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Rafael Kandiyot i
Fundam ent als of React ion Engineer ing
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Fundam ent als of React ion Engineer ing
© 2009 Rafael Kandiyot i & Vent us Publishing ApS
I SBN 978- 87- 7681- 510- 3
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Cont ent s
CHAPTER 1: INTRODUCTION TO CHEMICAL REACTOR DESIGN
1.1 Introduction
1.2 General mass balance for isothermal chemical reactors
1.3 Mass balances for isothermal batch reactors
1.4 Continuous operation: Tubular reactors & the plug ß ow assumption
1.4.1 Integration of the tubular reactor mass balance equation (plug ß ow assumption)
1.4.2 Volume Change Upon Reaction in Isothermal Tubular Reactors
1.5 Continuous operation: Continuous stirred tank reactors & the perfect mixing assumption
1.5.1 CSTR design with volume change upon reaction
1.5.2 Comparison of plug ß ow and CSTR reactors
1.6 CSTR reactors in cascade
1.7 The start-up/shutdown problem for a CSTR normally operating at steady state
CHAPTER 2: REACTOR DESIGN FOR MULTIPLE REACTIONS
2.1 Consecutive and parallel reactions
2.2 Simple Consecutive reactions: Applications to reactor types
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Contents
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Contents
2.2.1 Isothermal batch reactors
2.2.2 Consecutive reactions: isothermal (plug ß ow) tubular reactors
2.2.3 Consecutive reactions: isothermal CSTR reactors
2.3 Parallel reactions
2.3.1 Parallel reactions: Isothermal batch reactors
2.3.2 Parallel reactions: Isothermal (plug ß ow) tubular reactors
2.3.3 Parallel reactions: Isothermal CSTR reactors
2.4 Effect of temperature on relative rates of parallel reactions
2.5 How relative rates of reaction can affect the choice of chemical reactors
2.6 Extents of reaction: deÞ nitions and simple applications
2.6.1 Extents of reaction: Batch reactors
2.6.2 Extents of reaction: Tubular reactors assuming plug ß ow
2.6.3 Extents of reaction: Continuous stirred tank reactors
2.6.4 Applications to complex reaction schemes
2.6.5 Extents of reaction: Example
CHAPTER 3: NON-ISOTHERMAL REACTORS
3.1 Energy balance equations: Introduction
3.2 Energy balance equations for CSTR reactors
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