FREQUENTLY ASKED QUESTIONS
Questions about GenesisLoop™,
answered.
Straight answers about GenesisLoop™, Revodox™, chemical looping, waste inputs, energy outputs, projects, and partnerships.
TECHNOLOGY
Is GenesisLoop™ the same as incineration?
GenesisLoop™ is a chemical-looping system, not a conventional incinerator. Revodox™ delivers oxygen in solid form, so waste is converted through controlled reactions without direct air-fed combustion in the conversion reactor.
Keeping air out of that reactor limits nitrogen dilution and helps the primary gas streams remain separate as they form.
What is chemical looping?
Chemical looping moves oxygen from air to waste with a regenerable solid carrier. Revodox™ is regenerated with air, delivers oxygen in the active reactors, and circulates back through the process.
Separate reactor environments give operators precise control over oxygen delivery, temperature, steam, feed rate, carrier circulation, and reaction time.
What is Revodox™ media?
Revodox™ is EvoGenesis’s proprietary regenerable oxygen-carrier technology at the heart of GenesisLoop™. It transfers oxygen, returns high-temperature heat to the active loop, and is engineered for repeated circulation.
Revodox™ is a regenerable circulating carrier rather than a conventional single-use reagent. Operating life and replenishment requirements depend on system configuration and operating conditions.
Is the technology proven at scale?
GenesisLoop™ builds on more than 30 years of chemical-looping research at The Ohio State University, including oxygen-carrier development, reactor engineering, laboratory work, and pilot-scale systems.
EvoGenesis is bringing that foundation into a complete commercial platform for waste-to-energy projects.
What should a project expect from its emissions profile?
Outputs and emissions depend on the selected feedstock, reactor configuration, gas cleanup system, and site requirements. Keeping air and feedstock in separate reactor stages avoids the nitrogen dilution associated with direct air-fed conversion and can produce a concentrated CO₂-rich stream.
Every project still requires feedstock analysis, emissions modeling, gas-cleanup design, and site-specific permitting.
FEEDSTOCKS
What feedstocks can GenesisLoop™ handle?
GenesisLoop™ is intended for selected carbon-containing materials that are difficult to reuse or recycle. Current areas of focus include selected plastic waste, tire-derived material, and organic material.
Every candidate feedstock is evaluated for composition, contaminants, moisture, preparation requirements, feeding behavior, and expected performance before a project moves forward.
Does the material need to be sorted or prepared?
Preparation depends on the material. It may include characterization, size reduction, moisture management, contaminant controls, blending, and a consistent feeding method.
EvoGenesis defines the front-end preparation requirements for each candidate feedstock during technical evaluation and engineering.
What supply volume does a project need?
A practical supply volume depends on the feedstock’s energy content, consistency, location, preparation requirements, product configuration, and project economics. There is no single public threshold that fits every opportunity.
If you manage a candidate material, share its composition, form, location, available volume, and any existing analysis so EvoGenesis can assess the fit.
Can GenesisLoop™ evaluate mixed or contaminated plastics?
Selected mixed-plastic streams are an important target application for GenesisLoop™. Each stream still requires evaluation for polymer mix, contaminants, moisture, preparation needs, and expected performance.
Materials containing chlorine, metals, halogens, or other problematic constituents require project-specific handling and gas-cleanup strategies.
PRODUCTS
What can GenesisLoop™ produce?
GenesisLoop™ can be configured for syngas, a separate hydrogen-rich gas stream, recoverable high-temperature heat, and a concentrated CO₂-rich stream. The selected reactor arrangement determines which outputs are produced.
Carrier regeneration also returns heat to the core process, sharply reducing purchased thermal energy after startup.
What is the hydrogen output quality?
A configuration that includes a steam reactor can produce a separate hydrogen-rich gas stream without nitrogen introduced by direct air contact in that reactor.
Downstream conditioning and purification are then designed around the specifications of the intended industrial use. Final purity and recovery depend on the complete project configuration.
Can the outputs support liquid-fuel production?
Properly conditioned syngas can support downstream pathways such as methanol or Fischer–Tropsch synthesis. Those conversion systems are separate from GenesisLoop™ and require project-specific technology partners, product specifications, and economics.
EvoGenesis works with product and engineering partners to define the complete pathway for each opportunity.
Who could use the products?
Potential users include industrial gas and chemical companies, industrial hosts, and power or heat users. Each project is shaped around the required product specification, delivery location, site needs, and appropriate commercial agreements.
EvoGenesis builds relationships with product buyers early so the system configuration and offtake plan develop together.
BUSINESS
What is EvoGenesis’s commercial model?
EvoGenesis combines technology supply with project development and commercial partnerships. A project can include technology licensing, Revodox™ supply and lifecycle support, engineering, waste-supply agreements, energy offtake, and operating support.
The commercial structure is built around the waste supply, site, energy product, and role of each project partner.
How does a material-supply partnership begin?
Start by sharing the material, available volume, location, current disposition, and any existing analysis. EvoGenesis assesses technical and commercial fit, then defines the study, engineering work, or agreement needed for the next step.
The goal is to determine whether the material, site, desired outputs, and project partners can form a workable project.
What is the path from first conversation to deployment?
The commercialization path moves through material and market evaluation, pre-engineering, integrated system design, commercial agreements, project financing, construction, and commissioning.
Timing depends on the feedstock, site, permitting, engineering scope, counterparties, and financing. EvoGenesis defines milestones for each project instead of applying one schedule to every opportunity.
INVESTORS
How can investors learn about the current round?
Fundraising details are shared directly with qualified investors. Use the investor inquiry form to request the current overview and discuss fit with the EvoGenesis team.
Qualified investors may receive additional technical, commercial, and financial materials under the appropriate confidentiality arrangements.
What stage is EvoGenesis at?
EvoGenesis is advancing GenesisLoop™ through commercial discussions, pre-engineering, integrated system design, oxygen-carrier development, and partnership building.
The company’s roadmap moves from integrated engineering and demonstration toward commercial projects shaped around verified materials, product requirements, project hosts, engineering partners, and capital.
How do I request investor materials?
Submit an investor inquiry through the Contact or Investors page with a short introduction, your organization, investment focus, and areas of interest. The EvoGenesis team will follow up with the appropriate next step.
Technical and investor materials are provided to qualified parties when relevant and under suitable confidentiality terms.
STILL HAVE QUESTIONS?
Talk directly with our team.
Talk with our technical and commercial teams about a waste stream, energy product, project site, partnership, or investment opportunity.
EvoGenesis transforms plastic waste, used tires, and biological waste into valuable energy resources through the GenesisLoop™, powered by Revodox™.
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