Effective scale-up is essential for successful bioprocessing. While it is desirable to keep as many operating parameters constant as possible during the scale-up, the number of constant parameters realizable is limited by the degrees of freedom in designing the large-scale operation. Scale-up of aerobic fermentations is often carried out on the basis of a constant oxygen transfer coefficient, k L a, to ensure the same oxygen supply rate to support normal growth and metabolism of the desired high cell populations. In this paper, it is proposed to replace the scale-up criterion of constant k L by a more direct and meaningful criterion of equal oxygen transfer rate at a predetermined value of dissolved oxygen concentration. This can be achieve...
Abstract Large scale fermentations face challenges in mixing and mass transfer as well as in the de...
Mechanically-agitated reactors are widely used in aerobic fermentation, because they provide good mi...
This study is about the scale up of biopolymer fermentation from 500 mL shake flasks to 2L fermentor...
Effective scale-up is essential for successful bioprocessing. While it is desirable to keep as many ...
Bioreactor or fermenter is the heart of a process. Scaling up a bioreactor and maintaining the same ...
Abstract. The scale-up studies based on the constant oxygen transfer coefficient, kLa from 16 l to 1...
In this study, microbial kinetic and oxygen transfer modelling coupled with energy analysis was appl...
In this study, microbial kinetic and oxygen transfer modelling coupled with energy analysis was appl...
This work presents a general model-based methodology to scale-up fed-batch bioprocesses. The idea be...
This work presents a general model-based methodology to scale-up fed-batch bioprocesses. The idea be...
This work presents a general model-based methodology to scale-up fed-batch bioprocesses. The idea be...
In an aerobic process, such as enzymes production by fungi, the oxygen supply into fermentation medi...
This work presents a general model-based methodology to scale-up fed-batch bioprocesses. The idea be...
INTRODUCTION Important number of aerobic fermentation processes performed under test, pi ot-p ant a...
Bioreaction kinetics, oxygen transfer and energy modelling were applied to stirred tank aerobic bior...
Abstract Large scale fermentations face challenges in mixing and mass transfer as well as in the de...
Mechanically-agitated reactors are widely used in aerobic fermentation, because they provide good mi...
This study is about the scale up of biopolymer fermentation from 500 mL shake flasks to 2L fermentor...
Effective scale-up is essential for successful bioprocessing. While it is desirable to keep as many ...
Bioreactor or fermenter is the heart of a process. Scaling up a bioreactor and maintaining the same ...
Abstract. The scale-up studies based on the constant oxygen transfer coefficient, kLa from 16 l to 1...
In this study, microbial kinetic and oxygen transfer modelling coupled with energy analysis was appl...
In this study, microbial kinetic and oxygen transfer modelling coupled with energy analysis was appl...
This work presents a general model-based methodology to scale-up fed-batch bioprocesses. The idea be...
This work presents a general model-based methodology to scale-up fed-batch bioprocesses. The idea be...
This work presents a general model-based methodology to scale-up fed-batch bioprocesses. The idea be...
In an aerobic process, such as enzymes production by fungi, the oxygen supply into fermentation medi...
This work presents a general model-based methodology to scale-up fed-batch bioprocesses. The idea be...
INTRODUCTION Important number of aerobic fermentation processes performed under test, pi ot-p ant a...
Bioreaction kinetics, oxygen transfer and energy modelling were applied to stirred tank aerobic bior...
Abstract Large scale fermentations face challenges in mixing and mass transfer as well as in the de...
Mechanically-agitated reactors are widely used in aerobic fermentation, because they provide good mi...
This study is about the scale up of biopolymer fermentation from 500 mL shake flasks to 2L fermentor...