Free download Chemical Reaction Engineering: Parameter Estimation, Exercises and Examples (2nd edition) authored by Martin Schmal and Jose Carlos Pinto in pdf.
“Chemical Reaction Engineering: Parameter Estimation, Exercises and Examples” by Martin Schmal and Jose Carlos Pinto is an essential textbook for students and professionals looking to deepen their understanding of chemical reaction engineering.
The second edition builds on the foundational work of the first edition, incorporating updated content, modern methodologies, and practical exercises aimed at bridging theoretical concepts with real-world applications.
The book is divided into well-organized sections that cover key aspects of chemical reaction engineering, including reactor design, kinetics, and parameter estimation techniques. Schmal and Pinto emphasize practical applications, with numerous examples and exercises that help readers apply theoretical concepts to industrial scenarios.
The inclusion of parameter estimation is a particularly valuable aspect, as it allows readers to learn how to derive important reaction parameters from experimental data—something crucial for both academia and industry.
“Chemical Reaction Engineering: Parameter Estimation, Exercises and Examples” by Martin Schmal and Jose Carlos Pinto is a comprehensive and detailed guide to the field of chemical reaction engineering. With a strong focus on practical applications, parameter estimation, and problem-solving, it serves as an invaluable resource for students, researchers, and professionals.
Contents
Part I: Basic notions
- Definitions and stoichiometry
- Chemical equilibrium
- Kinetics of reactions
- Molar balance in open and closed systems with chemical reaction
Part II: Kinetics
- Determination of kinetic parameters
- Kinetics of multiple reactions
- Non-elementary reactions
- Polymerization reactions
- Kinetics of liquid-phase reactions
- Heterogeneous reaction kinetics
Part III: Parameter estimation and experimental design
- Determination of kinetic parameters through parameter estimation
- Experimental design
- Kinetic exercises
Part IV: Reactors
- Ideal reactors
- Specific reactors
- Comparison of reactors
- Combination of reactors
- Transport phenomena in heterogeneous systems
Part V: Deactivation
- Catalyst deactivation
- Exercises reactors and heterogeneous reactors
- Multiphase reacting systems
- Heterogeneous reactors
- Nonideal reactors
Part VI: Catalysis
- Catalysis: Analyzing variables influencing the catalytic properties
Part VII: Practices
- Experimental practices
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