COURSE UNIT TITLE

: AIR POLLUTION CONTROL TECHNOLOGIES

Description of Individual Course Units

Course Unit Code Course Unit Title Type Of Course D U L ECTS
ÇEV 4037 AIR POLLUTION CONTROL TECHNOLOGIES ELECTIVE 3 0 0 3

Offered By

Environmental Engineering

Level of Course Unit

First Cycle Programmes (Bachelor's Degree)

Course Coordinator

ASSISTANT PROFESSOR YETKIN DUMANOĞLU

Offered to

Environmental Engineering
Environmental Engineering (Evening)

Course Objective

The aim of the course is to learn basic information about systems that control air pollutants at the source. Within the scope of the course, the working principles of the control technologies used for each pollutant are explained. The design criteria of control technologies are taught at the basic level. Presentation applications related to the application areas of control technologies are made.

Learning Outcomes of the Course Unit

1   Gaining basic knowledge in air pollution control.
2   Comprehending the basic properties of gaseous and particulate pollutants.
3   Comprehending the basic processes related to the control of gaseous pollutants.
4   Understanding the basic processes related to the control of particulate matter.

Mode of Delivery

Face -to- Face

Prerequisites and Co-requisites

None

Recomended Optional Programme Components

None

Course Contents

Week Subject Description
1 Introduction to air pollution control engineering
2 The characteristics of gases
3 Gas absorption
4 Gas adsorption
5 Condensation
6 Incineration
7 The control of nitogen oxides
8 the control of sulfur oxides
9 The characteristics of particulate matter
10 Gravitational settlers
11 Cyclones and multicyclones
12 Electrostatic precipitators, fabric filters and wet scrubbers

Recomended or Required Reading

Hava kirliliğinin ve kontrolünün esasları, Aysen MÜEZZINOĞLU,2004
Air Pollution Control, A design Approach , David Cooper, F.C. Alley, Waveland Press.1994

Planned Learning Activities and Teaching Methods

Presentation, project, exam.

Assessment Methods

SORTING NUMBER SHORT CODE LONG CODE FORMULA
1 MTE MIDTERM EXAM
2 PRJ PROJECT
3 FIN FINAL EXAM
4 FCG FINAL COURSE GRADE MTE * 0.30 + PRJ * 0.20 + FIN * 0.50
5 RST RESIT
6 FCGR FINAL COURSE GRADE (RESIT) MTE * 0.30 + PRJ * 0.20 + RST * 0.50


*** Resit Exam is Not Administered in Institutions Where Resit is not Applicable.

Further Notes About Assessment Methods

None

Assessment Criteria

Continuation of the student.
Participation in project implementations.

Language of Instruction

Turkish

Course Policies and Rules

To be announced.

Contact Details for the Lecturer(s)

Dr.Öğr.Üyesi Yetkin DUMANOĞLU
yetkin.dumanoglu@deu.edu.tr
02323017115

Office Hours

To be announced.

Work Placement(s)

None

Workload Calculation

Activities Number Time (hours) Total Work Load (hours)
Lectures 12 3 36
Preparation for final exam 4 2 8
Preparation for midterm exam 4 2 8
Preparing presentations 4 2 8
Midterm 1 1,5 2
Final 1 1,5 2
Project Final Presentation 1 0,5 1
TOTAL WORKLOAD (hours) 65

Contribution of Learning Outcomes to Programme Outcomes

PO/LOPO.1PO.2PO.3PO.4PO.5PO.6PO.7PO.8PO.9PO.10PO.11
LO.151542
LO.24
LO.313
LO.413