NASA announced the winners of the Deep Space Food Challenge: Mars to Table
Thursday, with the top $300,000 prize being awarded to Chinyere Ukeje of
Philadelphia, Pa. for the Adaptive Nourishment Infrastructure (ANI) food system
concept. This competition challenged solvers to explore innovative solutions
for integrated space food systems that would provide safe, nutritious meals to
astronauts living and working in space.
Mars to Table launched in January 2026 as a follow on to the Deep Space Food Challenge, which NASA ran from 2021-2014 in collaboration with
CSA (Canadian Space Agency). The original challenge focused on prototyped novel
food production methods, while the 2026 competition asked teams to
conceptualize space meals not as individual technology components, but as a
complete food-production system that would offer a variety of food with limited
crew time and work needed to maintain the food system. After judging 113
submissions by teams hailing from 33 countries and 28 U.S. states, the agency selected
five winning teams for the 2026 challenge, awarding a combined $650,000.
“We’re thrilled to keep advancing
the future of space food systems with this challenge,” said Jennifer Edmunson,
program manager for Centennial Challenges at NASA’s Marshall Space Flight
Center in Huntsville, Alabama. “The future of human space exploration will rely
on innovative food systems, and it is amazing how much ingenuity this challenge
has helped us identify from participants near and far.”
Currently, astronaut meals are
almost entirely cooked, packaged, and sent to the International Space Station
from the Space Food Systems Laboratory at NASA’s Johnson Space Center. A one-way trip to
Mars will take at least nine months, so bringing all required meals will not be
sustainable for such missions. From shelf stability issues to mass
restrictions, pre-packaged foods cannot be the default option for future
Martian astronauts.
In search of viable solutions for
future space food operations, teams were tasked with ideating and designing
systems in response to a mission scenario that addressed a 15-person astronaut
crew for 500 Martian sols, or about 513 Earth days. The challenge focused on
surface operations and system integration, and each team delivered a design
layout, meal plan, concept of operations, and walkthrough video.
“The criteria we laid out for this
competition were challenging, but intentionally so,” said Mars to Table head
judge Dr. Alexander Meyers, who supports NASA Centennial Challenges through
Noetic Strategies from the agency’s Kennedy Space Center in Florida. “This
challenge spotlights the complexity of a complete space food system and the
human ingenuity required to solve these problems. Every new idea presented in
this challenge represents a possible new tool in NASA’s plans for the future of
space exploration.
NASA named five winners of the Mars
to Table Challenge. These technologies provide NASA with inspirational
launching pads for future deep space food systems.
The first-place winner, Chinyere
Ukeje, developed the concept of ANI, a modular food ecosystem combining
controlled-environment agriculture, fermentation and fungi cultivation, and
closed-loop nutrient recycling through bioreactors with limited Earth-provisioned
foods to produce 50% of the food away from Earth. ANI, named after the Nigerian
Earth goddess of harvest and fertility, envisions a system that cooks fresh
meals daily and has provisions to work through shortages of power, water,
equipment, or crew time.
The second-place prize of $200,000
was awarded to Cislune of Rosemead, Calif. for the Fresh, Ferment, Reserve food
infrastructure. The proposed system grows model-selected crops, converts part
of the harvest into familiar foods in instrumented culture cassettes, and uses
a protected Earth-loaded reserve to supplement in cases of biological
variability, utility curtailment, and rejected batches.
Additional prizes include:
- Applied Frameworks Award
($50,000): Ohā Kanu from Hilo, Hawaii
with ʻOhā Kanu: An Ahupuaʻa-Inspired Food System for Mars
- Mission Simulation Award
($50,000): Orbital Health Systems,
Inc. from Evansville, Ind. with New Lunar Settlers Cookbook (Mars
Edition)
- Human-Centered Design
Award ($50,000):
Autonomic Resilience Collective from Bentonville, Ark. with Adaptive
Endurance and Growth through Integrated Sustenance (AEGIS) Mars
NASA also recognized one
international team:
- International Winner: Astrofood from Ellezelles, Belgium with Food Resilience Ecosystem for Space Habitats (FRESH)
The Deep Space Food
Challenge: Mars to Table is managed at NASA Marshall by Centennial Challenges, part of the Prizes, Challenges, and Crowdsourcing Program within
NASA’s Research and Technology Mission Directorate. The challenge is also
supported by NASA’s Division of Biological and Physical Sciences, Heliophysics
Division, Planetary Science Program, Human Research Program, and Earth Science
Division.
Centennial Challenges have a legacy of
more than 20 years engaging the public to solve complex problems that benefit
NASA’s broader initiatives. Past challenges have spurred advances in robotics,
additive manufacturing, power and energy, textiles, chemistry, and
biology.
The Deep Space Food Challenge: Mars to
Table is also supported by subject matter experts at NASA Johnson and NASA
Kennedy. The Methuselah Foundation and Floor23 Digital support the
administration of this challenge.
To learn more about the challenge, visit: go.nasa.gov/marstotable
Source: NASA Unveils Winning Designs for Mars Space Food Systems Challenge - NASA

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