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Strona główna

Proecological Technologies

General data

Course ID: 0600-S1-ChK-W-TP
Erasmus code / ISCED: (unknown) / (0531) Chemistry The ISCED (International Standard Classification of Education) code has been designed by UNESCO.
Course title: Proecological Technologies
Name in Polish: Technologie proekologiczne
Organizational unit: Faculty of Chemistry
Course groups: (in Polish) Przedmioty do wyboru - Chemia kosmetyczna, studia stacjonarne I stopnia (S1)
ECTS credit allocation (and other scores): (not available) Basic information on ECTS credits allocation principles:
  • the annual hourly workload of the student’s work required to achieve the expected learning outcomes for a given stage is 1500-1800h, corresponding to 60 ECTS;
  • the student’s weekly hourly workload is 45 h;
  • 1 ECTS point corresponds to 25-30 hours of student work needed to achieve the assumed learning outcomes;
  • weekly student workload necessary to achieve the assumed learning outcomes allows to obtain 1.5 ECTS;
  • work required to pass the course, which has been assigned 3 ECTS, constitutes 10% of the semester student load.

view allocation of credits
Language: Polish
Prerequisites:

To complete the course it is necessary to pass the classes: "Fundamentals of Chemistry" and "Mathematics". The student knows the basics of chemical analysis.

Total student workload:

30 hours of lecture. 30 hours - own work. 15 hours - consultations.

Expository teaching methods:

- description
- discussion
- narration

Exploratory teaching methods:

- biographical
- classic problem-solving

Short description:

Exploring environmental technologies compatible with the idea of sustainable development. To familiarize students with renewable energy sources and the benefits of using them.

Full description:

Lecture will give you the knowledge about:

1. Development of efficient cofiring and co-firing technologies for biomass using modern technical solutions.

2. Practical aspects of biogas recovery from animal and/or plant waste treatment plants, wastewater treatment plants and waste disposal sites in the municipality,

3. Activities of solar collectors, photovoltaic cells.

4. Activities of hydroelectric, wave and tidal power plants.

5. Methods of using geothermal heat.

6. Aeroenergetics as a method og sustainable development.

7. Hybrid, electric and biofuel vehicles.

Bibliography:

1. R. Buczkowski i in., Technologie proekologiczne w przemyśle

i energetyce województwa kujawsko-pomorskiego, Wyd. UMK, Toruń 2004.

2. Igliński i in., Technologie bioenergetyczne, Wyd. UMK, Toruń 2009.

3. B. Igliński i in., Technologie geoenergetyczne, Wyd. UMK, Toruń 2010.

4. B. Igliński i in., Technologie helioenergetyczne, Wyd. UMK, Toruń 2013.

5. B. Igliński i in., Technologie aeroenergetyczne, Wyd. UMK, Toruń 2014.

This course is not currently offered.
Course descriptions are protected by copyright.
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