Chemical Engineering

Multiphase Reactor Design CH 8th Sem Syllabus for AKTU B.Tech 2019-20 Scheme (Departmental Elective-5)

Multiphase Reactor Design detail syllabus for Chemical Engineering (CH), 2019-20 scheme is taken from AKTU official website and presented for AKTU students. The course code (RCH083), and for exam duration, Teaching Hr/Week, Practical Hr/Week, Total Marks, internal marks, theory marks, and credits do visit complete sem subjects post given below.

For all other ch 8th sem syllabus for b.tech 2019-20 scheme aktu you can visit CH 8th Sem syllabus for B.Tech 2019-20 Scheme AKTU Subjects. For all other Departmental Elective-5 subjects do refer to Departmental Elective-5. The detail syllabus for multiphase reactor design is as follows.

Unit I

For the complete syllabus, results, class timetable and more kindly download iStudy. It’s a lightweight, easy to use, no images, no pdfs platform to make student’s life easier.

Unit II

The Scale-Up Conundrum, Intrinsic Kinetics: Invariance with Respect to Type/Size of Multiphase Reactor, Transport Processes: Dependence on Type/Size of Multiphase Reactor, Prediction of the Rate-Controlling Step in the Industrial Reactor, Laboratory Methods for Discerning Intrinsic Kinetics of Multiphase Reactions, Two-Phase (Gas-Liquid) Reaction, Three-Phase (Gas-Liquid-Solid) Reactions with Solid Phase Acting as Catalyst

Unit III

Classification of Multiphase Reactors, Criteria for Reactor Selection, Material of Construction, Some Examples of Large-Scale Applications of Multiphase Reactors: Fischer-Tropsch Synthesis and Oxidation of p-Xylene to Purified Terephthalic Acid for Poly(Ethylene Terephthalate), Fluid Turbulence, Eddy Size Distribution and Effect of Eddy Size on Transport Rates, States of Similarity of Relevance to Chemical Process Equipments.

Unit IV

For the complete syllabus, results, class timetable and more kindly download iStudy. It’s a lightweight, easy to use, no images, no pdfs platform to make student’s life easier.

Unit V

Hydrodynamic Regimes in Three-Phase (Gas-Liquid-Solid) Stirred Tank Reactors: Gas Holdup in Stirred Tank Reactors, Relative Gas Dispersion (N/NCD) as a Correlating Parameter for Gas Holdup, Gas-Liquid Mass Transfer Coefficient in Stirred Tank Reactor, Solid-Liquid Mass Transfer Coefficient in Stirred Tank Reactor: Solid Suspension in Stirred Tank Reactor, Design of Stirred Tank Reactors with Internal Cooling Coils, Gas-Liquid Mass Transfer Coefficient, Solid-Liquid Mass Transfer Coefficient , Stirred Tank Reactor with Internal Draft Tube, Worked Example: Design of Stirred Reactor for Hydrogenation of Aniline to Cyclohexylamine (Capacity: 25000 Metric Tonnes per Year), Elucidation of the Output

Text Books:

  1. Vishwas Govind Pangarkar (2014), Design of Multiphase Reactors, 1st Edition, John Wiley & Sons, Inc., ISBN:978-1-118-80776-7.
  2. Octave Levenspiel(2008), Chemical Reaction Engineering, Edition 3, John Wiley & Sons, ISBN:978-81-265-1000-9.

For detail syllabus of all other subjects of B.Tech Ch, 2019-20 regulation do visit Ch 8th Sem syllabus for 2019-20 Regulation.

Don’t forget to download iStudy for the latest syllabus, results, class timetable and more.

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