Phi Earth offers Phi Tech™, a proprietary, science‑based protocol that boosts plant growth and resilience without genetic modification. By integrating oxygenated water, custom microbial and biochar blends, precision irrigation, and frequency/light treatments, the system accelerates timber, biomass, and crop production while improving soil health for governments, landowners, and forestry or agricultural enterprises.
Funding
Funding not disclosed
Founders
Product
Problem
The world must increase production of timber, food, and sustainable energy within the next 25 years, but soils, water resources, and land are already degraded, limiting the capacity of forests and farms to meet rising demand.
Solution
Phi Earth addresses this challenge with Phi Tech™, a proprietary, science‑based protocol that enhances plant growth without genetic modification. The system combines structured, oxygenated water, tailored microbial and biochar formulations, precision irrigation, and optimized frequency and light treatments to create optimal cellular conditions for faster establishment, stronger coppicing, and higher survivability. By applying these methods to fast‑growing species such as Paulownia elongata, Phi Earth enables rapid timber production, biomass generation for renewable energy, and improved crop vigor. The approach is validated through collaborative field pilots that measure growth, survivorship, and soil health, ensuring reproducible, data‑driven outcomes for partners.
Target Audience
Primary customers include governments, landowners, forestry and agricultural enterprises, and renewable‑energy developers seeking scalable, science‑backed methods to increase biomass productivity and ecosystem resilience.
Features
- Structured, oxygenated water delivery to improve root respiration and nutrient uptake
- Custom biological blends of beneficial fungi, bacteria, and biochar to enhance soil microbiome and plant resilience
- Precision irrigation and nutrient dosing that adapts to site‑specific conditions
- Frequency and light treatment regimens that stimulate cellular metabolism and growth rates
- Non‑genetically modifying protocol applied to Paulownia elongata for rapid timber and biomass production
- Pilot framework that includes co‑design, side‑by‑side treated and control plots, continuous measurement, and transparent result sharing