Antimony — Structural brief
How the supply chain for this commodity is shaped: where it is mined, where it is processed, and which step is the bottleneck.
At a glance
- Largest producer
- China 36%
- USGS Mineral Commodity Summaries 2026
- Top 3 producers
- 85%
- share of world output
- Concentration (HHI)
- 2,582
- highly concentrated
- Producing countries
- 15
- 2 supply half
- Export measures
- 1
- USGS compilation, Jan 2026
- US import reliance
- 91%
- net, 2025 (USGS)
Key findings
What the evidence shows
World production and the largest producer
The USGS puts world production at 110,000 metric tons. China is the largest producer with 36% of the total.
How concentrated supply is
The Herfindahl-Hirschman index over country shares is 2,582 (highly concentrated). The top three producers hold 85%; 2 countries supply half.
Export measures in force
1 measure bears on this mineral: China.
United States import reliance
The United States relied on net imports for 91% of its use in 2025; main sources: China, Belgium, Thailand, India.
In this report
The questions it answers
Supply
Who produces it
Below 1,500 is read as unconcentrated and above 2,500 as highly concentrated (US merger-review bands, used as a reference point).
Trade
Export measures in force
| Country | Measure |
|---|---|
| China | China maintains an export licensing requirement for materials and technologies covering Antimony (2024), bismuth (2025), synthesized diamond (2025), gallium (2023), germanium (2023), graphite (2023), indium (2025), magnesium materials (2024), molybdenum (2025), rare earths (2025), silver (2026), tellurium (2025), tungsten (2025), and items related to lithium batteries and artificial graphite anode materials (2025), as compiled by the USGS from official and reported sources effective January 2026. |
Full analysis and cited sources
Where antimony is produced
China is the largest producer of antimony, at 36.1 percent of the published world total in 2025[1]. It is followed by Russia at 28.9 percent, Tajikistan at 19.9 percent and Bolivia at 4.5 percent. The USGS puts world production at 110,000 metric tons; the sum of the country figures is 110,720 metric tons, the difference being rounding in the published total.[1] Reserves are held principally by China (830,000 metric tons), Russia (350,000 metric tons), Bolivia (310,000 metric tons)[1].
How concentrated supply is
Measured by the Herfindahl-Hirschman index over production shares, antimony supply is highly concentrated, with an index of 2,582. The top three producers hold 84.9 percent of output, and 2 producers together account for half of supply. An index below 1,500 is conventionally read as unconcentrated and above 2,500 as highly concentrated; the thresholds are the United States merger-review bands, used here as a published reference point rather than as a judgement about market conduct. The United States was 91 percent reliant on net imports for antimony in 2025, with the principal import sources over 2021–24 being China, Belgium, Thailand, India.[2] The principal sources of United States imports over 2021–24 were China (55 percent), Belgium (12 percent) and Thailand (8 percent)[3].
Trade measures in force
The USGS compilation of export controls effective January 2026 records one measure bearing on antimony. China maintains an export licensing requirement for materials and technologies covering Antimony (2024), bismuth (2025), synthesized diamond (2025), gallium (2023), germanium (2023), graphite (2023), indium (2025), magnesium materials (2024), molybdenum (2025), rare earths (2025), silver (2026), tellurium (2025), tungsten (2025), and items related to lithium batteries and artificial graphite anode materials (2025), as compiled by the USGS from official and reported sources effective January 2026.[4] A control listed here removes the tonnage concerned from the international market by law, whatever the production table implies about availability.
Recent United States official notices
Federal Register documents naming antimony, most recent first. 2025-11-07: Final 2025 List of Critical Minerals. Critical minerals are essential for national security, economic stability, and supply chain resilience because they underpin key industries, drive technological innovation, and support critical infrastructure vital for a modern American economy. The United States is heavily reliant on imports of certain mineral commodities from foreign sources, some of which are at risk of serious, sustained, and long-term supply chain disruptions.[5]
Antimony Beneficiation & Cash Flow Simulator
An illustrative model built on typical published cost ranges. Change feed grade and throughput to see how the margin moves.
The model runs in the Workbench: register free to run it 3 times a day.
Contractual Penalty Schedule & Deleterious Limits
Standard commercial deduction guidelines enforced by off-taker smelters and converters for non-compliant impurity concentrations:
Model Cargo Financing, CIF Arbitrage & Letter of Credit
Test physical maritime shipments, demurrage risk, hedging spreads, and working capital cash turns in the Trade Desk.
Operating Smelters & Processing Facilities
Facility records and processing directories are manually researched and maintained by MiningBridge analysts.
30-mineral criticality list (2023)
Executive Briefing & Strategic FAQ
Essential empirical supply-chain and geopolitical questions for market participants and intelligence analysts.
Which countries dominate global mining and refining for Antimony?▼
Global Antimony production is characterized by high geographical concentration in both raw extraction and chemical processing, as documented in MiningBridge's empirical supply-chain models.
What are the critical supply chain bottlenecks and geopolitical risks for Antimony?▼
Key geopolitical and operational risks include export licensing constraints, high chemical conversion barriers, and long lead times for developing non-concentrated commercial refining capacity.
What are the primary commercial uses for Antimony, and can it be substituted?▼
Antimony is essential across energy transition, advanced electronics, and defense systems. While direct substitutes exist in select low-performance applications, replacing Antimony in mission-critical hardware incurs significant metallurgical and cost trade-offs.
