The Electrochemistry Society is organizing a special session highlighting NASA applications and NASA technology development programs that use electrochemistry. NASA Johnson Space Center is sponsoring a technology development effort to use a solid oxide electrochemical cell stack to produce high pressure high purity oxygen capable of recharging spacesuit oxygen tanks between Extra-Vehicular Activities (EVAs). The attributes of the technology that are most important to NASA are the oxygen compatibility of the materials in the cell stack, and the solid state nature of the oxygen compression process. 2019 technical development work focuses on developing seals that connect individual wafers to for a cell stack
Future Exploration missions will require an Oxygen Generation Assembly (OGA) to electrolyze water to...
Solid electrolyte electrolysis of carbon dioxide and water as oxygen regeneration system for long ma...
Regenerative processes for the revitalization of manned spacecraft atmospheres or other manned habit...
The Oxygen Generating Assembly (OGA) on-board the International Space Station (ISS) employs a polyme...
Missions on the International Space Station and future space exploration will present significant ch...
Electrolyte operated at an elevated temperature in an electrolysis cell regenerates oxygen from meta...
A solid polymer electrolyte (SPE) oxygen compressor is described which generates pressures of 3000 p...
More than a metric ton of water is transported to the International Space Station (ISS) each year to...
Significant progress was made in the area of in-situ oxygen production in the last year. In order to...
To support human life on the Martian surface, an electrochemical device will be required to obtain o...
Water vapor is absorbed in hygroscopic electrolyte, and oxygen generated by absorbed water electroly...
Many portable fuel cell applications require high pressure hydrogen, oxygen, or both. High pressure ...
Electrochemical cells are among the technologies under consideration for gaseous oxygen concentratio...
The production of oxygen from the indigenous resources on Mars is described. After discussing briefl...
Future Exploration missions will require an Oxygen Generation Assembly (OGA) to electrolyze water to...
Future Exploration missions will require an Oxygen Generation Assembly (OGA) to electrolyze water to...
Solid electrolyte electrolysis of carbon dioxide and water as oxygen regeneration system for long ma...
Regenerative processes for the revitalization of manned spacecraft atmospheres or other manned habit...
The Oxygen Generating Assembly (OGA) on-board the International Space Station (ISS) employs a polyme...
Missions on the International Space Station and future space exploration will present significant ch...
Electrolyte operated at an elevated temperature in an electrolysis cell regenerates oxygen from meta...
A solid polymer electrolyte (SPE) oxygen compressor is described which generates pressures of 3000 p...
More than a metric ton of water is transported to the International Space Station (ISS) each year to...
Significant progress was made in the area of in-situ oxygen production in the last year. In order to...
To support human life on the Martian surface, an electrochemical device will be required to obtain o...
Water vapor is absorbed in hygroscopic electrolyte, and oxygen generated by absorbed water electroly...
Many portable fuel cell applications require high pressure hydrogen, oxygen, or both. High pressure ...
Electrochemical cells are among the technologies under consideration for gaseous oxygen concentratio...
The production of oxygen from the indigenous resources on Mars is described. After discussing briefl...
Future Exploration missions will require an Oxygen Generation Assembly (OGA) to electrolyze water to...
Future Exploration missions will require an Oxygen Generation Assembly (OGA) to electrolyze water to...
Solid electrolyte electrolysis of carbon dioxide and water as oxygen regeneration system for long ma...
Regenerative processes for the revitalization of manned spacecraft atmospheres or other manned habit...