GovSprint
← Back to today

TECHNOLOGY LICENSING OPPORTUNITY: Selective Separation

Department of Energy · TRIAD - DOE CONTRACTOR
Account requiredWhy it scored this way

Every reason behind the verdict rather than the headline one — which of your certifications match, how much runway is left, whether the work is your size, and what we would need to know to sharpen it.

Draft the paperwork

Written against this notice and what you have told us about your company. Anything we do not know is marked [NEEDS INPUT] in the draft rather than guessed at — read it before you send it.

Start a free trial to draft these. Nothing is sent to an agency on your behalf, ever — you get a document to review, edit and submit yourself.

Sources Sought response

A complete draft response — capability statement, relevant past performance, business size and socioeconomic status, and answers to the agency's specific questions.

Questions to submit

Genuine ambiguities and requirements that disadvantage a smaller bidder, drafted as questions you can submit before the Q&A deadline.

Past performance write-ups

Which of your prior awards best match this requirement, and draft write-ups in the format the agency asked for.

Solicitation details

Solicitation number
S-167732
Notice type
Special Notice
NAICS
541715
Product service code
AJ11
Set-aside
No Set aside used
Posted
2026-04-07
Response deadline
Apr 24, 2027, 11:00 PM UTC
Place of performance
Los Alamos, NM
Contracting contact
licensing@lanl.gov

Market intelligence

Account requiredWho wins this work, and what it pays

Comparable awards under NAICS 541715 at this agency — the incumbent, what they were paid, when their period of performance ends, and the real pricing distribution rather than the headline number. From public federal award records.

Statement of work, as posted

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 combining metal-binding and phase-transfer mechanisms, Selective Separation enables certain metals to remain in solution while others are selectively removed, avoiding the need for complex, multi-stage solvent extraction systems. This approach reduces process complexity, lowers costs, and minimizes secondary waste, while maintaining high selectivity even for chemically similar elements such as actinides and lanthanides. Because the underlying chemistry can be tailored to different metal systems, the approach provides a flexible platform adaptable to a wide range of applications in nuclear, rare earth and broader chemical processing industries. Key Advantages: Simplified processing: Replaces complex, multi-step separation systems with a streamlined approach High selectivity: Effectively separates chemically similar metals, including actinides and lanthanides Reduced chemical burden: Avoids or minimizes the use of harsh organic solvents Lower cost and faster throughput: Decreases processing time, equipment needs, and operational expenses Reduced secondary waste: Generates fewer byproducts, improving environmental performance Flexible and tunable platform: Adaptable to a wide range of metal systems and industrial applications Market Applications: Nuclear Energy (fuel reprocessing, waste management, materials recovery) Critical Minerals (rare earth processing, battery materials, supply chains) Mining and Metals Processing (ore refining, hydrometallurgy, metal recovery) Healthcare and Medical Isotopes (isotope production, radiochemical purification) Chemical Manufacturing (catalyst recovery, specialty materials processing) Environmental Services (waste treatment, resource recovery from industrial streams) Development Status: TRL 3 US Patent pending LA-UR-26-22792 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

Contact

Point of contact
Satya Srinivasan
Role
not stated on this notice — SAM publishes a role for only about 5% of them, so this may be a contract specialist rather than the contracting officer
Email
licensing@lanl.gov
Secondary
licensing@lanl.gov
Submit questions

Ambiguities and requirements worth clarifying, written as questions you can send before the deadline.

Open email
Capability response

Introduce your firm against this requirement for a Sources Sought or market research notice.

Open email
Request documents

Ask for attachments, drawings or specifications referenced in the notice but not posted.

Open email
Add me to interested vendors

Ask to be listed as an interested vendor so other bidders can find you for teaming.

Open email

Opens in your own mail client, addressed and with a subject line — you write the message. GovSprint never sends anything on your behalf.

Emails open in your mail client and are sent from your address, so the reply comes back to you and the exchange stays yours. Confirm the correct channel and any question deadline on the notice before sending — many solicitations require questions in a specific way.