Faculté de chimie

Process simulation

  • Cours (CM) -
  • Cours intégrés (CI) 21h
  • Travaux dirigés (TD) -
  • Travaux pratiques (TP) -
  • Travail étudiant (TE) -

Langue de l'enseignement : Anglais

Enseignement proposé en : en présence

Description du contenu de l'enseignement

Advanced Chemical Engineering / Reaction Engineering : modelling and simulation
I – Ideal homogeneous reactors
CSTR/ Plug-flow /Batch reactors
Design criteria : conversion rate, yield, selectivity
Competitive and consecutive stoichiometries
II – Temperature effects and heat balances
equilibrated and non-equilibrated reactions : Optimal design and operating conditions
Heat balances
Reactor design
III – Real reactor
Residence time distribution
Modelling and design of real chemical rectors
IV– Heterogeneous catalytic reactors
Modelling and design of heterogeneous catalytic reactors
 

Compétences à acquérir

The main targets are :
to acquire basic knowledges on ideal and real reactor for chemical reactions
to relevantly select type of reactor, operating conditions and process architectures
to simulate an entire chemical processes including different unit operations and devices
to improve an existing process.
 

Bibliographie, lectures recommandées

Foggler, H. S., Elements of Chemical Reaction Engineering, Prentice Hall of India, 1994.
Levenspiel O., Chemical Reaction Engineering, Wiley Eastern 1972

 

Pré-requis recommandés

Bacis knowlegdges on :
Thermodynamic
Chemical reaction kinetics
Mass and heat balances
Ordinary differential equations

 

MASTER - Chimie

Fondation Université de Strasbourg
Investissements d'Avenir
Ligue européenne des universités de recherche (LERU)
EUCOR, Le Campus européen
CNRS
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