Controlled electrochemical separation

Separate more. Add less.

SERAT is being developed to turn plant biomass into usable material fractions through a controlled, closed-loop electrochemical process.

01

Biology in.
Usable fractions out.

Plant biomass is structurally complex. Industry does not buy “complex”; it buys materials that perform to specification.

SERAT’s role is to control the separation step—creating a path from locally available biomass to fractions that can be characterized, standardized and qualified.

INPUT

Plant biomass

Cotton stalks · hemp · locally suitable crops

ElectricitySERATWater + salt
OUTPUT

Material fractions

Fiber · lignin-rich fractions · other usable constituents

In plain language

Three steps from plant
to usable material.

The science is precise. The idea is simple.

01

Prepare the biomass

Clean and size the plant material so it can be processed consistently.

02

Separate the fractions

Use electricity, water and salt to generate the active chemistry on-site and open the plant structure.

03

Recover and qualify

Collect the separated fractions, characterize them and test each one for a defined industrial use.

Design principles

Built around control,
circularity and qualification.

01

Generated on-site

The active separation agent is generated on-site from salt, water and electricity—not purchased or shipped in.

02

Closed-loop operation

Process streams are intended to circulate within the system, with near-zero liquid discharge as a core development target.

03

Fraction-level control

Operating conditions can be developed around the material characteristics required by downstream applications.

04

Regional deployment

A modular depot model is intended to keep more processing and economic value closer to agricultural communities.

Development note: Performance, yields, operating requirements and environmental targets remain subject to testing, validation and scale-up.

“The farm produces biology.
Industry requires consistency.
SERAT is the missing link.