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CRE NON IDEAL FLOW (Weightage 18%)

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Chemical Reaction Engineering - II (2170501)



  1. Basics of non-ideal flow, 
  2. Residence time distribution, 
  3. stimulus response techniques, 
  4. The E,F and C Curves, 
  5. their interrelationship,
  6. conversion in non-ideal flow reactors, 
  7. Dispersion model, 
  8. Chemical Reaction and dispersion, 
  9. Intensity of fluid mixing. 
  10. Tanks in series model, 
  11. Deviation from plug flow, 
  12. Models for real stirred tanks

Ch-6: Design and Scheduling of Batch Processes (Weightage 14% )

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Computer Aided Process Synthesis (2170507)

Ch-6: Design and Scheduling of Batch Processes:

  1. Objectives, 
  2. Introduction, 
  3. Design of Batch Process Units, 
  4. Design of Reactor-Separator Processes, 
  5. Design of Single Product Processing Sequences, 
  6. Design of Multi-Product Processing Sequencing







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Ch 4 Synthesis of Heat Exchanger Networks (Weightage 34% )

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Computer Aided Process Synthesis (2170507)

 

Ch-4 : Synthesis of Heat Exchanger Networks:

  1. Objectives, 
  2. Basic Heat Exchanger Network Synthesis (HENS), 
  3. Minimum Utility Targets, 
  4. Temperature Interval Method,
  5.  Hohmann / Lochart Composite Curves (HCC), 
  6. Grand Composite Curves (GCC), 
  7. Pinch Design Approach to Inventing a Network,
  8.  Networks for Maximum Energy Recovery, 
  9. Minimum Number of Exchangers, Stream Splitting, 
  10. Threshold and Optimum Approach Temperature, 
  11. Derivation of Network Superstructures for Minimization of Annual Costs, 
  12. Multiple Utility Design Problems




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Ch 3:Synthesis of Separation Trains (Weightage 19% )

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Computer Aided Process Synthesis (2170507)


Ch 3:Synthesis of Separation Trains

  1. Objectives, 
  2. Introduction ,
  3. Phase Separation of Reactor Effluent, 
  4. Criteria for Selection of Separation Methods, 
  5. Selection of Equipment, 
  6. Sequencing of Ordinary Distillation for the Separation of Nearly Ideal Fluid Mixtures, 
  7. Heuristics for Determining Favourable Sequences, 
  8. Marginal Vapour Rate Method,
  9. Complex and thermally coupled distillation,Sequencing of Ordinary Distillation for the Separation of Nearly Non-Ideal Fluid Mixtures


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CH 1:-The Design Process (Weightage 11% )

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Computer Aided Process Synthesis (2170507)



Objectives, Design Opportunities, Steps in Product Process Design, Environmental, Protection, Safety Considerations, Engineering Ethics, Role of Computers.






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GATE Class Notes

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 GATE EXAM:

The Graduate Aptitude Test in Engineering is an examination that primarily tests the comprehensive understanding of various undergraduate subjects in engineering and science for admission into the Masters Program of institutes as well as jobs at Public Sector Companies.

Exam Pattern of GATE 2021

Particulars

Details

Mode

Computer Based Test

Duration

3 Hours

Type of Questions

  • Multiple Choice Questions (MCQs)

  • Numerical Answer Type (NAT) Questions

Total Number of Questions

65

Total Marks

100

Negative Marking

MCQs will have negative marking while NAT will not.




GATE Study Material for Chemical Download from Below links


1. Engineering Mathematics


2. Process Calculations


3. Thermodynamics


4. Fluid Mechanics


5. Mechanical Operations


6. Heat Transfer


7. Mass Transfer


8. Chemical Reaction Engineering


9. Plant Design and Economics


10.Chemical Technology


11.Process Control

 

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Chemical Reaction Engineering - II

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Chemical Reaction Engineering - II 

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SYLLABUS



Chemical Reaction Engineering - II by K. A. Gavhane




Book Summary:

I am very grateful to all my well wishers - friends, staff members and students of chemical engineering for giving enthusiastic response to the previous a new editions of this book. The matter is thoroughly checked and corrected to make this edition error/mistake-free.

Near about 132 solved examples in this edition have been carefully included to illustrate the fundamental concepts to help students to bridge the gap between theory and application of Chemical Reaction Engineering-II.

Audience of the Book :

This book Useful for Chemical Engineering students.

Table of Contents:

1. Introduction To Heterogeneous Reactions

2. Kinetics Of Fluid-Fluid Reactions

3. Design Of Fluid-Fluid Reactors

4. Kinetics Of Fluid-Particle Reactions

5. Design Of Fluid-Particle Reactors

6. Solid Catalysed Reactions

7. G/L Reactions On Solid Catalysts

8. Deactivating Catalysts

9. Enzyme Fermentation


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Process Equipment Design

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Process Equipment Design -II (2170502) 



SYLLABUS


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illustrated Process Design



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DISCLAIMER

lightbuk is not hosting any pirated & copyrighted contents and services. It’s a catalogue of data and links that are already available on the internet, therefore we do  not have any copyrighted content on our server.If you find any violation on our page or any copyrighted content, Then please contact us Asap, That content and data shall be removed or takedown within 48 working hours. ( Please read our Disclaimer)