UnitLevel 5Postgraduate

CHE5886 Advanced biopolymers

Faculty of Engineering

CHE5886 Advanced biopolymers is a level 5, 6-credit-point, postgraduate unit from the Faculty of Engineering, offered in 2021 in Semester 1 at Clayton. It has no prerequisites.

Credit points
6
Offered in 2021
Semester 1
Clayton
Assessment
No exam
7 tasks
Workload
144 hours
per semester

This is the 2021 handbook entry. See the 2027 entry.

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Overview

This unit will equip you with a detailed understanding of advanced biopolymers. Wood and non-wood lignocellulose fibres will be covered in detail, including the isolation and utilisation of various components. You will cover the efficient, large-scale production of cellulose nanomaterials derived from wood fibres, investigate alternative fibre sources, and learn about a variety of bio-derived polymers such as Chitosan and different protein polymers. The opportunities afforded from lignin and hemicellulose will also be discussed.

The course covers the relationship between fibre surface chemistry and functionality, biopolymer structural arrangement and functionality, biopolymers as an alternative to petroleum-derived analogues, development of packaging materials, and market opportunities for biopolymers.

Offerings in 2021

Teaching periodCampusMode
First semesterClaytonOnline

Assessment

  • Weekly online quizzesThreshold hurdle
    10%
  • Weekly tutorial participationThreshold hurdle
    5%
  • Group presentationsThreshold hurdle
    15%
  • Assignment 1: PolysaccharidesThreshold hurdle
    10%
  • Assignment 2: Cellulose assembly and characterisationThreshold hurdle
    10%
  • Assignment 3: ProteinThreshold hurdle
    10%
  • Final assessmentThreshold hurdle
    40%

Learning outcomes

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

  1. 1

    Appraise the different types of naturally occurring biopolymers in terms of availability, morphology, composition and functionality to select the most appropriate manufacturing process.

  2. 2

    Analyse the strengths and weaknesses of different biopolymers.

  3. 3

    Assess the biomass composition balance of a mill and propose opportunities for business growth and development.

  4. 4

    Design a biopolymer product based on market needs and formulate the most effective composition and process to achieve the required properties.

Workload and teaching

  • Practical activities18 hours
  • Teaching approachCase-based teaching
  • Teaching approachOnline learning
  • Teaching approachPeer assisted learning
  • Teaching approachActive 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.

Practical, solving real case industrial problems.

All lectures have been recorded and will be available online through Moodle. You are required to attend the virtual practical class (via Zoom) every week during the semester.

You will work in groups for in-semester assessment tasks and will also peer-review other member contributions to enhance uptake of unit materials.

This unit broadly follows a flipped-classroom approach, which seeks to promote active learning. Youare required to review a series of videos, readings and knowledge-based quiz questions prior to attending a virtual practical class, where you will practice applying the weekly skills with your peers and lecturer. At the end of the week, you will then have the opportunity to independently test your ability to apply these skills by completing a practice case study or quiz. The unit will use a series of case studies and problems to teach advanced biopolymers in an industrially relevant way.

Learning resources

Technology resources

You must be able to access Zoom.

Contacts

Unit Coordinators
Associate Professor Warren Batchelor
Chief Examiners
Associate Professor Warren Batchelor

Common questions

What are the prerequisites for CHE5886?

CHE5886 has no prerequisites.

When is CHE5886 offered?

In 2021, CHE5886 runs in Semester 1 at Clayton, with an online option.

How much work is CHE5886?

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

Does CHE5886 have an exam?

No. CHE5886 has 7 assessment tasks and no exam.

More details

Credit points
6
Level
5
Study level
Postgraduate
Faculty
Faculty of Engineering
Organisational unit
Department of Chemical and Biological Engineering
Type
Coursework
EFTSL
0.125
Student contribution
SCA Band 2
Study abroad
Not available