The AM2 model in serial chemostats with distinct dilution rates admits nine equilibrium types whose existence, multiplicity, and stability are characterized by necessary and sufficient conditions on key operating parameters.
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Incorporating microbial mortality into a three-stage anaerobic digestion model yields distinct persistence conditions for first-order and biomass-dependent hydrolysis and enriches the qualitative dynamics relative to the classical AM2 model.
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AM2 model with a series configuration of interconnected chemostats and distinct removal rates
The AM2 model in serial chemostats with distinct dilution rates admits nine equilibrium types whose existence, multiplicity, and stability are characterized by necessary and sufficient conditions on key operating parameters.
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Qualitative Analysis of a Three-Stage Anaerobic Digestion Model with Microbial Decay
Incorporating microbial mortality into a three-stage anaerobic digestion model yields distinct persistence conditions for first-order and biomass-dependent hydrolysis and enriches the qualitative dynamics relative to the classical AM2 model.