
Advances in Chemical Engineering
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Content
- Cover
- Copyright
- Contents
- Contributors
- Preface
- Chapter 1. A Reaction Engineering Case History: Coke Burning in Thermofor Catalytic Cracking Regenerators
- I. Introduction
- II. Single-Particle Kinetics
- III. Analytical Solution of the Kiln Equation for Slow Coke
- IV. Extension of the Model for Fast and Slow Coke
- V. Dynamic Response Model
- VI. The Inclusion of the Kinetics of the Conversion of CO to CO2 in the Model
- VII. Conclusion
- Nomenclature
- References
- Chapter 2. Stripping Operations in Polymer Processing
- I. Introduction
- II. Nature of the Problem
- III. Mass Transfer Rates in Wiped-Film Processors
- IV. Bubble Entrainment and Enhanced Mass Transfer
- V. The Length of a Transfer Unit
- Nomenclature
- References
- Chapter 3. Rapid Phase Transitions from Liquid to Vapor
- I. Summary
- II. Introduction
- III. Rapid Phase Transitions between Liquefied Natural Gas and Water
- IV. Smelt-Water Explosions
- V. Molten Aluminum-Water Explosions
- VI. Reactive Metal-Water Explosions
- VII. Explosions with Liquid Refrigerants
- VIII. Effects of Absolute Pressure on RPTs
- IX. Appendix: Superheated Liquids
- Nomenclature
- References
- Chapter 4. Atmospheric Diffusion Theory
- I. Introduction
- II. Fundamental Equations of Turbulent Diffusion
- III. Mean Concentration from an Instantaneous Source in Stationary Homogeneous Turbulence
- IV. Mean Concentration from Continuous Sources
- V. Point Source Diffusion Formulas Based on a Gaussian Distribution
- VI. Validity of the Atmospheric Diffusion Equation
- VII. Meteorological Parameters Characterizing the Atmospheric Boundary Layer
- VIII. Dispersion Parameters in Gaussian Models
- IX. Parameters in the Atmospheric Diffusion Equation
- X. Monte Carlo Simulation of Turbulent Diffusion
- XI. Summary
- References
- Index
- Contents of Previous Volumes
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