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Process Intensification and Green Chemistry
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Related lectures (40)
Chemical reaction engineering: reactor design
Explores the Chemical Reaction Engineering algorithm applied to isothermal reactor design, with examples on SO2 oxidation and N2O4 decomposition.
Chemical Reaction Engineering: Conversion and Reactor Sizing
Explores the algorithm for solving chemical reaction engineering problems, focusing on conversion and reactor sizing.
Chemical Engineering Fundamentals
Covers material and energy balances in chemical engineering, enthalpy of reaction, and classification of reactions, with practical examples.
Energy Balances on Reactive Systems
Explores energy balance in reactive processes, enthalpy of reaction, and methods for solving energy balances.
Chemical Reaction Engineering: Reactor Design
Explores chemical kinetics, reactor design, and critical thinking in chemical reaction engineering.
Chemical Reaction Engineering: Algorithmic Approach
Explores problem-solving algorithms for chemical reactor design and analysis, emphasizing the CRE approach and various reactor configurations.
Chemical Reaction Engineering: Algorithm and Stoichiometry
Explores the Chemical Reaction Engineering algorithm in batch reactors and CSTRs, focusing on stoichiometry and rate laws.
Chemical reaction engineering: reactor design
Focuses on isothermal reactor design, covering mole balances, rate laws, stoichiometry, and pressure drop effects.
Chemical Reaction Engineering
Covers the analytical derivation of various design models and reactor sizing.
Adiabatic Reactor Design
Covers the design of adiabatic reactors with a focus on isomerization reactions and energy balance calculations.
Conversion and Reactor Sizing
Explores conversion, reactor sizing, and series reactors with practical examples.
Transport Effects in Heterogeneous Catalysis
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Explores transport effects in heterogeneous catalysis, emphasizing the impact of mass transfer on reaction kinetics and mechanisms.
Miniaturization: Impact on Chemical Reactions and Mixing
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Covers miniaturization in chemical engineering, focusing on mixing effects on reactions and process efficiency.
Miniaturization: Opportunities and Efficiency
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Explores miniaturization opportunities and process efficiency in chemical reactions and heat transfer.
Batch to Continuous: Process Intensification and Green Chemistry
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Covers the transition from batch to continuous processing in chemical engineering, focusing on advantages, limitations, high pressure processing, and examples of pressure-enhanced reactions.
Heat Transfer in Microreactors
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Explores heat transfer in microreactors, covering straight micro-channels, thermal sensitivity analysis, and multi-injection systems.
Heat Transfer in Microreactors
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Explores heat transfer in microreactors, covering homogeneous and segmented flows, thermal sensitivity, and hot spot reduction.
Spinning Disc Reactors: Principles and Applications
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Explores the principles and applications of spinning disc reactors for enhanced mass and heat transfer in green chemistry.
Heat Transfer in Microreactors
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Explores heat transfer in microreactors, covering Nusselt numbers, channel geometries, and thermal sensitivity analysis.
RS-SDR and COBR: Mixing Principles and Applications
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Explores the mixing principles and applications of RS-SDR and COBR reactors for enhanced reaction efficiency and safety.
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