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Chemical Reaction Engineering

Curriculum

  • 1 Section
  • 40 Lessons
  • 10 Weeks
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  • Chemical Reaction Engineering
    40
    • 2.1
      Introduction
    • 2.2
      Basic Concepts: Representation of Chemical Reactions
    • 2.3
      Thermodynamics of Chemical Reactions:Part-I
    • 2.4
      Thermodynamics of Chemical Reactions:Part II
    • 2.5
      Chemical Reaction Kinetics – Overview
    • 2.6
      Chemical Reaction Kinetics and Reactor Design
    • 2.7
      Chemical Reactor Design
    • 2.8
      Problem Solving: Thermodynamics & Kinetics
    • 2.9
      Complex Reactions – Introduction
    • 2.10
      Complex Reactions – Yield & Selectivity
    • 2.11
      Complex Reactions – Quasi Steady State & Quasi Equilibrium Approximations
    • 2.12
      Complex Reactions – Kinetics of chain Reactions & Polymerization
    • 2.13
      Catalytic Reactions – Introduction
    • 2.14
      Catalytic Reactions – Adsorption & Desorption
    • 2.15
      Catalytic Reactions – Kinetics
    • 2.16
      Monomolecular Reaction Network & Lumping Analysis
    • 2.17
      Problem Solving : Complex Reactions
    • 2.18
      Gas-Solid Catalytic Reactions – External Diffusion
    • 2.19
      Gas-Solid Catalytic Reactions – Transport in Catalyst Pellet
    • 2.20
      Gas-Solid Catalytic Reactions – Diffusion & Reaction I
    • 2.21
      Gas-Solid Catalytic Reactions – Diffusion & Reaction II
    • 2.22
      Gas-Solid Catalytic Reactions – Diffusion & Reaction III
    • 2.23
      Gas-Solid Catalytic Reactions – Non isothermal Effects
    • 2.24
      Gas-Solid Noncatalytic Reactions
    • 2.25
      Gas-Liquid Reactions
    • 2.26
      Heterogenous Reactions
    • 2.27
      Chemical Reactor Design: Mass & Energy Balances Part 1
    • 2.28
      Chemical Reactor Design: Mass & Energy Balances Part 2
    • 2.29
      Nonisothermal Reactor Operation
    • 2.30
      Case Study – Ethane Dehyrogenation
    • 2.31
      Case Study – Hydrogenation of Oil
    • 2.32
      Case Study – Ammonia Synthesis
    • 2.33
      Autothermal Reactors
    • 2.34
      Parametric Sensitivity
    • 2.35
      CSTR – Multiple Steady States
    • 2.36
      Stability Analysis – Basics
    • 2.37
      Stability Analysis – Examples
    • 2.38
      Nonideal Flow & Reactor Performance Part 1
    • 2.39
      Nonideal Flow & Reactor Performance Part 2
    • 2.40
      Problem Solving: Reactor Design
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CSTR – Multiple Steady States
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Stability Analysis – Examples
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