GENESISLOOP™ · TECHNOLOGY

Advanced chemical looping for
waste-to-energy projects.

One modular platform. Multiple energy and chemical pathways.

GenesisLoop™ powered by Revodox™ uses controlled oxygen transfer, separate reaction environments, and integrated heat recovery to transform waste into hydrogen-rich gas, syngas, recoverable energy, and a concentrated CO₂-rich stream.

CORE ADVANTAGES

A different industrial pathway from waste to energy.

Precise Oxygen Delivery

Revodox™ carries oxygen in solid form. Operators can control how much oxygen enters the reaction without introducing air directly into the conversion reactor or diluting the product gas with nitrogen.

Controlled Molecular Conversion

Separate reaction environments let GenesisLoop™ control temperature, steam, feed rate, carrier circulation, and reaction time as carbon-containing material is converted into useful gases.

Heat Returned Through the Loop

Regenerating Revodox™ with air releases high-temperature heat. The circulating carrier returns that energy to the conversion reactor, reducing the external heat the core loop needs after startup.

THE SCIENCE

Built on decades of chemical-looping research.

GenesisLoop™ builds on more than 30 years of chemical-looping research led by Dr. Liang-Shih Fan at The Ohio State University. That foundation spans oxygen-carrier materials, reactor hydrodynamics, hydrogen production, carbon separation, modeling, laboratory research, and pilot-scale systems.

EvoGenesis combines that science with waste preparation, gas cleanup, controls, heat recovery, safety systems, and project engineering to create a complete commercial platform.

30+

YEARS

of chemical-looping research at Ohio State

RESEARCH

PUBLISHED WORK

peer-reviewed studies and technical programs

PILOT

RELATED SYSTEM WORK

from laboratory equipment to integrated pilot operation

SYSTEM

COMMERCIAL INTEGRATION

reactors, controls, cleanup, handling, and heat recovery

PROCESS CONTROL · GENESISLOOP LAB

MODULAR REACTOR CONFIGURATIONS

How GenesisLoop can be configured.

Selected material

Oxidized carrier

Reduced carrier

Steam (optional)

Carrier

Air

Selected material

Oxidized carrier

CONVERSION REACTOR

FUNCTION

Selected material reacts with oxygen carried by Revodox™

OUTPUTS

Syngas pathway

Reduced carrier exits the reactor

REDUCED CARRIER

Reduced carrier

Steam (optional)

STEAM REACTOR

OPTIONAL CONFIGURATION

Reduced carrier reacts with steam to produce a hydrogen-rich gas stream

OUTPUTS

H₂-rich gas

Partially restored carrier

PARTIALLY RESTORED CARRIER

Carrier

Air

CARRIER REGENERATOR

FUNCTION

Air restores the carrier and releases recoverable heat

OUTPUTS

Restored carrier

+ Recoverable heat

Restored Revodox™
returns to the conversion reactor

Restored Revodox™ returns to the conversion reactor

Revodox™ is the regenerable material that carries oxygen between the active reactors. Syngas configurations use conversion and regeneration. A hydrogen-rich-gas configuration adds the steam reactor shown here.

COMMERCIAL PLATFORM

More than a reactor. A complete commercial platform.

GenesisLoop™ integrates the waste interface, Revodox™ oxygen-carrier technology, configurable reactors, gas cleanup, controls, heat recovery, safety systems, and project engineering required to deliver a market-ready energy product.

The performance advantage is in the architecture: controlled oxygen transfer, integrated heat recovery, and reaction environments designed around useful outputs.

Research Foundation

Decades of chemical-looping work inform the oxygen-carrier chemistry, reactor design, and process configurations used by GenesisLoop™.

Revodox™

EvoGenesis’s proprietary regenerable oxygen-carrier technology transfers oxygen, withstands circulation, and returns high-temperature heat to the active loop.

Modular System Architecture

A common conversion-and-regeneration loop that can add a steam stage and project-specific cleanup equipment for hydrogen-rich gas, syngas, heat, and power pathways.

Process Controls & Integration

Controls coordinate carrier circulation, temperature, pressure, gas routing, cleanup, monitoring, and safe operation across the complete system.

Material Preparation Interface

Each candidate material is characterized so preparation, feeding, contaminant management, and gas cleanup can be designed around it.

PRECISION ENGINEERING

Every valve. Every fitting.
Every flow path.

GenesisLoop™ requires coordinated control of solids circulation, gas routing, temperature, pressure, cleanup, and monitoring across every stage of the process.

TECHNOLOGY COMPARISON

How GenesisLoop Differs

Recycling

Pyrolysis

Incineration

GenesisLoop™

Primary Role

Material recovery and reprocessing for reuse

Thermal decomposition without oxygen to produce bio-oil, char, or gas

High-temperature combustion with air to generate heat/power

Chemical-looping thermochemical conversion using solid oxygen carrier

Typical Material

Clean, sorted, dry, single-stream waste fractions

Dry organic waste, agricultural residue, plastic-rich feedstocks

Mixed municipal solid waste, high-volume mixed streams

Plastics, used tires, organic waste, and other qualified carbon-containing feedstocks evaluated for project fit

Oxygen Delivery

N/A — no combustion process involved

None (anoxic or low-oxygen environment)

Direct air injection into combustion chamber

Solid oxygen carrier — no direct air contact with fuel

Primary Products

Recovered material fractions (paper, plastic, metal, glass)

Bio-oil, syngas, biochar — variable quality

Heat, steam, electricity — with mixed flue gas and ash

Syngas, hydrogen-rich gas, recoverable energy, and a concentrated CO₂ process stream

Best Fit

High-quality, sorted, clean feedstocks with viable secondary markets

Dry biomass or plastics with defined downstream product targets

High-volume mixed waste disposal where energy recovery is secondary

Projects built around a defined waste supply, precise process control, integrated heat recovery, and a clear energy market

ENGINEERING TEAM

Want a closer look at the engineering?

Talk with our team about the material, Revodox™ cycle, reactor configuration, heat integration, gas cleanup, and site requirements behind a GenesisLoop™ project.

EvoGenesis loop mark
EvoGenesis

EvoGenesis transforms plastic waste, used tires, and biological waste into valuable energy resources through the GenesisLoop™, powered by Revodox™.

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INVESTORS

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