
MP Materials

MP Materials NdPr production rose sharply in the first quarter as the US rare earth producer increased output of the key magnet feedstock used in electric vehicles, wind turbines, robotics, defence systems and advanced manufacturing.

MP Materials NdPr production reached 917t of neodymium-praseodymium oxide in January-March, up 63% from a year earlier. The company also sold 1,006t of NdPr oxides during the quarter, including initial shipments to its newest US customer.

MP Materials NdPr production is strategically important because NdPr oxide remains the most important input for rare earth permanent magnet production. The company believes NdPr access will remain the main constraint on economically viable magnet production outside China for at least the next five years.

The company produced just under 13,000t of rare earth oxides in the first quarter. Its loss narrowed to $8mn on revenue of $91mn, compared with a loss of $23mn on revenue of $61mn a year earlier.

NdPr Price Floor Supports US Supply Chain Economics

MP expects its realised NdPr price in the second quarter to be in the low-to-mid $90/kg range. However, its public-private partnership with the US Department of Defense provides a $110/kg price floor.

That structure is commercially important. If MP sells below the floor, the partnership offsets the difference between the realised price and $110/kg.

The price floor gives MP stronger revenue visibility while it expands downstream rare earth capacity. It also shows how the US government is using market-support tools to build domestic supply chains for strategic materials.

This is critical because rare earth magnet supply outside China still faces weak economics, limited scale and high qualification barriers. A price floor can help bridge the gap between strategic supply security and market pricing.

MP is also advancing its magnet business. The company expects initial magnet revenue in the second half of 2026 as it develops new magnet grades and customer specifications.

The magnet strategy includes improved chemistry and materially lower heavy rare earth content. This matters because dysprosium and terbium are expensive, supply-constrained and heavily exposed to Chinese processing dominance.

If MP can reduce heavy rare earth intensity while maintaining magnet performance, it could improve cost competitiveness and reduce supply-chain risk.

Heavy Rare Earth Separation Adds Strategic Optionality

MP is commissioning its heavy rare earth separation circuit before July and expects to produce dysprosium and terbium later this year. It also plans to produce high-purity samarium oxide, with potential gadolinium oxide and other heavy rare earth products depending on market attractiveness.

The company’s position on heavy rare earths is selective. MP does not want upstream project ownership in heavy rare earths and is instead focused on diversifying its feedstock supply chain.

That strategy reflects a practical view of the rare earth market. Heavy rare earths are strategically important, but MP sees NdPr oxide as the binding constraint for non-China magnet production.

MP expects dysprosium and terbium prices to decline substantially because it believes they are secondary to the larger NdPr bottleneck. This view suggests that the company sees heavy rare earth scarcity as important, but not as decisive as securing sufficient NdPr oxide.

Midstream metalization remains another challenge. MP currently uses toll processors and is discussing options with domestic and international partners.

The company expects to continue using toll processing while exploring low-cost metalization routes globally. This shows that the US rare earth chain still has gaps between oxide production, metal conversion, alloying and final magnet manufacturing.

For the wider market, MP’s first-quarter performance is an important signal. The US is gradually moving from rare earth mining and oxide output toward a more integrated magnet supply chain, but every step requires qualification, processing capacity, customer acceptance and policy support.

The Metalnomist Commentary

MP’s stronger NdPr output shows that the US rare earth strategy is moving from resource ownership toward usable magnet feedstock. The price floor is the key industrial signal: Washington is now willing to support market economics where strategic supply chains cannot yet compete with China on price alone.

Energy Fuels Madagascar Rare Earths Project Faces Delay After Government Change

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Energy Fuels Madagascar Rare Earths Project Faces Delay After Government Change
Energy Fuels

Energy Fuels Madagascar rare earths project is likely to face a delay after a change in government slowed negotiations for a stability agreement. The US rare earths producer said progress on the Vera Mada project in Madagascar has been held back by the administrative transition.

Energy Fuels Madagascar rare earths project had been moving toward an investment agreement before the government change in September-October last year. Chief executive Ross Bhappu said the company had been close to signing the agreement before the process slowed.

Energy Fuels Madagascar rare earths project remains strategically important because Vera Mada is expected to produce monazite, a key rare earth-bearing mineral used to feed separation and downstream processing. The company initially planned to reach a financial investment decision tied to development and commissioning by the end of 2029.

