Page 13 - Analysis, Synthesis and Design of Chemical Processes, Third Edition
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16.4 Summary
Problems
Chapter 17 Tools for Evaluating Process Performance
17.1 Key Relationships
17.2 Thinking with Equations
17.2.1 GENI
17.2.2 Predicting Trends
17.3 Base-Case Ratios
17.4 Analysis of Systems Using Controlling Resistances
17.5 Graphical Representations
17.5.1 The Moody Diagram for Friction Factors
17.5.2 The System Curve for Frictional Losses
17.5.3 The T-Q Diagram for Heat Exchangers
17.6 Summary
Reference
Problems
Chapter 18 Performance Curves for Individual Unit Operations
18.1 Applications to Heat Transfer
18.2 Application to Fluid Flow
18.2.1 Pump and System Curves
18.2.2 Regulating Flowrates
18.2.3 Reciprocating or Positive Displacement Pumps
18.2.4 Net Positive Suction Head
18.2.5 Compressors
18.3 Application to Separation Problems
18.3.1 Separations with Mass Separating Agents
18.3.2 Distillation
18.4 Summary
Reference
Short Answer Questions
Problems
Chapter 19 Performance of Multiple Unit Operations
19.1 Analysis of a Reactor with Heat Transfer
19.2 Performance of a Distillation Column
19.3 Performance of a Heating Loop
19.4 Performance of the Feed Section to a Process
19.5 Summary
References
Short Answer Questions
Problems
Chapter 20 Reactor Performance
20.1 Production of Desired Product
20.2 Reaction Kinetics and Thermodynamics
20.2.1 Reaction Kinetics
20.2.2 Thermodynamic Limitations
20.3 The Chemical Reactor
20.4 Heat Transfer in the Chemical Reactor