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9902環工生物原理_環工碩一_課程圖片
9902環工生物原理_環工碩一
报名期间:从 即日起 到 无限期
上课期间:从 2011-03-16 到 无限期
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课程介绍

课程安排

I. Bioenergetics and Metabolic Pathways 1. The flow of energy in the biological world 2. Principles of thermodynamics 3. The ATP system and chemical energy transfer 4. Conservation of ATP in anaerobic cells 5. Respiration/ATP formation in the mitochondrion 6. Photosynthesis and the chloroplast 7. The chemical work of biosynthesis 8. Active transport II. Stoichiometry of Biochemical Operations 1. Stoichiometry and generalized reaction rate 2. Biomass growth III.Kinetics of Substrate Utilization in Cell Cultures 1. Ideal reactor for kinetic measurements 2. Kinetic of balanced growth IV. Reactor Theory 1. Introduction 2. Models for various types of reactors 3. Axial dispersion model/Tanks-in-series model 4. Reactor size vs. different flow patterns V. Modeling of Suspended-Growth Systems 1. Introduction 2. Michaelis-Menten model 3. Biokinetic constants estimated from batch reactor 4. Biokinetic constants estimated from flow reactor 5. Kinetic model of suspended-growth reactor (CSTR) 6. Kinetic model of suspended-growth reactor (PFR) VI. Applications of Kinetic Models VII. Biofilm Modeling 1. Beneficial effects of solid surface for microbes 2. Biofilm formation 3. Characterization of biofilm and liquid interface 4. Biochemical reaction rate equations 5. Comparison of various biofilm kinetic models VIII. Modeling of Packed Bed Reactor 1. Introduction 2. Characterization of packed bed reactor 3. Model elements for packed bed reactor analysis 4. Model application IX. Modeling of Fluidized-Bed Bioreactor 1. Fundamentals 2. Kinetic model X. Modeling of UASB Reactor 1. Fundamentals 2. Kinetic model
 课本&教材
Grady, C. P. L. Jr, Daigger, G. T. and Lin, H. C. (1999) Biological Wastewater Treatment. 2nd ed., Marcel Dekker.
  • Biological Principles for Environmental Engineering
  • CONTENTS
  • TOPLC 1 Bioenergetics and metabolic pathway_CHAPTER 1 The flow of energy in the biological world
  • CHAPTER 2 Principles of thermodynamics
  • CHAPTER 3 The ATP system and the transfer of chemical energy
  • CHAPTER 4 Conservation of ATP in anaerobic cells
  • CHAPTER 5 Respiration and ATP formation in the mitochondrion
  • CHAPTER 6 Photosynthesis and the chloroplast
  • CHAPTER 7 The chemical work of biosynthesis
  • CHAPTER 10 Active transport
  • TOPIC 2 STOICHIOMETRY OF BIOCHEMICAL OPERATIONS
  • TOPIC 3 KINETICS OF SUBSTRATE UTILIZATION IN CELL
  • TOPIC 4 REACTOR THEORY
  • TOPIC 5 MODELING OF SUSPENDED-GROWTH REACTORS
  • TOPIC 6 APPLICATIONS OF KINETIC MODELS
  • TOPIC 7 BIOFILM MODELING
  • TOPIC 8 MODELING OF PACKED BED REACTOR
  • TOPIC 9 KINETIC MODEL OF TRICKLING FILTER
  • TOPIC 10 KINETIC MODEL OF CONTACT AERATION REACTOR
黃汝賢_教師圖片
教师 / 黃汝賢
工學院_教師圖片
教师 / 工學院
工程學院環工系_教師圖片
教师 / 工程學院環工系

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