The first phase of Vera Mada is planned with capacity to produce 20,000 t/yr of monazite. Any delay could affect Energy Fuels’ timeline for building a larger rare earth feedstock platform outside China.

Vera Mada and Donald Show Feedstock Complexity

The Vera Mada delay highlights how rare earth projects depend on more than geology. Government agreements, legal stability, fiscal terms and political continuity can all determine whether a project reaches investment decision.

A stability agreement is especially important in emerging mining jurisdictions. It can provide investors with clearer expectations around taxes, permitting, operating rules and long-term project protections.

Energy Fuels is also facing delays at the Donald project in Australia. The project is a joint venture with Astron and is designed to produce 14,000 t/yr of monazite.

Donald has been slowed by the need to finalise offtake agreements for more than four heavy mineral concentrates. Energy Fuels must also coordinate those agreements with financing parties and its joint venture partner.

That process is commercially complex because monazite projects often produce several mineral streams. Each product can require separate customers, pricing structures, logistics arrangements and financing approval.

These delays show the challenge of building rare earth supply chains outside China. Upstream projects must secure feedstock, offtake, financing, regulatory approval and processing routes before they can become meaningful industrial supply.

Terbium, Dysprosium and Yttrium Lift Strategic Value

Energy Fuels is still gaining market attention from its downstream rare earth progress. The company said it received substantial offtaker interest after producing its first terbium.

The company is currently producing about 1kg of terbium each week. It plans to add dysprosium production and other heavy rare earths such as samarium, europium, gadolinium and possibly yttrium, depending on market conditions.

This matters because terbium and dysprosium are critical inputs for high-performance permanent magnets. These magnets are used in electric vehicles, wind turbines, robotics, defence systems and advanced industrial equipment.

Yttrium is also gaining strategic attention. Energy Fuels said demand and requests for yttrium from the aerospace industry are extremely strong.

The company’s first-quarter financial performance also improved. Its loss narrowed to $11mn on revenue of $36mn, compared with a $26mn loss on revenue of $17mn a year earlier.

Energy Fuels is therefore advancing on two fronts. It is building heavy rare earth separation capability, while trying to secure long-term monazite feedstock from Madagascar and Australia.

The near-term risk is timing. If Vera Mada and Donald continue to slip, Energy Fuels may need to rely more heavily on existing and alternative feedstock sources to support its rare earth growth strategy.

The Metalnomist Commentary

Energy Fuels’ challenge shows that rare earth supply chains are constrained by project execution as much as processing technology. Terbium, dysprosium and yttrium demand is strong, but feedstock security will decide how quickly non-China supply can scale.

Heavy Rare Earth Supply Push Gains US Defense Backing Through REalloys

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Heavy Rare Earth Supply Push Gains US Defense Backing Through REalloys
REalloys

Heavy rare earth supply has moved further into the US defense priority list after REalloys received a memorandum from the Department of Defense highlighting the need to secure domestic production of critical heavy rare earth elements. The document specifically identified dysprosium and terbium as the most critical and high-value materials.

The signal is important because heavy rare earth supply remains one of the weakest points in western permanent magnet value chains. Dysprosium and terbium are essential for high-performance magnets that must operate under heat, stress and demanding defense conditions.

REalloys said the Department of Defense is treating heavy rare earths as a national security priority. The company also said Washington is renewing support through financial investment, strategic policy and public-private partnerships.

The company is now expanding its North American metallisation platform to produce defense-grade dysprosium and terbium at commercial scale. That step targets one of the most important bottlenecks between rare earth separation and magnet manufacturing.

Dysprosium and Terbium Become Defense-Critical Materials

Dysprosium and terbium are not large-volume rare earths, but their industrial importance is high. They help improve the thermal stability and performance of neodymium-iron-boron magnets used in advanced motors, actuators, sensors and defense systems.

This makes them strategically different from ordinary raw materials. Even small shortages can affect high-value manufacturing programmes if qualified metal, alloy or magnet feedstock is unavailable.

The US defense focus reflects a wider shift in rare earth policy. Governments are no longer concerned only with mining rare earth ore. They are increasingly focused on separated oxides, metals, alloys and magnet-ready materials.

That is where heavy rare earth supply becomes difficult. China remains dominant across heavy rare earth processing and magnet material production, leaving western defense and industrial users exposed to export controls and licensing risk.

REalloys’ focus on defense-grade dysprosium and terbium is therefore strategically relevant. It addresses the material form that downstream manufacturers need, not only the upstream resource question.

Metallisation Capacity Is the Midstream Bottleneck

REalloys is expanding its North American metallisation platform with support from a long-term offtake agreement with the Saskatchewan Research Council facility in Canada. The agreement can provide feedstock sufficient to produce up to 530 t/yr of rare earth metals.

This feedstock link is important because rare earth metal production requires reliable separated material, technical process control and customer qualification. Without metallisation, separated rare earth oxides cannot fully support magnet and defense supply chains.

The North American rare earth supply chain still has several missing links. Mining and separation projects are advancing, but metal-making, alloy production and magnet manufacturing capacity remain limited.

REalloys’ platform could help close part of that gap. Producing dysprosium and terbium metal at commercial scale would give defense and magnet customers a more secure regional source of high-value heavy rare earth inputs.

The larger implication is clear. Western rare earth resilience will depend on building each stage of the chain, from feedstock to separated oxides, metals, alloys and final magnets.

The Metalnomist Commentary

The REalloys announcement shows that heavy rare earth strategy is moving beyond resource ownership into usable metal production. For defense supply chains, dysprosium and terbium security will depend on metallisation capacity, not only rare earth mining.

CREG Rare Earth Separating Plant Strengthens China’s Downstream Processing Base

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CREG Rare Earth Separating Plant Strengthens China’s Downstream Processing Base
China Rare Earth Group

CREG rare earth separating plant plans in Guangdong show that China is still expanding control over the most important midstream stage of the rare earth value chain. China Rare Earth Group will build a new rare earth separating production line in Conghua district of Guangzhou through its wholly owned subsidiary Guangzhou Jianfeng.

The CREG rare earth separating plant will require investment of 216mn yuan and is designed for 3,000 t/yr of rare earth separation capacity. The first phase will have 350 t/yr of capacity and will focus on high-end customised rare earth products.

The CREG rare earth separating plant matters because separation remains one of the most strategic bottlenecks in rare earth supply chains. Mining alone does not create usable industrial material. Rare earth ores and concentrates must be separated, purified and converted into products that can feed magnets, phosphors, catalysts, electronics and defence applications.

Guangzhou Jianfeng plans to relocate because its old site has limited quality improvement and sustainable development. The new Conghua facility is intended to support rare earth deep-processing products and new materials manufacturing.

Guangdong Project Targets Higher-Value Rare Earth Products

The Guangdong project is not simply a volume expansion. Its first phase will focus on customised high-end products, indicating that CREG wants stronger capability in specialised rare earth materials rather than only bulk separation.

This is important because rare earth demand is becoming more application-specific. Magnet makers, electronics producers, optical materials suppliers and defence manufacturers require tighter purity, consistency and product tailoring.

The move also supports China’s strategy of keeping more value inside its rare earth chain. China already dominates mining quotas, separation, metal-making and magnet production. Additional customised separation capacity strengthens that downstream control.

Guangzhou Jianfeng has not disclosed the launch date for the first phase or the full construction and start-up timeline. However, the decision to build the plant shows continued capital allocation into rare earth processing despite global efforts to diversify supply away from China.

The location in Guangdong is also relevant. Guangdong is a major manufacturing province with strong links to electronics, advanced materials and export-oriented industrial supply chains. A new separation and deep-processing platform there could improve service to high-specification customers.

High-Purity Separation Reinforces CREG’s Strategic Role

CREG’s wider separation platform is also expanding through other subsidiaries. Yongzhou Rare Earth in Hunan has already put a 5,000 t/yr rare earth separating project into operation.

The Yongzhou facility has achieved purities of 99.99-99.999% for several rare earth products, including europium, terbium, yttrium, thulium, ytterbium and lutetium. These high-purity materials are critical for advanced applications where ordinary commercial-grade products are not sufficient.

Heavy and specialty rare earths such as terbium, yttrium and lutetium are especially strategic. They support magnets, lasers, phosphors, ceramics, medical imaging, defence systems and other high-performance technologies.

CREG’s financial performance also improved. Revenue rose by 13% year on year to 820.74mn yuan in January-March, while profit increased by 91% to 138.55mn yuan.

