BT8691 - APPLIED CHEMICAL REACTION ENGINEERING (Syllabus) 2017-regulation Anna University

BT8691 - APPLIED CHEMICAL REACTION ENGINEERING (Syllabus) 2017-regulation Anna University

BT8691

APPLIED CHEMICAL REACTION ENGINEERING

 LPTC

3003

OBJECTIVES:
• To provide the basic concepts of types of reactions, variable affecting the rate of reaction, predicting the rate equations for different types of reactions.
• To provide the information about different reactor systems, deriving the performance equations and predicting the rate equations in chemical reaction engineering system.

UNIT I

SCOPE OF CHEMICAL KINETICS & CHEMICAL REACTION ENGINEERING

9

Broad outline of chemical reactors; rate equations; concentration and temperature dependence; development of rate equations for different homogeneous reactions. Industrial scale reactors.

UNIT II

IDEAL REACTORS

9

Isothermal batch, flow, semi-batch reactors; performance equations for single reactors; multiple reactor systems; multiple reactions.


UNIT III

NON IDEAL REACTORS

9

RTD in non-ideal flow; non-ideal flow models; reactor performance with non-ideal flow.

UNIT IV

GAS-SOLID, GAS-LIQUID REACTIONS

9

Resistances and rate equations; heterogeneous catalysis; reactions steps; resistances and rate equations.

UNIT V

FIXED BED AND FLUID BED REACTORS

9

G/L reactions on solid catalysis; trickle bed, slurry reactors; three phase-fluidized beds; reactors for fluid-fluid reactions; tank reactors.

TOTAL : 45 PERIODS

OUTCOMES: The student will be able to
• Write the rate equation for any type of reaction.
• Design reactors for heterogeneous reactions and optimize operating conditions.
• Relate and calculate the conversions, concentrations and rates in a reaction and identify, formulate and solve chemical engineering problems.

TEXT BOOKS:
1. Levenspiel O. Chemical Reaction Engineering. IIIrd Edition. John Wiley.2006.
2. Fogler H.S. Elements Of Chemical Reaction Engineering. Prentice Hall India.2002

REFERENCES
1. Missen R.W., Mims C.A., Saville B.A. Introduction to Chemical Reaction Engineering and Kinetics. John Wiley.1999
2. Dawande, S.D., “Principles of Reaction Engineering”, Ist Edition, Central Techno Publications, 2001.
3. Richardson, J.F. and Peacock, D.G., “Coulson Richardson - Chemical Engineering”, Vol.III, IIIrd Edition, Butterworth- Heinemann- Elsevier, 2006.

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