Introduction to Chemical Engineering (5cr)
Code: TE00BL95-3007
General information
- Enrollment
- 04.06.2025 - 02.09.2025
- Registration for the implementation has ended.
- Timing
- 02.09.2025 - 21.12.2025
- Implementation is running.
- Number of ECTS credits allocated
- 5 cr
- Local portion
- 5 cr
- Mode of delivery
- Contact learning
- Unit
- Yhteiset palvelut
- Teaching languages
- Finnish
- Seats
- 60 - 75
- Degree programmes
- Degree Programme in Biotechnology and Chemical Engineering
- Teachers
- Emilia Suvanto
- Eija Kulju
- Liisa Lehtinen
- Kari Haajanen
- Tero Tuomarmäki
- Piritta Saipa
- Anne Nurminen
- Groups
-
PBIOKES25APBIOKES25A
-
PBIOKES25BPBIOKES25B
- Course
- TE00BL95
Realization has 32 reservations. Total duration of reservations is 72 h 30 min.
Time | Topic | Location |
---|---|---|
Wed 03.09.2025 time 10:00 - 12:00 (2 h 0 min) |
Johdatus kemiantekniikkaan - Opintojakson aloitus ja suunnittele- ja testaa -projektin toimeksianto |
LEM_A309
Oppimistila byod
|
Fri 05.09.2025 time 10:00 - 12:00 (2 h 0 min) |
Johdatus kemiantekniikkaan - Projektisuunnitelman tekeminen |
LEM_A309
Oppimistila byod
|
Fri 05.09.2025 time 12:00 - 14:00 (2 h 0 min) |
Johdatus kemiantekniikkaan TE00BL95-3007 |
LEM_A173_Lemminkäinen
Lemminkäinen
|
Tue 09.09.2025 time 08:00 - 10:00 (2 h 0 min) |
Johdatus kemiantekniikkaan - Työturvallisuus laboratoriossa |
LEM_A309
Oppimistila byod
|
Tue 09.09.2025 time 09:00 - 10:00 (1 h 0 min) |
Johdatus kemiantekniikkaan TE00BL95-3007 |
LEM_B143
Oppimistila muunto
|
Wed 10.09.2025 time 10:00 - 12:00 (2 h 0 min) |
Johdatus kemiantekniikkaan - Kemikaaliturvallisuus |
LEM_A173_Lemminkäinen
Lemminkäinen
|
Tue 16.09.2025 time 10:00 - 12:00 (2 h 0 min) |
Johdatus kemiantekniikkaan - S&T projektisuunnitelmien läpikäynti |
|
Tue 16.09.2025 time 12:00 - 16:00 (4 h 0 min) |
Johdatus kemiantekniikkaan - S&T projektisuunnitelmien läpikäynti |
|
Wed 17.09.2025 time 09:00 - 10:00 (1 h 0 min) |
Information on study and career opportunities in the chemical industry, The Chemical Industry Federation of Finland |
ICT_C1035_Delta
DELTA
|
Thu 18.09.2025 time 12:00 - 14:00 (2 h 0 min) |
Johdatus kemiantekniikkaan - LEAN, virtuaalilaboratorio ja työpäiväkirjan täyttö |
LEM_A173_Lemminkäinen
Lemminkäinen
|
Fri 19.09.2025 time 14:00 - 16:00 (2 h 0 min) |
Johdatus kemiantekniikkaan - Laboratorion turvatesti ja tutustuminen Kemiantekniikan laboratorioon |
LEM_A309
Oppimistila byod
|
Tue 23.09.2025 time 09:00 - 12:00 (3 h 0 min) |
Johdatus kemiantekniikkaan - Prosessin suunnittelu ja testaus: Ryhmät 1-6 |
LEM_A109e
Prosessihalli
LEM_A109p Prosessihalli |
Tue 23.09.2025 time 13:00 - 16:00 (3 h 0 min) |
Johdatus kemiantekniikkaan Prosessin suunnittelu ja testau: Ryhmät 7-12 |
LEM_A109e
Prosessihalli
LEM_A109p Prosessihalli |
Tue 30.09.2025 time 09:00 - 12:00 (3 h 0 min) |
