Bioprocess Engineering: Kinetics, Sustainability, and Reactor Design
Autor Shijie Liuen Limba Engleză Hardback – 16 apr 2020
- Includes biological molecules and chemical reaction basics, cell biology and genetic engineering
- Describes kinetics and catalysis at molecular and cellular levels, along with the principles of fermentation
- Covers advanced topics and treatise in interactive enzyme and molecular regulations, also covering solid catalysis
- Explores bioprocess kinetics, mass transfer effects, reactor analysis, control and design
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Specificații
ISBN-13: 9780128210123
ISBN-10: 0128210125
Pagini: 958
Dimensiuni: 216 x 276 x 53 mm
Ediția:3
Editura: ELSEVIER SCIENCE
ISBN-10: 0128210125
Pagini: 958
Dimensiuni: 216 x 276 x 53 mm
Ediția:3
Editura: ELSEVIER SCIENCE
Public țintă
Senior undergraduate students in Chemical Engineering, Bioprocess Engineering, Biological EngineeringCuprins
Part I: Fundamentals
1. What is Bioprocess Engineering?
2. An Overview of Biological Basics
3. An Overview of Chemical Reaction Analysis
4. Batch Reactor
5. Ideal Flow Reactors
Part II: Kinetics and Molecular Interactions
6. Kinetic Theory and Reaction Kinetics
7. Enzymes
8. Chemical Reactions on Solid Surfaces
9. Protein-Ligand Interactions
10. Molecular Regulation
Part III: Cells: Function and Manipulations
11. Cell Metabolism
12. Evolution and Genetic Engineering
Part IV: Cultivation and Fermentation
13. How Cells Grow
14. Cell Cultivation
Part V: Bioprocess System and Reaction Engineering
15. Sustainability and Stability
16. Combustion, Reactive Hazard and Bioprocess Safety
17. Mass Transfer Effects: Immobilized and Heterogeneous Reaction Systems
Part VI: Reactor Engineering and Quality Design
18. Bioreactor Design & Operation
19. Real Reactors and Residence Time Distributions
20. Design of Experiment
1. What is Bioprocess Engineering?
2. An Overview of Biological Basics
3. An Overview of Chemical Reaction Analysis
4. Batch Reactor
5. Ideal Flow Reactors
Part II: Kinetics and Molecular Interactions
6. Kinetic Theory and Reaction Kinetics
7. Enzymes
8. Chemical Reactions on Solid Surfaces
9. Protein-Ligand Interactions
10. Molecular Regulation
Part III: Cells: Function and Manipulations
11. Cell Metabolism
12. Evolution and Genetic Engineering
Part IV: Cultivation and Fermentation
13. How Cells Grow
14. Cell Cultivation
Part V: Bioprocess System and Reaction Engineering
15. Sustainability and Stability
16. Combustion, Reactive Hazard and Bioprocess Safety
17. Mass Transfer Effects: Immobilized and Heterogeneous Reaction Systems
Part VI: Reactor Engineering and Quality Design
18. Bioreactor Design & Operation
19. Real Reactors and Residence Time Distributions
20. Design of Experiment