On the Mathematical Modelling of Microbial Growth: Some Computational Aspects
Serdica Journal of Computing (2011)
- Volume: 5, Issue: 2, page 153-168
- ISSN: 1312-6555
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topMarkov, Svetoslav. "On the Mathematical Modelling of Microbial Growth: Some Computational Aspects." Serdica Journal of Computing 5.2 (2011): 153-168. <http://eudml.org/doc/196266>.
@article{Markov2011,
abstract = {We propose a new approach to the mathematical modelling of
microbial growth. Our approach differs from familiar Monod type models by
considering two phases in the physiological states of the microorganisms and
makes use of basic relations from enzyme kinetics. Such an approach may
be useful in the modelling and control of biotechnological processes, where
microorganisms are used for various biodegradation purposes and are often
put under extreme inhibitory conditions. Some computational experiments
are performed in support of our modelling approach.* The author was partially supported by the Bulgarian NSF Project DO 02-359/2008.},
author = {Markov, Svetoslav},
journal = {Serdica Journal of Computing},
keywords = {Modeling; Computer Simulation; Microbial Growth Models; Bio-Technological Processes; computer simulation; bio-technological processes},
language = {eng},
number = {2},
pages = {153-168},
publisher = {Institute of Mathematics and Informatics Bulgarian Academy of Sciences},
title = {On the Mathematical Modelling of Microbial Growth: Some Computational Aspects},
url = {http://eudml.org/doc/196266},
volume = {5},
year = {2011},
}
TY - JOUR
AU - Markov, Svetoslav
TI - On the Mathematical Modelling of Microbial Growth: Some Computational Aspects
JO - Serdica Journal of Computing
PY - 2011
PB - Institute of Mathematics and Informatics Bulgarian Academy of Sciences
VL - 5
IS - 2
SP - 153
EP - 168
AB - We propose a new approach to the mathematical modelling of
microbial growth. Our approach differs from familiar Monod type models by
considering two phases in the physiological states of the microorganisms and
makes use of basic relations from enzyme kinetics. Such an approach may
be useful in the modelling and control of biotechnological processes, where
microorganisms are used for various biodegradation purposes and are often
put under extreme inhibitory conditions. Some computational experiments
are performed in support of our modelling approach.* The author was partially supported by the Bulgarian NSF Project DO 02-359/2008.
LA - eng
KW - Modeling; Computer Simulation; Microbial Growth Models; Bio-Technological Processes; computer simulation; bio-technological processes
UR - http://eudml.org/doc/196266
ER -
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