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Lecturer(s)
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Cuhorka Jiří, Ing. Ph.D.
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Mikulášek Petr, prof. Ing. CSc.
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Course content
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1. Classification of membrane processes. 2. Pressure membrane processes, common basics. 3. Microfiltration and Ultrafiltration. 4. Nanofiltration and Reverse osmosis. 5. Flux enhancement methods for pressure driven membrane processes. 6. Diffusion dialysis and electrodialysis. 7. Pervaporation and Membrane distillation. 8. Membrane separation of gases. 9. Membrane contactors and Membrane reactors. 10. Separation processes using liquid membranes. 11. Combinations of membrane and classic processes. 12. Integrated membrane processes. 13. Significant industrial applications of membrane processes.
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Learning activities and teaching methods
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Monologic (reading, lecture, briefing), Dialogic (discussion, interview, brainstorming), Work with text (with textbook, with book)
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Learning outcomes
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The students are acquainted with basic principles and theoretical models of membrane processes, the calculations of membrane apparatuses and exploitation of scientific literature are practised.
The students have mastered the basic principles of membrane technology and its balance calculations.
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Prerequisites
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Basic physical chemistry, Chemical engineering I
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Assessment methods and criteria
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Oral examination
There is an oral examination. Primary form of exam is the debate about selected themes. Level of acquired knowledge, conceptions and application acquirements is examined. Knowledge is examined by test during semester and its result is included into total classification.
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Recommended literature
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Mikulášek P. a kol. Tlakové membránové procesy. Praha: VŠCHT, 2013. ISBN 978-80-7080-862-7.
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Mulder M. Basic Principles of Membrane Technology. Kluver Academic Publisher: Dordrecht, 2000.
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Novák L., editor. Elektromembránové procesy. Praha: VŠCHT, 2014. ISBN 978-80-7080-865-8.
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Palatý Z., editor. Membránové procesy. Praha: VŠCHT, 2012. ISBN 978-80-7080-808-.
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Šípek M., editor. Membránové dělení plynů a par. Praha: VŠCHT, 2014. ISBN 978-80-7080-864-1.
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