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Chemical reaction engineering: reactor design
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Related lectures (32)
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Reactor Analysis: Algorithm and Design
Covers the algorithm for reactor analysis and design, including isothermal reactor design, membrane reactors, and semibatch reactors.
Stoichiometry in Flow Reactor
Covers the stoichiometry in a flow reactor, discussing species, concentration, and conversion.
Reactor Technology: Reactivity Variations and Control
Explores reactivity variations in reactor technology, covering short-term, medium-term, and long-term effects, means of control, and consequences.
Heterogeneous Catalysis: Basics and Kinetics
Covers the basics of heterogeneous catalysis and the importance of transition state theory in predicting reaction rates.
Chemical reaction engineering
Covers the problem statement and analysis of chemical reactions in batch and CSTR reactors, with an analogy to alcohol conversion.
Mixing Effects on Chemical Reactions: Segregation Analysis
Covers the effects of mixing and segregation on chemical reaction performance in various reactor types.
Particle diameter and pressure drop
Explores the impact of particle size on catalytic reactions and pressure drop.
Bifunctional Catalysis: Surface Reaction Mechanisms
Explores bifunctional catalysis, emphasizing surface reaction mechanisms and kinetic parameters evaluation.
Membrane Reactor Design
Explores membrane reactor design, equilibrium conversion, system of ODEs, MATLAB plotting, and reaction curve impacts.
Chemical Reaction Engineering
Covers problem-solving algorithms in chemical reaction engineering, including mole balance equations, rate laws, stoichiometry, and reactor design equations.