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The aim of the subject is to acquaint students with various types of industrial waste. It will present methods for processing, utilizing, and subsequently transforming them into sustainable products. Technologies that have the potential to minimize landfill waste and maximize recycling will be introduced.
Last update: Šídlová Martina (17.04.2025)
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Passing written exam Last update: Šídlová Martina (17.04.2025)
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Last update: prepocet_literatura.php (19.12.2024)
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Přednášky s praktickými případy, diskuze nad aktuálně obecně viditelnými případy z praxe. Last update: Šídlová Martina (17.04.2025)
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1. Introduction - wastes in general. Inorganic non-metallic waste. 2. Waste in cement and concrete production. Calcium sulfate waste. 3. Glass waste. 4. Ceramic waste. Construction and demolition waste 5. Metal waste and its utilization for metal production. 6. Basic pyro- and hydrometallurgical operations used for processing of metal waste. 7. Processing of steel scrap, waste containing Pb. 8. Processing of metal-bearing waste containing Al, Cu, Zn. 9. Processing of consumers' waste. 10. Special metal-bearing waste. 11. Waste electrical and electronic equipment (WEEE). 12. Origin and classification of polymer waste, legislation, eco-balance. 13. Polymer waste and its utilization. 14. Rubber waste and its utilization. Last update: Dvořák Petr (20.04.2025)
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Teachers' presentations. Last update: Šídlová Martina (17.04.2025)
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Students will be able to: Have knowledge of various waste categories and types. Decide which recycling method could be applicable for processing of chosen waste (metal, WEEE, building, glass, ceramics and polymer). Have overview of legislation concerning waste issues.
Last update: Šídlová Martina (17.04.2025)
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General and Inorganic Chemistry I Introduction to Study of Materials Last update: Šídlová Martina (17.04.2025)
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Teaching methods | ||||
Activity | Credits | Hours | ||
Účast na přednáškách | 1 | 28 | ||
Příprava na zkoušku a její absolvování | 2 | 56 | ||
3 / 3 | 84 / 84 |