Add BrightSurf on Google Email

SwRI, UT San Antonio-led experiment designated ready to fly by NASA

07.21.26 | Southwest Research Institute
Apple iPhone 17 Pro

Apple iPhone 17 Pro delivers top performance and advanced cameras for field documentation, data collection, and secure research communications.


SAN ANTONIO — July 21, 2026 — A Southwest Research Institute and University of Texas at San Antonio experiment has passed a critical NASA review, designating it ready for parabolic flight testing. The two institutions will evaluate the performance of a patent-pending electrolyzer, the Mars Atmospheric Reactor for Synthesis of Consumables (MARS-C), in partial gravity environments.

The project is led by SwRI’s Kevin Supak, a program manager in SwRI’s Fluids Engineering Department, and Dr. Shrihari Sankarasubramanian, an assistant professor in UT San Antonio’s Department of Biomedical and Chemical Engineering. Developed by Sankarasubramanian with NASA support, MARS-C is designed to use local resources on Mars to produce fuel, oxygen, and other life-support compounds necessary for long-term human habitation.

“The payload is ready to fly aboard an aircraft flying a parabolic profile. We have demonstrated to NASA that our design, procedures, and safety considerations have met the requirements needed to execute the parabolic flight test,” Supak said. “This will be the first demonstration of an electrolyzer that can function in Martian ambient conditions, which has one third of Earth’s gravity and significantly colder and lower atmospheric pressure.”

MARS-C is an in-situ resource utilization (ISRU) technology meant to improve production of propellants and life-support compounds on Mars, but similar technology can be applied to the Moon and other planetary bodies. It applies voltage across two electrodes to electrochemically convert simulated Martian brine and carbon dioxide into oxygen, ethanol, and other hydrocarbons.

The team adapted prototype electrochemical cells into a three-by-seven-foot payload that contains six electrochemical cells. Each cell is installed in a containment box to control the ambient humidity and simulate Martian temperatures using thermoelectric heat pumps.

“By qualifying for this parabolic flight, we get to learn how hydrocarbon-producing electrolyzers behave at Martian gravity conditions,” Sankarasubramanian said. “The resulting insights will help us improve system design and performance and put MARS-C on the pathway to potentially serve in astronaut life-support applications and chemical production on Mars.”

SwRI and UT San Antonio will test MARS-C aboard a series of parabolic flights, which will provide reduced-gravity conditions through periods of freefall created by arched flight patterns. These parabolas allow the payload to experience brief periods (about 15 to 20 seconds each) of either lunar, Martian, or zero gravity levels. This approach builds on previous work conducted by SwRI that studied boiling processes under partial gravity aboard parabolic flights. SwRI’s research showed that lower gravity affects surface bubble dynamics, which can, in turn, affect gas production rates.

“The electrolysis cells will be operated during the flight to produce ethanol and other hydrocarbons, and cameras will record the gas buildup on the electrode surfaces,” Supak said. “The equipment operating the electrochemical cells will also monitor electric currents in the cells. After the flight, we will draw fuel samples from the cells and measure their hydrocarbon content to quantify the amount of fuel produced as a function of gravity level.”

The project is supported by NASA’s TechLeap Prize, which supports future missions by advancing solutions that address NASA’s technology shortfalls, as well as the Connecting through Research Partnerships (Connect) program, which fosters collaboration between SwRI and UT San Antonio. The project is also supported by the university’s Klesse College of Engineering and Integrated Design (KCEID) and the Center for Space Technology and Operation Research (CSTOR).

This project was funded (fully or in-part) by The University of Texas at San Antonio, Office of Research and Southwest Research Institute.

For more information, visit https://www.swri.org/markets/energy-environment/fluids-engineering/fluid-mechanics-thermal-management-research/fluid-physics-space-applications .

Keywords

Contact Information

Joanna Quintanilla
Southwest Research Institute
jquintanilla@swri.org

Source

This article is based on a news release from Southwest Research Institute. BrightSurf curates and republishes science news from research institutions worldwide; the original release is linked below.

How to Cite This Article

APA:
Southwest Research Institute. (2026, July 21). SwRI, UT San Antonio-led experiment designated ready to fly by NASA. Brightsurf News. https://www.brightsurf.com/news/L7V9ZG48/swri-ut-san-antonio-led-experiment-designated-ready-to-fly-by-nasa.html
MLA:
"SwRI, UT San Antonio-led experiment designated ready to fly by NASA." Brightsurf News, Jul. 21 2026, https://www.brightsurf.com/news/L7V9ZG48/swri-ut-san-antonio-led-experiment-designated-ready-to-fly-by-nasa.html.