Inhalt

[ 290CTPEPENV19 ] VL Chemical Process Engineering

Versionsauswahl
Workload Education level Study areas Responsible person Hours per week Coordinating university
3 ECTS B3 - Bachelor's programme 3. year Chemistry Mark Hlawitschka 2 hpw Johannes Kepler University Linz
Detailed information
Original study plan Bachelor's programme Chemistry and Chemical Technology 2025W
Learning Outcomes
Competences
The students acquire the competence to carry out basic engineering analyses. They are able to know the basic chemical processes and design them. They understand the interactions of hydrodynamics/mass transfer and heat transfer.
Skills Knowledge
The students know and understand (k1 & k2) the concept of rectification, distillation, extraction, heat and mass transfer, hydrodynamics, absorption, adsorption, filtration, mixing and drying. They can apply the mass balance, component balance and energy balance (k3). The students can analyze standard equipment systems and solve them (k4). Also, the students can simplify a task and determine the relevant parameters (k5).

Bacckground and applications of - Rectification - Distillation - Heat and mass transfer - Particles - Sedimentation - Filtration - Mixing - Extraction - Absorption - Adsorption - Drying
Criteria for evaluation
  • Written examination
  • Group exercises
Methods
  • Lecture
  • Project-based learning
Language English
Study material
  • Matthias Stieß: Mechanische Verfahrenstechnik, Band 1 und 2, Springer-Verlag; Heidelberg, Berlin, New York, 2. Auflage 1995 und 2001
  • Handbuch der Mechanischen Verfahrenstechnik, Band 1 und 2, Heinrich Schubert (ed.), Wiley-VCH, Weinheim, 2002
  • Mechanische Verfahrenstechnik, Heinrich Schubert u.a., Deutscher Verlag für Grundstoffindustrie, 1990
  • Martin Zogg: Einführung in die Mechanische Verfahrenstechnik, Teubner Verlag, Stuttgart, 1987
  • Raasch, Löffler: Grundlagen der Mechanischen Verfahrenstechnik, Vieweg Verlag
  • Dialer, Onken, Leschonski: Grundzüge der Verfahrenstechnik und Reaktionstechnik, Hanser Verlag
  • Ullmann's Encyclopedia of Industrial Chemistry, Wiley-VCH Verlag GmbH & Co. KGaA., 2002
  • Grassmann: Einführung in die thermische Verfahrenstechnik
  • Perry, Chilton: Chemical Engineers Handbook
  • Sattler: Thermische Trennverfahren
  • Mersmann: Thermische Verfahrenstechnik
  • Gnielinski, Mersmann, Thurner: Verdampfung, Kristallisation, Trocknung
  • Onken, Leschonski: Grundzüge der Verfahrenstechnik und Reaktionskinetik
  • Lecture notes
Changing subject? No
Corresponding lecture TCBPEVOVTK1: VO Verfahrenstechnik I (2,6 ECTS)
On-site course
Maximum number of participants -
Assignment procedure Direct assignment