Johdatus kemiantekniikkaan - Prosessin suoritus: Ryhmät 7-12 |
LEM_A109e
Prosessihalli
LEM_A109p Prosessihalli |
Tue 30.09.2025 time 13:00 - 16:00 (3 h 0 min) |
Johdatus kemiantekniikkaan - Prosessin suoritus: Ryhmät 1-6 |
LEM_A109e
Prosessihalli
LEM_A109p Prosessihalli |
Tue 07.10.2025 time 09:00 - 16:00 (7 h 0 min) |
Johdatus kemiantekniikkaan - RYHMÄKOHTAINEN AIKATAULU LÖYTYY ITSISTÄ |
LEM_A211
Analytiikan laboratorio 2
LEM_A206 Laitelabra |
Wed 08.10.2025 time 12:00 - 14:00 (2 h 0 min) |
Johdatus kemiantekniikkaan TE00BL95-3007 |
LEM_A312
Oppimistila byod
|
Wed 08.10.2025 time 14:00 - 16:00 (2 h 0 min) |
Johdatus kemiantekniikkaan TE00BL95-3007 |
LEM_A173_Lemminkäinen
Lemminkäinen
|
Tue 21.10.2025 time 12:00 - 14:00 (2 h 0 min) |
Johdatus kemiantekniikkaan TE00BL95-3007 |
LEM_A309
Oppimistila byod
|
Fri 24.10.2025 time 08:00 - 10:00 (2 h 0 min) |
Johdatus kemiantekniikkaan TE00BL95-3007 |
LEM_A309
Oppimistila byod
|
Tue 28.10.2025 time 10:00 - 12:00 (2 h 0 min) |
Johdatus kemiantekniikkaan TE00BL95-3007 |
LEM_A309
Oppimistila byod
|
Fri 31.10.2025 time 08:00 - 10:00 (2 h 0 min) |
Johdatus kemiantekniikkaan TE00BL95-3007 |
LEM_A173_Lemminkäinen
Lemminkäinen
|
Tue 04.11.2025 time 10:00 - 12:00 (2 h 0 min) |
Johdatus kemiantekniikkaan TE00BL95-3007 |
LEM_B164
Tapio muunto
|
Fri 07.11.2025 time 08:00 - 10:00 (2 h 0 min) |
Johdatus kemiantekniikkaan TE00BL95-3007 |
LEM_B164
Tapio muunto
|
Tue 11.11.2025 time 10:00 - 12:00 (2 h 0 min) |
Johdatus kemiantekniikkaan TE00BL95-3007 |
LEM_A309
Oppimistila byod
|
Fri 14.11.2025 time 08:00 - 10:00 (2 h 0 min) |
Johdatus kemiantekniikkaan TE00BL95-3007 |
LEM_A173_Lemminkäinen
Lemminkäinen
|
Tue 18.11.2025 time 10:00 - 12:00 (2 h 0 min) |
Johdatus kemiantekniikkaan TE00BL95-3007 |
LEM_B164
Tapio muunto
|
Fri 21.11.2025 time 08:00 - 10:00 (2 h 0 min) |
Johdatus kemiantekniikkaan TE00BL95-3007 |
LEM_B164
Tapio muunto
|
Tue 25.11.2025 time 10:30 - 12:00 (1 h 30 min) |
KARI LIISA EIJA Johdatus kemiantekniikkaan TE00BL95-3007 |
LEM_B164
Tapio muunto
|
Fri 28.11.2025 time 08:00 - 10:00 (2 h 0 min) |
Johdatus kemiantekniikkaan TE00BL95-3007 |
LEM_B164
Tapio muunto
|
Tue 02.12.2025 time 10:00 - 12:00 (2 h 0 min) |
Johdatus kemiantekniikkaan TE00BL95-3007 |
LEM_B164
Tapio muunto
|
Fri 05.12.2025 time 08:00 - 10:00 (2 h 0 min) |
Johdatus kemiantekniikkaan TE00BL95-3007 |
LEM_B164
Tapio muunto
|
Evaluation scale
H-5
Content scheduling
Contents:
PI- diagrams and their creation in the chemical industry
Laboratory work: safe working in the laboratory and implementation of the Design and Test project
Key theories of chemical engineering, where you get to know selected current topics: Topics 2025,
Basic concepts of chemical processes, water and waste water technology, biogas technology and reactors. It is also possible to implement other subject areas depending on the year of implementation.
