Opcije pristupačnosti Pristupačnost
Polymer science and technology - University of Zagreb
Repository
Repository is empty
Poll
No polls currently selected on this page!
Polymer science and technology - University of Zagreb
Code: 156830
ECTS: 4.0
Lecturers in charge: izv. prof. dr. sc. Zvonimir Katančić
prof. dr. sc. Ljerka Kratofil Krehula
Take exam: Studomat
Load:

1. komponenta

Lecture typeTotal
Lectures 30
Seminar 15
* Load is given in academic hour (1 academic hour = 45 minutes)
Description:
The aim of the course:
The aim is to introduce students to polymer science and technology. The knowledge includes polymerization processes; bulk, solvent, suspension and emulsion. Basis of thermodynamics of polymer solubility, degradation, compatibility. Polymers waste management, methods for reducing the volume of plastic waste.

The program of the course:
1. Introduction to polymer science. Classification of polymers. Nomenclature of polymers.
2. Chain growth polymerization. Step growth polymerization. Catalysts.
3. Ionic polymerization: anionic and cationic polymerization. Living polymers.
4. Reaction of copolymerization. Lewis-Mayo equation. Typical copolymerization diagrams.
5. Ring-opening polymerization.
6. Polymer processes: Bulk polymerization and polymerization in solution. Suspension polymerization. Emulsion polymerization.
7. Reactors in polymer chemistry. Reactions of crosslinking. Degradation of polymers.
8. 1st Partial exam
9. Polymer Materials; structure - properties relations
10. Synthetic polymers
11. Biopolymers
12. Thermodynamics of solubility, Compatibility of polymers blends and composites
13. Technology of plastics processing
14. Polymer Waste Management and Sustainable development
15. 2nd partial exam

Seminar: Making presentations or written seminar paper on a given topic
Prerequisites for enrolling in the course: Organic chemistry, Physical chemistry
Prerequisites for attending the course: Accepted seminars

Development of general and specific student competencies:
General competencies of students - 1st: understanding polymer systems during synthesis, 2nd: understanding and analyzing production processes of polymers, 3rd: understanding of the basic knowledge of synthesis, structure and properties, and the competence to identify and solve problems in the field of waste plastics.
Specific competencies of students- 1st: gaining knowledge about the synthesis of polymeric materials, 2nd: understanding the mechanisms of catalytic polymerization processes, 3rd: knowledge and understanding the basic elements of chemistry and materials engineering related to the chemical composition, structure, manufacturing, properties and applications, 4th: knowledge about the basic principles of environmental protection and polymers waste management
Student obligations in teaching and their performance: Students have to attend lectures and seminars

Teaching methods:
1. Power point presentations
2. Seminars

Type of examination of knowledge and examination: Written and oral exam if necessary
Method of monitoring the quality and performance of courses: Students surveys

Course learning outcomes:
1. Choose an appropriate method for the synthesis of polymers
2. Evaluate the polymerization process
3. Choose the processing method of polymers
4. Recommend the possible application of polymer materials related to their chemical composition, structure and properties
5. Plan the characterization procedure of polymer materials
6. Predict the polymer recycling process based on their structure

Program level learning outcomes: (study Chemical engineering):
1. Solve real chemical engineering problems by scientific approach
2. Evaluate data critically in order to draw conclusions
3. Evaluate the application of new and emerging technologies

Program level learning outcomes: (study Material science and engineering):
1. Integrate scientific principles of materials science and engineering: structure, properties, processing and application of materials
2. Relate expert knowledge in materials science and engineering with awareness of its societal, economic and environmental impacts
3. Use laboratory equipment and instruments in characterization of materials
4. Develop processes of materials processing and quality assessment

Literature: -
Learning outcomes:
Literature:
3. semester
Izborna grupa - Regular modul - Chemical Engineering in Environmental Protection
Izborna grupa - Regular modul - Chemical Process Engineering
Izborna grupa - Regular modul - Chemical Technologies and Products
Izborna grupa - Regular studij - Material Science and Engineering
Consultations schedule: