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Vanadium Mining Market Size & Share, Industry Report, 2033GVR Report cover
Vanadium Mining Market (2025 - 2033) Size, Share & Trends Analysis Report, By End Use (Steel & Alloys, Energy Storage, Chemicals & Catalysts), By Region (North America, Europe, Asia Pacific, Latin America, MEA), And Segment Forecasts
- Report ID: GVR-4-68040-782-0
- Number of Report Pages: 115
- Format: PDF
- Historical Range: 2021 - 2023
- Forecast Period: 2025 - 2033
- Industry: Advanced Materials
- Report Summary
- Table of Contents
- Segmentation
- Methodology
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Vanadium Mining Market Summary
The global vanadium mining market size was estimated at USD 1.57 billion in 2024 and is projected to reach USD 1.78 billion by 2033, expanding at a CAGR of 3.8% from 2025 to 2033. Market growth is primarily driven by the increasing demand for critical minerals from the steel & alloys and energy storage sectors, supported by the global shift toward sustainable and low-emission metal extraction technologies.
Key Market Trends & Insights
- Asia Pacific dominated the vanadium mining market with a revenue share of 71.3% in 2024.
- The Asia Pacific vanadium mining industry is expected to grow at a substantial CAGR of 4.0% from 2025 to 2033.
- By end use, the steel & alloys segment held the largest revenue share of over 84.0% in 2024.
Market Size & Forecast
- 2024 Market Size: USD 1.57 Billion
- 2033 Projected Market Size: USD 1.78 Billion
- CAGR (2025-2033): 3.8%
- Asia Pacific: Largest market in 2024
Advancements in Vanadium Pentoxide and Ferrovanadium production processes, coupled with government initiatives to enhance mineral security and reduce import dependency, are further fostering the adoption of electrochemical processing technologies within the vanadium mining industry. Sustainability and responsible mining practices are becoming central to the expansion of the vanadium mining market. Companies and governments increasingly emphasize energy-efficient operations, ethical sourcing, and traceable supply chains to minimize carbon footprints and align with Environmental, Social, and Governance (ESG) standards. Integrating recycled and secondary materials through circular economy initiatives reduces reliance on virgin ores. It enhances resource efficiency, positioning electrochemical processing as a key enabler of sustainable metal production.The market growth is further propelled by technological advancements that improve process efficiency, lower operational costs, and enable metal recovery from complex ore streams and waste solutions. Supportive government policies and strategic initiatives to secure critical minerals and reduce import dependency stimulate adoption across major regions, including the Asia Pacific, Latin America. As global energy transitions accelerate and demand for vanadium and related critical minerals increases, electrochemical processing is emerging as a strategic, environmentally responsible, and commercially viable solution for the future of mining.
Drivers, Opportunities & Restraints
One of the primary drivers for the vanadium mining market growth is the rising demand for long-duration energy storage, particularly in vanadium redox flow batteries (VRFBs). For instance, Vecco Group in Australia recently secured USD 10 million in funding to develop the Julia Creek vanadium mine and establish a commercial-scale battery processing facility in Townsville to support the VRFB supply chain. The steel & alloys continue to be the largest consumer of vanadium, with infrastructure and construction investments in Asia and Africa driving consistent demand. In addition, companies such as Vanadium Resources (VR8) have entered into offtake agreements with Chinese producers to ensure stable market access for vanadium pentoxide (V₂O₅), supporting new project viability. Cost competitiveness also serves as a driver, with projects like Steelpoortdrift in South Africa designed to operate in the bottom quartile for both capital and operating costs, strengthening global supply capabilities.
The market presents several growth opportunities across the value chain integration, mergers, and recycling-based recovery segments. Combining upstream mining with downstream electrolyte and battery manufacturing is a significant opportunity. For example, Idemitsu Kosan increased its stake in Vecco Group to secure control over mining and vanadium electrolyte production for VRFBs. Strategic mergers, such as the combination of Australian Vanadium Limited and Technology Metals Australia, are creating large-scale projects in Western Australia capable of catering to steel and energy storage demand. Additionally, circular economy initiatives are emerging as strong opportunities-such as the Vanadium Recovery Project in Finland, which recovers vanadium from steel slags, reducing waste and carbon emissions compared to conventional mining. These integrated and sustainable approaches are expected to enhance profitability and resource efficiency significantly.
Despite strong growth prospects, the vanadium mining industry faces several restraints. High energy consumption and input costs remain significant challenges, as vanadium extraction and refining are energy-intensive processes. In South Africa, for example, Glencore’s ferrochrome and vanadium operations have been affected by rising electricity prices and power shortages, leading to cost pressures and workforce reductions. Stringent environmental regulations also pose obstacles, as projects must undergo extensive ecological impact assessments and community consultations before receiving permits, delaying developments like Richmond-Julia Creek in Australia. Furthermore, the global vanadium supply chain is highly concentrated, with a few countries dominating production and refining. This dependence increases vulnerability to geopolitical disruptions and trade restrictions, making supply security a continuing restraint on the industry’s growth.
