Applications

One capture module. Many markets.

The same core technology captures CO₂ from any hot, CO₂-rich exhaust stream. Pick the market that matches your site to see how it fits.

~£20-30 /t*
Capture cost on waste heat
40-ft module
Containerised · ships on a flatbed
~300-400 °C+
Any waste-heat source
3-30% CO₂
One capture module
96-99%
CO₂ purity
Chemical-free
Inert ceramic sorbent
* At ~13% CO₂ feed, excl. compression.
Select your market6 SECTORS

Refining

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At a refinery, GIGARIG can be deployed at individual heater stacks rather than as one central plant: no site-wide ductwork, no solvent in your process environment, no added water treatment. Each installation runs on its heater's own waste heat, in a skid format your operations team are already familiar with.

Roll out heater by heater during normal turnaround windows, starting wherever your carbon numbers say to start; no site shutdown and no all-or-nothing capex decision. If a unit is later reconfigured or decommissioned, the modules relocate with it.

8-12% CO₂
Fired-heater flue
No central plant
No site ductwork

Full-scale prototype in build now, field trials from Q4 2026.

Results early 2027
How it works

GIGARIG is a modular carbon capture system. It captures CO₂ from flue gas or exhaust using temperature-swing adsorption on a ceramic sorbent, regenerated by waste heat from the host process.

Each capture module is a containerised 40 ft unit, factory built and shipped on a standard flatbed, with site matched heat recovery and conditioning skids alongside. No chemicals, no solvents, no water consumption for capture. No pressure vessels; atmospheric pressure throughout. The sorbent is an inert ceramic with a replacement cycle of several years. Modules install in weeks and run unattended.

The system operates across a wide range of CO₂ concentrations and integrates with any process that produces waste heat above ~300 °C. One module, a small cluster, or a large array; capture capacity scales in single-module increments to match the application.

GIGARIG is being developed for deployment across waste-to-energy, biomass, oil & gas, data-centre power, shipping and refining. The same core technology applies to any source of CO₂ in flue gas with available waste heat. If your process has a hot exhaust stream containing CO₂, we’d like to hear from you.

All performance figures are indicative and pre-trial. The full-scale prototype is in build now, field trials from Q4 2026, results early 2027.