Interaction of transport resistances with biochemical reaction in packed bed solid state fermenters: The effect of gaseous concentration gradients
- 1 January 1993
- journal article
- research article
- Published by Wiley in Journal of Chemical Technology & Biotechnology
- Vol. 56 (3) , 233-239
- https://doi.org/10.1002/jctb.280560303
Abstract
Mass transfer plays an important role in solid state fermentation (SSF) systems. Earlier work on SSF in tray bioreactors7 indicated that steep gaseous concentration gradients developed within the substrate bed, owing to mass transfer resistances, which may adversely affect the bioreactor performance. For all practical purposes these gradients have been eliminated using a packed bed column bioreactor with forced aeration. Gaseous concentrations (oxygen and carbon dioxide) and enzyme activities were measured at various bed heights for various air flow rates during the course of fermentation. The results indicated that concentration gradients were decreased effectively by increasing air flow rate. For example, the actual oxygen and carbon dioxide concentration gradients reduced from 0.07% (v/v) cm−1 and 0.023% (v/v) cm−1 to 0.007% (v/v) cm−1 and 0.0032% (v/v) cm−1 respectively when the air flow rate was increased from 5 dm3 min−1 to 25 dm3 min−1. This resulted in an overall improvement in the performance of the bioreactor in terms of enzyme production.Keywords
This publication has 7 references indexed in Scilit:
- Gaseous concentration gradients in tray type solid state fermentors ? Effect on yields and productivitiesBioprocess and Biosystems Engineering, 1992
- Heat transfer simulation in solid substrate fermentationBiotechnology & Bioengineering, 1990
- Cooling aspects of solid-state cultures of mesophilic and thermophilic fungiJournal of Fermentation Technology, 1988
- Heat and mass transfer effects in static solid–substrate fermentations: Design of fermentation chambersBiotechnology & Bioengineering, 1983
- Controlled gas environments in industrial fermentationsEnzyme and Microbial Technology, 1980
- EFFECTS OF CONTROLLED GAS ENVIRONMENTS IN MICROBIAL ENHANCEMENT OF PLANT PROTEIN RECOVERYJournal of Food Biochemistry, 1980
- Aerobic microbial growth in semisolid matrices: Heat and mass transfer limitationBiotechnology & Bioengineering, 1976