The company also posted 2025 revenue of 3.18bn yuan, up 5.1% from the previous year. Net profit reached 172.57mn yuan, reversing a loss of 286.9mn yuan in 2024.

That recovery gives CREG more room to invest in downstream capacity. It also shows that China’s rare earth sector is moving from price volatility and consolidation toward higher-value processing and specialised product growth.

For global buyers, the message is clear. While the US, Europe, Japan and Australia are trying to build non-China rare earth supply chains, China is not standing still. It is expanding separation capacity, improving purity and deepening its manufacturing advantage.

The Metalnomist Commentary

CREG’s Guangdong project reinforces the real challenge in rare earth diversification: separation and customised processing remain the decisive bottlenecks. Western supply chains cannot compete with China by mining alone; they need high-purity, application-ready material at industrial scale.

Golden Dragon Magnet Output Expansion Strengthens Baotou NdFeB Capacity

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Golden Dragon Magnet Output Expansion Strengthens Baotou NdFeB Capacity
Golden Dragon, Rare Earths

Golden Dragon magnet output is set to expand as the Chinese rare earths and magnet producer prepares trial production at the second phase of its Baotou plant in Inner Mongolia. The new phase is scheduled to start trial operations in December.

Golden Dragon magnet output at the second phase will add 5,000 t/yr of high-performance neodymium-iron-boron magnetic materials. The first phase began trial operations in September 2025 and is already running at full capacity of 5,000 t/yr.

Golden Dragon magnet output growth will lift the company’s Baotou high-performance NdFeB magnet capacity to 10,000 t/yr once the second phase is operating. The expansion reinforces Baotou’s role as a key rare earth magnet manufacturing hub in northern China.

The company also operates 15,000 t/yr of rough NdFeB magnet production capacity at its Changting facility in Longyan, Fujian province.

Baotou Expansion Adds High-Performance Magnet Capacity

The Baotou expansion strengthens Golden Dragon’s position in high-performance NdFeB magnets. These materials are critical for electric vehicles, wind turbines, energy-saving motors, robotics, consumer electronics and advanced industrial equipment.

High-performance NdFeB magnets require stable access to rare earth feedstocks such as neodymium and praseodymium. In higher-temperature applications, dysprosium and terbium can also be important to improve magnetic performance and durability.

Golden Dragon’s expansion is therefore not only a capacity addition. It reflects China’s effort to maintain scale and technical leadership in downstream rare earth applications.

The second phase also improves Golden Dragon’s ability to serve customers that require more consistent magnet quality and larger supply volumes. This is particularly important in sectors such as EV motors and wind power, where qualification and long-term supply reliability matter.

As a wholly owned subsidiary of Xiamen Tungsten, Golden Dragon benefits from its parent company’s broader rare earth and metals platform. That connection supports feedstock access, downstream integration and customer development.

EVs, Wind Turbines and Electronics Support Demand

Golden Dragon has been expanding magnet production in response to rapid growth across key application sectors. Demand continues to rise from wind turbines, consumer electronics, energy-saving motors, home appliances and new energy vehicles.

The demand outlook is especially important for high-performance NdFeB magnets. EV traction motors and direct-drive wind turbines require powerful, compact and efficient magnetic materials.

Energy-saving motors and smart appliances are also increasing magnet consumption. As efficiency standards rise, manufacturers need stronger magnetic materials to improve performance and reduce energy use.

Xiamen Tungsten’s 2025 results show the strength of this broader materials platform. The company’s revenue rose by 30.79% on the year to 46.26bn yuan, while profit increased by 34.89% to 2.3bn yuan.

Revenue from Xiamen Tungsten’s rare earths sector rose by 10% to 6bn yuan in 2025. This reflects continued demand for rare earth materials and magnet-related products despite growing competition in the sector.

For China’s rare earth value chain, Golden Dragon’s Baotou expansion reinforces a strategic advantage. China remains dominant not only in rare earth separation, but also in downstream magnet manufacturing, where industrial scale and customer qualification are difficult to replicate quickly.

The Metalnomist Commentary

Golden Dragon’s Baotou expansion shows that China is still building strength at the most valuable end of the rare earth chain. The strategic issue for global buyers is not only rare earth supply, but access to qualified magnet capacity at industrial scale.

