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Principles of Chemical Reaction Engineering
2013The article contains sections titled: 1. Introduction 2. Fundamentals 2.1. Chemical Rates 2.2. Relative Degree of Conversion 2.3. Selectivity and Yield 3. Microkinetics 3.1. Elementary Reactions 3.1.1. Fundamentals 3.1.2. Influence of Temperature 3.1.3. Influence of Concentration 3.2. Chemical Equilibria 3.3.
Eugeniusz J. Molga, K. Roel Westerterp
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Chemical Reaction and Reactor Engineering
20201. Numerical Methods in Reaction Engineering 2. Use of Residence- and Contact-Time Distributions in Reactor Design 3. Catalytic Surfaces and Catalyst Characterization Methods 4. Diffusion-Reaction Interactions in Catalyst Pellets 5. Gas-Solid Noncatalytic Reactions 6. Design of Fixed-Bed Gas-Solid Catalytic Reactors 7. Fluidized-Bed Reactors 8.
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Thermodynamics in Chemical Reactions Engineering
2019Some theory of the thermodynamics in chemical engineering is given in this section. The chapter starts with an explanation of the reaction rate and its dependence on temperature followed by the derivation of the van’t Hoff equation and Arrhenius equation.
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Introduction to Chemical Reaction Engineering
2007This chapter provides an introduction to the subject of chemical reaction engineering. Basic definitions and concepts are explained, including chemical kinetics, the importance of mass and heat transfer and chemical reactor design. Worked examples are provided to demonstrate these concepts.
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