Inhalt

[ 491CHPEAPEV19 ] VL (*)Advanced Chemical Process Engineering

Versionsauswahl
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Workload Ausbildungslevel Studienfachbereich VerantwortlicheR Semesterstunden Anbietende Uni
3 ECTS M1 - Master 1. Jahr Chemie Mark Hlawitschka 2 SSt Johannes Kepler Universität Linz
Detailinformationen
Anmeldevoraussetzungen (*)VL Chemical Process Engineering
Quellcurriculum Masterstudium Chemistry and Chemical Technology 2025W
Lernergebnisse
Kompetenzen
(*)The students acquire the competence to carry out advanced engineering analyses. They are able to understand chemical process equipment’s and calculate the key parameters. They can model processes and calculate the effects of changes in process variables on the separation efficiency.
Fertigkeiten Kenntnisse
(*)The students know and understand (k1 & k2) the concept of membranes separations, fluidized beds, cyclones, agglomeration, crystallization, column hydrodynamics, reactive extraction and chemisorption. The students have a basic understanding of advanced measurement techniques for process engineering optimizations. They can apply the mass balance, component balance and energy balance (k3). The students can analyze complex systems (e.g. column hydrodynamics) and solve them (k4). Also, the students understand the interactions with overlapping reactions and can identify the required actions (k5). (*)- Membranes - Membrane distillation - Gas separation - Pervaporation - Fluidized bed - Cyclones - Agglomeration - Crystallization - Column hydrodynamics - Reactive extraction - Chemisorption - Measurement techniques
Beurteilungskriterien (*)Written examination
Lehrmethoden (*)Lecture
Abhaltungssprache Englisch
Literatur (*)
  • Perry, R. H., & Green, D. W. Perry's chemical engineers' handbook. New York: McGraw-Hill.
  • Ullmann's Encyclopedia of Industrial Chemistry. Wiley Online Library
  • Coulson and Richardson’s Chemical Engineering Series
  • Lecture notes
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Äquivalenzen (*)296CTPEVPTV10: VL Verfahrens- und Prozesstechnik (2.6 ECTS)
Präsenzlehrveranstaltung
Teilungsziffer -
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