Minimizing resupply from Earth is essential for future long duration manned missions. The current oxygen recovery system aboard the International Space Station is capable of recovering approximately 50% of the oxygen from metabolic carbon dioxide. For long duration manned missions, a minimum of 75% oxygen recovery is targeted with a goal of greater than 90%. Theoretically, the Bosch process can recover 100% of oxygen, making it a promising technology for oxygen recovery for long duration missions. However, the Bosch process produces elemental carbon which ultimately fouls the catalyst. Once the catalyst performance is compromised, it must be replaced resulting in undesired resupply mass. Based on the performance of a Bosch system designed b...
The United States Atmosphere Revitalization life support system on the International Space Station (...
The Oxygen Generating Assembly (OGA) on-board the International Space Station (ISS) employs a polyme...
Longduration surface missions to the Moon or Mars will require life support systems that maximize re...
Current oxygen recovery technology onboard the International Space Station only recovers approximate...
Oxygen recovery from metabolic carbon dioxide is an enabling capability for long-duration manned spa...
This next Generation Life Support Project entails the development and demonstration of Bosch reactio...
Oxygen recovery from metabolically-produced carbon dioxide (CO2) is of critical importance for long-...
Manned missions beyond low Earth orbit will require highly robust, reliable, and maintainable life s...
Current air revitalization technology onboard the International Space Station (ISS) cannot provide c...
Future manned missions to deep space or planetary surfaces will undoubtedly incorporate highly robus...
Human exploration missions to Mars and other destinations beyond low Earth orbit require highly robu...
Oxygen recovery from respiratory carbon dioxide is an important aspect of human spaceflight. Methods...
Future long-duration manned space flights will require regenerative life-support systems. The Bosch ...
NASA has been active in developing processes to recover oxygen from meta-bolic carbon dioxide. Their...
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 (...
The Oxygen Generating Assembly (OGA) on-board the International Space Station (ISS) employs a polyme...
Longduration surface missions to the Moon or Mars will require life support systems that maximize re...
Current oxygen recovery technology onboard the International Space Station only recovers approximate...
Oxygen recovery from metabolic carbon dioxide is an enabling capability for long-duration manned spa...
This next Generation Life Support Project entails the development and demonstration of Bosch reactio...
Oxygen recovery from metabolically-produced carbon dioxide (CO2) is of critical importance for long-...
Manned missions beyond low Earth orbit will require highly robust, reliable, and maintainable life s...
Current air revitalization technology onboard the International Space Station (ISS) cannot provide c...
Future manned missions to deep space or planetary surfaces will undoubtedly incorporate highly robus...
Human exploration missions to Mars and other destinations beyond low Earth orbit require highly robu...
Oxygen recovery from respiratory carbon dioxide is an important aspect of human spaceflight. Methods...
Future long-duration manned space flights will require regenerative life-support systems. The Bosch ...
NASA has been active in developing processes to recover oxygen from meta-bolic carbon dioxide. Their...
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 (...
The Oxygen Generating Assembly (OGA) on-board the International Space Station (ISS) employs a polyme...
Longduration surface missions to the Moon or Mars will require life support systems that maximize re...