790350 Bioprocess engineering I (in Eng.)


Art
Vorlesung und Übung
Semesterstunden
3
Vortragende/r (Mitwirkende/r)
Organisation
Angeboten im Semester
Wintersemester 2022/23
Unterrichts-/ Lehrsprachen
Englisch

Lehrinhalt

ORGANIZATIONAL HANDLING OF THE LECTURE/EXERCISE BIOPROCESS ENGINEERING I

Both lecture and exercises are offered in the form of distance learning. There are therefore no restrictions regarding the number of participants, which has always been limited to 80 persons due to the spatial requirements.

The previously valid regulations regarding compulsory attendance will be abolished. Participation in exercises and theory lectures are no longer compulsory but voluntary.

However, the timely submission of exercises in handwritten scanned form as PDF file is mandatory. The exercises will be checked randomly and will be included in the final evaluation with 20% as before. The positive completion of the exercises can only be achieved by handing in all the exercises - if an exercise is not handed in, this is accompanied by a negative evaluation of the exercise part. Successful completion of the exercises is a prerequisite for admission to the examination of the theoretical part of the lecture, which is included in the overall evaluation with 80%.

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Oxygen transport
Heat transport
Rheological properties of biological fluids
Material and energy balances
Kinetics of product formation
Enzymkinetik
Up- and Downscale of bioprocesses
Process monitoring
Data processingProzess Kontrolle
Automation
PAT (porces analytical technology and QbD concepts)
Downstream processing of biopharmaceuticals overview
Downstream processing in industrial biotechnology
Unit operations/ Centrifugation, Membrane Filtration, Cell Lysis, Adsorption/Chromatography
Pore diffusion rmodel to predict process chromatography

Inhaltliche Voraussetzungen (erwartete Kenntnisse)

Basics chemical engineering knowledge is requested. This includes basics in heat, mass, momentum transfer, and basisc in thermodynamics. Solutions of differential equations (ODE solver).

Lehrziel

After completion of this course, students are able to generate a functional specification for a biotechnological production plant for the production of a biological compound. The design includes up and downstream processing.
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