D-CRBN utilizes patented Plasma ARC™ technology to convert industrial CO2 emissions into circular carbon monoxide, a valuable feedstock for chemicals, polymers, and e-fuels. This process enables industries to reduce reliance on fossil feedstocks while contributing to a circular economy and achieving net-zero emissions.
Funding
Funding not disclosed
EAFounders
Product
Problem
Many industrial processes release significant amounts of CO2 emissions, contributing to climate change and hindering efforts to achieve net-zero emissions targets. Traditional methods of carbon capture and utilization are often energy-intensive and economically challenging, limiting their widespread adoption.
Solution
D-CRBN offers a solution by converting industrial CO2 emissions into circular carbon monoxide (CO) using patented Plasma ARC™ technology. This on-site CO2-to-CO conversion process reduces reliance on fossil feedstocks and enables industries to produce chemicals, polymers, and e-fuels sustainably. The Plasma ARC™ technology operates with minimal energy input and can handle diluted CO2 streams, integrating with diverse capture processes. D-CRBN provides two main product lines: ARC™ Genesis for industrial-scale CO2 conversion and ARC™ Prime for on-site pilot testing and validation of CO2 circularity potential.
Target Audience
D-CRBN's primary customers are industrial companies in the chemical, steel, petrochemical, and e-fuel sectors seeking to reduce their carbon footprint and create new business opportunities through CO2 utilization.
Features
- Patented Plasma ARC™ technology for efficient CO2-to-CO conversion
- On-site, plug-and-play installation for easy integration with existing industrial processes
- Ability to process diluted CO2 streams containing up to 50% N2
- Rapid startup and shutdown capabilities for adapting to operational needs and renewable energy availability
- Modular SPARC reactor design for scalable systems, from pilot units to large industrial setups
- Lower CAPEX and OPEX compared to alternative CO2 conversion technologies like reverse water gas shift (rWGS)
- Production of circular carbon monoxide (CO), a valuable feedstock for chemicals, polymers, and e-fuels