Accelerator-Driven Sub-Critical Molten-Salt Assembly (ADS+MSA Facility)
Contract Overview
Solicitation details, issuing organization, response deadlines, documents, and interested companies for this government contract opportunity.
AI Contract Overview
The Accelerator-Driven Sub-Critical Molten-Salt Assembly (ADS+MSA) is a centralized nuclear facility developed by Los Alamos National Laboratory to produce kilogram-scale quantities of tritium for commercial fusion energy. By combining a high-power particle accelerator with a liquid molten-salt system, the facility operates in a sub-critical configuration, meaning nuclear reactions only occur when driven by the accelerator. This design ensures inherent safety and allows the facility to operate under Department of Energy accelerator safety orders rather than NRC power-reactor licensing. The system is designed for high tritium production efficiency, exceeding the breeding ratios of fusion reactor blankets while requiring lower accelerator power than previous concepts. Currently at a technology readiness level of 3-4 with a pending U.S. patent, the ADS+MSA is positioned to remove critical fuel bottlenecks for the fusion industry. Beyond tritium production, its market applications include nuclear waste management, the disposition of legacy nuclear liabilities, and the generation of carbon-free baseload energy. This special notice, identified by solicitation number S-195186 and managed by Triad for the Department of Energy, focuses on the licensing of this technology to existing and start-up companies through exclusive and non-exclusive agreements to move the invention toward commercial innovation.
General Info
Agency
NAICS
Place of Performance
Los Alamos, NM, 87545, USASet-Aside
Timeline
Response Deadline
Organization & Contact Information
Full Description
An accelerator-driven, sub-critical molten-salt nuclear system that centrally produces large quantities of tritium for fusion energy. By pairing accelerator-driven subcritical operation with molten-salt chemistry, the system offers a controllable, safety-forward pathway to produce fusion fuel, recover useful energy and convert legacy nuclear liabilities into strategic energy assets.
Overview:
The Accelerator-Driven Sub-Critical Molten-Salt Assembly (ADS+MSA) is a centralized nuclear facility that uses a high-power particle accelerator coupled to a liquid molten-salt system to reliably produce kilogram-scale quantities of tritium. Because the system is sub-critical, nuclear reactions only occur when driven by the accelerator, providing inherent safety and operational control. By combining proven accelerator technology with modern molten-salt chemistry, the ADS+MSA removes a major bottleneck to commercial fusion energy, recovers useful energy, and strengthens U.S. energy security and national security missions under existing Department of Energy safety frameworks rather than commercial reactor licensing.
Key Advantages:
- Enables large-scale commercial fusion energy by providing a reliable, centralized source of tritium, eliminating the need for fusion plants to breed their own fuel and significantly reducing cost, complexity, and deployment risk.
- Operates in an inherently safe, sub-critical configuration in which nuclear reactions stop when the accelerator is turned off, avoiding runaway scenarios and allowing operation under DOE accelerator safety orders rather than NRC power-reactor licensing.
- Achieves extremely high tritium production efficiency, with tritium breeding ratios far exceeding those achievable in fusion reactor blankets, enabling kilogram-scale production with substantially lower accelerator power than earlier accelerator-only concepts.
- Builds on decades of proven accelerator development and growing industrial experience with molten-salt systems, reducing technical risk and enabling modular, scalable deployment as demand increases.
Market Applications:
- Fusion Energy (fuel supply for commercial fusion power plants)
- Nuclear Waste Management (reduction and disposition of long-lived nuclear materials)
- Advanced Nuclear Energy (sub-critical and accelerator-driven nuclear systems)
- Government Nuclear Asset Management (utilization of surplus plutonium and uranium inventories)
- Industrial Energy and Infrastructure (on-site energy, heat, and supporting infrastructure)
- Clean Energy and Decarbonization (carbon-free baseload energy enablement)
Development Status: TRL 3-4
IP Status: U.S. Patent pending
LA-UR-26-25142
LANL Tech Partnerships: Unlock the Innovative Potential
Los Alamos National Laboratory offers a wide range of cutting-edge technologies and capabilities that may provide your company with a competitive edge in the market and unlock the innovative potential that can enhance, refine, and revolutionize your products.
LANL’s licensing program focuses on moving inventions developed by our researchers to commercial innovations. Patented and patent pending inventions and copyrighted software are available to existing and start-up companies through exclusive and non-exclusive licensing agreements. For specific discussions, please contact licensing@lanl.gov.
Note: This is not a call for external services for the development of this technology.
https://www.lanl.gov/engage/collaboration/feynman-center/partner-with-us/licensing-technology
m.lanl.gov/tech-search
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