Course: Molecular Biology

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Course title Molecular Biology
Course code TUIOZP/TWZ4O
Organizational form of instruction no contact
Level of course Doctoral
Year of study not specified
Semester Winter and summer
Number of ECTS credits 0
Language of instruction Czech
Status of course Optional
Form of instruction Face-to-face
Work placements This is not an internship
Recommended optional programme components None
Lecturer(s)
  • Bednařík Vratislav, doc. Ing. Ph.D.
  • Slobodian Petr, prof. Ing. Ph.D.
Course content
- Hierarchy of waste management. - Waste classification. - Physico-chemical treatment of waste. - Biological treatment of waste. - Transport of pollutants in waste treatment. - Material utilization of waste. - Energy recovery of waste. - Landfills, operation, monitoring, reclamation. - Packaging management. - Circular economics. - Best available techniques.

Learning activities and teaching methods
Methods for working with texts (Textbook, book), Individual work of students
  • Preparation for examination - 50 hours per semester
prerequisite
Knowledge
The prerequisite is a positive attitude of the student to the environment, motivation to understand the processes of waste management and related economic aspects of human activity.
The prerequisite is a positive attitude of the student to the environment, motivation to understand the processes of waste management and related economic aspects of human activity.
learning outcomes
Basic terms and principles of waste management
Basic terms and principles of waste management
Waste analysis and evaluation
Waste analysis and evaluation
Waste treatment methods and technologies
Waste treatment methods and technologies
Recycling and utilization of waste
Recycling and utilization of waste
Economic and environmental aspects
Economic and environmental aspects
Skills
Area of legislation: ability to navigate national and international waste legislation
Area of legislation: ability to navigate national and international waste legislation
Technology assessment: analyse the efficiency and sustainability of different waste treatment technologies
Technology assessment: analyse the efficiency and sustainability of different waste treatment technologies
Applying the principles of sustainability: implement sustainable practices and technologies
Applying the principles of sustainability: implement sustainable practices and technologies
Innovation in waste management: search for new and effective methods of waste treatment and utilization
Innovation in waste management: search for new and effective methods of waste treatment and utilization
Design and implementation of waste treatment projects: plan, implement, evaluate the effectiveness
Design and implementation of waste treatment projects: plan, implement, evaluate the effectiveness
teaching methods
Knowledge
Methods for working with texts (Textbook, book)
Individual work of students
Individual work of students
Methods for working with texts (Textbook, book)
Skills
Individual work of students
Individual work of students
Practice exercises
Practice exercises
assessment methods
Knowledge
Oral examination
Oral examination
Recommended literature
  • CHANDRA, Ram. Environmental waste management.. Boca Raton, 2016. ISBN 9781498724746.
  • KIZLINK, Juraj. Nakládání s odpady. Brno, 2007. ISBN 978-80-214-3348-9.
  • MARTIN, William F., John M. LIPPITT a Paul J. WEBB. Hazardous waste handbook for health and safety. Boston, 2000. ISBN 978-0-7506-7135-4.
  • SLOBODIAN, Petr. Nakládání s odpady. Zlín, 2013. ISBN 978-80-7454-252-7.
  • TANG, Walter Z. Physicochemical treatment of hazardous wastes. Boca Raton, 2004. ISBN 1566769272.
  • VAUGHN, Jacqueline. Waste management: a reference handbook.. Santa Barbara, 2009. ISBN 978-1598841503.


Study plans that include the course
Faculty Study plan (Version) Category of Branch/Specialization Recommended year of study Recommended semester