Two electrochemical depolarized carbon dioxide concentrator subsystems were evaluated against baseline lithium hydroxide for (1) the baseline orbiter when expanded to accommodate a crew of seven (mission option one), (2) an extended duration orbiter with a power extension package to reduce fuel cell expendables (mission option two), and (3) an extended duration orbiter with a full capability power module to eliminate fuel cell expendables (mission option three). The electrochemical depolarized carbon dioxide concentrator was also compared to the solid amine regenerable carbon dioxide removal concept. Water recovery is not required for Mission Option One since sufficient water is generated by the fuel cells. The vapor compression distillatio...
CO2 acquisition and utilization technologies will have a vital role in designing sustainable and aff...
Feasibility of removing metabolic carbon dioxide and water from space cabin atmosphere by low temper...
Viewgraphs on Johnson Space Center Environmental Control and Life Support System (ECLSS) research an...
The most promising concept for a regenerative CO2 removal system for long duration manned space flig...
Regenerative processes for the revitalization of spacecraft atmospheres require an Oxygen Reclamatio...
Method for physical recovery of carbon dioxide from space cabin atmosphere and chemical recovery of ...
Regenerative processes for the revitalization of spacecraft atmospheres and reclamation of waste wat...
The National Aeronautics and Space Administration (NASA) planned future missions set stringent deman...
A program to design, fabricate, and test a 1-man, self-contained, electrochemical CO2 concentrating ...
Electrolyte and design studies in development of combined carbon dioxide removal and reduction syste...
Extending the seven-day Shuttle Orbiter baseline mission requires an evaluation of the Environmental...
Two multicell, liquid-cooled, advanced electrochemical depolarized carbon dioxide concentrator modul...
A regenerable CO2 and humidity control system is presently being developed for potential use on the ...
"NASA's Advanced Exploration Systems (AES) program is pioneering new approaches for rapidly developi...
The system was studied as a replacement to the present baseline LiOH system for extended duration sh...
CO2 acquisition and utilization technologies will have a vital role in designing sustainable and aff...
Feasibility of removing metabolic carbon dioxide and water from space cabin atmosphere by low temper...
Viewgraphs on Johnson Space Center Environmental Control and Life Support System (ECLSS) research an...
The most promising concept for a regenerative CO2 removal system for long duration manned space flig...
Regenerative processes for the revitalization of spacecraft atmospheres require an Oxygen Reclamatio...
Method for physical recovery of carbon dioxide from space cabin atmosphere and chemical recovery of ...
Regenerative processes for the revitalization of spacecraft atmospheres and reclamation of waste wat...
The National Aeronautics and Space Administration (NASA) planned future missions set stringent deman...
A program to design, fabricate, and test a 1-man, self-contained, electrochemical CO2 concentrating ...
Electrolyte and design studies in development of combined carbon dioxide removal and reduction syste...
Extending the seven-day Shuttle Orbiter baseline mission requires an evaluation of the Environmental...
Two multicell, liquid-cooled, advanced electrochemical depolarized carbon dioxide concentrator modul...
A regenerable CO2 and humidity control system is presently being developed for potential use on the ...
"NASA's Advanced Exploration Systems (AES) program is pioneering new approaches for rapidly developi...
The system was studied as a replacement to the present baseline LiOH system for extended duration sh...
CO2 acquisition and utilization technologies will have a vital role in designing sustainable and aff...
Feasibility of removing metabolic carbon dioxide and water from space cabin atmosphere by low temper...
Viewgraphs on Johnson Space Center Environmental Control and Life Support System (ECLSS) research an...