CANKIRI KARATEKIN UNIVERSITY Bologna Information System


  • Course Information
  • Course Title Code Semester Laboratory+Practice (Hour) Pool Type ECTS
    Separation Processes KMÜ403 FALL 4+0 C 6
    Learning Outcomes
    1-Selects the appropriate action for separation.
    2-Calculates the basic parameters for the selected separation process.
    3-Calculates the number of tray in the column used for batch and continuous distillation in a two-component system.
    4-Calculates the number of shelves and height in the absorption/desorption column.
    5-Calculates required parameters for extractor and evaporator units.
    Prerequisites -
    Language of Instruction Turkish
    Responsible Assist. Prof. Dr. Muhammed Bora AKIN
    Instructors -
    Assistants -
    Resources R1. Geankoplis C.J., (1993 ). Transport Processes and Unit Operations 3rd Edition. Prentice Hall International Editions, R2. McCabe, W. L., Smith, J. C., Harriot, P., (1993). Unit Opertaions of Chemical Enginnering, 5th ed., McGraw-Hill International Inc.,New YorK. R3. Geankoplis, C. J., Çev.: S. Yapıc (2015) Taşınma Süreçleri ve Ayırma Süreci İlkeleri, İzmir Güven Kitapevi, İzmir.
    Supplementary Book AR1. Çataltaş, İ. (1979). Kimya Mühendisliğine Giriş, 2 Cilt, İnkılap ve Aka Kitapevleri Koll. Şti., İstanbul. AR2. Uysal, B. Z., (1996). Kütle Transferi: Esasları ve Uygulamaları, Gazi Üniv. MMF Yayını, Ankara. AR3. Treybal, R.E., (1980). Mass Transfer Operations, Mc-Graw-Hill AR4. Seader, J.D., Henley, E.J. (2011). Separation Processes Principles Wiley.
    Goals To inform chemical engineering bachelor students About basic principles of commonly used unit operations in industry like distillation, extraction, absorbtion and drying. About area of usage, limitation and advantages of each operation and by this way bring them to earn ability to choose most proper operation for a process involving seperation. About calculations belong to unit operations and by this way bring them to earn ability to design seperation units if required
    Content Equilibrum, mass transfer between phases, distillation, absorbtion-desorbtion, liquid-liquid extraction, solid-liquid extraction, cristallization, evaporation.
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