Simulation Process for Allyl Alcohol ...
Type de document :
Article dans une revue scientifique: Article original
URL permanente :
Titre :
Simulation Process for Allyl Alcohol Production via Deoxydehydration of Glycerol
Auteur(s) :
Assaad, Ghadir [Auteur]
Unité de Catalyse et Chimie du Solide - UMR 8181 [UCCS]
Vargas, K. S. [Auteur]
Katryniok, Benjamin [Auteur]
Unité de Catalyse et Chimie du Solide (UCCS) - UMR 8181
Araque Marin, Marcia Carolina [Auteur]
Unité de Catalyse et Chimie du Solide - UMR 8181 [UCCS]
Unité de Catalyse et Chimie du Solide - UMR 8181 [UCCS]
Vargas, K. S. [Auteur]
Katryniok, Benjamin [Auteur]

Unité de Catalyse et Chimie du Solide (UCCS) - UMR 8181
Araque Marin, Marcia Carolina [Auteur]

Unité de Catalyse et Chimie du Solide - UMR 8181 [UCCS]
Titre de la revue :
Chemengineering
Nom court de la revue :
ChemEngineering
Numéro :
8
Date de publication :
2024-03-11
ISSN :
2305-7084
Mot(s)-clé(s) en anglais :
glycerol
allyl alcohol
process simulation
ASPEN
deoxydehydration
allyl alcohol
process simulation
ASPEN
deoxydehydration
Discipline(s) HAL :
Chimie/Catalyse
Résumé en anglais : [en]
A process for the deoxydehydration (DODH) of glycerol to allyl alcohol in 2-hexanol as solvent was modelled with Aspen Plus. Experimental results for the DODH reaction, the liquid vapour equilibria and the catalytic ...
Lire la suite >A process for the deoxydehydration (DODH) of glycerol to allyl alcohol in 2-hexanol as solvent was modelled with Aspen Plus. Experimental results for the DODH reaction, the liquid vapour equilibria and the catalytic hydrogenation were employed for the development of the model. The whole process consists of four subsystems: allyl alcohol production (S1), solvent recovery (S2), allyl alcohol purification (S3) and solvent regeneration (S4). Based on the results of the process model, allyl alcohol with 96% yield and a purity of 99.99% with product loss of only 0.2% was obtained. The optimisation of the energy consumption through an integrated heat exchange network resulted in a net primary energy input of 863.5 kW, which corresponded to a carbon footprint of 1.89 kgCO2/kgAllylOH.Lire moins >
Lire la suite >A process for the deoxydehydration (DODH) of glycerol to allyl alcohol in 2-hexanol as solvent was modelled with Aspen Plus. Experimental results for the DODH reaction, the liquid vapour equilibria and the catalytic hydrogenation were employed for the development of the model. The whole process consists of four subsystems: allyl alcohol production (S1), solvent recovery (S2), allyl alcohol purification (S3) and solvent regeneration (S4). Based on the results of the process model, allyl alcohol with 96% yield and a purity of 99.99% with product loss of only 0.2% was obtained. The optimisation of the energy consumption through an integrated heat exchange network resulted in a net primary energy input of 863.5 kW, which corresponded to a carbon footprint of 1.89 kgCO2/kgAllylOH.Lire moins >
Langue :
Anglais
Audience :
Internationale
Vulgarisation :
Non
Établissement(s) :
Université de Lille
CNRS
Centrale Lille
ENSCL
Univ. Artois
CNRS
Centrale Lille
ENSCL
Univ. Artois
Collections :
Équipe(s) de recherche :
Valorisation des alcanes et de la biomasse (VAALBIO)
Date de dépôt :
2024-05-29T21:12:34Z
2024-06-07T06:50:22Z
2024-06-07T06:50:22Z
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