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PHYSICAL CHEMICAL PROCESSES

Course
ENVE401 - PHYSICAL CHEMICAL PROCESSES
Department
Environmental Engineering - English - Undergraduate
Course Type
Course
Status
Required
Language
English
Credit
3
ECTS
6
T+P+L
3 + 1 + 0
Course Coordinator(s)
Dr. Inst. Sylvia BERYL KPANGE
Prerequisite
-
Keywords

Course Description

The objective of this course is to provide knowledge on the fundamental descriptions of sorption, membrane processes, ion exchange and chemical precipitation operations and processes, applications to water and wastewater treatment and their design. The course content includes definition of sorption and types of sorbents, sorption equilibrium, sorption kinetics, sorption isotherms, sorption column design, ion exchange theory and ion exchange design parameters, membrane modules and types, pressure driven membrane processes, membrane design parameters, fundamentals and design parameters of chemical precipitation for lime-soda ash softening and phosphorus removal. The course uses lecture notes and discussions for the theoretical information, exercises and tutorials learning to use the theory in practice.

PHYSICAL CHEMICAL PROCESSES

Evaluation Tools (Active Term)

No evaluation items have been defined.

Course outcomes

  1. 01 To explain the theory behind sorption, chemical precipitation, ion exchange and membrane technologies
  2. 02 To apply these processes/operations in water/wastewater treatment
  3. 03 To design these processes/operations

Course Syllabus

Week Topic
Week 1 Introduction_Chemical and Physical Processes
Week 2 Adsorption Phenomena I
Week 3 Adsorption Phenomena II
Week 4 Adsorption Equilibrium and Isotherms I
Week 5 Adsorption Equilibrium and Isotherms II
Week 6 Adsorption Column Design I
Week 7 Adsorption Column Design II
Week 8 Ion Exchange Process Configuration and Design I
Week 9 Ion Exchange Process Configuration and Design II
Week 10 MIDTERM
Week 11 Membrane Processes I
Week 12 Membrane Processes II
Week 13 Chemical Precipitation I
Week 14 Chemical Precipitation II
Week 15 Review

Reference Books & Course Materials

  1. 01 Reynolds, T., Richards P. Unit Operations and Processes in Environmental Engineering, PWS Publishing Company ISBN-10:0534948847
  2. 02 Marcel Mulder, Basic Principles of Membrane Technology 1996 ISBN-10:0792342488
  3. 03 Dougles Ruthven, Principles of Adsorption and Adsorption Processes, John Wiley & Sons, 1984 ISBN-10: 9780471866060

Learning Outcomes

  1. L01 To explain the theory behind sorption, chemical precipitation, ion exchange and membrane technologies SOLO 3
  2. L02 To apply these processes/operations in water/wastewater treatment SOLO 4
  3. L03 To design these processes/operations SOLO 5

Program Outcomes

  1. Adequate knowledge in mathematics, science and engineering subjects pertaining to the relevant discipline; ability to use theoretical and applied knowledgein these areas in complex engineering problems
  2. Ability to identify, formulate, and solve complex engineering problems; ability to select and apply proper analysis and modeling methods for this purpose.
  3. Ability to design a complex system, process, device or product under realistic constraints and conditions, in such a way as to meet the desired result; ability to apply modern design methods for this purpose.
  4. Ability to devise, select, and use modern techniques and tools needed for analyzing and solving complex problems encountered in engineering practice; ability to employ information technologies effectively.
  5. Ability to design and conduct experiments, gather data, analyze and interpret results for investigating complex engineering problems or discipline specific research questions.
  6. Ability to work efficiently in intra-disciplinary and multi-disciplinary teams; ability to work individually.
  7. Ability to communicate effectively in Turkish, both orally and in writing; knowledge of a minimum of one foreign language; ability to write effective reports and comprehend written reports, prepare design and production reports, make effective presentations, and give and receive clear and intelligible instructions.
  8. Recognition of the need for lifelong learning; ability to access information, to follow developments in science and technology, and to continue to educate him/herself.
  9. Consciousness to behave according to ethical principles and professional and ethical responsibility; knowledge on standards used in engineering practice.
  10. Knowledge about business life practices such as project management, risk management, and change management; awareness in entrepreneurship, innovation; knowledge about sustainable development.
  11. Knowledge about the global and social effects of engineering practices on health, environment, and safety, and contemporary issues of the century reflected into the field of engineering; awareness of the legal consequences of engineering solutions.

Po-Lo Matrix

LO Average
L01 - - - - - - - - - - - -
L02 - - - - - - - - - - - -
L03 - - - - - - - - - - - -