Experimental Investigation on the Impact of Aeration Rate and Stirrer Speed on Micro-Aerobic Batch Fermentation

The impact of aeration rate and stirrer speed on micro-aerobic fermentation is studied at laboratory scale. Result suggests that with Baker's yeast, an increase in aeration rates from very low value can improve bioethanol productivity and yield because it can enhance cell viability. At constan...

Full description

Bibliographic Details
Main Authors: Liew, Emily, Nandong, Jobrun, Samyudia, Yudi
Format: Journal Article
Published: Asian Network for Scientific Information 2009
Subjects:
Online Access:http://hdl.handle.net/20.500.11937/14074
_version_ 1848748523605983232
author Liew, Emily
Nandong, Jobrun
Samyudia, Yudi
author_facet Liew, Emily
Nandong, Jobrun
Samyudia, Yudi
author_sort Liew, Emily
building Curtin Institutional Repository
collection Online Access
description The impact of aeration rate and stirrer speed on micro-aerobic fermentation is studied at laboratory scale. Result suggests that with Baker's yeast, an increase in aeration rates from very low value can improve bioethanol productivity and yield because it can enhance cell viability. At constant stirrer speed of 150rpm, the increase in aeration rate from 1LPM to 1.5LPM leads to proportional increase in peak oxygen uptake rate (OUR) from 600mM/L.h to 1000mM/L.h. This increase coincides with the increase in yield by 7.5%. Interestingly at constant aeration rate of 1.5LPM, an increase in stirrer speed from 150 rpm to 250rpm leads to decrease in peak OUR from 1000mM/L.h to 457mM/L.h but increase in yield by 64%. In conclusion, both stirrer speed and aeration rate are important factors which have complex impacts on hydrodynamics and microbial metabolism, which in turn affect productivity and yield. Further work using CFD modeling and simulation method is required to gain better insights into how aeration rate and stirrer speed affect metabolism via the mixing mechanisms in a bioreactor.
first_indexed 2025-11-14T07:06:24Z
format Journal Article
id curtin-20.500.11937-14074
institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T07:06:24Z
publishDate 2009
publisher Asian Network for Scientific Information
recordtype eprints
repository_type Digital Repository
spelling curtin-20.500.11937-140742017-01-30T11:41:21Z Experimental Investigation on the Impact of Aeration Rate and Stirrer Speed on Micro-Aerobic Batch Fermentation Liew, Emily Nandong, Jobrun Samyudia, Yudi Fermentation Micro-aerobic Mixing Ethanol The impact of aeration rate and stirrer speed on micro-aerobic fermentation is studied at laboratory scale. Result suggests that with Baker's yeast, an increase in aeration rates from very low value can improve bioethanol productivity and yield because it can enhance cell viability. At constant stirrer speed of 150rpm, the increase in aeration rate from 1LPM to 1.5LPM leads to proportional increase in peak oxygen uptake rate (OUR) from 600mM/L.h to 1000mM/L.h. This increase coincides with the increase in yield by 7.5%. Interestingly at constant aeration rate of 1.5LPM, an increase in stirrer speed from 150 rpm to 250rpm leads to decrease in peak OUR from 1000mM/L.h to 457mM/L.h but increase in yield by 64%. In conclusion, both stirrer speed and aeration rate are important factors which have complex impacts on hydrodynamics and microbial metabolism, which in turn affect productivity and yield. Further work using CFD modeling and simulation method is required to gain better insights into how aeration rate and stirrer speed affect metabolism via the mixing mechanisms in a bioreactor. 2009 Journal Article http://hdl.handle.net/20.500.11937/14074 Asian Network for Scientific Information fulltext
spellingShingle Fermentation
Micro-aerobic
Mixing
Ethanol
Liew, Emily
Nandong, Jobrun
Samyudia, Yudi
Experimental Investigation on the Impact of Aeration Rate and Stirrer Speed on Micro-Aerobic Batch Fermentation
title Experimental Investigation on the Impact of Aeration Rate and Stirrer Speed on Micro-Aerobic Batch Fermentation
title_full Experimental Investigation on the Impact of Aeration Rate and Stirrer Speed on Micro-Aerobic Batch Fermentation
title_fullStr Experimental Investigation on the Impact of Aeration Rate and Stirrer Speed on Micro-Aerobic Batch Fermentation
title_full_unstemmed Experimental Investigation on the Impact of Aeration Rate and Stirrer Speed on Micro-Aerobic Batch Fermentation
title_short Experimental Investigation on the Impact of Aeration Rate and Stirrer Speed on Micro-Aerobic Batch Fermentation
title_sort experimental investigation on the impact of aeration rate and stirrer speed on micro-aerobic batch fermentation
topic Fermentation
Micro-aerobic
Mixing
Ethanol
url http://hdl.handle.net/20.500.11937/14074