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Abstract – PCCC7: Development needs and knowledge gaps of CESAR1 solvent

Abstract – PCCC7: Development needs and knowledge gaps of CESAR1 solvent

av Solène Fovelle | nov 7, 2023 | Conference Abstracts

Reducing carbon dioxide (CO₂) emissions is one of the most critical challenges in combating climate change. To address this, scientists are developing technologies that can capture CO₂ released from industrial plants and power stations. Among the various methods...
Abstract – TCCS-12: Towards understanding CESAR1 degradation

Abstract – TCCS-12: Towards understanding CESAR1 degradation

av Solène Fovelle | sep 7, 2023 | Conference Abstracts

Ethanolamine (MEA), a water-based solvent, has long been considered the “benchmark” solvent for post-combustion CO₂ capture. This is not because it is the best-performing solvent—it has relatively high energy requirements and is chemically unstable compared to newer...
Abstract – TCCS-12:  “AURORA – ACCELERATED DEPLOYMENT OF INTEGRATED CCUS CHAINS BASED ON SOLVENT CAPTURE TECHNOLOGY”

Abstract – TCCS-12: “AURORA – ACCELERATED DEPLOYMENT OF INTEGRATED CCUS CHAINS BASED ON SOLVENT CAPTURE TECHNOLOGY”

av Solène Fovelle | sep 7, 2023 | Conference Abstracts

AURORA, short for “Accelerated Deployment of Integrated CCUS Chains Based on Solvent Capture Technology”, is a major research and innovation project funded under the Horizon Europe program. Launched in January 2023, the project runs for three and a half...
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Recent Posts

  • Conference abstract – PCCC8: Modelling CO2 chemical absorption using the CESAR1 solvent
  • Conference abstract – PCCC8: Reboiler duties at ultra-high CO2 capture rates with MEA and CESAR1
  • Conference abstract – PCCC8: How can we manage aerosol emissions in the CO2 capture process using the CESAR1 Solvent?
  • Journal Publication – In-Depth Study of CESAR1 Solvent Degradation Under CO₂ Capture Conditions
  • What’s New in AURORA? Discover Our Latest Highlights in Our 4th Newsletter!

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This project has received funding from the European Union’s HORIZON EUROPE research and innovation programme under grant agreement No 101096521.

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