Kinetics of Homogeneous Multistep Reactions 1st Edition by F.G. Helfferich – Ebook PDF Instant Download/Delivery: 978-0080535265, 0080535265
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Product details:
ISBN 10: 0080535265
ISBN 13: 978-0080535265
Author: F.G. Helfferich
This book addresses primarily the chemist and engineer in industrial research and process development, where competitive pressures put a premium on scale-up by large factors to cut development time. To be safe, such scale-up should be based on “fundamental” kinetics, that is, mathematics that reflect the elementary steps of which the reactions consist. The book forges fundamental kinetics into a practical tool by presenting new effective methods for elucidation of mechanisms and reduction of mathematical complexity without unacceptable sacrifice in accuracy.
Table of contents:
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Preface
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Introduction
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References
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Concepts, Definitions, Conventions, and Notation
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Classification of Reactions
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Steps, Pathways, Networks, and Cycles
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Rates
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Rate Equations and Activation Energies
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Orders, Molecularities, and Ranks
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Conversion, Yield, and Selectivity
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Summary
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References
Fundamentals
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Statistical Basis: Molecularities and Reaction Orders
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Nonideality
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Temperature Dependence
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Compilation of Rate Equations of Multistep Reactions
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Consistency Criteria
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Summary
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References
Determination of Rates, Orders, and Rate Coefficients
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Research Reactors
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Analytical Support
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Reaction Orders and Apparent Rate Coefficients
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Numerical Work-Up, Error Recognition, and Reliability
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Summary
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References
Tools for Reduction of Complexity
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Rate-Controlling Steps
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Quasi-Equilibrium Steps
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Quasi-Stationary States: The Bodenstein Approximation
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Relative Abundance in Catalysis and Polymerization and Long-Chain Approximation
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Summary
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References
Elementary Step Combinations
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Reversible Reactions
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Parallel Steps
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Coupled Parallel Steps
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Sequential Steps
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Competing Steps
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Reactions with Fast Pre-Dissociation
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General Solution for First-Order Networks
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Summary
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References
Practical Mathematics of Multistep Reactions
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Simple and Non-Simple Pathways and Networks
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Pseudo-First Order Rate Coefficients
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Simple Pathways
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Simple Networks
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Non-Simple Pathways and Networks
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Summary
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References
Network Elucidation
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Order and Rank
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“One Plus” Rate Equations
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Relationships Between Network Properties and Kinetic Behavior
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Other Criteria and Guidelines
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Auxiliary Techniques
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Summary
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References
Homogeneous Catalysis
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Single-Species Catalysis
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Complex Catalysis
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Classical Models of Enzyme Kinetics
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General Formula for Single Catalytic Cycles: Christiansen Mathematics
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Reduction of Complexity
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Relationships Between Pathway Properties and Kinetic Behavior
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Cycles with External Reactions
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Multiple Cycles
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Competing Reactions (Cycles with Common Members)
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Dual- and Multiple-Form Catalysts (Connected Cycles)
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Reactions with Multiple Products (Cycles with Common Pathway Segments)
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Self-Accelerating Reactions (Autocatalysis)
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Analogies to Heterogeneous Catalysis
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Summary
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References
Chain Reactions
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General Properties
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Initiation
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Reactions with Two Chain Carriers: The Hydrogen-Bromide Reaction
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Identification of Relevant Steps
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Transmission of Reactivity: Indirect Initiation, Chain Transfer
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Reactions with More than Two Free Radicals
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Inhibition and Induction Periods
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Summary
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References
Polymerization
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Types of Polymerization Reactions
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Step-Growth Polymerization
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Free-Radical Polymerization
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Ionic Polymerization
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Coordination Polymerization
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Chain-Growth Copolymerization
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Summary
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References
Mathematical Modeling
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Strategies of Process Development
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Effective Mathematical Modeling
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“Shortsightedness” of Elementary Reaction Steps
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Model Validation
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Summary
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References
Unusual Thermal and Mass-Transfer Effects
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Anomalous Temperature Dependence
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Uncommon Heat-Transfer Problems
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Uncommon Mass-Transfer Problems
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Summary
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References
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Glossary of Symbols
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Author Index
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Subject Index
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Tags: Helfferich, Kinetics of Homogeneous, Multistep Reactions


