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Pregled bibliografske jedinice broj: 95763

Interaction of Hydrodynamic Environment On Performance of Homogeneous Bioreactors With Enzyme Kinetic Models


Kurtanjek, Želimir
Interaction of Hydrodynamic Environment On Performance of Homogeneous Bioreactors With Enzyme Kinetic Models // Current Studies of Biotechnology / Kniewald, Zlatko (ur.).
Zagreb: Školska knjiga, 2001. str. 89-95


CROSBI ID: 95763 Za ispravke kontaktirajte CROSBI podršku putem web obrasca

Naslov
Interaction of Hydrodynamic Environment On Performance of Homogeneous Bioreactors With Enzyme Kinetic Models

Autori
Kurtanjek, Želimir

Vrsta, podvrsta i kategorija rada
Poglavlja u knjigama, znanstveni

Knjiga
Current Studies of Biotechnology

Urednik/ci
Kniewald, Zlatko

Izdavač
Školska knjiga

Grad
Zagreb

Godina
2001

Raspon stranica
89-95

ISBN
953-98094-3-6

Ključne riječi
RTD, chemostat, segregated flow

Sažetak
In the work is from theoretical and computational point of view analyzed interaction of hydrodynamic effects on enzyme reactions in homogeneous non-ideal industrial bioreactors. The results are extended to the case of unstructured model of a chemostat with an extracellular product synthesis. Considered are the cases of two limiting hydrodynamic states: 1) total segregation or macromixing; 2) complete or micro mixing. The effects of hydrodynamic conditions are represented by assumed experimentally determined residence time distribution curve. For the case of complete molecular mixing Zwietering's life expectancy function is applied. For macromixing state conversions are determined by convolution of residence time distribution function with conversion functions from batch kinetics. Studied are effects of degree of mixing on efficiency of Michaelis-Menten kinetics without inhibition and with substrate inhibition (negative order kinetics). Chemostat is modeled with unstructured Monod based kinetics for biomass growth, substrate consumption and Piret's kinetics for extracellular product synthesis. Theoretical evolution of the residence time distributions is derived from various combinations of perfectly stirred vessels and ideal plug flow in tubes. The aim of the work is to establish practical guidance for estimation of lower and upper bounds for bioconversions in nonideal industrial reactors.

Izvorni jezik
Engleski

Znanstvena područja
Biotehnologija



POVEZANOST RADA


Projekti:
058201

Ustanove:
Prehrambeno-biotehnološki fakultet, Zagreb

Profili:

Avatar Url Želimir Kurtanjek (autor)

Poveznice na cjeloviti tekst rada:

Pristup cjelovitom tekstu rada

Citiraj ovu publikaciju:

Kurtanjek, Želimir
Interaction of Hydrodynamic Environment On Performance of Homogeneous Bioreactors With Enzyme Kinetic Models // Current Studies of Biotechnology / Kniewald, Zlatko (ur.).
Zagreb: Školska knjiga, 2001. str. 89-95
Kurtanjek, Ž. (2001) Interaction of Hydrodynamic Environment On Performance of Homogeneous Bioreactors With Enzyme Kinetic Models. U: Kniewald, Z. (ur.) Current Studies of Biotechnology. Zagreb, Školska knjiga, str. 89-95.
@inbook{inbook, author = {Kurtanjek, \v{Z}elimir}, editor = {Kniewald, Z.}, year = {2001}, pages = {89-95}, keywords = {RTD, chemostat, segregated flow}, isbn = {953-98094-3-6}, title = {Interaction of Hydrodynamic Environment On Performance of Homogeneous Bioreactors With Enzyme Kinetic Models}, keyword = {RTD, chemostat, segregated flow}, publisher = {\v{S}kolska knjiga}, publisherplace = {Zagreb} }
@inbook{inbook, author = {Kurtanjek, \v{Z}elimir}, editor = {Kniewald, Z.}, year = {2001}, pages = {89-95}, keywords = {RTD, chemostat, segregated flow}, isbn = {953-98094-3-6}, title = {Interaction of Hydrodynamic Environment On Performance of Homogeneous Bioreactors With Enzyme Kinetic Models}, keyword = {RTD, chemostat, segregated flow}, publisher = {\v{S}kolska knjiga}, publisherplace = {Zagreb} }




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