Huahong Rare Earth Output Rises as NdFeB Scrap Recycling Supports Magnet Demand

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Huahong Rare Earth Output Rises as NdFeB Scrap Recycling Supports Magnet Demand
Huahong Rare Earth

Huahong rare earth output increased sharply in 2025 as stronger demand from new energy vehicles, industrial automation and energy-saving motors lifted China’s rare earth recycling and magnet supply chain. Zhejiang Huahong Technology produced 8,794t of rare earth oxides during the year, up 71% from 2024.

Huahong rare earth output growth was also supported by tighter rare earth supply conditions in China. Stricter government controls on mining, processing and production capacity helped lift prices and encouraged stronger output from qualified oxide and magnet producers.

Huahong rare earth output is strategically important because the company recovers rare earth oxides from neodymium-iron-boron scrap. This recycling route gives China another feedstock source for magnet production at a time when primary supply, mining quotas and scrap availability remain sensitive.

Sales of rare earth oxides rose by 57% to 9,165t in 2025, while inventories increased by 7% to 359t. The figures show that downstream demand remained strong enough to absorb most of the company’s higher oxide output.


NdFeB Scrap Recycling Gains Value Under Tighter Rare Earth Supply

Huahong operates three production bases for NdFeB scrap recycling: Ji’an Xintai, Jishui Jincheng and Jiangxi Wanhong. Together, these sites have 12,000 t/yr of rare earth oxide capacity using neodymium-iron-boron scrap as feedstock.

This recycling capacity matters because magnet scrap is becoming a strategic rare earth resource. NdFeB magnets contain neodymium, praseodymium and, in higher-performance grades, heavy rare earths such as dysprosium and terbium.

Recovering these materials from scrap can reduce dependence on mined feedstock and improve supply efficiency. It also supports China’s circular rare earth strategy, especially as demand from electric vehicles, robotics and industrial motors rises.

Market participants said some oxide plants are facing shutdowns or output restrictions because their capacity exceeds government standards. Tighter mining quotas, limited spot availability and higher NdFeB scrap costs have also created pressure in the oxide market.

These conditions favour producers with approved capacity and secure scrap channels. Huahong’s stronger oxide output suggests that recycled feedstock is becoming more important in balancing China’s rare earth supply chain.

The company’s revenue rose by 41% to 7.83bn yuan in 2025, while profit increased by 157% to 204mn yuan. The profit growth shows how higher rare earth prices and stronger magnet demand improved margins across the business.


High-Performance Magnet Demand Drives Capacity Expansion

Huahong’s rare earth magnetic materials output rose by 27% to 15,791t in 2025. Sales increased by 19% to 14,035t, while inventories rose by 29% to 1,042t.

The growth reflects rising demand for high-performance magnets in new energy vehicles, industrial robots, automation systems and energy-saving motors. These sectors require magnets with stronger magnetic performance, thermal stability and reliability.

China produced 16.6mn new energy vehicles in 2025, up 29% from a year earlier. NEV sales rose by 28% to 16.5mn units, supporting demand for high-performance NdFeB magnets used in traction motors, pumps, sensors, braking systems and other vehicle components.

Huahong said high-performance NdFeB magnetic materials accounted for around 42% of China’s total magnet output last year. That share is likely to remain important as vehicles become more electrified, automated and motor-intensive.

Industrial robots also supported magnet demand. Global industrial robot output exceeded 600,000 units in 2025, with compound annual growth above 10%. Robotics growth increases demand for compact, efficient and high-torque motor systems.

Huahong plans to start trial operations at the first phase of its Baotou facility in May-June 2026. The first phase will add 10,000 t/yr of high-performance magnet capacity.

Once the first phase comes on line, Huahong’s total high-performance magnet capacity will reach 20,000 t/yr. This positions the company more deeply in the downstream magnet chain, not only in rare earth oxide recycling.

The expansion shows how China’s rare earth industry is moving toward integrated recycling, oxide production and magnet manufacturing. Companies with access to scrap feedstock and downstream magnet capacity may be better positioned as rare earth supply becomes more regulated.


The Metalnomist Commentary

Huahong’s growth shows that rare earth recycling is no longer a secondary supply story. As NEV and robotics demand rises, NdFeB scrap recovery is becoming a strategic feedstock route for China’s high-performance magnet industry.