Difference between revisions of "List of ISRU"
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*[[Sabatier/Water Electrolysis Process]] (methane fuel, CH4) | *[[Sabatier/Water Electrolysis Process]] (methane fuel, CH4) | ||
− | *[[Reverse Water-Gas Shift Reaction]] | + | *[[Reverse Water-Gas Shift Reaction]] (CO and hydrocarbons) |
*[[Fischer-Tropsch reaction|Fischer-Tropsch Reaction]] (hydrocarbons) | *[[Fischer-Tropsch reaction|Fischer-Tropsch Reaction]] (hydrocarbons) | ||
*[[Electrolysis|Water Electrolysis]] (Hydrogen-Oxygen) | *[[Electrolysis|Water Electrolysis]] (Hydrogen-Oxygen) | ||
*[[Glass]] production (SiO2) | *[[Glass]] production (SiO2) | ||
− | *[[Steeling|Steel]] production | + | *[[Steeling|Steel]] production |
*Atmospheric compression and separation (N2,CO2,O2,Ar) | *Atmospheric compression and separation (N2,CO2,O2,Ar) | ||
*[[Water Infrastructure|Water treatment]] (Water) | *[[Water Infrastructure|Water treatment]] (Water) | ||
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*[[Atmosphere absorption methods]] | *[[Atmosphere absorption methods]] | ||
− | ISRU is also part of the NASA base plan | + | ISRU is also part of the NASA base plan as well as the [[SpaceX]] Mars colonisation plans. |
==Web links== | ==Web links== |
Revision as of 13:43, 28 December 2019
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The idea of In-Situ Resource Utilization (ISRU) is essential for a Martian colony. As part of the Mars Direct initiative it aims at the production of propellant material for a Mars return mission. The following issues are specifically considered:
- Sabatier/Water Electrolysis Process (methane fuel, CH4)
- Reverse Water-Gas Shift Reaction (CO and hydrocarbons)
- Fischer-Tropsch Reaction (hydrocarbons)
- Water Electrolysis (Hydrogen-Oxygen)
- Glass production (SiO2)
- Steel production
- Atmospheric compression and separation (N2,CO2,O2,Ar)
- Water treatment (Water)
- Carbon dioxide electrolysis (CO and hydrocarbons)
- Atmosphere absorption methods
ISRU is also part of the NASA base plan as well as the SpaceX Mars colonisation plans.