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A pulsing device for packed-bed bioreactors: II. Application to alcoholic fermentation
Authors:A Sanromán  E Roca  M J Núñez  Professor Dr J M Lema
Institution:(1) Department of Chemical Engineering, University of Vigo, Aptdo 874, E-36200 Vigo, Spain;(2) Chemical Engineering Department, University of Santiago de Compostela, Avenida de las Ciencias s/n, E-15706 Santiago de Compostela, Spain
Abstract:When the immobilized cells are employed in packed-bed bioreactors several problems appear. To overcome these drawbacks, a new bioreactor based on the use of pulsed systems was developed 1]. In this work, we study the glucose fermentation by immobilized Saccharomyces cerevisiae in a packed-bed bioreactor. A comparative study was then carried out for continuous fermentation in two packed-bed bioreactors, one of them with pulsed flow. The determination of the axial dispersion coefficients indicates that by introducing the pulsation, the hydraulic behaviour is closer to the plug flow model. In both cases, the residence time tested varied from 0.8 to 2.6 h. A higher ethanol concentration and productivity (increases up to 16%) were achieved with the pulsated reactors. The volumes occupied by the CO2 were 5.22% and 9.45% for fermentation with/without pulsation respectively. An activity test of the particles from the different sections revealed that the concentration and viability of bioparticles from the two bioreactors are similar. From the results we conclude that the improvements of the process are attributable to a mechanical effect rather than to physiological changes of microorganisms.List of Symbols D m2/s dispersion coefficient - K is l/g inhibition substrate constant - K ip l/g inhibition ethanol constant - K s g/l Apparent affinity constant - P g/l ethanol concentration - q p g/(gh) specific ethanol productivity - Q p g/(lh) overall ethanol productivity - q s g/(gh) specific glucose consumption rate - Q s g/(lh) glucose consumption rate - S g/l residual glucose concentration - S(in0) g/l initial glucose concentration - V max g/(lh) maximum rate - Y p/s g/g yield in product
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