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Modellering af biogasproduktion×Spildevandsrensningsanlægsdesign×
FagområdeMiljøteknikMiljøteknik
FamilieProcess / pipelineProcess / pipeline
Oprindelsesår19731900
OphavspersonAnaerobic microbiologistsCivil and sanitary engineers
Typebiokinetic simulation pipelineintegrated design and optimization pipeline
Oprindelig kildeRittmann, B. E., & McCarty, P. L. (2001). Environmental Biotechnology: Principles and Applications (2nd ed.). McGraw-Hill. ISBN: 978-0073401188Metcalf & Eddy, Inc. (2013). Wastewater Engineering: Treatment and Resource Recovery (5th ed.). McGraw-Hill. ISBN: 978-0073401188
Aliasseranaerobic digestion, biogas yield, methane production, AD modelingWWTP design, sewage treatment, water reclamation, municipal treatment
Relaterede33
ResuméBiogas production modeling is a quantitative method to predict methane and carbon dioxide generation from anaerobic digestion of organic residues (wastewater sludge, food waste, agricultural manure, slaughterhouse waste). Developed from microbial kinetics and thermodynamics, these models account for substrate composition, microbial consortia (acetogens, methanogens), process conditions (temperature, pH, retention time), and inhibition factors (ammonia, volatile fatty acids). Biogas modeling supports reactor design, energy recovery planning, and operational optimization.Wastewater treatment design is the comprehensive planning and engineering of municipal and industrial treatment plants to remove contaminants (organic matter, nutrients, pathogens, trace organics) from domestic and industrial wastewater. Modern treatment plants integrate preliminary screening, primary settlement, secondary biological treatment (activated sludge, trickling filters, lagoons), advanced treatment (membrane filtration, oxidation, absorption), sludge processing, and biosolids management. The design balances regulatory compliance, treatment performance, energy consumption, land use, and capital and operational cost.
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ScholarGateSammenlign metoder: Biogas Production Modeling · Wastewater Treatment Design. Hentet 2026-06-20 fra https://scholargate.app/da/compare