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 Undergraduate Course: Chemical Engineering Unit Operations 3 (CHEE09009)
Course Outline
| School | School of Engineering | College | College of Science and Engineering |  
| Credit level (Normal year taken) | SCQF Level 9 (Year 3 Undergraduate) | Availability | Available to all students |  
| SCQF Credits | 10 | ECTS Credits | 5 |  
 
| Summary | The aim of this module is to deepen the students knowledge of the unit operations with a focus on distillation, absorption, adsorption and drying processes. This provides a foundation for the Chemical Engineering in Practice modules in the second semester of the 3rd year and for the Process Design modules in the 4th year. 
 This module draws on the concurrent course in Heat, Mass and Momentum Transfer, which gives the necessary foundations in mass transfer theory and also on the previous material in Chemical Engineering 2 Separation Processes, which should have imparted an understanding of the basic graphical methods in distillation of binary mixtures and other processes.
 
 The present lectures will extend the simplified binary distillation processes of the previous module to the most general multicomponent case. We will explore efficient short cut methods and briefly introduce the principles behind accurate numerical solution procedures for multicomponent absorption, stripping and distillation processes; we will review rate-based mass transfer operations for packed columns in application to absorption and stripping and finally, we will consider basic design principles of adsorption, humidification and drying processes.
 
 
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| Course description | L1 Introduction to Unit Operations; Equilibrium stage operations L2 Thermodynamics of distillation
 L3 Binary distillations review
 L4 Binary distillations review
 L5 Multicomponent Distillation: Short Cut Methods
 L6 Multicomponent Distillation: Short Cut Methods
 L7 Mass transport theories review
 L8 Mass transport theories review
 L9 Packed bed columns
 L10 Packed bed columns
 L11 Principles of humidification
 L12 Methods of humidification
 L13 Principles of drying
 L14 Principles of drying
 L15 Principles of adsorption
 L16 Methods of adsorption
 L17 Revision
 L18 Revision
 
 Tutorial 1: Bubble and dew points, flash separations, binary distillation
 Tutorial 2: Properties and separation of multicomponent mixtures: dew and bubble point, multicomponent flash separation, Fenske-Underwood-Gilliland method
 Tutorial 3: Mass transfer theory and absorption processes in packed towers
 Tutorial 4: Design of cooling towers
 Tutorial 5: Adsorption in stage-wise processes
 Tutorial 6: Adsorption in fixed-bed process
 
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Information for Visiting Students 
| Pre-requisites | None |  
		| High Demand Course? | Yes |  
Course Delivery Information
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| Academic year 2017/18, Available to all students (SV1) | Quota:  None |  | Course Start | Semester 2 |  Timetable | Timetable | 
| Learning and Teaching activities (Further Info) | Total Hours:
100
(
 Lecture Hours 22,
 Seminar/Tutorial Hours 9,
 Formative Assessment Hours 1,
 Summative Assessment Hours 2,
 Programme Level Learning and Teaching Hours 2,
Directed Learning and Independent Learning Hours
64 ) |  
| Assessment (Further Info) | Written Exam
100 %,
Coursework
0 %,
Practical Exam
0 % |  
 
| Additional Information (Assessment) | 2 hour degree examinations in May |  
| Feedback | Not entered |  
| Exam Information |  
    | Exam Diet | Paper Name | Hours & Minutes |  |  
| Main Exam Diet S2 (April/May) |  | 2:00 |  |  
 
Learning Outcomes 
| By the end of the course students should be able: 
 - to apply the principles of mass, heat transfer and thermodynamics to analyze and synthesize chemical engineering processes
 
 - to use short cut and graphical methods in design of multicomponent distillation, absorption, stripping and other processes
 
 - to analyze critically advantages and disadvantages of various design options and parameters (stage vs. packed columns)
 
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Reading List 
| 1. Warren L. McCabe, Julian C. Smith and Peter Harriot, Unit Operations of Chemical Engineering, (Fifth Edition). McGrawHill, 1993. 
 2. Robert E. Treybal, Mass Transfer Operations (McGraw-Hill Classic Textbook Reissue Series).
 
 3. J.D. Seader and Ernest J. Henley, Separation Process Principles, John Wiley & Sons, 1998.
 
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Additional Information
| Graduate Attributes and Skills | Not entered |  
| Keywords | Not entered |  
Contacts 
| Course organiser | Dr Simone Dimartino Tel: (0131 6)50 5598
 Email:
 | Course secretary | Mrs Lynn Hughieson Tel: (0131 6)50 5687
 Email:
 |   |  © Copyright 2017 The University of Edinburgh -  6 February 2017 6:33 pm |