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Posted Date: 08 Mar 2020      Posted By:: Shouvik Maj    Member Level: Silver  Points: 3 (₹ 3)

2019 B.E Chemical Engineering B.E Jadavpur University Chemical Engineering - Chemical Reaction Engineering (3rd Year First Semester) -2019 Question paper



Course: B.E Chemical Engineering   University/board: Jadavpur University

Are you looking for the old question papers of Jadavpur University Chemical Engineering - Chemical Reaction Engineering? Here is the previous year question paper from Jadavpur University. This is the original question paper from the Chemical Engineering Department for Third year first semester exam conducted by Jadavpur University in year 2019. Feel free to download the question paper from here and use it to prepare for your upcoming exams.



{Scroll Below to get the PDF Attachment file of the Original Question Paper}

Exam Name- B.E Chemical Engineering Exam
3rd Year- 1st Semester

Subject- Chemical Reaction Engineering

Total Time- Three Hours
Maximum Marks- 100

Syllabus

Kinetics of homogeneous reactions (elementary and non-elementary); autocatalytic Reactions;
reversible reactions; interpretation of kinetic data; temperature and reaction rate.
Mole Balances, Stoicheometry (Batch and Flow processes), Isothermal Reactor Design (Batch,
CSTR, PFR), constant and variable volume reactions, Ideal reactors for a single reaction, Space
time, Damkohler number, Multiple reactor systems including reactor staging.
Semi-Batch Reactors, Recycle reactors: performance and optimum recycle ratio.
Multiple Reactions: design for irreversible series-parallel reactions; choice of reactors, selectivity
and yield in specific combination of reactors.
Non-isothermal reactors: Overview of energy balance equation; temperature and pressure
effects on single and multiple reactions, relative rates; design considerations; adiabatic reactors:
operating line and design considerations.
Reversible reactions in non-isothermal reactors: van't Hoff equation; equilibrium constant as a
function of temperature; specific design considerations for exothermic and endothermic
reactions; optimum temperature progression in various types of reactors; Reversible exothermic
reaction with inter-stage and cold-shot cooling.
Non-ideal reactors: Basics of non-ideal flow; contacting pattern; RTD: definitions of RTD
functions; evaluation through tracer experiments (inputs: step and pulse); introduction to nonideal reactor models: zero and one parameter models; calculation of conversion in non-ideal
reactors.



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