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Substantial gradient mitigation in simulated large-scale bioreactors by optimally placed multiple feed points

Losoi, Pauli; Konttinen, Jukka; Santala, Ville (2022-12)

 
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Biotech_Bioengineering_2022_Losoi_Substantial_gradient_mitigation_in_simulated_large_scale_bioreactors_by_optimally.pdf (1.632Mt)
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Losoi, Pauli
Konttinen, Jukka
Santala, Ville
12 / 2022

Biotechnology and Bioengineering
doi:10.1002/bit.28232
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Julkaisun pysyvä osoite on
https://urn.fi/URN:NBN:fi:tuni-202209287334

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Peer reviewed
Tiivistelmä
The performance of large-scale stirred tank and bubble column bioreactors is often hindered by insufficient macromixing of feeds, leading to heterogeneities in pH, substrate, and oxygen, which complicates process scale-up. Appropriate feed placement or the use of multiple feed points could improve mixing. Here, theoretically optimal placement of feed points was derived using one-dimensional diffusion equations. The utility of optimal multipoint feeds was evaluated with mixing, pH control, and bioreaction simulations using three-dimensional compartment models of four industrially relevant bioreactors with working volumes ranging from 8 to 237 m3. Dividing the vessel axially in equal-sized compartments and locating a feed point or multiple feed points symmetrically in each compartment reduced the mixing time substantially by more than a minute and mitigated gradients of pH, substrate, and oxygen. Performance of the large-scale bioreactors was consequently restored to ideal, homogeneous reactor performance: oxygen consumption and biomass yield were recovered and the phenotypical heterogeneity of the biomass population was diminished.
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  • TUNICRIS-julkaisut [23485]
Kalevantie 5
PL 617
33014 Tampereen yliopisto
oa[@]tuni.fi | Tietosuoja | Saavutettavuusseloste
 

 

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Kalevantie 5
PL 617
33014 Tampereen yliopisto
oa[@]tuni.fi | Tietosuoja | Saavutettavuusseloste