Modeling of mass transfer process of prolate spheroidal drops in rotating disc contractor column

Several models have been developed for the modeling of Rotating Disc Contactor (RDC) columns. The modeling shows that the drop size distribution and the mass transfer processes are important factors for the column performances. Since the behavior of the drop breakage and the mass transfer process in...

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Main Authors: Budiman, Herdi, Talib, Jamalludin
Format: Article
Published: UTHM Publisher 2012
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Online Access:http://eprints.utm.my/id/eprint/31066/
https://publisher.uthm.edu.my/ojs/index.php/JST/article/view/469
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spelling my.utm.310662019-09-30T09:52:26Z http://eprints.utm.my/id/eprint/31066/ Modeling of mass transfer process of prolate spheroidal drops in rotating disc contractor column Budiman, Herdi Talib, Jamalludin Q Science Several models have been developed for the modeling of Rotating Disc Contactor (RDC) columns. The modeling shows that the drop size distribution and the mass transfer processes are important factors for the column performances. Since the behavior of the drop breakage and the mass transfer process involve complex interactions between relevant parameters, the need to get as close as possible to the reality of the processes is evident. Several researchers have been working in this area. Most of these models have been studied based on the assumption of spherical droplets. The problem of spherical drop or bubble is known as the simplest and ideal case in which the problem can be considered in spherical coordinate system. However there are many physical situations the shape of the drops contained in liquid is not perfectly spherical, and may be classified as prolate or oblate spheroids. For most industrial applications particles encountered are irregular or non-spherical. In this research, the diffusion equation given in the prolate spheroidal coordinate system is used for a two-dimensional case. An analytical solution of the unsteady diffusion equation describing mass transfer for prolate spheroidal drops, considering a constant diffusion coefficient is presented. The resulting equations are analytically solved by using the Laplace transform method. UTHM Publisher 2012 Article PeerReviewed Budiman, Herdi and Talib, Jamalludin (2012) Modeling of mass transfer process of prolate spheroidal drops in rotating disc contractor column. Journal of Science and Technology, 4 (1). pp. 73-80. ISSN 2229-8460 https://publisher.uthm.edu.my/ojs/index.php/JST/article/view/469
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic Q Science
spellingShingle Q Science
Budiman, Herdi
Talib, Jamalludin
Modeling of mass transfer process of prolate spheroidal drops in rotating disc contractor column
description Several models have been developed for the modeling of Rotating Disc Contactor (RDC) columns. The modeling shows that the drop size distribution and the mass transfer processes are important factors for the column performances. Since the behavior of the drop breakage and the mass transfer process involve complex interactions between relevant parameters, the need to get as close as possible to the reality of the processes is evident. Several researchers have been working in this area. Most of these models have been studied based on the assumption of spherical droplets. The problem of spherical drop or bubble is known as the simplest and ideal case in which the problem can be considered in spherical coordinate system. However there are many physical situations the shape of the drops contained in liquid is not perfectly spherical, and may be classified as prolate or oblate spheroids. For most industrial applications particles encountered are irregular or non-spherical. In this research, the diffusion equation given in the prolate spheroidal coordinate system is used for a two-dimensional case. An analytical solution of the unsteady diffusion equation describing mass transfer for prolate spheroidal drops, considering a constant diffusion coefficient is presented. The resulting equations are analytically solved by using the Laplace transform method.
format Article
author Budiman, Herdi
Talib, Jamalludin
author_facet Budiman, Herdi
Talib, Jamalludin
author_sort Budiman, Herdi
title Modeling of mass transfer process of prolate spheroidal drops in rotating disc contractor column
title_short Modeling of mass transfer process of prolate spheroidal drops in rotating disc contractor column
title_full Modeling of mass transfer process of prolate spheroidal drops in rotating disc contractor column
title_fullStr Modeling of mass transfer process of prolate spheroidal drops in rotating disc contractor column
title_full_unstemmed Modeling of mass transfer process of prolate spheroidal drops in rotating disc contractor column
title_sort modeling of mass transfer process of prolate spheroidal drops in rotating disc contractor column
publisher UTHM Publisher
publishDate 2012
url http://eprints.utm.my/id/eprint/31066/
https://publisher.uthm.edu.my/ojs/index.php/JST/article/view/469
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score 13.160551