6533b854fe1ef96bd12af3cd
RESEARCH PRODUCT
Optimum design and operation of primary sludge fermentation schemes for volatile fatty acids production.
José FerrerAurora SecoJ. ChanonaJ. Ribessubject
Optimal designEngineeringEnvironmental EngineeringWaste managementSewagebusiness.industryEcological ModelingProcess designFatty Acids VolatilePollutionWaste Disposal FluidAnaerobic digestionPilot plantWastewaterFacility Design and ConstructionFermentationProduction (economics)FermentationbusinessProcess engineeringWaste Management and DisposalEffluentAlgorithmsWater Science and TechnologyCivil and Structural Engineeringdescription
This paper presents a model-knowledge based algorithm for optimising the primary sludge fermentation process design and operation. This is a recently used method to obtain the volatile fatty acids (VFA), needed to improve biological nutrient removal processes, directly from the raw wastewater. The proposed algorithm consists in a heuristic reasoning algorithm based on the expert knowledge of the process. Only effluent VFA and the sludge blanket height (SBH) have to be set as design criteria, and the optimisation algorithm obtains the minimum return sludge and waste sludge flow rates which fulfil those design criteria. A pilot plant fed with municipal raw wastewater was operated in order to obtain experimental results supporting the developed algorithm groundwork. The experimental results indicate that when SBH was increased, higher solids retention time was obtained in the settler and VFA production increased. Higher recirculation flow-rates resulted in higher VFA production too. Finally, the developed algorithm has been tested by simulating different design conditions with very good results. It has been able to find the optimal operation conditions in all cases on which preset design conditions could be achieved. Furthermore, this is a general algorithm that can be applied to any fermentation-elutriation scheme with or without fermentation reactor.
year | journal | country | edition | language |
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2003-12-22 | Water research |