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Mass transfer - 3FMT1024

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  • Number of hours

    • Lectures : 10.5
    • Tutorials : 4.5
    • Laboratory works : ?
    • Projects : ?
    • Internship : ?
    ECTS : 25.0
  • Officials : Gerard MORTHA

Goals

Fundamentals of mass transfer – calculations - applications

Contact Gerard MORTHA

Content

Mass transfer fundamentals: origin and physics
Monophase mass transfer, case of diffusion and convection
Multi-phase mass transfer
Mass exchangers: basic approach and parameters
Applications, case examples, problems



Prerequisites

Physics and chemistry at 1st level (bac+2)
Course Introduction to transport phenomena at pagora

Tests

Written exam. 1.5 h



note = note du DS

Calendar

The course exists in the following branches:

  • Curriculum - Pagora Engineer - Student - Semester 1
  • Curriculum - Pagora Engineer - Apprentice - Semester 1
see the course schedule for 2015-2016

Additional Information

Curriculum->Pagora Engineer - Apprentice->Semester 6
Curriculum->Pagora Engineer - Student->Semester 6


Sécurité-Environnement

Bibliography

CRANK J. The mathematics of diffusion. Oxford : Clarendon press, : Oxford university press, 1979.
PERRY R., GREEN D.W., MALONEY J.O. Perry's chemical engineer's handbook. New York : McGraw-Hill, 1997
BIRD B., STEWART W.E., LIGHTFOOT E.N. Transport phenomena. New York : Wiley&Sons, 1962.
MIDDLEMAN S. An introduction to mass and heat transfer. Principles of analysis and design. New York : Wiley&Sons, 1998.
BRODKEY R. S., HERSHEY H.C. Transport phenomena: a unified approach. New York : McGraw Hill-College, 1988.
DEEN W.M. Analysis of transport phenomena. Oxford : Oxford University Press, 1998.
COEURET F., STORCK A. Eléments de génie électrochimique. Paris : Lavoisier Tec & Doc, 1984.

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Grenoble INP Institut d'ingénierie Univ. Grenoble Alpes