Lunar-Regolith Cycle · Phase III

Grow Beyond Earth's Horizon

Next-generation bioluminescent agriculture for off-world environments. Atmospheric scrubbers, photosynthetic optimization, and circadian growth-sync engineered for lunar soil.

0%
O₂ yield
efficiency
0t
CO₂ captured
annually
0×
Crop yield
multiplier
L1
Lunar
Station
Atmospheric O₂ +340 ppm Regolith pH 6.8 optimal Photon density 1,240 μmol/m²/s Growth sync Circadian 98.2% CO₂ scrub rate 14.2 t/day Biomass yield 340% above baseline Lunar soil enrichment Phase III active Atmospheric O₂ +340 ppm Regolith pH 6.8 optimal Photon density 1,240 μmol/m²/s Growth sync Circadian 98.2% CO₂ scrub rate 14.2 t/day Biomass yield 340% above baseline Lunar soil enrichment Phase III active

Carbon Scrubbers
at scale

Our proprietary atmospheric scrubbers leverage engineered algal biofilms operating at 2,400× the natural photosynthetic rate. Zero-energy passive capture sustained by bioluminescent colonies embedded in the regolith membrane.


CO₂ → O₂ Flux
Real-time Scrubber Array · Module 7
0% 87% 100%
14.2 t/day
Scrub Rate
99.4%
Purity Output
14:32
Growth Cycle
Photonic
16h active
Rest phase
8h dormant
Chlorophyll
Peak 98.2%
Nutrient
Auto-cycle

Biological
time-keeping

Synthetic circadian oscillators derived from cyanobacterial clock proteins regulate photosynthetic output across a 24-hour lunar equivalent cycle. Yield improvements of 340% over static-light agriculture.


Photosynthetic Rate 2,400×
Biomass Conversion 94.8%
Water Use Efficiency −82%
Lunar-Regolith
Enrichment
Iron-depleted regolith inoculated with nitrogen-fixing archaeal strains. Achieves agricultural-grade soil in 8 lunar cycles.
8 cycles
To fertile soil
Synthetic Crop
Genome
CRISPR-optimised C4 photosynthesis pathway embedded in staple crops, tolerant of 0.3 atm pressure and −40°C diurnal variance.
340%
Yield uplift
Photon
Optimisation
Spectral tuning of supplemental grow-light arrays to match chlorophyll-a/b absorption maxima at 680nm and 700nm.
99.4%
Photon capture

Cultivate the
next frontier

Join fourteen planetary research institutions currently piloting our astra-botanical systems. Applications for the 2026 lunar deployment cohort are now open.