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Chemical reactor
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Related lectures (32)
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Chemical Reaction Engineering: Conversion and Reactor Sizing
Explores the algorithm for solving chemical reaction engineering problems, focusing on conversion and reactor sizing.
Chemical reaction engineering: reactor design
Explores the Chemical Reaction Engineering algorithm applied to isothermal reactor design, with examples on SO2 oxidation and N2O4 decomposition.
Crystallization in COBRs
Explores the use of COBRs for crystallization processes, comparing batch and continuous reactors, and discussing nucleation mechanisms and growth kinetics.
Continuous Reactors: Advantages & Applications
Explores the advantages of continuous reactors, including improved heat and mass transfer, enhanced safety, and increased productivity.
Stoichiometry in Flow Reactor
Covers the stoichiometry in a flow reactor, discussing species, concentration, and conversion.
Chemical reaction engineering: reactor design
Focuses on isothermal reactor design, covering mole balances, rate laws, stoichiometry, and pressure drop effects.
Batch vs Continuous Reactors
Compares batch and continuous reactors, focusing on advantages, limitations, and high pressure processing for implementing continuous processing.
Batch to Continuous: Reactor Types and Process Optimization
Covers reactor types, process optimization, and advantages of continuous processing in chemical reactions.
Miniaturization: Impact on Chemical Reactions and Mixing
Covers miniaturization in chemical engineering, focusing on mixing effects on reactions and process efficiency.
Mixing and Segregation in Chemical Reactors
Explores mixing and segregation in chemical reactors, discussing the impact of segregation intensity on conversion and selectivity.
Fluid Segregation in Chemical Reactors
Explores fluid segregation in chemical reactors, discussing its impact on conversion rates and reactor performance.
Isothermal Reactor Design: Mole Balances
Covers mole balances, reactor volume determination, membrane reactors, semibatch systems, and reversible reactions.
Chemical Reactors: Design and Analysis
Covers the design and analysis of chemical reactors, focusing on Packed Bed Reactors and Continuous Stirred Tank Reactors.
Untitled
Fractional factorial design: Resolution and Standardized Effects
Explains fractional factorial design principles, focusing on resolution and standardized effects in chemical reactors.
Modeling examples: Stirred tank and reactor control
Covers modeling examples of stirred tanks and reactors in process control.
Chemical Reaction Engineering: Isothermal Reactor Design
Covers the design of isothermal reactors for chemical reactions, focusing on stoichiometry, rate laws, and concentration as a function of conversion.
Mixing & Reaction: Segregation Effects in Chemical Reactors
Explores the influence of segregation on mixing and reaction processes in chemical reactors.
Pressure Drop in Packed Pipes
Explores pressure drop effects in packed bed reactors and gas-phase reactions.
Mixing Effects on Chemical Reactions: Segregation Analysis
Covers the effects of mixing and segregation on chemical reaction performance in various reactor types.
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