CO2 acquisition and utilization technologies will have a vital role in designing sustainable and affordable life support and in situ fuel production architectures for human and robotic exploration of Moon and Mars. For long-term human exploration to be practical, reliable technologies have to be implemented to capture the metabolic CO2 from the cabin air and chemically reduce it to recover oxygen. Technologies that enable the in situ capture and conversion of atmospheric CO2 to fuel are essential for a viable human mission to Mars. This paper describes the concept and mathematical analysis of a closed-loop life support system based on combined electrolysis of CO2 and steam (co-electrolysis). Products of the coelectrolysis process include ox...
Electrolyte and design studies in development of combined carbon dioxide removal and reduction syste...
Abstract After the completion of the International Space Station (ISS) program, the main focus of hu...
NASA has embarked on an endeavor that will enable humans to explore deep space, with the ultimate go...
CO2 acquisition and utilization technologies will have a vital role in determining sustained and aff...
NASA has been evaluating closed-loop atmosphere revitalization architectures that include carbon dio...
NASA has been evaluating two closed-loop atmosphere revitalization architectures based on Sabatier a...
NASA has been evaluating closed-loop atmosphere revitalization architectures carbon dioxide, CO2, re...
State-of-the-art life support oxygen recovery technology on the International Space Station is based...
The United States Atmosphere Revitalization life support system on the International Space Station (...
A critical component in spacecraft life support loop closure is the removal of carbon dioxide (CO2, ...
State-of-the-art life support carbon dioxide (CO2) reduction technology is based on the Sabatier rea...
Life support is a critical function of any crewed space vehicle or habitat. Human life support syste...
Use of resources available in situ is a critical enabling technology for a permanent human presence ...
Oxygen recovery from metabolically-produced carbon dioxide (CO2) is of critical importance for long-...
Carbon dioxide in the Martian atmosphere can be converted to oxygen during high temperature electrol...
Electrolyte and design studies in development of combined carbon dioxide removal and reduction syste...
Abstract After the completion of the International Space Station (ISS) program, the main focus of hu...
NASA has embarked on an endeavor that will enable humans to explore deep space, with the ultimate go...
CO2 acquisition and utilization technologies will have a vital role in determining sustained and aff...
NASA has been evaluating closed-loop atmosphere revitalization architectures that include carbon dio...
NASA has been evaluating two closed-loop atmosphere revitalization architectures based on Sabatier a...
NASA has been evaluating closed-loop atmosphere revitalization architectures carbon dioxide, CO2, re...
State-of-the-art life support oxygen recovery technology on the International Space Station is based...
The United States Atmosphere Revitalization life support system on the International Space Station (...
A critical component in spacecraft life support loop closure is the removal of carbon dioxide (CO2, ...
State-of-the-art life support carbon dioxide (CO2) reduction technology is based on the Sabatier rea...
Life support is a critical function of any crewed space vehicle or habitat. Human life support syste...
Use of resources available in situ is a critical enabling technology for a permanent human presence ...
Oxygen recovery from metabolically-produced carbon dioxide (CO2) is of critical importance for long-...
Carbon dioxide in the Martian atmosphere can be converted to oxygen during high temperature electrol...
Electrolyte and design studies in development of combined carbon dioxide removal and reduction syste...
Abstract After the completion of the International Space Station (ISS) program, the main focus of hu...
NASA has embarked on an endeavor that will enable humans to explore deep space, with the ultimate go...