Publication | Open Access
Integrating biokinetics with computational fluid dynamics for energy performance analysis in anaerobic digestion
20
Citations
32
References
2023
Year
Sewage Sludge TreatmentEngineeringBioenergyFluid MechanicsAd TanksBiological Waste TreatmentAnaerobic DigestionMetabolic ModelWastewater TreatmentChemical EngineeringBiogasBioenergeticsWater TreatmentEnvironmental MicrobiologyBiofluid DynamicBiophysicsProcess DesignComputational Fluid DynamicsNew Cfd PlatformEnergy Performance AnalysisMultiphase FlowWaste ManagementEnvironmental EngineeringMedicineChemical KineticsMultiscale Modeling
Anaerobic digestion (AD) is an effective process for decomposing organic matter in wastewater treatment plants (WWTPs) where highly efficient digesters properly mix the sludge. To ensure a uniform substance distribution, a comprehensive modeling method is necessary. Computational fluid dynamics (CFD) helps in the modeling of AD tanks but few studies have focused on integrating hydrodynamics with biokinetics because of complex AD processes. The current study presents a new CFD platform for estimating the biokinetics of WWTPs to assess the energy performance of AD tanks. The presented method is validated by numerical and experimental studies, and facilitates a link between methane production and mixing energy consumption. The on-site settings of the recirculation mixing system in the studied WWTP was able to prepare a uniform mixture of the material. However, reducing mixing rate to decrease energy consumption did not lead to proper mixing quality.
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