Life Cycle Analysis - 2021 entry
MODULE TITLE | Life Cycle Analysis | CREDIT VALUE | 15 |
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MODULE CODE | ENE3004 | MODULE CONVENER | Prof Xiaoyu Yan (Coordinator) |
DURATION: TERM | 1 | 2 | 3 |
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DURATION: WEEKS | 12 |
Number of Students Taking Module (anticipated) | 15 |
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This module introduces the concept, methodologies and available tools and databases of life cycle analysis (LCA) and its applications in the energy industry, covering different energy generation and consumption technologies.
The module is suitable for all students that have completed the first 2 years on the undergraduate BSc and MEng Renewable Energy degree programmes and is recommended for interdisciplinary pathways involving similar studies.
This module aims to give you a holistic view of the sustainability of different energy technologies, covering technical, environmental, economic and social aspects, as well as practical skills to conduct life cycle analysis.
On successful completion of this module you should be able to:
Module Specific Skills and Knowledge
2. have a good understanding of the life cycle environmental, economic and social impacts of different energy technologies.
Discipline Specific Skills and Knowledge
5. apply mathematical and statistical methods in modelling
Personal and Key Transferable / Employment Skills and Knowledge
- Introduction to the concept, methodologies and common tools and databases of LCA and its scientific, policy and industrial/commercial context
- LCA of electricity generation from conventional and unconventional fossil fuels, hydro and nuclear power plants, solar energy technologies including PV and concentrated solar power, onshore and offshore wind turbines, and wave and tidal devices
- LCA of bioenergy systems, primarily liquid biofuels
- LCA of transport technologies and fuels, covering combustion engines and conventional and alternative fuels and various electric vehicles including hybrid, plugin hybrid, battery electric and hydrogen fuel cell vehicles
- Use of LCA software such GaBi or OpenLCA
- Comparing different energy technologies using LCA and understanding its limitations
- Writing LCA reports
Scheduled Learning & Teaching Activities | 30 | Guided Independent Study | 120 | Placement / Study Abroad |
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Category | Hours of study time | Description |
Scheduled learning & teaching activities | 30 | Lectures, tutorials and workshops |
Guided Independent Study | 120 | Private Study |
Form of Assessment | Size of Assessment (e.g. duration/length) | ILOs Assessed | Feedback Method |
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Coursework | 100 | Written Exams | 0 | Practical Exams | 0 |
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Form of Assessment | % of Credit | Size of Assessment (e.g. duration/length) | ILOs Assessed | Feedback Method |
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Coursework | 30 | 2000 words equivalent written words | 1, 2, 4, 7, 9 | Written |
Coursework | 70 | 4000 words equivalent written words | All | Written |
Original Form of Assessment | Form of Re-assessment | ILOs Re-assessed | Time Scale for Re-assessment |
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Summative assessment | Additional Summative Assessment | As above | Aug Ref/Def Period |
As above: 2 pieces of coursework.
information that you are expected to consult. Further guidance will be provided by the Module Convener
Basic reading:
ISO 14040:2006 Environmental management -- Life cycle assessment -- Principles and framework
ISO 14044:2006 Environmental management -- Life cycle assessment -- Requirements and guidelines
ELE: http://vle.exeter.ac.uk/
Web based and Electronic Resources:
Other Resources:
Reading list for this module:
Type | Author | Title | Edition | Publisher | Year | ISBN |
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Set | Curran, Mary Ann | Life Cycle Assessment Handbook: A Guide for Environmentally Sustainable Products | Wiley | 2012 | 978-1-118-09972-8 | |
Set | Sorensen, Bent | Life-Cycle Analysis of Energy Systems: From Methodology to Applications | Royal Society of Chemistry | 2011 | 978-1-84973-145-4 | |
Set | Singh, Anoop; Pant, Deepak; Olsen, Stig Irving (Eds.) | Life Cycle Assessment of Renewable Energy Sources | Springer | 2013 | 978-1-4471-5363-4 |
CREDIT VALUE | 15 | ECTS VALUE | 7.5 |
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PRE-REQUISITE MODULES | None |
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CO-REQUISITE MODULES | None |
NQF LEVEL (FHEQ) | 6 | AVAILABLE AS DISTANCE LEARNING | No |
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ORIGIN DATE | Tuesday 10th July 2018 | LAST REVISION DATE | Wednesday 7th October 2020 |
KEY WORDS SEARCH | Life cycle analysis, sustainability, energy, environment, emission, impact |
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Please note that all modules are subject to change, please get in touch if you have any questions about this module.