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

Data Centres

FocusUSUKIRELANDEU

On behind the meter gas, GIGARIG captures on the turbine's own exhaust heat, so the parasitic load on your customer's power stays low. And it gives water back rather than consuming it, condensing the exhaust's own vapour into cooling make-up.

Modules are factory built, truck delivered and incrementally scaled, the same deployment model as the generation itself, sited alongside the turbine skids. Start with partial capture and add modules as commitments tighten over the life of the contract.

Low power penalty
Runs on exhaust heat
Water positive
~0.5-0.75 t water / t CO₂

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.