a solution of the convective-diffusion equation for solute mass transfer inside a capillary membrane bioreactor

a solution of the convective-diffusion equation for solute mass transfer inside a capillary membrane bioreactor

;B. Godongwana;D. Solomons;M. S. Sheldon
antonie van leeuwenhoek 2010 Vol. 2010 pp. -
175
godongwana2010internationala

Abstract

This paper presents an analytical model of substrate mass transfer through the lumen of a membrane bioreactor. The model is a solution of the convective-diffusion equation in two dimensions using a regular perturbation technique. The analysis accounts for radial-convective flow as well as axial diffusion of the substrate specie. The model is applicable to the different modes of operation of membrane bioreactor (MBR) systems (e.g., dead-end, open-shell, or closed-shell mode), as well as the vertical or horizontal orientation. The first-order limit of the Michaelis-Menten equation for substrate consumption was used to test the developed model against available analytical results. The results obtained from the application of this model, along with a biofilm growth kinetic model, will be useful in the derivation of an efficiency expression for enzyme production in an MBR.

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ID: 213873
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0x95644003c57E6F55A65596E3D9Eac6813e3566dA
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213873
Unique Identifier:
10.1155/2010/738482
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Scimatic Chain (ID: 481)
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