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


tel. 665 3622, fax. 665 3649,

e-mail: kowal@rose.man.poznan.pl


Objectives of the course:

The student should obtain knowledge on modelling and designing of the flow, thermal, and diffusive processes as well as on the heat and mass transfer problems.


Course description:

The fundamentals of chemical and process engineering are lectured. The matter in hand is divided into the flow, thermal, and diffusive processes. The flow processes comprise the problems of gas and liquid flow using methods and notions of fluid mechanics. The scope of studies contains the mechanics of incompressible and real fluids with taking into account both the compressibility and the viscosity. The thermal processes concern with three modes of energy transfer: conduction, convection, and radiation. The overriding consideration is the rate at which heat transfer take place. Considerations of an engineering nature such as designing of heat transfer equipment requires both a familiarity with the basic mechanisms of heat transfer and ability to evaluate quantitatively this rate as well as the important associated quantities. The goal is to examine the basic mechanisms of heat transfer and to consider the fundamental equations for evaluating the rate of heat transfer. The diffusive processes refer to systems containing two or more components whose concentration vary from point to point, as for example, multicomponent gas or liquid. The stationary and non-stationary problems of diffusion as well as the mechanisms of connective mass transfer and the principles of designing of mass transfer equipment are presented. The problems of simultaneous heat and mass transfer by drying, filter theory, and other important industrial processes as well as some mathematical methods and the dimensional analysis are also lectured.


Assessment methods:

Current control of preparation to Laboratory, valuation of Projects, written final examination.


Bibliography:

  1. Brodowicz K., Teoria wymienników ciepła i masy, PWN-Warszawa, 1982;

  2. Kowalski S.J., Teoria procesów przepływowych, cieplnych i dyfuzyjnych, Wydawnictwo Uczelniane Politechniki Poznańskiej, 1999;

  3. Malczewski J., Piekarski M., Modele procesów transportu masy, pędu i energii, PWN-Warszawa, 1992;

  4. Praca zbiorowa (Kembłowski Z., Michałowski S., Strumiłło Cz., Zarzycki R.), Podstawy teoretyczne inżynierii chemicznej i procesowej, WNT-Warszawa, 1985;

  5. Praca zbiorowa (Biń A., Huettner M., Kopeć J., Kozłowski M., Nowosielski J., Sieniutycz S., Szembek-Stoeger M., Szwast Z., Wolny A.), Zadania projektowe z inżynierii procesowej, Wydawnictwo Politechniki Warszawskiej, 1986;




Course title: Engineering of Chemical Reactions

Field of study: Environmental Protection

Hours/week - semester

Specialisation:

lecture:

2 E

semester V



Number of credits: 7

project/seminars:


Lecturer: Anna Sobczyńska, Ph.D., Eng.
Institute of Chemical Technology and Engineering

Faculty of Chemical Technology

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

tel. (61) 665 3601, fax 665 3649

e-mail: Anna.Sobczynska@fct.put.poznan.pl


Objectives of the course:

The student should obtain knowledge of static and kinetics and design of reactors.


Course description:

The following problems are discussed:

  1. static and kinetics of simple and complex reactions in homogenous media,

  2. some problems of heterogeneous kinetics,

  3. thermodynamic data sources and predictions, and their use for thermodynamic analysis,

  4. mass and heat balance of reaction and processes,

  5. types of reactors and their selection and kinetics,

  6. distribution of time and actual reactors.

The Laboratory gives practical examples for the kinetics, mass and heat balance and mixing dynamics. Computer simulation and statistical calculations are used for elaboration of experimental results.


Assessment methods:

Final oral examination,


Bibliography:

1. J. Szarawara, J. Skrzypek, A. Gawdzik, Podstawy inżynierii reaktorw chemicznych, WNT Warszawa 1991.

2. E. Bortel, H. Konieczny, Zarys technologii chemicznej, PWN Warszawa 1992.

3. S. Bretsznajder, W. Kawecki, J. Leyko, R. Marcinkowski, Podstawy oglne technologii chemicznej, WNT Warszawa 1973.


Subject: Elements of Water Supply and Sewage Collection Systems.

Field of study: Environmental Protection

Hours/week - semester

Specialisation:

lecture:

2 E

semester V



Number of credits: 5 / 4

project/seminar:

2

semester V


Lecturer: Marek M. Sozański, Ph.D, D.Sc., Eng., professor PUT,
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