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«Ex astris, scientia»
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«Ex astris, scientia»
Development of a key element of a closed-loop biological life support system for orbital and lunar stations—a photobioreactor based on microalgae. The technology offers wide potential for commercial applications, ranging from enabling closed-loop life support in space to air purification and carbon dioxide recycling in residential, office, or industrial settings.
Development of a closed-loop biological life support system for lunar bases and long-duration space missions. At the core of the system are microalgae capable of converting CO₂ into oxygen, purifying water, and producing valuable biomaterials.
Functional prototypes are currently undergoing pilot testing under laboratory conditions. The efficiency of CO₂ absorption, oxygen generation, biomass production, and water filtration is being studied. A new prototype is being developed for human trials and pilot deployment.
Bioreactor prototype
Full-feature prototype, ~10–100 L working volume.
Team build-out
Product and engineering.
Market research
Segments and go-to-market.
Technology showcase
Demos and partnerships.
Pilot launch
First commercial terrestrial pilot.
Development of a key element of a closed-loop biological life support system for orbital and lunar stations—a photobioreactor based on microalgae. The technology offers wide potential for commercial applications, ranging from enabling closed-loop life support in space to air purification and carbon dioxide recycling in residential, office, or industrial settings.
Development of a closed-loop biological life support system for lunar bases and long-duration space missions. At the core of the system are microalgae capable of converting CO₂ into oxygen, purifying water, and producing valuable biomaterials.
Functional prototypes are currently undergoing pilot testing under laboratory conditions. The efficiency of CO₂ absorption, oxygen generation, biomass production, and water filtration is being studied. A new prototype is being developed for human trials and pilot deployment.
Full-feature prototype, ~10–100 L working volume.
Product and engineering.
Segments and go-to-market.
Demos and partnerships.
First commercial terrestrial pilot.
Bioreactor prototype
Full-feature prototype, ~10–100 L working volume.
Team build-out
Product and engineering.
Market research
Segments and go-to-market.
Technology showcase
Demos and partnerships.
Pilot launch
First commercial terrestrial pilot.