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18 Months of MOXIE (Mars oxygen ISRU experiment) operations on the surface of Mars - Preparing for human Mars exploration

18 Months of MOXIE (Mars oxygen ISRU experiment) operations on the surface of Mars - Preparing for human Mars exploration

OxEon is happy to share free access to our IAA Acta Astronautica publication on MOXIE’s first 18 months of operation on the surface of Mars. If you would like to learn more about our historical project with NASA - National Aeronautics and Space Administration and Massachusetts Institute of Technology for the first ever production of a fuel off the surface of Earth, click below!

18 Months of MOXIE (Mars oxygen ISRU experiment) operations on the surface of Mars - Preparing for human Mars exploration

Other News

Perseverance rover has successfully landed on Mars and sent back its first images

(CNN) - The NASA Perseverance rover safely landed on Mars after its 292.5 million-mile journey from Earth, the agency confirmed at 3:55 p.m. ET Thursday. The rover landed itself flawlessly, according to the mission's team.

Mars Rover Includes Utah Company’s Tech That Could Convert Carbon Dioxide To Oxygen

A Utah company is in the spotlight thanks to its revolutionary technology that’s aboard NASA’s latest Mars rover. The tech from Salt Lake City-based OxEon Energy could change the way humans explore the universe.

Mars: Utah company has the M.O.X.I.E. to manufacture on an alien planet

It’s part of the Perseverance rover mission to Mars, and it sounds like science fiction, but it’s not. Scientists from earth are ready to try manufacturing on an alien planet for the first time.

UC San Diego’s Center for Energy Research Awarded over $5M for Energy Projects

The University of California San Diego’s Center for Energy Research (CER) has been awarded two grants from the Department of Energy (DOE) for research focused on developing environment-friendly and cost-competitive energy sources and systems.

This low-cost catalyst helps turn seawater into fuel at scale

University of Rochester chemical engineers—in collaboration with researchers at the Naval Research Laboratory, the University of Pittsburgh, and OxEon Energy—have demonstrated that a potassium-promoted molybdenum carbide catalyst efficiently and reliably converts carbon dioxide to carbon monoxide, a critical step in turning seawater into fuel.

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Ask an OxEon Expert how we can help with:

  • Ruggedized Hermetic SOEC Stacks Hydrogen/Oxygen/Syngas Production (SOEC)
  • SOFC Stacks for Power Generation (SOFC)
  • Systems Development Support
  • Supporting Technologies for Liquid Fuel Production (Fischer Tropsch or Plasma Reformer Technologies)