TerraEos delivers low-energy carbon capture technology designed to seamlessly integrate into heavy industry without the prohibitive costs.
Whether it's Canada's $170/t carbon tax, Europe's aggressive ETS framework, or the massive missed opportunity of the US 45Q $85/t credits, the cost of venting CO₂ is scaling drastically. For a single industrial plant venting 1 million tonnes of CO₂ a year, that is a recurring annual exposure in the hundreds of millions. Most existing capture solutions are either too small to handle that exhaust volume, or so energy-hungry they cost more to run than the penalties they avoid.
Most carbon capture systems use harsh chemicals that rust and damage equipment, requiring expensive specialty piping. TerraEos uses a low-corrosion solvent. Testing shows we can build our units out of standard carbon steel, drastically lowering the upfront cost for industrial facilities.
Projected up to ~40% lower construction cost*Most carbon capture systems burn expensive, high-temperature steam to recycle their solvent. TerraEos is designed to run on the low-grade waste heat that industrial plants already vent into the air. This lab-validated approach means our system runs on effectively free energy that the facility was throwing away.
Regenerates on heat that's already on-siteCement kilns produce among the highest CO₂ concentrations of any industrial exhaust — the exact conditions where our low-corrosion solvent chemistry performs best. Process emissions are inherent to the chemistry of making clinker; there is no fuel-switch solution. Carbon capture is the only credible path, and global mandates make delay incredibly expensive.
Frameworks like Canada's Net-Zero commitments, EU ETS, and US EPA rules remove the option to do nothing. Heavy industry must abate.
Lenders and investors screen on ESG before funding. No credible decarbonization path means restricted access to capital.
Cement plants are mid-upgrade. The cheapest time to integrate capture is while the plant is already being modified.
We read a plant's exhaust data and show, in dollars, exactly what it's losing to global carbon compliance today.
A custom FEED engineering design for their specific site. This is the hook that turns a lead into a partner.
We partner with a major EPC firm to fabricate the plant, then commission and tune it.
High-margin recurring revenue: bulk solvent supply, make-up volumes, and performance contracts.
CO₂ capture confirmed at low-grade waste heat (70–90 °C). Basic corrosion testing complete. Solvent chemistry characterised and documented.
Engaging cement plant partners to run pre-FEED (pre-front-end engineering & design) studies. Defining process parameters, equipment sizing, and integration points for a first industrial site.
Full FEED master design delivered for a target cement facility. EPC fabrication partner selected. Third-party corrosion certification underway.
Pilot skid commissioned on a live cement exhaust stream. Continuous operation validates solvent stability. First commercial license and bulk solvent supply contract signed.
Send us your facility's emissions profile. We'll model your exposure under global frameworks (45Q, ETS, Carbon Tax) and show how a efficient capture system transforms your bottom line, before you commit to a single drawing.
We are developing CCUS 2.0 for hard-to-abate industries globally. TerraEos is progressing toward pre-FEED studies and building toward a solvent-as-a-service model for recurring, high-margin revenue.