Butane dehydrogenation: Thermodynamic modeling and performance analysis of selected process simulators

dc.contributor.authorBarde, E.D.
dc.contributor.authorOyegoke, T.
dc.contributor.authorAliyu, A.
dc.contributor.authorUzochukwu, M.I.
dc.contributor.authorOdih, C.
dc.date.accessioned2024-04-10T15:55:21Z
dc.date.available2024-04-10T15:55:21Z
dc.date.issued2024
dc.description.abstractThe critical role of process simulation in modern chemical engineering cannot be overstated, with its capacity to facilitate process scale-up, assess alternative designs, and comprehend plant efficiency. This research delves into the performance of three software programs, Cape-Open to Cape-Open (CC), DWSim, and Aspen HYSYS (AH), in modeling butane dehydrogenation. The focus is on their ability to accurately model thermodynamic properties and chemical reaction dynamics. Butane dehydrogenation was evaluated with specific thermodynamic parameters using a Gibbs reactor model with Gibbs minimization. The Soave Redlich-Kwong thermodynamic model was employed to investigate the impact of temperature of 700 °C and pressures of 0.1 MPa and 1.0 MPa on the yield and selectivity of butadiene and butene. The CC and AH simulation results closely agreed with the available experimental data. The consistency of freeware simulators with a commercial simulator was also assessed, with AH serving as the reference standard. It was revealed that CC demonstrates higher consistency with it than DWSim under both low- and highpressure conditions. This study confirms that CC is a reliable process simulator suitable for use in resource-constrained settings where expensive commercial licenses are prohibitive.en_US
dc.identifier.citationBarde E. D., Oyegoke T., Aliyu A., Uzochukwu M. I., Odih C. (2024). Butane dehydrogenation: Thermodynamic modeling and performance analysis of selected process simulators. Journal of Engineering Sciences (Ukraine), Vol. 11(1), pp. F12–F20. https://doi.org/10.21272/jes.2024.11(1).f2en_US
dc.identifier.urihttps://essuir.sumdu.edu.ua/handle/123456789/95117
dc.language.isoenen_US
dc.publisherSumy State Universityen_US
dc.rights.uriccbync4en_US
dc.subjectprocess innovationen_US
dc.subjectprocess simulationen_US
dc.subjectthermodynamic modelingen_US
dc.subjectGibbs minimizationen_US
dc.titleButane dehydrogenation: Thermodynamic modeling and performance analysis of selected process simulatorsen_US
dc.typeArticleen_US

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