Contract · Federal
TECHNOLOGY TRANSFER OPPORTUNITY: Solid-State System Efficiently Generates Purified O2 (MSC-TOPS-148)
- Agency
- NATIONAL AERONAUTICS AND SPACE ADMINISTRATION / NATIONAL AERONAUTICS AND SPACE ADMINISTRATION
- Location
- HUNTSVILLE, AL
- Amount
- Amount not listed
- Posted
- Aug 10, 2026
- Set-aside
- None (open competition)
- NAICS code
- 927110 look up NAICS codes
- PSC code
- 9999
Timeline
-
Posted
Aug 10, 2026
-
Status
Open now
What contracts like this typically pay
No award history yet for this category (NAICS 927110).
What this contract is for
- Agency
- NATIONAL AERONAUTICS AND SPACE ADMINISTRATION / NATIONAL AERONAUTICS AND SPACE ADMINISTRATION
- Location
- HUNTSVILLE, AL
- NAICS
- 927110
- Scope
- Federal
NASA’s Technology Transfer Program solicits inquiries from companies interested in obtaining license rights to commercialize, manufacture and market the following technology.
License rights may be issued on an exclusive or nonexclusive basis and may include specific fields of use.
NASA provides no funding in conjunction with these potential licenses.
THE TECHNOLOGY: Innovators at NASA Johnson Space Center, in collaboration with innovators at American Oxygen, have developed a solid-state system and process that separates oxygen from ambient air and compresses the resulting purified oxygen – with a significant reduction in power con-sumption compared to prior state-of-the-art.
It is based upon a proven solid oxide electrochemical oxygen separation and compression technique that derives purified oxygen from ambient air and compresses it using an electrochemical pumping method.
This electrically driven technology relies upon the high operating temperature of electrochemical cell stacks for maximum efficiency.
An inverse relationship exists between high temperature and electrical resistance; thus, a heated system requires less energy to drive oxide ions across a cell membrane and compress the resulting purified oxygen.
Ambient air that is fed and circulated for processing through the system also helps to stabilize high system operating temperatures.
To prevent the ambient air from overcooling the electrochemical process, the incoming air is preheated.
However, in existing systems, this pre-heating incurs a large cost penalty in power consumption.
The new solid-state system design performs electrochemical reactions to generate purified oxygen but uses an embedded heat exchanger to preheat the incoming air with system waste heat without the need for supplemental heaters, significantly b...
Official solicitation and documents
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