TECHNOLOGY LICENSING OPPORTUNITY: Selective Separation

Triad - DOE Contractor · United States government procurement

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April 24, 2027
Response Due
Active
Status

Opportunity Overview

Tunable Chemistry for Precise Metal Isolation

This technology from Los Alamos National Laboratory offers a simpler, faster and more cost-effective way to separate closely related metals—including challenging actinide and lanthanide elements—by replacing complex solvent extraction systems with a flexible, single-step selective precipitation approach. By pairing tailored complexing and precipitating agents, Selective Separation enables precise, tunable separations across a wide range of metal systems while eliminating the need for harsh organic chemicals, reducing waste and lowering operational complexity. This adaptability extends its value beyond nuclear applications to areas such as rare earth element processing, medical isotope production and broader mineral and chemical separations, providing a scalable and environmentally responsible platform for next-generation metal recovery.

The Challenge:

Separating metals that have nearly identical chemical properties—such as actinides and lanthanides—remains one of the most persistent challenges in nuclear fuel recycling, critical mineral processing and advanced manufacturing. Existing approaches rely on complex, multi-step solvent extraction systems that use large volumes of harsh organic chemicals, require specialized equipment and generate significant secondary waste, making them costly, time-consuming and difficult to scale. These limitations create bottlenecks in recovering valuable materials and complicate efforts to improve efficiency and sustainability across multiple industries. As demand grows for cleaner, more efficient processing of nuclear materials and rare earth elements, there is a clear need for simpler, more selective and more adaptable separation technologies.

Problems Solved:

Selective Separation addresses these challenges by introducing a streamlined separation approach that leverages tunable chemical interactions to selectively control the behavior of metals in solutions. By strategically...

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Solicitation Details

Issuing agencyTriad - DOE Contractor
CountryUnited States
CategoryScientific Research
NAICS541715
PSCAJ11
PublishedApril 07, 2026
Procurement stageRequest for Proposal (RFP)
Response dueApril 24, 2027
StatusOpen — accepting responses
Official sourceView original notice
Last verifiedAugust 10, 2026

Source: U.S. Government (SAM.gov) — public domain. GlobalGov is not affiliated with or endorsed by the United States Government.

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