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D-CRBN

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.

Founded 2021143K+ followers
Updated 20 months ago

Funding

Funding not disclosed

EA
Funding rounds are not available yet.

Founders

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
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