Poster (Scientific congresses and symposiums)
Simulations and validation on laboratory scale pilot CO2 capture vacuum pressure swing adsorption using MIL-160(Al) with dry and wet flue gas
Henrotin, Arnaud; Heymans, Nicolas; Casaban, Jose et al.
202417th Greenhouse Gas Control Technologies Conference (GHGT-17)
 

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Keywords :
CO2 capture; Vacuum Pressure Swing Adsorption; Metal Organic Framework; Laboratory pilot
Disciplines :
Chemical engineering
Energy
Author, co-author :
Henrotin, Arnaud  ;  Université de Mons - UMONS > Faculté Polytechnique > Service de Thermodynamique, Physique mathématiques
Heymans, Nicolas  ;  Université de Mons - UMONS > Faculté Polytechnique > Service de Thermodynamique, Physique mathématiques
Casaban, Jose;  MOF Technologies Ltd
De Weireld, Guy  ;  Université de Mons - UMONS > Faculté Polytechnique > Service de Thermodynamique, Physique mathématiques
Language :
English
Title :
Simulations and validation on laboratory scale pilot CO2 capture vacuum pressure swing adsorption using MIL-160(Al) with dry and wet flue gas
Publication date :
22 October 2024
Event name :
17th Greenhouse Gas Control Technologies Conference (GHGT-17)
Event place :
Calgary, Canada
Event date :
20/10/2024 - 24/10/2024
Audience :
International
Research unit :
Thermodynamics and Mathematical Physics
Research institute :
R200 - Institut de Recherche en Energie
European Projects :
H2020 - 837975 - MOF4AIR - Metal Organic Frameworks for carbon dioxide Adsorption processes in power production and energy Intensive industRies
Name of the research project :
4686 - MOF4AIR - Metal Organic Frameworks for carbon dioxide Adsorption processes in power production and energy Intensive - Sources publiques européennes
Funders :
EU - European Union
Funding number :
837975
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since 07 January 2025

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