End Use Insights & Trends
The steel & alloys continue to be the dominant segment in the global vanadium mining market, accounting for the majority of total consumption. Vanadium is a vital alloying element used to produce high-strength low-alloy (HSLA) steels, which offer superior strength-to-weight ratios and enhanced resistance to wear and corrosion. Demand is fueled by robust infrastructure development, construction, and automotive manufacturing growth, particularly in emerging economies such as China, India, and Brazil. With governments prioritizing large-scale infrastructure modernization and green building initiatives, vanadium-based steels are increasingly favored for reducing material intensity while improving durability. Furthermore, ongoing efforts by steel manufacturers to decarbonize production through vanadium micro-alloying and recycling steel slag reinforce the material’s strategic importance in sustainable metallurgy.
The energy storage segment represents the fastest-growing end use for vanadium, supported by the global transition toward renewable energy and grid stability solutions. Vanadium redox flow batteries (VRFBs) are gaining significant momentum due to their long lifecycle, deep discharge capacity, and scalability for large-scale energy storage projects. Countries like Australia and China invest heavily in vanadium-based battery facilities to complement solar and wind installations, creating a strong demand pipeline for vanadium pentoxide (V₂O₅). Beyond energy storage, vanadium catalysts, ceramic pigments, and chemical intermediates are expanding the market footprint under the other category, especially in industrial and environmental end uses. The combination of energy transition policies and diversification of industrial uses is expected to sustain strong demand across multiple non-steel sectors through 2033.
Technological advancements are transforming vanadium mining and processing, driving efficiency, cost competitiveness, and environmental performance. Electrochemical processing technologies, including electrodialysis, electrocoagulation, and electrowinning, are increasingly used for the selective recovery of vanadium from complex ores and waste streams, enabling higher yields and lower emissions than traditional roasting methods. Integrating automation, AI-based ore characterization, and real-time process control optimizes production and minimizes waste. Additionally, the emergence of circular economy models, such as recovering vanadium from spent catalysts and steel slags, supports sustainability targets and resource security. These technological innovations position the vanadium industry as a key enabler of cleaner, more efficient, and future-ready metal extraction and utilization.
Regional Insights
Asia Pacific continues to dominate the global vanadium mining market, fueled by rapid industrialization, energy transition demands, and strategic government investments. Countries like China, India, and South Korea are expanding vanadium extraction and refining capacities to secure domestic supplies for steel production, energy storage, and high-performance alloys. As the most significant global producer and consumer of vanadium, China is investing in green metallurgy, high-efficiency processing, and supply chain optimization to support industrial growth while adhering to environmental sustainability standards.
Europe Vanadium Mining Market Trends
The Europe vanadium mining industry is anticipated to grow over the forecast period. Europe is accelerating the development of vanadium mining and processing capabilities to support its clean energy transition and reduce reliance on imports. The European Union has launched strategic projects across multiple countries to enhance the extraction, refining, and recycling of vanadium and other critical metals. These initiatives aim to strengthen regional supply security, promote sustainable mining practices, and improve the competitiveness of Europe’s renewable energy, defense, and advanced manufacturing sectors.
Key Companies & Market Share Insights
Some of the key players operating in the market include Bushveld Minerals Limited, Largo Resources Ltd., Energy Fuels Inc., and Chemicals & Catalysts.
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Established in 2006, Bushveld Minerals Limited is a leading vanadium producer focused on mining and processing high-grade vanadium for steel and energy storage end uses. The company operates the Vametco and Vanchem processing facilities and is developing the Mokopane mine, supplying vanadium pentoxide and ferrovanadium to global steelmakers and battery manufacturers. Bushveld emphasizes sustainability, process efficiency, and strategic partnerships to ensure responsible extraction and long-term supply security.
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Largo Resources Ltd., founded in 2003, is a prominent vanadium producer with operations at the Maracás Menchen Mine, one of the world’s highest-grade vanadium deposits. The company produces vanadium pentoxide and ferrovanadium for steel, aerospace, and energy storage sectors. Largo prioritizes environmentally responsible mining, technological innovation, and secure supply chains to meet the growing global demand for critical minerals.
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Energy Fuels Inc., established in 2006, is a diversified mining company producing uranium, vanadium, and rare earth elements. Its vanadium operations in the western United States supply vanadium pentoxide and ferrovanadium to steel, chemical, and battery industries. Energy Fuels emphasizes sustainable mining practices, efficient electrochemical processing, and strategic partnerships to strengthen North American critical mineral supply chains.
