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Chemical Kinetics (VL)
Subtitle:
This course is part of the module: Special Areas of Process Engineering and Bioprocess Engineering
Semester:
WiSe 23/24
Course type:
Lecture
Course number:
lv508_w23
Lecturer:
Prof. Dr. Raimund Horn, Dr. Oliver Korup
Description:

- Micro kinetics, formal kinetics, molecularity, reaction order, integrated rate laws

- Complex reactions, reversible reactions, consecutive reactions, parallel reactions, approximation methods: steady-state, pseudo-first order, numerical solution of rate equations , example : Belousov-Zhabotinskii reaction

- Experimental methods of kinetics, integral approach, differential approach, initial rate method, method of half-life, relaxation methods

- Collision theory, Maxwell velocity distribution, collision numbers, line of centers model

- Transition state theory, partition functions of atoms and molecules, examples, calculating reaction equilibria on the basis of molecular data only, heats of reaction, calculating rates of reaction by means of statistical thermodynamics

- Kinetics of heterogeneous reactions, peculiarities of heterogeneous reactions, mean-field approximation, Langmuir adsorption isotherm, reaction mechanisms, Langmuir-Hinshelwood Mechanism, Eley-Rideal Mechanism, steady-state approximation, quasi-equilibrium approximation, most abundant reaction intermediate (MARI), reaction order, apparent activation energy, example: CO oxidation, transition state theory of surface reactions, Sabatier´s principle, sticking coefficient, parameter fitting

- Explosions, cold flames

Performance accreditation:
650 - Special Areas of Process Engineering and Bioprocess Engineering<ul><li>605 - Ceramics Technology: Klausur schriftlich</li><li>605 - Chemical Kinetics: Klausur schriftlich</li><li>625 - Environmental Analysis: Klausur schriftlich</li><li>680 - Polymer Reaction Engineering: schriftliche Ausarbeitung</li><li>800 - Industrial Inorganic and Organic Processes: Klausur schriftlich</li><li>800 - Interfaces and Colloids: schriftliche Ausarbeitung</li><li>800 - Safety of Chemical Reactions: Klausur schriftlich</li><li>805 - Industrial biotechnology in Chemical Industriy: Presentation</li><li>805 - Solid Matter Process in Chemical Industry: schriftliche Ausarbeitung</li><li>835 - Lagrangian Transport in Turbulent Flows: written or oral</li><li>p1483 - Practice in bioprocess engineering: Presentation</li><li>p1570 - Optics for Engineers: Subject theoretical and practical work</li><li>p1571 - Optics for Engineers: Subject theoretical and practical work</li></ul><br>lv508 - Chemische Kinetik (Vorlesung)<ul><li>605 - Chemical Kinetics: Klausur schriftlich</li></ul><br>lv508 - Chemische Kinetik (Vorlesung)<ul><li>p582 - Chemical Kinetics: Klausur schriftlich</li></ul>
ECTS credit points:
2
Stud.IP informationen about this course:
Home institute: Institut für Chemische Reaktionstechnik (V-2)
Registered participants in Stud.IP: 8
Documents: 17
former semester
link to course in Stud.IP Studip_icon
Chemical Kinetics (VL)
Subtitle:
This course is part of the module: Special Areas of Process Engineering and Bioprocess Engineering
Semester:
WiSe 23/24
Course type:
Lecture
Course number:
lv508_w23
Lecturer:
Prof. Dr. Raimund Horn, Dr. Oliver Korup
Description:

- Micro kinetics, formal kinetics, molecularity, reaction order, integrated rate laws

- Complex reactions, reversible reactions, consecutive reactions, parallel reactions, approximation methods: steady-state, pseudo-first order, numerical solution of rate equations , example : Belousov-Zhabotinskii reaction

- Experimental methods of kinetics, integral approach, differential approach, initial rate method, method of half-life, relaxation methods

- Collision theory, Maxwell velocity distribution, collision numbers, line of centers model

- Transition state theory, partition functions of atoms and molecules, examples, calculating reaction equilibria on the basis of molecular data only, heats of reaction, calculating rates of reaction by means of statistical thermodynamics

- Kinetics of heterogeneous reactions, peculiarities of heterogeneous reactions, mean-field approximation, Langmuir adsorption isotherm, reaction mechanisms, Langmuir-Hinshelwood Mechanism, Eley-Rideal Mechanism, steady-state approximation, quasi-equilibrium approximation, most abundant reaction intermediate (MARI), reaction order, apparent activation energy, example: CO oxidation, transition state theory of surface reactions, Sabatier´s principle, sticking coefficient, parameter fitting

- Explosions, cold flames

Performance accreditation:
650 - Special Areas of Process Engineering and Bioprocess Engineering<ul><li>605 - Ceramics Technology: Klausur schriftlich</li><li>605 - Chemical Kinetics: Klausur schriftlich</li><li>625 - Environmental Analysis: Klausur schriftlich</li><li>680 - Polymer Reaction Engineering: schriftliche Ausarbeitung</li><li>800 - Industrial Inorganic and Organic Processes: Klausur schriftlich</li><li>800 - Interfaces and Colloids: schriftliche Ausarbeitung</li><li>800 - Safety of Chemical Reactions: Klausur schriftlich</li><li>805 - Industrial biotechnology in Chemical Industriy: Presentation</li><li>805 - Solid Matter Process in Chemical Industry: schriftliche Ausarbeitung</li><li>835 - Lagrangian Transport in Turbulent Flows: written or oral</li><li>p1483 - Practice in bioprocess engineering: Presentation</li><li>p1570 - Optics for Engineers: Subject theoretical and practical work</li><li>p1571 - Optics for Engineers: Subject theoretical and practical work</li></ul><br>lv508 - Chemische Kinetik (Vorlesung)<ul><li>605 - Chemical Kinetics: Klausur schriftlich</li></ul><br>lv508 - Chemische Kinetik (Vorlesung)<ul><li>p582 - Chemical Kinetics: Klausur schriftlich</li></ul>
ECTS credit points:
2
Stud.IP informationen about this course:
Home institute: Institut für Chemische Reaktionstechnik (V-2)
Registered participants in Stud.IP: 8
Documents: 17

Courses

For information on courses and modules, please refer to the current course catalogue and module manual of your degree programme.

Module / Course Period ECTS Credit Points
Module: Electrical Power Systems I: Introduction to Electrical Power Systems WiSe 6
Module: Electrical Power Systems II: Operation and Information Systems of Electrical Power Grids WiSe 6
Module: Electrical Power Systems III: Dynamics and Stability of Electrical Power Systems SuSe 6
Module: Electrical Engineering II: Alternating Current Networks and Basic Devices SuSe 6
Module: Electrical Engineering Project Laboratory SuSe 6
Module: Process Measurement Engineering SuSe 4
Module: Smart Grid Technologies WiSe, SuSe 6

Course: Seminar on Electromagnetic Compatibility and Electrical Power Systems

Further Information

WiSe, SuSe 2

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WiSe: Winter Semester