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CE40247: Microengineering and advanced materials

[Page last updated: 04 August 2022]

Academic Year: 2022/23
Owning Department/School: Department of Chemical Engineering
Credits: 10 [equivalent to 20 CATS credits]
Notional Study Hours: 200
Level: Masters UG & PG (FHEQ level 7)
Period:
Semester 1
Assessment Summary: EX100
Further information on unit assessment Assessment Detail:
  • Assessment detail for this unit will be available shortly.
Supplementary Assessment:
Like-for-like reassessment (where allowed by programme regulations)
Requisites:
Learning Outcomes: After successfully completing this unit, you will be able to:
  • Assess available microprocessing technologies and/or advanced materials and identify limitations for a given chemical engineering challenge (A2, A6d) [CLO: I3]
  • Choose and apply appropriate microfluidics and/or advanced material techniques and materials information to design the product, tool or device (A2, A6b) [CLO: P2]
  • Relate information from other disciplines to the selection of the most appropriate nano-and micro-scale technological solution and design (A6f) [CLO: P1]
  • Compare, recommend and justify the choice of a micro-scale technology and/or advanced material for a given chemical engineering challenge (A2, A6d) [CLO: I2]


Aims: In this unit you will explore two emerging research and industrial fields in the chemical engineering arena: advanced functional materials and microfluidic devices. You will develop an understanding of how functionality arises from underlying fundamental science and structure-property relationships and study applications which enable the transition from the 'macro-world' to the 'micro-world' including microreactor technologies.

Skills:
  • Analysis (T,F,A)
  • Data acquisition and interpretation (T,F,A)
  • Problem solving (T,F,A).


Content:
  • Structure, classification, and characterisation of advanced materials and their applications, including adsorption, storage, ion exchange, membrane, and reaction processes.
  • Thermodynamic equilibria for single and multicomponent confined systems; transport processes in porous solids; interparticle and intraparticle processes; experimental measurement techniques.
  • Introduction to microfluidics and hydrodynamics of microfluidic system.
  • Modelling of flow in microchannels including diffusion, mixing and separation in microsystems.
  • Segmented (two-fluid and multi-phase) fluid flow in microchannels.
  • Modelling of catalytic reactions in microreactors.
  • Methods and materials for microfabrication.
  • Capillary forces, surface tension and electrowetting


Programme availability:

CE40247 is Optional (DEU) on the following programmes:

Department of Chemical Engineering

Notes:

  • This unit catalogue is applicable for the 2022/23 academic year only. Students continuing their studies into 2023/24 and beyond should not assume that this unit will be available in future years in the format displayed here for 2022/23.
  • Programmes and units are subject to change in accordance with normal University procedures.
  • Availability of units will be subject to constraints such as staff availability, minimum and maximum group sizes, and timetabling factors as well as a student's ability to meet any pre-requisite rules.
  • Find out more about these and other important University terms and conditions here.