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The dependence between the chemical structure and morphology of polymeric materials and their applicability for separation processes will be taught in detail.
Last update: Hladíková Jana (03.01.2018)
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Students will be able to: characterize synthetic procedures and properties of polymers usable as membranes evaluate membrane structure - (potential) application relationships formulate procedures for the preparation of membranes with given morphology and/or geometry Last update: Hladíková Jana (03.01.2018)
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Completion of requirements Last update: Sysel Petr (15.02.2018)
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A: Encyclopedia of Polymer Science and Technology, J. Wiley & Sons (http://www.vscht.cz/pol/) Last update: Hladíková Jana (03.01.2018)
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1. Polymers, metals and ceramics usable as separation membranes 2. Polymeric materials for membrane preparation 3. Composition - transport properties relationship 4. Resistance of polymeric materials 5. Preparation of polymeric membranes 6. Multi-component membranes based on polymers 7. Polymeric membranes in practice I 8. Physical morphology of hetero-phase membranes 9. Transport mechanism through membranes - permeability and diffusion 10. Characterization methods of transport properties 11. Selected membrane separation methods 12. Light transport through membranes 13. Surface modification of membranes 14. Polymeric membranes in pracice II Last update: Hladíková Jana (03.01.2018)
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Encyclopedia of Polymer Science and Technology, J. Wiley & Sons (http://www.vscht.cz/pol/) Last update: Hladíková Jana (03.01.2018)
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Organic chemistry I (basic) Last update: Hladíková Jana (03.01.2018)
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Teaching methods | ||||
Activity | Credits | Hours | ||
Účast na přednáškách | 1 | 28 | ||
Příprava na přednášky, semináře, laboratoře, exkurzi nebo praxi | 1 | 28 | ||
Práce na individuálním projektu | 0.5 | 14 | ||
Příprava na zkoušku a její absolvování | 1 | 28 | ||
Účast na seminářích | 0.5 | 14 | ||
4 / 4 | 112 / 112 |