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Institute of Environmental Engineering,


Department of Civil and Environmental Engineering and Architecture

Piotrowo 3A, 60-965 Poznań, Poland

tel: (+48 61) 665 2438, fax: (+48 61) 665 2439


e-mail: office_ee@put. poznan.pl


Objectives of the course:

Introducing encyclopedic knowledge about water supply and sewage systems. Basic processes and devices applied in water and wastewater treatment technologies. Methodology of conducting experiments, evaluation of some process parameters of water supply and wastewater collection systems.


Course description:

Main characteristic and elements of water supply and wastewater collection systems. Drinking water demand. Characteristic of groundwater wells and its maximum water capacity. Water supply systems, location, hydraulic calculations of branched water supply systems. Drinking water pumping stations. Sewage systems, main characteristic. Sewage systems objects. Location of sewage canals in street vertical and horizontal intersection. Hydraulic calculations of sewage collectors. Quality and quantity of wastewater. Wastewater pumping station. Evaluation of the quality of natural (raw) water based on physical, biological, microbiological and chemical properties of searched water. Basic technological systems and devices of modern Water Treatment Plants. Drinking water requirements according to Polish, UE and WHO standards. Physical, biological, and chemical properties of wastewater. Requirements of wastewater discharge. Characteristic of natural water contaminants and processes occurring in natural waters. Technologies and devices of Wastewater Treatment Plants. Wastewater sludge utilisation systems.

Search and evaluation of:

  • hydraulic and technological efficiency of sedimentation tank,

  • decarbonisation and chemical softening of water,

  • adsorption on granular activated carbon for chemical contamination removal.

  • activated sludge processes,

  • gravity thickening and mechanical dewatering of sludge,

and microbiological analysis of water, elements of hydrobiology.


Assessment methods:

Lectures, design exercises. Tests, reports.


Bibliography:

1. Gomółka, E, Szaynok A., “Chemia wody i powietrza” Wyd.Pol. Wrocł, 1997.

2. Dojlido J.R., “Chemia wód powierzchniowych”, Wyd. E IŚ., Białystok 1995.

3. BeneField of study L.D., Judkins J.F., Weand B.L. “Process Chemistry for Water and Wastewater Treatment”, Prentice-Hall, Inc., Englewood Cliffs, 1982

4. Praca zbiorowa:, “Poradnik eksploatatora oczyszczalni ścieków”, Wyd PZITS O/Poznań, 1997.

5. Gabryszewski T., “Wodociągi”, Arkady, Warszawa 1983.

6. Sowiński M., “Projektowanie sieci i urządzeń kanalizacyjnych”, Wyd. Politechniki Poznańskiej, Poznań 1986.

7. Pawlaczyk-Szpilowa M., “Mikrobiologia wody i ścieków, PWN Warszawa 1982.

8. Podgórniakowa M., Poznańska K., Jeszka P., “Ćwiczenia laboratoryjne z technologii oczyszczania ścieków”, Skrypt Politechniki Poznańskiej nr1123 Poznań 1983.

9. Sozański M.M. i inni, “Technologia usuwania i unieszkodliwiania osadów z uzdatniania wody”, Wyd. Politechniki Poznańskiej, Poznań 1999.


Course title: Air Protection Systems

Field of study: Environmental Protection

Hours/week - semester

Specialisation:

lecture:

2

E

semester VI

semester VII



Number of credits: 4 / 2

project/seminar:

2

semester VI


Lecturer: Zbigniew Bagieński, Ph.D., Eng.

Marek Juszczak, Ph.D., Eng.

Institute of Environmental Engineering,

Faculty of Civil and Environmental Engineering and Architecture

Piotrowo 3A; 60-965 Poznań, Poland,

tel. (+48 61) 665 2524, fax. (+48 61) 665 2439

e-mail: Zbigniew.Bagienski@put.poznan.pl

e-mail: Marek.Juszczak@put.poznan.pl


Objectives of the course:

Recognition of theoretical and practical problems of air protection especially in technological aspects; learning the air control technology.


Course description:

Model of system of air quality control; sources of air pollution; gaseous and particles pollutants: characteristics and measurement; control technology and collection equipment; characteristics of stack plumes, atmospheric dispersion and reactions in atmospheres; air pollution control legislation in Poland and EU; environmental management system.


Assessment methods:

Tests, final written and oral examination.


Bibliography:

  1. Konieczyński J.: Oczyszczanie gazów odlotowych; Wydz. Politechniki Śląskiej, 1993.

  2. Warych Jerzy.: Oczyszczanie przemysłowych gazów odlotowych, WNT, 1994.

  3. Kabsch P.: Odpylanie i odpylacze; WNT, 1992.

  4. Juda J., Chróściel S.: Ochrona powietrza atmosferycznego; WNT, 1974.

  5. Cheremisinoff P.,N. (Editor): Encyclopedia of Environmental Control Technology, Vol 2, Air Pollution Control; Gulf Publishing Company; 1989.




