XSL Content

Environmental Management in Industry

Centre
Faculty of Engineering - Bilbao
Degree
Bachelor's Degree in Environmental Engineering
Academic course
2023/24
Academic year
4
No. of credits
4.5
Languages
Spanish

TeachingToggle Navigation

Distribution of hours by type of teaching
Study typeHours of face-to-face teachingHours of non classroom-based work by the student
Lecture-based22.533.8
Seminar1522.5
Applied computer-based groups7.511.2

Teaching guideToggle Navigation

AimsToggle Navigation

The competences acquired in the course will allow students to:

-Describe and argue the benefits of implementing an environmental management system in organizations, in particular in the industrial sector.

-Detail the main features and applications of existing environmental tools in order to implement an environmental management system.

-Identify the main steps in order to plan, design, implement, assess, and improve an environmental management system.

-Describe the fundamentals and applications of other useful environmental management tools such as life cycle assessment, eco-design, environmental footprint, ecolabelling and others.

TemaryToggle Navigation

The main contents of the course comprises four topics:

-Topic 1. Business and Environment. Introduction to Environmental Management Systems (EMS) in an organization.

-Topic 2. Environmental Management Systems. Context. Standardised environmental management systems. Implementation of Environmental Management Systems. Integrated management systems. Environmental indicators. Communication: environmental statement.

-Topic 3. Environmental audits. Definition, scope and objectives. Types of environmental audits. Content and methodology of an environmental audit. Communication: the audit report.

-Topic 4. Other environmental management. Life Cycle Assessment. Ecodesign. Environmental footprint. Product and organisation environmental footprint. Specific footprints: carbon footprint, water / hydric footprint, ecological footprint. Ecolabelling. Sustainability reports

MethodologyToggle Navigation

The course will be delivered by means of:

-Lectures (MC), which will be used to explain core contents in order to develop students' knowledge and understanding of the aforementioned concepts.

-Seminars (S), which will be used for practical activities, discussions in groups, reviews, etc..

-Computer labs (CL), which will be used to solve practical cases and to prepare an individual report that will be presented to the group at the end of the semester.

Assessment systemsToggle Navigation

Continuous assessment is used in both ordinary and extraordinary assessment sessions. The completion of activities, computer lab reports and the exposition are included in the assessment criteria (60%). Students are also required to take a final written exam in May/June (40%). It is essential to pass this final exam (minimum grade: 5.0/10.0) to average it with the grades obtained during the semester (activities, computer lab reports and oral defence:

Any student wishing to waive continuous evaluation and wishing to be marked by final assessment instead of by continuous assessment in the ordinary session should request this in a written document from the lecturer responsible for the course before the ninth week after the course starts. In this case, the student must do the following in May/June:

-Written exam: multiple choice test (40% of final grade)

-Resolution of a practical case (50% of the final grade)

-Computer lab test (10% of the final grade)

Compulsory materialsToggle Navigation

Materials required to follow the sessions will be shared with the students though eGela virtual platform (https://egela.ehu.eus/):
-Lecture materials and documents,
-Instructions for practical activities and computer lab guides,
-Links to useful websites and useful reports.

BibliographyToggle Navigation

Basic bibliography

This section contains a basic bibliography in English (resources in Spanish are included in the corresponding guide in Spanish).

- International Organization for Standardization (Ginebra). (2015). ISO 14001: environmental management systems, requirements with guidance for use (3rd ed. Ed.: ISO.

- Jackson, S. L. (1997). The ISO 14001 implementation guide: creating an integrated management system (Ser. Wiley series in environmental quality management). Wiley.

- Kinsella, J. J., Mac Cully, A. D. (1999). Handbook for implementing an ISO 14001 environmental management system: a practical approach. EMCON.



Standards.

- ISO 14001:2015. Environmental management systems — Requirements with guidance for use.

- ISO 14006:2011. Environmental management systems — Guidelines for incorporating ecodesign.

- ISO 14040:2006. Environmental management — Life cycle assessment — Principles and framework.

- ISO 14064-1:2018. Greenhouse gases — Part 1: Specification with guidance at the organization level for quantification and reporting of greenhouse gas emissions and removals.

- ISO 19011:2018. Guidelines for auditing management systems.

