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Dynamical model development and parameter identification for an anaerobic wastewater treatment process

Biotechnology and Bioengineering · 2001 · Vol. 75(4) · pp. 424–438
Olivier BernardZakaria Hadj‐SadokDenis DochainA. GenovesiJean‐Philippe Steyer

Abstract

This paper deals with the development and the parameter identification of an anaerobic digestion process model. A two-step (acidogenesis-methanization) mass-balance model has been considered. The model incorporates electrochemical equilibria in order to include the alkalinity, which has to play a central role in the related monitoring and control strategy of a treatment plant. The identification is based on a set of dynamical experiments designed to cover a wide spectrum of operating conditions that are likely to take place in the practical operation of the plant. A step by step identification procedure to estimate the model parameters is presented. The results of 70 days of experiments in a 1-m(3) fermenter are then used to validate the model.

Membrane-based Ion Separation TechniquesAnaerobic Digestion and Biogas ProductionProcess Optimization and IntegrationAcidogenesisIdentification (biology)Biochemical engineeringProcess (computing)Industrial fermentationSystem identificationAnaerobic digestionAlkalinitySewage treatmentComputer science

MeSH terms

Bacteria, AnaerobicHot TemperatureHydrogen-Ion ConcentrationIndustrial WasteMathematicsModels, BiologicalOnline SystemsPilot ProjectsSensitivity and SpecificityTime FactorsWaste Disposal, FluidWineWaste ManagementBiomassBioreactors
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