Key Vanadium Mining Companies:
The following are the leading companies in the vanadium mining market. These companies collectively hold the largest market share and dictate industry trends.
- AMG Advanced Metallurgical Group N.V.
- Australian Vanadium Limited
- Bushveld Minerals Limited
- China Northern Rare Earth Group High-Tech Co., Ltd.
- CleanTech Vanadium Mining Corp.
- Energy Fuels Inc.
- Glencore plc
- Largo Resources Ltd.
- Nevada Vanadium Mining Corp.
- VanadiumCorp Resource Inc.
Recent Developments
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Bushveld Minerals Limited announced in April 2025 that it is being put into liquidation and will be delisted from the London Stock Exchange’s AIM market. The decision follows a significant decline in share price and reflects ongoing financial challenges despite previous corrective measures aimed at rationalizing assets and reducing costs.
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Largo Resources Ltd. reported in August 2025 that it produced 931 tonnes of vanadium pentoxide equivalent in July, a 9% increase from the previous month. This improvement follows the implementation of an operational turnaround plan, which has enhanced mine planning, equipment availability, and overall plant performance.
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Energy Fuels Inc. announced in August 2025 that it is advancing its research and development efforts to recover radium-226 (Ra-226) at its White Mesa Mill in Utah. The company plans to complete process development engineering by the end of 2025 and aims to establish a pilot facility for Ra-226 production. Commercial-scale production is anticipated in 2027-2028, contingent on securing offtake agreements and regulatory approvals.
Vanadium Mining Report Scope
Report Attribute
Details
Market size value in 2025
USD 1.32 billion
Revenue forecast in 2033
USD 1.78 billion
Growth rate
CAGR of 3.8% from 2025 to 2033
Base year for estimation
2024
Historical data
2021 - 2023
Forecast period
2025 - 2033
Quantitative units
Volume in kilotons, revenue in USD million/billion, and CAGR from 2025 to 2033
Report coverage
Revenue forecast, volume forecast, competitive landscape, growth factors, and trends
Segments covered
End use, region
Regional scope
Europe; Asia Pacific; Latin America; Middle East & Africa
Country scope
Germany; France; UK.; Italy; China; India; Japan; South Korea; Brazil; South Africa
Key companies profiled
AMG Advanced Metallurgical Group N.V.; Australian Vanadium Limited; Bushveld Minerals Limited; China Northern Rare Earth Group High-Tech Co., Ltd.; CleanTech Vanadium Mining Corp.; Energy Fuels Inc.; Glencore plc; Largo Resources Ltd.; Nevada Vanadium Mining Corp.; VanadiumCorp Resource Inc.
Market Definition
The vanadium mining market involves exploring, extracting, processing, and selling vanadium-bearing ores and concentrates. Vanadium is primarily obtained from minerals such as vanadinite, carnotite, and magnetite (with vanadium-bearing titanomagnetite) and secondary sources like oil residues and fly ash.
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Global Vanadium Mining Market Report Segmentation
This report forecasts the volume & revenue growth at the global, country, and regional levels and analyzes the latest trends in each sub-segment from 2021 to 2033. For this study, Grand View Research has segmented the global vanadium mining market report by end use and region:
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End Use Outlook (Volume, Kilotons; Revenue, USD Million, 2021 - 2033)
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Steel & Alloys
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Energy Storage
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Chemicals & Catalysts
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Regional Outlook (Volume, Kilotons; Revenue, USD Million, 2021 - 2033)
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Europe
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Germany
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France
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UK
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Italy
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Asia Pacific
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China
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India
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Japan
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South Korea
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Latin America
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Brazil
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Middle East & Africa
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South Africa
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Frequently Asked Questions About This Report
b. The global vanadium mining market size was estimated at USD 1.57 billion in 2024 and is expected to reach USD 1.32 billion in 2025.
b. The global vanadium mining market is expected to grow at a compound annual growth rate of 3.8% from 2025 to 2033, reaching USD 1.78 billion by 2033.
b. In 2024, the steel & alloys segment held the largest share, over 84.0% of vanadium mining revenue.
b. Some of the key vendors in the global vanadium mining market are AMG Advanced Metallurgical Group N.V., Australian Vanadium Limited, Bushveld Minerals Limited, China Northern Rare Earth Group High-Tech Co., Ltd., CleanTech Vanadium Mining Corp., Energy Fuels Inc., Glencore plc, Largo Resources Ltd., Nevada Vanadium Mining Corp., and VanadiumCorp Resource Inc.
b. The global vanadium mining market is driven by rising demand for high-strength steel in construction and automotive sectors, increasing adoption of vanadium redox flow batteries for energy storage, and government initiatives promoting domestic critical mineral production and sustainable extraction technologies.
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