In-depth bibliography

- Eco-Management and Audit Scheme. Available at: https://ec.europa.eu/environment/emas/pdf/factsheets/EMAS_revised_annexes.pdf Last accessed: June 2022.
- European Commission, EC (2017). Moving towards a circular economy with EMAS. Best practices to implement circular economy with EMAS. Best practices to implement circular economy strategies (with case study examples). Available at: https://ec.europa.eu/environment/emas/pdf/other/report_EMAS_Circular_Economy.pdf Last accessed: June 2022.
- Hauschild, M. Z., Rosenbaum, R. K., Olsen, S. I. (2018). Life cycle assessment : theory and practice. Springer International Publishing (ebook available).
- Machado, C., Davim, J. P. (2020). Circular economy and engineering: a new ecologically efficient model (Ser. Management and industrial engineering). Springer.
- Public Society for Environmental Management of the Basque Government – IHOBE (2002). Manual on Ecodesign. 7 steps for implementation. Available at: https://www.ihobe.eus/publications/manual-on-ecodesign-7-steps-for-implementation Last accessed: June 2022
- Public Society for Environmental Management of the Basque Government – IHOBE (2016). 36 Circular economy demonstration projects in the Basque Country Available at: https://www.ihobe.eus/publications/36-circular-economy-demonstration-projects-in-the-basque-country Last accessed: June 2022.

Journals

- Environmental Management. Editorial Springer. Available at: https://link.springer.com/journal/267. Last accessed: June 2022
- Journal Environmental and Sustainability Indicators. Editorial Elsevier. Available at: https://www.journals.elsevier.com/environmental-and-sustainability-indicators. Last accessed: June 2022
- Journal of Environmental Management. Editorial Elsevier. Available at: https://www.journals.elsevier.com/journal-of-environmental-management Last accessed: June 2022

Examining board of the 5th, 6th and exceptional callToggle Navigation

  • DE BLAS MARTIN, MAITE
  • GARCIA FERNANDEZ, JOSE ANTONIO
  • SAEZ DE CAMARA OLEAGA, ESTIBALIZ

GroupsToggle Navigation

16 Teórico (Spanish - Tarde)Show/hide subpages

Calendar
WeeksMondayTuesdayWednesdayThursdayFriday
20-21

13:30-15:00

22-26

13:30-15:00

27-29

13:30-15:00

31-31

13:30-15:00

32-32

13:30-15:00

33-33

13:30-15:00

34-34

13:30-15:00

35-35

13:30-15:00

Teaching staff

Classroom(s)

  • P2I 4A - ESCUELA DE INGENIERIA DE BILBAO-EDIFICIO II
  • P2I 4A - ESCUELA DE INGENIERIA DE BILBAO-EDIFICIO II
  • P2I 4A - ESCUELA DE INGENIERIA DE BILBAO-EDIFICIO II
  • P2I 4A - ESCUELA DE INGENIERIA DE BILBAO-EDIFICIO II
  • P2I 4A - ESCUELA DE INGENIERIA DE BILBAO-EDIFICIO II
  • P2I 4A - ESCUELA DE INGENIERIA DE BILBAO-EDIFICIO II
  • P2I 4A - ESCUELA DE INGENIERIA DE BILBAO-EDIFICIO II
  • P2I 4A - ESCUELA DE INGENIERIA DE BILBAO-EDIFICIO II

16 Seminar-1 (Spanish - Tarde)Show/hide subpages

Calendar
WeeksMondayTuesdayWednesdayThursdayFriday
20-21

16:30-18:00

22-22

16:30-18:00

24-24

16:30-18:00

26-26

16:30-18:00

28-28

16:30-18:00

31-31

16:30-18:00

33-33

16:30-18:00

34-35

16:30-18:00

Teaching staff

Classroom(s)

  • P3I 8S - ESCUELA DE INGENIERIA DE BILBAO-EDIFICIO II
  • P4I 1S - ESCUELA DE INGENIERIA DE BILBAO-EDIFICIO II
  • P4I 1S - ESCUELA DE INGENIERIA DE BILBAO-EDIFICIO II
  • P4I 1S - ESCUELA DE INGENIERIA DE BILBAO-EDIFICIO II
  • P4I 1S - ESCUELA DE INGENIERIA DE BILBAO-EDIFICIO II
  • P4I 1S - ESCUELA DE INGENIERIA DE BILBAO-EDIFICIO II
  • P3I 8S - ESCUELA DE INGENIERIA DE BILBAO-EDIFICIO II
  • P3I 1S - ESCUELA DE INGENIERIA DE BILBAO-EDIFICIO II

16 Applied computer-based groups-1 (Spanish - Tarde)Show/hide subpages

Calendar
WeeksMondayTuesdayWednesdayThursdayFriday
23-23

18:00-19:30

25-25

18:00-19:30

27-27

18:00-19:30

29-29

18:00-19:30

32-32

18:00-19:30

Teaching staff

Classroom(s)

  • P5I 6I - ESCUELA DE INGENIERIA DE BILBAO-EDIFICIO II
  • P5I 6I - ESCUELA DE INGENIERIA DE BILBAO-EDIFICIO II
  • P5I 6I - ESCUELA DE INGENIERIA DE BILBAO-EDIFICIO II
  • P5I 6I - ESCUELA DE INGENIERIA DE BILBAO-EDIFICIO II
  • P5I 6I - ESCUELA DE INGENIERIA DE BILBAO-EDIFICIO II