Process technology and its topics are also explored in the form of group work, the topics of which the student group can influence quite strongly (the topic is approved by the teacher).
Objective
Student recognizes the fields of industry within chemical engineering. She/he can describe typical production processes in chemical engineering (bio, materials and food technology). She/he regocnizes laboratory as operational environment and can operate safely in laboratory.
Content
- description of chemical engineering, understanding the meaning of circular economy
- familiarization to fields of chemical engineering (bio, food and materials technology)
- laboratory project
- visitors from industry
Materials
its material
CAD material library
Book; Prosessitekniikka, Pihkala
Teaching methods
Theory lectures
Homework
Cad exercises (cad = computer aided design)
The design and test project is done in groups. It includes explanation and presentation of the theoretical background of the issues, work planning and practical implementation in the laboratory.
The course implements the make and try method, especially in cad design and laboratory work.
In group work, the group learns about the importance of the process for industry.
Exam schedules
Exam according to the schedule at the time shown
The last time to restore the PI diagram is the start of the exam in the its environment.
Retake exams (theory part) with EY technology retake dates according to EY technology guidelines
The last recovery moment of the PI chart is the last recovery moment. Assessment is not performed for late returns.
Laboratories cannot be renewed. In this regard, the failed partial performance must be retaken along with the next course.
The deadlines for the Fundamentals of Sustainable Development assignments are marked on the assignment. It is not possible to return the assignment after the deadline.
Pedagogic approaches and sustainable development
Turkuamk digipeda, innopeda and CDIO pedagogy
Laboratories and theory lectures implement a constructive pedagogy approach, while experiential and cognitive learning is also included. Pedagogical methods take into account sustainable development as a presentation of BAT technology.
Completion alternatives
There is not alternative method to accomplish the course.
If necessary, the student will present the competence and prompting in accordance with Turkuamk guidelines
Student workload
5 ECTS = 135 h of student work.
Fundamentals of Sustainable Development 1 ECTS
Project Work 1 ECTS
Laboratory Work 1 ECTS
Process Technology 2 ECTS
Evaluation methods and criteria
Assessment is conducted on a scale of F-5, where H means failed and number 5 indicates excellent performance.
Fundamentals of Sustainable Development: pass/fail
Project Work: pass/fail Laboratory Work: pass/fail
Process Technology: F-5
PI-Chart :F-5
The arithmetic average of the sections rounded according to the rules is the final course grade
A successful assessment of the course requires successful completion of all sections.
Failed (0)
Theory exam graded Fail
and or
PI chart returned late or return estimate is Fail
and or
laboratory work is evaluated with a grade of Fail
and or
not completing the sections marked as mandatory, which require attendance, despite the assigned replacement tasks, Fail
Assessment criteria, satisfactory (1-2)
Exam evaluation according to points.
Pass limit 40% of total points
The PI chart is evaluated based on the track of the completed work. The development of competence is taken into account.
Assessment criteria, good (3-4)
Calculated according to the arithmetic average of the sections, the proportion of one significantly better or worse performed section affects the overall average and the evaluation can probably fall within this range.
see previous and next point
Assessment criteria, excellent (5)
Excellent performance in the exam
and
excellent PI chart
and
Excellently performed laboratory tasks
Further information
Primary. Communication is done in the class room. When absent, the student has the obligation to obtain the corresponding information that was presented in class.
Alternatively ITS channel is used.
Only in rare cases, Email is used, from lecturer to student. The student's message is best conveyed to the teacher during the lesson.
Other alternative messaging methods does not guarantee the information delivery to lecturer.
Contacting the main responsible teacher by email.