Skip to content
Open·Source listing added 102 days ago and not re-verified since. Confirm details on the funder page.

TECHNOLOGY LICENSING OPPORTUNITY: PBI High-Temperature Hollow Fiber Membranes

ENERGY, DEPARTMENT OF

Special Notice · not a solicitation. There is nothing to bid on yet: agencies use this notice type for market research or information. You can respond to get on their radar, but do not budget proposal time for it.

Place of performance: Los Alamos, NM

View official posting

Don't lose track of this one

We'll email you once about this listing. No list, no cadence.

Free. Verify your email, then we send one reminder only.

Posted
Jun 7, 2026
Closes
No deadline published by the funder

See more open contract opportunities like this

Get alerted when new contract opportunities like this open.

Checking your account…

Free. Everyone sees new listings after 10 days. Unsubscribe anytime.

At a glance

This is a government contract opportunity posted by ENERGY, DEPARTMENT OF in the research and development in the physical category. Work is performed in Los Alamos, NM.

Classification and identifiers

Industry (NAICS)
Research and Development in the Physical, Engineering, and Life Sciences (except Nanotechnology and Biotechnology) (541715)
Product or service (PSC)
General Science and Technology R&D Services; General Science and Technology; Applied Research (AJ12)
Solicitation number
S-133262
Contracting office
TRIAD - DOE CONTRACTOR

Who can apply

Work performed in Los Alamos, NM

No Set aside used. NONE

About this opportunity

Polybenzimidazole (PBI) High-Temperature Hollow Fiber Membranes offer a practical way to improve separation efficiency in process environments where standard polymer membranes often lose performance or durability. The platform combines high-temperature operation, chemical resistance and compact hollow-fiber design in a membrane system that can help users recover hydrogen, separate carbon dioxide and process difficult liquid streams with lower energy demand and a smaller equipment footprint than many conventional approaches. Because the fibers are formed from a robust PBI material and engineered with an integrated thin selective layer, the technology is well suited for organizations seeking stronger performance in demanding energy, chemical and water treatment settings. How it Works The mem...

Refine this search