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David A. Mitchell, Marin Berovič and Nadia Krieger
I-XXXVIII
Front matter
1-12
Solid-State Fermentation Bioreactor Fundamentals: Introduction and Overview
13-32
The Bioreactor Step of SSF: A Complex Interaction of Phenomena
33-44
Introduction to Solid-State Fermentation Bioreactors
45-56
Basics of Heat and Mass Transfer in Solid-State Fermentation Bioreactors
57-64
The Scale-up Challenge for SSF Bioreactors
65-76
Group I Bioreactors: Unaerated and Unmixed
77-94
Group II Bioreactors: Forcefully-Aerated Bioreactors Without Mixing
95-114
Group III: Rotating-Drum and Stirred-Drum Bioreactors
115-128
Group IVa: Continuously-Mixed, Forcefully-Aerated Bioreactors
129-140
Group IVb: Intermittently-Mixed Forcefully-Aerated Bioreactors
141-158
Continuous Solid-State Fermentation Bioreactors
159-178
Approaches to Modeling SSF Bioreactors
179-190
Appropriate Levels of Complexity for Modeling SSF Bioreactors
191-206
The Kinetic Sub-model of SSF Bioreactor Models: General Considerations
207-218
Growth Kinetics in SSF Systems: Experimental Approaches
219-234
Basic Features of the Kinetic Sub-model
235-248
Modeling of the Effects of Growth on the Local Environment
249-264
Modeling of Heat and Mass Transfer in SSF Bioreactors
265-278
Substrate, Air, and Thermodynamic Parameters for SSF Bioreactor Models
279-290
Estimation of Transfer Coefficients for SSF Bioreactors
291-294
Bioreactor Modeling Case Studies: Overview
295-314
A Model of a Well-mixed SSF Bioreactor
315-330
A Model of a Rotating-Drum Bioreactor
331-348
Models of Packed-Bed Bioreactors
349-362
A Model of an Intermittently-Mixed Forcefully-Aerated Bioreactor
363-374
Instrumentation for Monitoring SSF Bioreactors
375-386
Fundamentals of Process Control
387-402
Application of Automatic Control Strategies to SSF Bioreactors
403-412
Design of the Air Preparation System for SSF Bioreactors
413-415
Future Prospects for SSF Bioreactors
417-447
Back matter
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