course-details-portlet

EP8122 - Material Flow Analysis (MFA1)

About

Examination arrangement

Examination arrangement: Oral examination
Grade: Passed / Not Passed

Evaluation Weighting Duration Grade deviation Examination aids
Oral examination 100/100 45 minutes D

Course content

This course introduces the physical foundation of sustainability science. Material Flow Analysis (MFA) is a tool based on mass and energy balance principles that is used to analyze how humans satisfy 5their needs and wants by using resources from the environment and emit wastes to the environment: the anthropogenic (or socio-economic) metabolism. Analyses of the anthropogenic metabolism help industry and policy makers to understand the systemic and interconnected context of problems such as resource depletion, criticality of supply, and climate change. Well-intended sustainability interventions often have large unintended consequences. MFA is used to analyze the causalities of such problem shifts and how they can be mitigated: mathematical models and scenarios are used to test how resource use and emissions change under different conditions of consumer behavior, technology, and geopolitics. Hence, MFA models and scenarios are increasingly used by governments and businesses to test alternative strategies for circular economy, climate change mitigation, or security of supply with critical resources. The students learn how to map, model, simulate, and interpret systems using various methodological elements. These include: i) terminology, system definition, and indicator selection; ii) mathematical representation of systems; iii) mathematical representation of uncertainty, sensitivity analysis, and data reconciliation; iv) introduction to dynamic modeling; and v) use of Python and STAN software for MFA modeling. Methodology lectures are supplemented with background lectures, which introduce the students to large resource challenges related to the human activities "to nourish", "to clean", "to transport and communicate", and "to reside and work". In group exercises, the students employ MFA methodology in practical examples related to these human activities. The course includes guest lectures from industry and government and an excursion.

Learning outcome

Knowledge: The students will obtain knowledge about:

- the main challenges and strategies for the socio-economic metabolism related to the basic human activities (to nourish, to clean, to transport and communicate, to reside and work);

- the theory of the socio-economic metabolism and its examination in space and time through material flow analysis (MFA).

Skills: The students will be able to:

- explain the role of key substances and materials in today's societal metabolism and their potential interactions with the environment;

- define MFA systems, and to describe a system as a mathematical model in order to test the impact of data uncertainties and to develop simple scenarios (forecasting, backcasting, analyzing implications of interventions);

- point out and reflect on strengths, limitations, and specific areas of application of different MFAs (including other industrial ecology tools that build on them), and to interpret the results in terms of their policy implications (e.g., judge the effectiveness of different interventions).

General competence: The students will:

- familiarize with the use of system approaches for solving complex problems;

- become aware of the similarities and differences between MFA and other industrial ecology tools, the types of questions they can address, and their limitations;

- learn to effectively communicate complex information with practitioners (including visual representation).

Learning methods and activities

Interactive background (2h/week) and methodology (1h/week) lectures. Five exercises are conducted in groups of 2 or 3 with the option to ask questions during exercise sessions (4h/week). The course will be taught in English and the exercises and examination papers will be given in English only.

Compulsory assignments

  • Work

Further on evaluation

The course finishes with an oral exam (pass/fail). The exam can only be attended if the exercises are approved. Approved exercises may only be transferred from the previous year. If there is a re-sit examination, the examination form will be oral. For re-take of an examination, all assessments during the course must be re-taken.

Required previous knowledge

No previous knowledge required.

Course materials

Brunner and Rechberger (2017): Handbook of Material Flow Analysis, CRC Press, Boca Raton, FL.

The Handbook and additional course materials will be distributed electronically on Blackboard during the semester.

The course is usually combined with the master level course TEP4285.

More on the course
Facts

Version: 1
Credits:  7.5 SP
Study level: Doctoral degree level

Coursework

Term no.: 1
Teaching semester:  AUTUMN 2024

Term no.: 1
Teaching semester:  SPRING 2025

Language of instruction: English

Location: Trondheim

Subject area(s)
  • Industrial Ecology
  • Technological subjects
Contact information
Course coordinator: Lecturer(s):

Department with academic responsibility
Department of Energy and Process Engineering

Examination

Examination arrangement: Oral examination

Term Status code Evaluation Weighting Examination aids Date Time Examination system Room *
Autumn ORD Oral examination 100/100 D 2024-12-02 09:00
Room Building Number of candidates
Spring ORD Oral examination 100/100 D
Room Building Number of candidates
  • * The location (room) for a written examination is published 3 days before examination date. If more than one room is listed, you will find your room at Studentweb.
Examination

For more information regarding registration for examination and examination procedures, see "Innsida - Exams"

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