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Modellering af biogasproduktion×Activated Sludge Model×
FagområdeMiljøteknikMiljøteknik
FamilieProcess / pipelineProcess / pipeline
Oprindelsesår19731976
OphavspersonAnaerobic microbiologistsMarais and Ekama
Typebiokinetic simulation pipelinemathematical simulation pipeline
Oprindelig kildeRittmann, B. E., & McCarty, P. L. (2001). Environmental Biotechnology: Principles and Applications (2nd ed.). McGraw-Hill. ISBN: 978-0073401188Henze, M., Grady, C. P. L., Gujer, W., Marais, G. V. R., & Matsuo, T. (1987). Activated Sludge Model No. 1. IAWQ, Scientific and Technical Report No. 1. link ↗
Aliasseranaerobic digestion, biogas yield, methane production, AD modelingASM, conventional activated sludge, suspended growth treatment
Relaterede35
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.The Activated Sludge Model (ASM) is a standardized mathematical framework for simulating biological wastewater treatment processes, developed by the International Association on Water Quality (IAWQ) beginning in 1987. It represents the transport, transformation, and fate of organic matter and nutrients in suspended-growth treatment systems. ASM is widely used to design, optimize, and predict the performance of wastewater treatment plants under varying influent and operational conditions.
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ScholarGateSammenlign metoder: Biogas Production Modeling · Activated Sludge Model. Hentet 2026-06-18 fra https://scholargate.app/da/compare