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Course Unit Title Course Unit Code Type of Course Unit Level of Course Unit Year of Study Semester ECTS Credits
Air Pollution Particule Control CEV416 Elective Bachelor's degree 4 Spring 5

Name of Lecturer(s)

Associate Prof. Dr. Şenay ÇETİN DOĞRUPARMAK

Learning Outcomes of the Course Unit

1) Explaining description of particulate matter, resources, physical and chemical properties, and health effects
2) Explaining settling chambers
3) Explaining cyclone
4) Explaining bag filter
5) Explaining wet scrubbers
6) Explaining electrostatic filter

Program Competencies-Learning Outcomes Relation

  Program Competencies
1 2 3 4
Learning Outcomes
1 High High High High
2 High High High High
3 High High High High
4 High High High High
5 High High High High
6 High High High High

Mode of Delivery

Face to Face

Prerequisites and Co-Requisites

None

Recommended Optional Programme Components

Not Required

Course Contents

Basic topics in capture at particulates -Distribution, frekans and cumulative distribution size -Precipitation rate -Particle capture mechanism -Definition of control devices -basic modelling concepts, retention times of particles Cyclones -Working principles of system -Modelling of cyclone performance, particular and total efficiency, pressure lost -Designing methods and engineering applications Wet scrubbers -Wet scrubber types, working principles -General design principles -Venturi type wet scrubbers Bag filters -Capturing efficiency, pressure lose -Design and engineering applications Electro filters -Working principles of system -Modelling of system, particular and total efficiency -Design and engineering applications

Weekly Schedule

1) Basic topics in capture at particulates -definition, physical, and chemical properties and health effects of particulate matter -distribution, frekans and cumulative distribution size -precipitation rate
2) Basic topics in capture at particulates -Particle capture mechanism -Definition of control devices -basic modelling concepts, retention times of particles
3) Cyclones -Working principles of system -Modelling of cyclone performance, particular and total efficiency, pressure lost
4) Cyclones (continuation) -Working principles of system -Modelling of cyclone performance, particular and total efficiency, pressure lost
5) Wet scrubbers -Wet scrubber types, working principles -General design principles -Venturi type wet scrubbers
6) Wet scrubbers (continuation) -Wet scrubber types, working principles -General design principles -Venturi type wet scrubbers
7) Wet scrubbers (continuation) -Wet scrubber types, working principles -General design principles -Venturi type wet scrubbers
8) Midterm examination/Assessment
9) Bag filters -Capturing efficiency, pressure lose -Design and engineering applications
10) Bag filters (continuation) -Capturing efficiency, pressure lose -Design and engineering applications
11) Bag filters (continuation) -Capturing efficiency, pressure lose -Design and engineering applications
12) Electro filters -Working principles of system -Modelling of system, particular and total efficiency -Design and engineering applications
13) Electro filters (continuation) -Working principles of system -Modelling of system, particular and total efficiency -Design and engineering applications
14) Electro filters (continuation) -Working principles of system -Modelling of system, particular and total efficiency -Design and engineering applications
15) Student presentations
16) Final examination

Recommended or Required Reading

1- AIR POLLUTION CONTROL ENGINEERING, Noel De Nevers, McGraw-Hill International Editions, 1993.
2- AIR POLLUTION CONTROL ENGINEERING- Basic Calculations for Particulate Collection, W.Licht
3- HANDBOOK OF AIR POLLUTION CONTROL TECHNOLOGY. Editörler: S.Calvert and H.M. England
4- HAVA KİRLİLİĞİ VE KONTROLÜNÜN ESASLARI, Aysen Müezzinoğlu, Dokuz Eylül Yayınları, 2000.
5- HAVA KİRLENMESİ KONTROLÜ, Olcay Tünay, İstanbul Ticaret Odası Yayını, 1996.
6- Ders Notları ve power point sunusu
7- Lecture notes and power point presentation
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Planned Learning Activities and Teaching Methods

1) Lecture
2) Question-Answer
3) Lab / Workshop
4) Problem Solving
5) Project Based Learning


Assessment Methods and Criteria

Contribution of Midterm Examination to Course Grade

40%

Contribution of Final Examination to Course Grade

60%

Total

100%

Language of Instruction

Turkish

Work Placement(s)

Not Required