Resources

Potential Scenario

2004-Mitchell-von Meien-Krieger-Dalsenter-A review of recent developments in modeling of microbial growth kinetics

Author(s): David Mitchell

NA

Keywords: Filamentous Fungi solid-state fermentation growth kinetics diffusion-reaction oxygen transfer

209 total view(s), 50 download(s)

Abstract

Resource Image Mathematical models are important tools for optimizing the design and operation of solid-state fermentation (SSF) bioreactors. Such models must describe the kinetics of microbial growth.

Citation

Researchers should cite this work as follows:

Article Context

Resource Type
Differential Equation Type
Technique
Qualitative Analysis
Application Area
Course
Course Level
Lesson Length
Technology
Approach
Skills

Description

Mitchell, David A., Oscar F. von Meien, Nadia Krieger, Farah Diba H. Dalsenter. 2004. A review of recent developments in modeling of microbial growth kinetics and intraparticle phenomena in solid-state fermentation. Biochemical Engineering Journal. 17: 15–26.

See https://www.academia.edu/7900767/A_review_of_recent_developments_in_modeling_of_microbial_growth_kinetics_and_intraparticle_phenomena_in_solid_state_fermentation?auto=download . Accessed 27 March 2023.

Abstract: Mathematical models are important tools for optimizing the design and operation of solid-state fermentation (SSF) bioreactors. Such models must describe the kinetics of microbial growth, how this is affected by the environmental conditions and how this growth affects the environmental conditions. This is done at two levels of sophistication. In many bioreactor models the kinetics are described by simple empirical equations. However, other models that address the interaction of growth with intraparticle diffusion of enzymes, hydrolysis products and O2 with the use of mechanistic equations have also been proposed, and give insights into how these microscale processes can potentially limit the overall performance of a bioreactor. The current article reviews the advances that have been made in both the empirical- and mechanistic-type kinetic models and discusses the insights that have been achieved through the modeling work and the improvements to models that will be necessary in the future.

Keywords: solid-state fermentation; modeling; growth kinetics; diffusion-reaction; filamentous fungi; oxygen transfer

 

Article Files

Authors

Author(s): David Mitchell

NA

Comments

Comments

There are no comments on this resource.