Please use this identifier to cite or link to this item: http://repository.futminna.edu.ng:8080/jspui/handle/123456789/16920
Title: Heat and Mass Transfer of a Co2 Binary Mixture: An Analytical Approach
Authors: Olayiwola, R. O.
Cole, A. T
Shehu, M. D.
Oguntolu, F. A.,
Keywords: carbon dioxide, critical point, polynomial approximation method, solvent, supercritical fluid.
Issue Date: Mar-2019
Publisher: Annual International Conference on Emerging Issues in IT, Applied Sciences, Engineering Managements & Networking (AFR Engineering Academy)
Abstract: In this paper, an analytical solution for describing heat and mass transfer between a droplet of organic solvent and a compressed antisolvent taking into consideration the viscous energy dissipation and heat and mass transfer between the surface and the droplet by convection is presented. We assume that the solvent and the antisolvent are fully miscible and have the same temperature. We also assume both the initial temperature of the mixture and the initial carbon dioxide concentration depends on the space variable. The governing equations formulated based on the conservation of total mass, chemical species, momentum and energy were solved analytically using polynomial approximation method. The results obtained are presented graphically and discussed. The results revealed the effects of operating parameters on droplet lifetime. This results might be used for interpretation or experiments planning of the more complex real supercritical antisolvent process.
URI: http://repository.futminna.edu.ng:8080/jspui/handle/123456789/16920
Appears in Collections:Mathematics

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