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Special NoticeAmendment 2

TECHNOLOGY LICENSING OPPORTUNITY: PBI High-Temperature Hollow Fiber Membranes

TRIAD - DOE CONTRACTOR · Los Alamos, New Mexico, 87545

Response status

Due in 98 days

Dec 5, 2026, 12:00 AM UTC

Responses remain open.

Posted
Jun 5, 2026
Archive date
Jun 30, 2027
SAM status
Active

Answer-first brief

What the source record says

  • TRIAD - DOE CONTRACTOR published this special notice.
  • Competition is listed as No Set aside used.
  • The place of performance is Los Alamos, New Mexico.
  • The notice uses NAICS 541715 (Research and Development in the Physical, Engineering, and Life Sciences (except Nanotechnology and Biotechnology)).

Procurement identity

Notice ID
6f5a1612bcdf4501ab7b60bdbe820664
Solicitation
S-133262
Base type
Special Notice
Version
2 of 2

Solicitation facts

Structured fields from the current SAM notice version. A dash means the source did not publish a value.

Notice type
Special Notice
Solicitation number
S-133262
Set-aside
No Set aside used
Set-aside code
Posted
Jun 5, 2026
Responses due
Dec 5, 2026, 12:00 AM UTC
Archive date
Jun 30, 2027
Archive type
autocustom
Base type
Special Notice
Organization type
OFFICE
Benchmark category
Category confidence
Category source
Last seen
Aug 29, 2026

Buyer and place

Office hierarchy and place of performance as published.

Department
ENERGY, DEPARTMENT OF
Department code
Subagency
ENERGY, DEPARTMENT OF
Subagency code
Office
TRIAD - DOE CONTRACTOR
Organization path
Organization path codes
Office address
Columbus, OH, 43201, USA
Place of performance
Los Alamos, New Mexico, 87545
City code
State
New Mexico
State code
NM
Postal code
87545
Country

Points of contact

Contact details from the current notice version.

Notice description

Source text reproduced without an AI summary.

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 membrane works like a selective gate built into a very small hollow strand. A mixed gas or liquid flows across the fiber, and the thin outer layer allows some molecules to pass through more readily than others, while the porous support beneath it gives the fiber strength and a path for transport. The disclosed fabrication process forms that selective layer and support structure in one step, then can add heat treatment or a thin sealing layer to improve stability and sharpen separation performance. Technical Description The polybenzimidazole invention is centered on a method for making asymmetric hollow fiber membranes from polybenzimidazole, a polymer valued for strong thermal and chemical stability. A PBI dope solution and a bore fluid are extruded through a spinneret, then passed through an optional air gap and into a water coagulation bath, which forms a hollow fiber with an integrated selective layer and a porous support structure. The process can produce nearly defect-free selective layers, and the patent states that selective layer thickness can be controlled from about 0.1 to 5 �m, with examples demonstrating thicknesses down to about 160 nm and one example near 0.38 �m. A major technical advantage is control over membrane microstructure and durability. PBI High-Temperature Hollow Fiber Membranes emphasize macrovoid-free fibers, which are important because macrovoids create weak points that can fail under high temperature and pressure. The membranes can be thermally annealed or chemically crosslinked to improve solvent resistance and stability, and a defect-sealing layer can be added to improve selectivity without changing the core fiber architecture. In demonstrated gas-separation modules, the technology showed hydrogen permeance above 100 GPU, with one example reporting 242 GPU at 250 �C and hydrogen/carbon dioxide selectivity of 19.1, while long-term testing in wet syngas with 20 ppm H2S showed stable performance over 40 days. The patent also states that the membranes can operate up to about 400 �C and are suitable for gas, vapor and liquid separations including hydrogen purification, carbon capture, brine treatment and organic solvent separations. Advantages Operates at temperatures that are too demanding for many conventional polymer membranes Resists harsh chemical exposure including steam and sulfur-containing gases compact module design enables smaller equipment footprint easier scaling than ceramic membranes higher throughput without compromising permeability, selectivity or membrane area cost Combines selectivity and structural support in one integrated membrane architecture Supports both gas and liquid separation opportunities across multiple industries Reduces overall hydrogen purification costs Has already been tested in relevant operating environments rather than remaining only a laboratory concept Market Applications Energy and Power generation (hydrogen production, pre-combustion carbon capture, syngas cleanup) Oil and Gas (refining, natural gas processing, produced water treatment) Chemical and Petrochemical Processing (process gas separation, solvent dehydration, feedstream cleanup) Industrial Water and Wastewater (high-salinity brines, water purification, water and acid separation) Advanced Fuels (Fischer-Tropsch processing, fuel conversion, synthesis gas upgrading) Specialty Manufacturing (organic solvent recovery, pharmaceutical and fine chemical separations) Development Status: TRL 5 US Patent No. 10,071,345 LA-UR-26-24561 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

Comparable award range

Historical award values for work matched by the fixed rubric—not an estimate of this opportunity.

No past awards scored highly enough to form a comparable range.

Comparable awards

The match score is decomposed so each comparison can be challenged.

No comparable awards are attached to this notice.

Amendment history

A version is preserved whenever the normalized notice contents change.

VersionNotice typeObservedResponses dueContent hash
1Special NoticeAug 10, 2026Dec 5, 2026, 12:00 AM UTC0b98c4f4bc6640f5
2Special NoticeAug 28, 2026Dec 5, 2026, 12:00 AM UTCdcdb5e41b38672a5

Record provenance

Field-level lineage for the current opportunity version.

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archive_typeSAM.gov Contract OpportunitiesAug 10, 2026sam_opportunity_snapshot@2026.08.22026.08.3
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upstream_activeSAM.gov Contract OpportunitiesAug 10, 2026sam_opportunity_snapshot@2026.08.22026.08.3

Sources and method

Figures on this page are computed from public federal award records. Numbers are never estimated or generated; where a figure is withheld, the reason is stated rather than filled in.

  1. 1Notice fields come from the SAM.gov contract opportunities record last seen Aug 29, 2026. SAM.gov remains authoritative.

Note 1 covers the solicitation record. No synthetic FAQ or inferred solicitation value is published.

TECHNOLOGY LICENSING OPPORTUNITY: PBI High-Temperature Hollow Fiber Membranes — federal contract opportunity · BidBenchmark