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Foundations of chemical reaction engineering (FRE)5 ECTS
(englische Bezeichnung: Foundations of chemical reaction engineering)
(Prüfungsordnungsmodul: Foundations of chemical reaction engineering)

Modulverantwortliche/r: Peter Wasserscheid
Lehrende: Peter Wasserscheid, Peter Schulz


Start semester: WS 2022/2023Duration: 1 semesterCycle: jährlich (WS)
Präsenzzeit: 60 Std.Eigenstudium: 90 Std.Language: Englisch

Lectures:


Empfohlene Voraussetzungen:

To succeed in this course students will need to apply earlier acquired knowledge from e.g. organic, inorganic and physical chemistry (high school level). Fundamental understanding of mathematics is required. Basic knowledge in thermodynamics is beneficial.

Inhalt:

• Fundamentals of inorganic and organic chemistry
• Types and mechanisms of chemical reactions
• Chemical compounds for energy storage and conversion
• Stability of chemical compounds
• Chemical compounds for gas cleaning processes
• Heterogeneous catalysis
• Reduction and oxidation reactions
• Hydrogenation/Dehydrogenation reactions

Lernziele und Kompetenzen:

Students who participate in this course will become familiar with the basic chemistry behind energy conversion and storage. Students who successfully participate in this module can
• Understand the basic principles of chemical reactions
• Assign the energy storage feasibility of chemical compounds
• Analyze decomposition of chemical compounds
• Understand the molecular basis for gas capture and cleaning
• Describe the mechanisms of reduction and oxidation processes
• Understand and apply the fundamental principles of catalysis
• Describe the mechanisms of hydrogenation/dehydrogenation processes


Verwendbarkeit des Moduls / Einpassung in den Musterstudienplan:

  1. Clean Energy Processes (Bachelor of Science)
    (Po-Vers. 2021w | Grundlagen- und Orientierungsprüfung (GOP) | Foundations of chemical reaction engineering)

Studien-/Prüfungsleistungen:

Foundations of chemical reaction engineering (Prüfungsnummer: 27711)
Prüfungsleistung, Klausur, Dauer (in Minuten): 90, benotet
Anteil an der Berechnung der Modulnote: 100.0 %
Prüfungssprache: Englisch

Erstablegung: WS 2022/2023, 1. Wdh.: SS 2023
1. Prüfer: Peter Schulz

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