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- W201639145 abstract "In recent work of Ballyk et al. [27], it is argued that the plug-flow reactor, aside from its importance in chemical and bioengineering, is a good candidate as a surrogate model of the mammalian large intestine. In that work, a model of competition between different strains of microorganisms for a scarce nutrient in a plug-flow reactor, formulated by Kung and Baltzis [207], was studied with special attention given to the effects of random motility of the organisms on their ability to persist in the reactor and be good competitors in a mixed culture. The growth-limiting nutrient is assumed to enter the reactor tube at constant concentration at the upstream end of the reactor, so that the model equations take the form of a time-independent system of reaction–advection–diffusion equations. However, if the plug-flow reactor is to stand as a surrogate model of the intestine, then it is much more realistic to consider input nutrient concentration as being time-dependent. In the present chapter we consider this competition model with periodically varying input nutrient concentration, including pulsed input where the concentration may fall to zero over part of the cycle." @default.
- W201639145 created "2016-06-24" @default.
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- W201639145 date "2017-01-01" @default.
- W201639145 modified "2023-09-27" @default.
- W201639145 title "A Periodically Pulsed Bioreactor Model" @default.
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