Build advantage while others retreat.
When margins tighten, most operators pull back. The ones that don't capture share.
Not intentionally. Just systemically. Nextract turns the biomass already leaving your facility into multiple high-value ingredients — without disrupting a single line of your operation.
Not intentionally. Just systemically. Nextract turns the biomass already leaving your facility into multiple high-value ingredients — without disrupting a single line of your operation.
Fibers, oils, bioactives, proteins. Every plant byproduct is full of them. They just happen to be locked inside material that gets composted, burned, or hauled away.
Patented technology
Our patented process redefines how extraction is done. Supercritical CO₂ moves through five controlled pressure stages, separating molecules by mass and capturing each fraction cleanly—without solvents or additional steps.
U.S. Patents 11,376,522 & 11,628,380
Pressure drops left → right, separating molecules by mass
Built for what extraction couldn't do before.
| Legacy sc-CO₂ | | |
|---|---|---|
| Cycle time | 40 min – 60 hrs | < 20 min |
| Throughput | Up to 2 tons / day | 1–25 tons / hr |
| Pre-processing | Required | None |
| Process steps | 12+ | 1 |
| Solvents | Chemical downstream | Zero |
| Clean-label ready | ✕ | ✓ |
| Scalable economics | ✕ | ✓ |
| Fits existing operations | ✕ | ✓ |
Licensed. Co-located. The right partners are next.
Enter your annual biomass. See what you're losing, and what you could recover.
Turn your disposal costs of $150–$250/ton into recovered ingredient whose values equal $3,000–$8,000+/ton across feedstocks.
A major breakthrough in green extraction tech.
Chris Gallagher USA Today
Limited opportunity
The shocks no longer arrive one at a time. They compound, overlap, and reset the operating environment every quarter. Stability isn't returning. The job now is to operate inside it.
What the next generation of operators does differently.
When margins tighten, most operators pull back. The ones that don't capture share.
Your biomass is a recurring expense. The same stream, processed, becomes a recurring revenue line.
Calculated risk taken now compounds. So does inaction.
Early deployments compound. By the time the market catches on, the first movers are already entrenched.
Fibers, oils, bioactives, proteins. Every plant byproduct is full of them. They just happen to be locked inside material that gets composted, burned, or hauled away.
Pressure does the sorting.
One process. Five fractions.
Supercritical CO₂ enters the chamber under pressure. As pressure drops across five stages, molecules separate by mass — each fraction collected cleanly, without solvents, without additional steps.
Fractions out
Industrial scale
No interruption
Supercritical CO₂ extraction has been understood since the 1970s. Clean. Solvent-free. Effective. The science was settled — but the economics weren't. Cycle times ran in hours. Throughput maxed at one or two tons a day. The systems demanded constant manual intervention.
So the technology stayed where it always had been: in pharma labs, in craft beer hops, in decaffeinated coffee. Boutique. Premium-priced. Unscalable.
Olaf and Greg looked at the same fifty-year-old constraint everyone else had accepted, and refused to. They re-engineered the chamber. They re-engineered the cascade. They re-engineered the math.
What used to take sixteen hours now takes fifteen minutes. What used to run at two tons per day now runs at fifty tons per hour. The chemistry didn't change. The system around it did.
Supercritical CO₂ extraction has been the right answer since the 1970s. It just wasn't a feasible answer at scale — until SCO2 re-engineered the system around it.
Supercritical CO₂ extraction is invented and patented. Clean. Effective. Solvent-free. Limited to laboratory scale.
Used in decaf coffee, craft beer hops, botanical pharmaceuticals. Premium ingredients, premium prices. Industrial scale remained out of reach.
Olaf Lee and Greg White begin re-engineering the chamber and cascade architecture from first principles. The chemistry was settled. The system was the bottleneck.
Cycle time falls from 16 hours to under 15 minutes. Throughput rises from 2 tons/day to 50 tons/hour. The math finally works.
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Verified. Certified. Pure.