In this work consideration is given for a technological method of attaining high pressurized vessels by a solidification-sublimation thermal cycle of CO2 without the need of compressors or mechanical devices prone to failure. Whereas a CO2-freezing process was already proposed in the last decade as alternative method to obtain highly pressurized CO2 avoiding the use of mechanical and sorption pumps -which besides requiring large and heavy hardware would also need several stages of mechanical compressors if the same level of compression is desired, however this early work was intended to obtain propellant for thermal rockets on Mars. Nonetheless, a similar freezing process could be attractive as a method for thermal-to-mechanical solar energ...
Solid oxide electrolyzers, such as electrolysis cells utilizing yttria-stabilized zirconia, can prod...
Utilization of the Martian atmosphere for the production of fuel and oxygen has been extensively stu...
The atmosphere of Mars has many resources that can be processed to produce things such as oxygen, fu...
In this work consideration is given for a technological method of attaining high pressurized vessels...
Obtaining CO2 from the Martian atmosphere through a freezing process has been proposed during de las...
One of the most abundant resources available on Mars is the atmosphere. The primary constituent, car...
The compression of CO2 from the Martian atmosphere for production of O2 via an electrochemical cell ...
CO2 acquisition and utilization technologies will have a vital role in determining sustained and aff...
The possibility of using plants to provide oxygen (O2) and food during space travel has been discuss...
The objective is to optimally design the thermal components of a system that uses carbon dioxide (CO...
Use of resources available in situ is a critical enabling technology for a permanent human presence ...
An in situ propellant production (ISPP) plant on future Mars robotic missions can produce oxygen (O2...
This report examines the feasibility of transporting coal from the Earth to Mars to increase the Mar...
In this presentation, a solar energy powered thermodynamic cycle using supercritical CO2 for combine...
As the aspirational goal of Mars settlement starts to slowly materialize, it is apparent that its vi...
Solid oxide electrolyzers, such as electrolysis cells utilizing yttria-stabilized zirconia, can prod...
Utilization of the Martian atmosphere for the production of fuel and oxygen has been extensively stu...
The atmosphere of Mars has many resources that can be processed to produce things such as oxygen, fu...
In this work consideration is given for a technological method of attaining high pressurized vessels...
Obtaining CO2 from the Martian atmosphere through a freezing process has been proposed during de las...
One of the most abundant resources available on Mars is the atmosphere. The primary constituent, car...
The compression of CO2 from the Martian atmosphere for production of O2 via an electrochemical cell ...
CO2 acquisition and utilization technologies will have a vital role in determining sustained and aff...
The possibility of using plants to provide oxygen (O2) and food during space travel has been discuss...
The objective is to optimally design the thermal components of a system that uses carbon dioxide (CO...
Use of resources available in situ is a critical enabling technology for a permanent human presence ...
An in situ propellant production (ISPP) plant on future Mars robotic missions can produce oxygen (O2...
This report examines the feasibility of transporting coal from the Earth to Mars to increase the Mar...
In this presentation, a solar energy powered thermodynamic cycle using supercritical CO2 for combine...
As the aspirational goal of Mars settlement starts to slowly materialize, it is apparent that its vi...
Solid oxide electrolyzers, such as electrolysis cells utilizing yttria-stabilized zirconia, can prod...
Utilization of the Martian atmosphere for the production of fuel and oxygen has been extensively stu...
The atmosphere of Mars has many resources that can be processed to produce things such as oxygen, fu...