One Core Innovation,

Scalable Across Industries

Our innovative CO2 capture technology offers unparalleled efficiency, in extracting carbon dioxide from gas mixtures.

Irrespective of the CO2 concentration, from 400ppm DAC to 5% Diluted Point Source, RepAir’s solution can effectively separate it using the same technology.

Diluted Point Source

Serving industrial emitters with low-concentration CO₂ streams (0 - 5%)
Industries such as gas turbine operators and aluminum producers face growing pressure to decarbonize while keeping operations reliable and cost competitive. RepAir’s solid-state, electrochemical carbon capture solution is purpose-built for these diluted CO₂ streams (0–5%), enabling industries to meet today’s climate and regulatory demands without sacrificing performance.

Why RepAir for Diluted Point Source?

RepAir’s diluted point source solution offers a scalable, safe, solid-state system that operates without heat, solvents, or waste. Its modular, mass-manufacturable design offers lower capital expenditures (CAPEX), and its energy efficiency cuts operational expenditures (OPEX) drastically delivering the ultimate decarbonization solution industry needs.

RepAir's Proven Solution
RepAir’s proven technology is purpose-built from the ground up capturing CO₂ even at low concentrations of 1%. It consumes minimal energy at 0.5 MWh per tonne in one, single-step process. 

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Carbon Dioxide Removal (CDR) and Storage (DACS)

Delivering permanent, high-quality carbon removal
Organizations across aviation, shipping, automotive, and financial services face mounting pressure to address Scope 3 emissions. Nature-based offsets are increasingly questioned for their permanence, verification, and scalability—leaving corporate buyers exposed to ineffective climate investments. As the carbon removal market approaches a projected trillion dollars, the demand for efficient, scalable and affordable DACS solutions has never been greater. RepAir’s electrochemical Direct Air Capture (DAC) technology sets a new benchmark in engineered carbon removal, delivering a durable, permanent, and scalable solution that meets critical market cost targets for large-scale deployment.

Why RepAir’s Technological CDR?
Our breakthrough system, requiring just 650 kWh per tonne, captures each tonne of CO₂ with 70% less energy compared to alternative DAC methods, at a cost of under $100 per tonne. The system is built with mass-manufacturable, low-cost materials and operates through a fully electric, solid-state, solvent-free system that requires no external heat. Its modular architecture enables rapid deployment and flexible scaling.  The system's instant ramp-up and shutdown capabilities provide seamless integration with variable renewable energy sources, positioning RepAir as a cornerstone solution uniquely designed for global-scale deployment in this rapidly expanding market.

Direct Air Capture and Storage (DACS)
RepAir enables permanent carbon removal through secure geological storage. By combining highly efficient DAC with proven CO₂ storage pathways, RepAir delivers carbon credits with guaranteed permanence and integrity—providing corporations a credible pathway to true net zero.

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CO2 Feedstock

RepAir’s captured CO₂ provides an optimal feedstock for industries transitioning to sustainable production, including aviation, shipping, and automotive sectors. As companies increasingly invest in alternative fuels and materials made from recycled CO₂ and hydrogen from electrolysis, RepAir supports the creation of synthetic fuels like Sustainable Aviation Fuel (SAF) for aviation and e-methanol for maritime transport, as well as alternative plastics for automotive applications. Traditional SAF production depends on biogenic CO₂ from crops or biomass which are limited in supply and require extensive land use. By utilizing the atmosphere’s endless supply of CO₂, RepAir’s electrochemical DAC provides a limitless, sustainable, scalable alternative.  Our fully electric, low-energy, no external heat system delivers a cost-effective and verifiable CO₂ source for eSAF production, accelerating the transition to net-zero with measurable climate integrity.

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