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TR

BIOPROCESS ENGINEERING

Course
BIOE308 - BIOPROCESS ENGINEERING
Department
Bioengineering - English - Master
Course Type
Scientific Preparation
Status
Required
Language
English
Credit
0
ECTS
0
T+P+L
0 + 0 + 0
Course Coordinator(s)
Asst. Prof. Dr. Nihal BAYIR
Prerequisite
-
Keywords

Course Description

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BIOPROCESS ENGINEERING

Evaluation Tools (Active Term)

Item Type Weight (%)
Midterm Exam Midterm 50
Final Exam Final 50
Total 100

Course outcomes

  1. 01 To be able to state the basic principles of bioprocesses.
  2. 02 To be able to evaluate metabolic stoichiometry and cell growth.
  3. 03 apply the principles of material and energy balances. To be able to
  4. 04 To be able to outline the biochemical operations and processes.
  5. 05 To be able to apply the kinetics of biological processes, heterogeneous reactions, and reactor engineering principles.
  6. 06 To be able to implement the theories of mass and energy balances, thermodynamics, heat and mass transfer.

Course Syllabus

Week Topic
Week 1 Introduction to Bioprocess Engineering
Week 2 Reaction Thermodynamics and reaction yield
Week 3 Reaction kinetics
Week 4 Reaction kinetics of biological processes
Week 5 Cell growth kinetics and biofilm kinetics
Week 6 Kinetics of enzyme catalysed reactions
Week 7 Death kinetics
Week 8 Material balances
Week 9 Bioreactors
Week 10 Mass balances in batch reactors
Week 11 Mass balances in completely mixed flow reactors
Week 12 Energy balances
Week 13 Revision
Week 14 Final exams
Week 15 Final exams

Reference Books & Course Materials

  1. 01 Doran PM, Bioprocess Engineering Principles, Elsevier Science Publishing, 1995 ISBN: 0122208552
  2. 02 Davis ML, Cornwell DA, Introduction to Environmental Engineering, Mc Graw Hill Int. Ed. 4th Ed., 2008, ISBN: 978-007-125922-4
  3. 03 Rittmann, BE, McCArty PL, Environmental Biotechnology, Principles and applications, Mc Graw Hill, 2001, 978-0071181846

Learning Outcomes

  1. L01 To be able to state the basic principles of bioprocesses.
  2. L02 To be able to evaluate metabolic stoichiometry and cell growth.
  3. L03 apply the principles of material and energy balances. To be able to
  4. L04 To be able to outline the biochemical operations and processes.
  5. L05 To be able to apply the kinetics of biological processes, heterogeneous reactions, and reactor engineering principles.
  6. L06 To be able to implement the theories of mass and energy balances, thermodynamics, heat and mass transfer.

Program Outcomes

No program outcomes have been defined.

Po-Lo Matrix

The PO-LO matrix has not been populated yet.