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- W166361307 abstract "Many models have been proposed in the literature for the specific growth rate of biomass, including those of Tessier, Monod, Moser and Contois kinetics. Of these models the Monod model has become the default model used in bioreactor engineering. However, there is growing experimental evidence showing that in a number of industrial processes, in particular wastewater treatment, the specific growth rate is more accurately described by Contois kinetics rather than other models. Thus in this thesis, we construct and analyze models for wastewater treatment where the specific growth rate of biomass on biodegradable organic matter is assumed to be given by the Contois growth rate. This thesis is organized into four parts. Part 1 consists of three chapters (1, 2 and 3) which contain general information on the wastewaster treatment and the pertinent modeling studies. For remaining parts, specific issues related to wastewater treatment modelling are investigated. In part 2, which contain three chapters (4, 5 and 6), we develop a model for wastewater treatment. In chapter (4), the analysis of wastewater treatment in a single reactor with recycle is presented. In chapter (5), we consider a n-cascade reactor with recycle around each reactor. We investigate how to tune" @default.
- W166361307 created "2016-06-24" @default.
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- W166361307 date "2013-01-01" @default.
- W166361307 modified "2023-09-27" @default.
- W166361307 title "Modelling of biological wastewater treatment" @default.
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