Course title: Computer Science in Environmental Protection

Field of study: Environmental Protection

Hours/week - semester

Specialisation:

lecture:

2

semester V



Number of credits: 4

project/seminars:

1

semester V


Lecturer: Andrzej Urbaniak, Ph.D., D.Sc., professor PUT

Institute of Computing Sciences,

Faculty of Electrical Engineering,

Piotrowo 3A, 60-965 Poznań, Poland,

Phone. (61) 879 0790, fax (61) 877 15 25,

e-mail: urbaniak@put.poznan.pl

Objectives of the course:

The student should obtain knowledge of control systems and computer utilization for processes control and monitoring systems, especially for environmental protection.


Course description:

A lecture is divided into two parts: first - foundation of control engineering, second - application of computer science. First part contains the basic definitions of control and automation, the description of the processes dynamics, the stability and quality of linear systems. The application part contains: the computer processes modelling, technical and functional aspects of monitoring systems (sensors and converters, hardware of monitoring systems), computer control systems, intelligent decision support systems in the Field of study of environmental protection. The Laboratory contains the examples of analyzed systems.


Assessment methods:

Laboratory: documentation of the Laboratory exercises.

Lecture: based on activity and Laboratory evaluation


Bibliography:

1. Łukaszewski T., Urbaniak A., Computer science in environmental protection, Wyd. PP (prepared for publication) (in Polish)

2. Urbaniak A., Automation in environmental engineering, Wyd. PP nr 1643, Poznań, 1995 (in Polish)

3. Olsson G., Piani G., Computers in automation and control, Prentice Hall, London 1995

4. Robertson D., Bundy A., Haggith M., Uschold M., Eco-Logic, The MIT Press, Cambridge, London, 1991


Course title: Chemical Technology

Field of study: Environmental Protection

Hours/week - semester

Specialisation:

lecture:

4

E

semester VI

semester VII



Number of credits: 4 / 5

project/seminars:








Lecturer: Professor Juliusz Pernak, Ph.D., D.Sc., Eng.

Institute of Chemical Technology and Engineering,

Pl. M. Skłodowskiej-Curie 2, 60-965 Poznań, Poland

tel. (+48 61) 665 3682, fax: (+48 61) 665 3649,

e-mail

Professor Andrzej Krysztafkiewicz, Ph.D., D.Sc.

Institute of Chemical Technology and Engineering,

Pl. M. Skłodowskiej-Curie 2, 60-965 Poznań, Poland

tel. (+48 61) 665 3626, fax (+48 61) 665 3649

e-mail: Teofil.Jesionowski@put.poznan.pl


Objectives of the course:

The students should obtain knowledge of organic and inorganic chemical technology.



Course description:

Inorganic Technology: Enrichment methods of mineral raw materials, fundamental processes of coal dressing i coal burning, carbonization and gasification. Technology of sulphur compounds (sulphur burning, catalytic oxidation SO2-SO3, SO3 absorption). Technology of nitrogen compounds (ammonium burning, ammonium synthesis, nitrogen oxides absorption, nitric acid, urea technology). Non-reversible processes in inorganic technology (burning and calcination). Soda production. Thermal and autothermal processes. Hydrogen production - synthetic gas.


Organic Technology: Basis of industrial chemistry. Various aspects of the energy and raw material supply. Manufacturing basis of process of esterification and nitration (chemical principles, process operation and uses). Surfactants (examples of commercially important surfactants, technology and application)


Assessment methods:

Written examination


Bibliography:

  1. S. Bretsznajder, W. Kawecki, J. Leyko, R. Marcinkowski - Podstawy ogólne technologii chemicznej, WNT, Warszawa 1973

  2. R. Bogoczek, E. Kociołek, Balawejder - Technologia chemiczna organiczna, 1992

  3. K. Weissernal, H.J. Arpe - Industrial Organic Chemistry, VCH, Weinheim, New York, Basel, Cambridge, Tokyo 1993

  4. J. Kępiński - Technologia chemiczna Nieorganiczna, PWN, Warszawa 1975

  5. H. Konieczny - Podstawy technologii chemicznej, PWN, Warszawa 1975




Course title: Principles of Biotechnology

Field of study: Environmental Protection

Hours/week - semester:

Specialisation:

lecture:

2 E

semester VI



Number of credits: 7

project/seminars:


Lecturer: Professor Włodzimierz Grajek, Ph.D., D.Sc.,
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