Detail předmětu

Water and Wastewater Technologies

FCH-MA_TEVAk. rok: 2021/2022

Source water composition and properties, drinking water quality standards and regulation, water treatment technology trains – basic water treatment processes overview, coagulation and flocculation, water aeration, separation processes, adsorption of organic compounds by activated carbon, removal of specific contaminants, water disinfection processes, wastewater treatment plants, types of WWTP, physical unit operations and chemical unit processes at WWTP, microbiology, hydrobiology of wastewater, sludge management, waste management.

Jazyk výuky

angličtina

Počet kreditů

5

Nabízen zahradničním studentům

Všech fakult

Výsledky učení předmětu

The students obtain insights into different sectors of drinking water treatment processes, waste water technologies, apparatuses and water quality standards, which enable to use the knowledge in both the water treatment practice and research.

Prerekvizity

The courses require fundamental knowledge in chemistry.

Plánované vzdělávací činnosti a výukové metody

Lectures 1/week, the e-learning system (LMS Moodle) is available to students.

Způsob a kritéria hodnocení

The materials for the exam preparation are lectures on the e-learning portal. Assessment methods Oral examination. Assesment methods and criteria linked to learning outcomes: The course-unit credit is awarded on condition of: 100% attendance at the practice and elaboration of protocols for individual tasks.

Osnovy výuky

Water treatment technology - processes

1. Source water composition and properties, drinking water quality standards and regulation (European and local water safety rules (German and Czech standards); Water treatment technology trains – basic water treatment processes overview)
2. Coagulation and flocculation (theory and practice basics)
3. Water aeration (theory and practice)
4. Separation processes – sedimentation (theory and practice), flotation (theory and practice), granular media filtration (theory and practice), membranes (theory and practice)
5. Adsorption of organic compounds by activated carbon (theory and practice)
6. Removal of specific contaminants (iron and manganese removal, N compounds removal)
7. Water disinfection processes (chemical and physical disinfection processes)

Wastewater treatment technology and re-use waste water

1. Introduction to wastewater treatment plants (use, types, water facilities, water management, technology)
2. Types of WWTP (Configuration, Individual objects / tanks at WWTP, Basic calculations / parameters for WWTP design)
3. Physical Unit Operations sand Chemical Unit Processes at WWTP (sedimentation, coagulation, flotation, etc.)
4. Microbiology, hydrobiology of wastewater (types of microorganims, composition of wastewater, nutrients, processes in the biological part of the process)
5. Sludge management (sewage sludge cycle, sludge types, sludge treatment and hygiene)
6. Waste management (measurement and control, mathematical modeling)

Učební cíle

The students obtain insights into different sectors of drinking water treatment processes, waste water technologies, apparatuses and water quality standards, which enable to use the knowledge in both the water treatment practice and research.

Vymezení kontrolované výuky a způsob jejího provádění a formy nahrazování zameškané výuky

Attendance at lectures is not obligatory but recommended. Attendance at laboratory exercises is obligatory.

Základní literatura

Metcalf & Eddy: Wastewater Engineering Treatment and Reuse, McGraw-Hill Education - Europe, 2013. (EN)

Doporučená literatura

Manahan S. E.: Environmental Science and Technology, A Sustaible Approach to Green Science and Technology, Taylor and Francis, 2007. (EN)

eLearning

Zařazení předmětu ve studijních plánech

  • Program NPAP_ENVI magisterský navazující, 1. ročník, letní semestr, povinný

  • Program NKCP_ECHT magisterský navazující

    specializace --- , 1. ročník, letní semestr, povinný

  • Program NPCP_ECHT magisterský navazující, 1. ročník, letní semestr, povinný

Typ (způsob) výuky

 

Přednáška

26 hod., nepovinná

Vyučující / Lektor

Konzultace v kombinovaném studiu

26 hod., povinnost neuvedena

Vyučující / Lektor

Laboratorní cvičení

26 hod., povinná

Vyučující / Lektor

eLearning