to me ContainerA permanent human presence on the Moon is a resource-dependent dream that simultaneously reduces costs and risks in missions. Because, He developed a massive oxygen generation pipeline, called L-SPoP.
the US Space Agency She revealed that, in alliance with the United States government, she had invested significant funds in Developing the ability to extract oxygen from lunar regolith and water from lunar ice.
The report details that the oxygen will be used in human habitats, rovers, and other life support systems with a continuous supply of high-purity oxygen for human consumption and an oxidizer for launch vehicles departing from the moon.
These deoxygenation techniques are expected to work Extensively displayed on the lunar surface starting in 2024 and providing direct support to Artemis program astronauts starting in 2026a year after the scheduled return of man to the satellite.
Details about the L-SPoP
The current funded effort to extract oxygen from the lunar south pole consists of: Bottle oxygen in compressed or liquefied gas tanks and store it. Both methods require the tanks to be moved to different facilities for use.
The process of transporting this oxygen in the rovers is more energy consuming than the extraction process and is believed to be the most expensive aspect of obtaining oxygen in situ for use on the moon, considering the long distances that the extraction area will travel. human habitat or liquefaction plant.
“For a Phase 1 NIAC project, we propose to conduct an end-to-end system level design study for L-SPoP. A pipeline has never been explored on the lunar surface and will revolutionize lunar surface operations for the Artemis Program and reduce cost and risk!NASA presents.
The space agency added:We plan to explore and evaluate the structures of multiple lunar pipeline systems, identify enabling and augmentation technologies, and produce a comprehensive roadmap for the development of this innovative infrastructure.“.
The initial concept is a 5 km pipeline to transport gaseous oxygen from an oxygen production source.For example, a Molten Electrolysis Extraction (MRE) site or other source, to an oxygen liquefaction/storage station near a lunar base.
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