Important notice
The course guide is provisional.
The PDF version of the course guide may take a few days to become available in the DDD.

Integrated Process Design
Code: 43327Credits: 6
| Degree programme | Type | Course |
|---|---|---|
| Biological and Environmental Engineering | OB | 2 |
Contact lecturer
- Name :
- Xavier Garcia Ortega
- Email :
- xavier.garcia@uab.cat
Group languages
You can consult this information at the end of the document.
Prerequisites
None
Objectives
The learning objectives therefore include identifying and applying criteria (techno economic and environmental) and different approaches to define/select optimal sequences of operations for biotechnological and environmental processes, as well as their integration into biorefineries, with special emphasis in the separation operations and strategies for process intensification.
Learning outcomes
- CA13 (Compare the different stages of a process, selecting the sequencing as well the most appropriate alternatives.) Compare the different stages of a process, selecting the sequencing as well the most appropriate alternatives.
- CA14 (Optimise processes energetically from an integrated analysis thereof.) Optimise processes energetically from an integrated analysis thereof.
- KA09 (Contrast different separation sequences in the sustainable treatment of waste and in industrial biotechnology processes.) Contrast different separation sequences in the sustainable treatment of waste and in industrial biotechnology processes.
- SA13 (Design continuous-contact separation operations using appropriate mass transfer concepts.) Design continuous-contact separation operations using appropriate mass transfer concepts.
- SA14 (Solve design and operation problems through the analysis of separation operations in biotechnological and environmental processes.) Solve design and operation problems through the analysis of separation operations in biotechnological and environmental processes.
- SA15 (Apply methods, instruments and strategies to develop biotechnological processes and products while observing energy-saving and sustainability criteria.) Apply methods, instruments and strategies to develop biotechnological processes and products while observing energy-saving and sustainability criteria.
Contents
Unit 1: Introduction. Integrated process design and process intensification concepts. Biorefinery concept.
Unit 2: Bioreactors and operation. Industry 4.0.
Unit 3: Separation operation in biotechnolgical and environmental process engineering. Classification, equipment and use. Calculation methods for design of separation operations.
Unit 4: Integrated design of biotechnological and environmental processes. Design of biorefineries. Case studies.
Unit 5: Process intensification. Resources (energy, water, feedstocks) optimisation and waste minimization. Case studies.
Learning activities and methodology
| Title | Hours | ECTS | Learning outcomes |
|---|---|---|---|
| Lectures | 27 | 1.08 | |
| Exercise-based and case study-based teaching | 12 | 0.48 | |
| Study | 62 | 2.48 | |
| Problem solving and work on case study | 32 | 1.28 |
Theory classes: Lectures and participation of invited speakers of interest to deliver specific seminars related to the subject.
Class discussion based on proposed readings about key case studies. The case studies introduced by the teaching staff will be worked on in student groups, who will be responsible for explaining and debating the key concepts of the case with the rest of the class.
Development of a group project in which students will select a process case study related to integrated bioprocesses or biorefineries and apply the concepts learned during the course to achieve a more efficient and sustainable production of the target products.
Assessment
Continuous assessment activities
| Title | Weight | Hours | ECTS | Learning outcomes |
|---|---|---|---|---|
| Participation in class and activities | 10% | 5 | 0.2 | CA13, CA14, KA09, SA13, SA14, SA15 |
| Written report case study | 10% | 8 | 0.32 | CA13, CA14, KA09, SA13, SA14, SA15 |
| Final exam (individual) | 50% | 2 | 0.08 | CA13, CA14, KA09, SA13, SA14, SA15 |
| Presentation and discussion case study | 30% | 2 | 0.08 | SA14, SA15 |
A) Continuous assessment
The final grade for the course will be based on participation in class debates and activities, completion of a group project and oral presentation, and the final exam.
- Class participation: 10%
- Group project monitoring and final report: 10%
- Oral presentation of the group project: 30%
- Final exam: 50% – a minimum grade of 4/10 is required in the exam in order to average with the rest of the assessment elements.
B) Reassessment
Students who obtain a grade lower than 4 in the final exam, provided they have achieved an average score above 3 out of 10 in the remaining course activities, may take the resit exam scheduled in the academic calendar.
The reassessment only allows re-evaluation of the final exam component. The other assessment components are not eligible for reassessment.
C) Review of grades
For each assessment activity, a time, date, and location for grade review will be announced, during which the student may review the activity with the teaching staff. In this context, students may submit claims regarding the grade, which will be reviewed by the course instructors. If a student does not attend the scheduled review, the activity will not be reviewed later.
D) Grading
Honours Distinction (Matrícula d’Honor): The award of an Honours Distinction is at the discretion of the teaching staff. According to UAB regulations, MH can only be awarded to students who have achieved a final grade of 9.00 or higher. Up to 5% of enrolled students may receive this distinction.
Students who take the resit exam (partially or entirely) are not eligible for the Honours Distinction.
A student will be considered Not Assessable (NA) if they do not complete a set of activities accounting for at least two-thirds of the total course grade.
E) Irregularities by the student: copying and plagiarism
Without prejudice to other disciplinary measures that may be taken, any irregularities committed by a student that may affect the grade of an assessment activity will result in a grade of zero. This includes cheating, plagiarism, copying, allowing others to copy, etc. Such activities will not be eligible for reassessment. If passing the affected activity is required to pass the course, the course will be failed with no option for recovery during the academic year.
F) Single assessment
This course/module does not allow for a single assessment option.
Bibliography
Integrated Bioprocess Engineering https://app.knovel.com/web/toc.v/cid:kpIBE0002U/viewerType:toc//root_slug:integrated-bioprocess-engineering?kpromoter=marc
Industrial Biotechnology: Products and Processes. https://onlinelibrary.wiley.com/doi/book/10.1002/9783527807833
Continuous Biomanufacturing ‐ Innovative Technologies and Methods. https://onlinelibrary.wiley.com/doi/book/10.1002/9783527699902
Other resources
Software
No specific software used
Course groups and languages
The information provided is provisional until November 30. After this date, you will be able to consult the language of each group through this link. To access the information, you will need to enter the course CODE
| Type of teaching | Group | Language | Semester | Shift |
|---|---|---|---|---|
| (TEm) Theory (master) | 1 | Catalan | first semester | afternoon |