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CEV 347E
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Course Information
Course Weekly Lecture Plan
Course Evaluation Criteria
Course Information
Course Name
Turkish
Temel İşlemler
English
Unit Operations
Course Code
CEV 347E
Credit
Lecture
(hour/week)
Recitation
(hour/week)
Laboratory
(hour/week)
Semester
5
-
2
1
-
Course Language
English
Course Coordinator
Seval Sözen
Course Objectives
The main objectives of this course are;
1. to gain skills for dimensioning the units of these systems by getting acquainted with the reaction and reactor types used in treatment systems and using mass balance equations,
2. to gain skills for using the fundamentals in the design of water and wastewater treatment plants, through learning the principles of physical and physico-chemical operations used in Environmental Engineering applications.
Course Description
This course provides the basics of physical and physico-chemical operations used in treatment systems and problem solutions related to their applications in water and wastewater treatment with unit operations and processes approach. Reaction and reactor kinetics, flow models and mass balance concepts are also presented to be used for dimensioning the unit operations and processes that are important for Environmental Engineering.
Course Outcomes
The successful student will be able to;
I. construct mass balance equations by knowing the reaction and reactor types used in unit operations and processes,
II. understand principles of unit operations used in water treatment systems and to apply these principles for the conceptual design of these units,
III. understand principles of unit operations used in wastewater treatment systems and to apply these principles for the conceptual design of these units,
IV. understand principles of some unit operations used in advanced wastewater treatment systems and to apply these principles for the conceptual design of these units.
Pre-requisite(s)
-
Required Facilities
Computer can be used during homework preparation but is not obligatory.
Other
-
Textbook
Reynolds, T.D. (1982). Unit Operations and Process in Environmental Engineering, Brooks/Cole Eng. Div. Cal.
Other References
1. Sunstrom, D., Klei, H. (1979). Wastewater Treatment, Prentice Hill, Inc.
2. Tchobanoglous, G., Schroeder, E.D. (1985). Water Quality, Addison Wesley.
3. Tchobanoglous, G. Burton, F.L., Stensel, H.D. (2003). Wastewater Engineering: Treatment, and Reuse by Metcalf & Eddy Inc., McGraw Hill, 4th Edition.
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