UnitLevel 6Postgraduate

CHE6881 Advanced reaction engineering

Faculty of Engineering

CHE6881 Advanced reaction engineering is a level 6, 0-credit-point, postgraduate unit from the Faculty of Engineering, offered in 2022 in Semester 1 at Clayton. It has no prerequisites.

Credit points
0
Offered in 2022
Semester 1
Clayton
Assessment
No exam
3 tasks
Workload
144 hours
per semester

This is the 2022 handbook entry. See the 2027 entry.

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Requisites

Before CHE6881

No prerequisites or corequisites besides the enrolment rules below.

After CHE6881

No unit lists CHE6881 as a prerequisite in the 2022 handbook.

Enrolment rules

You must be enrolled in the Engineering PHD program or with permission from the Faculty of Engineering

Overview

The unit will develop a higher level understanding of reaction kinetics, catalysis and reactor design, including:

  • isothermal and non-isothermal reactor design - steady and unsteady states
  • runaway reactions, reactor safety and reactive hazards
  • heterogeneous catalysis, photocatalysis and biocatalysis
  • diffusion effects in catalytic reactions
  • residence time distribution
  • non-ideal reactor design and operation
  • density functional theory in catalysis
  • reactor design strategy for different industries including CO2 utilization
  • advanced reactor concepts for graphene production
  • use of metal organic frameworks in energy applications including catalysis
  • use of Gold as catalyst

Offerings in 2022

Teaching periodCampusMode
First semesterClaytonOn campus

Assessment

  • Assignment 1Threshold hurdle
    30%
  • Assignment 2Threshold hurdle
    20%
  • Final assessmentThreshold hurdle
    50%

Learning outcomes

When you finish this unit, you should be able to:

  1. 1

    Analyse and apply isothermal and non-isothermal kinetics

  2. 2

    Analyse the importance of catalysis in heterogeneous catalysis, photocatalysis and biocatalysis systems

  3. 3

    Design and analyse reactor systems using numerical methods and commercial software Aspen Plus

  4. 4

    Synthesize advanced reactor designs for selective industrial applications

  5. 5

    Critiquing contemporary journal articles in conventional industrial catalysis and emerging catalysis

Workload and teaching

  • Practical activities36 hours
  • Lectures12 hours
  • Teaching approachPeer assisted learning

Minimum total expected workload to achieve the learning outcomes for this unit is 144 hours per semester typically comprising a mixture of 4-6 hours of scheduled learning activities and 6-8 hours independent study per week. Scheduled activities may include a combination of teacher-directed learning, peer-directed learning and online engagement. Independent study may include associated readings, assessment and preparation for scheduled activities.

Learning resources

Required resources

Julian Ross, Heterogeneous Catalysis – Fundamentals and Applications, Elsevier, 2012

L Theodore, Chemical Reactor Analysis and Applications for the Practicing Engineer, Wiley, August 2012

Scott Fogler, Elements of Chemical Reaction Engineering , 4th edition, Prentice Hall, Upper Saddle River, New Jersey, USA, 2005.

Technology resources

You must regularly check Moodle for announcements. You are allowed to bring to class a laptop or similar.

Contacts

Chief Examiners
Professor Sankar Bhattacharya
Unit Coordinators
Professor Sankar Bhattacharya

Common questions

What are the prerequisites for CHE6881?

CHE6881 has no prerequisites, but enrolment rules apply.

When is CHE6881 offered?

In 2022, CHE6881 runs in Semester 1 at Clayton.

How much work is CHE6881?

The handbook expects about 144 hours of study across the semester. No students have rated its difficulty yet.

Does CHE6881 have an exam?

No. CHE6881 has 3 assessment tasks and no exam.

More details

Credit points
0
Level
6
Study level
Postgraduate
Faculty
Faculty of Engineering
Organisational unit
Department of Chemical and Biological Engineering
Type
HDR
EFTSL
0
Student contribution
SCA Band 2
Study abroad
Not available