Industrial conversion.
Configured for value.
Ultra-high temperature plasma technology, established gas-processing equipment and project modelling connect your residual stream with useful outputs.
Recycle. Qualify. Convert. Connect.
Recycle first
Recover the materials that should be reused or recycled.
Qualify residuals
Understand composition, volume, moisture and contaminants.
Convert
A sealed conversion core uses ultra-high temperature plasma technology to create raw syngas.
Clean & condition
Industrial modules prepare the gas for its intended application.
Configure outputs
Match practical energy and molecule pathways to local demand.
Ultra-high temperature plasma technology
The conversion core uses submerged-arc furnace architecture to process qualified residual feedstock under controlled ultra-high temperature plasma conditions. Carbon-bearing material can form syngas; inorganic constituents require a defined management route.
Feedstock preparation, electrical load, furnace conditions, electrode use, refractory performance and residue characteristics.
Why syngas changes the decision.
A gas intermediate lets the project compare multiple downstream routes. Every route has its own equipment, utility requirements and commercial conditions.
Chemical energy is released primarily as heat.
Carbon becomes part of a potentially useful gas intermediate.
Simplified chemistry for illustration. Actual reactions, gas composition and yields depend on the feedstock and operating configuration.
Your residual material could be a new starting point.
Tell us what you have, where you are and what you need. We’ll establish the right first step.
