Technology of Biopolymers
BASIC DATA
course listing
A - main register
course code
EKP0711
course title in Estonian
Biopolümeeride tehnoloogia
course title in English
Technology of Biopolymers
course volume CP
-
ECTS credits
6.00
to be declared
yes
fully online course
not
assessment form
Examination
teaching semester
autumn
language of instruction
Estonian
English
Study programmes that contain the course
code of the study programme version
course compulsory
KVEM12/25
no
Structural units teaching the course
EK - Department of Materials and Environmental Technology
Course description link
Timetable link
View the timetable
Version:
VERSION SPECIFIC DATA
course aims in Estonian
Anda ülevaade biopolümeeride lisanditest. Selgitada biopolümeeride peamisi tehnilisi omadusi. Anda ülevaade enamlevinud biopolümeeride töötlemise meetoditest. Selgitada biopolümeeride keskkonna- ja regulatiivseid aspekte.
course aims in English
To give an overview of additives of biopolymers. To explain main engineering properties of the biopolymers. To give an overview of the most common methods of processing of the biopolymers. To explain environmental and regulatory aspects of the biopolymers.
learning outcomes in the course in Est.
Kursuse läbinud õppurid:
1) Tunnevad levinumaid biopolümeere, nende liike ja tootmist. Oskavad leida teatavate materjalide tootjaid.
2) Mõistavad biopolümeeride ainulaadseid tehnilisi omadusi, nende lagunemisprotsesse ja lisaainete vajadust.
3) Tunnevad olulisemaid biopolümeeride töötlemise meetodeid ja seadmeid, oskavad valida sobivaid töötlemisviise ja parameetreid vastavalt biopolümeeride liiidele ja eriomadustele.
4) Tunnevad biopolümeeride kasutusalasid ja oskavad valida nende jaoks sobivaid materjale.
5) Oskavad hinnata biopolümeeride töötlemise ja kasutamisega kaasnevaid keskkonnaprobleeme ja neid lahendada.
6) Teavad biopolümeeride kasutust reguleerivat raamistikku.
1) Tunnevad levinumaid biopolümeeride lisandeid ja modifikaatoreid. Oskavad leida õigeid lisandeid biopolümeeride eeldatavate omaduste jaoks.
2) Mõistavad biopolümeeride ainulaadseid tehnilisi omadusi, oskavad neid seostada konkreetsete rakendustega.
3) Tunnevad olulisemaid biopolümeeride töötlemise meetodeid ja seadmeid, oskavad valida sobivaid töötlemisviise ja -parameetreid vastavalt biopolümeeri liigile ja eriotstarbele.
4) Mõistavad ja oskavad rakendada biopolümeeridel põhineva tootearenduse põhiprintsiipe.
5) Oskavad hinnata biopolümeeride töötlemise ja kasutamisega kaasnevaid keskkonnaprobleeme ja neid lahendada.
6) Teavad biopolümeeride kasutust reguleerivat seadusandlikku raamistikku ja standardeid.
learning outcomes in the course in Eng.
Upon completion of this course, the students:
1) Know most common additives and modifiers of biopolymers. Can find the right additives regarding expected properties of biopolymers.
2) Understand unique engineering properties of biopolymers, can relate them to specific applications.
3) Know the most important methods and instrumentation of processing of biopolymers, can select suitable processing methods and parameters regarding types and special applications of the biopolymers.
4) Understand and can apply main principles of product development based on biopolymers.
5) Can assess environmental issues of biopolymers processing and applications and can solve them.
6) Know the legislative framework and standards governing the use of biopolymers.
brief description of the course in Estonian
Biopolümeeride lisandid ja modifikaatorid. Biopolümeeride tehnilised omadused. Ülevaade biopolümeeride töötlemistehnoloogiatest: ekstrusioon, segamine ja kompoundimine, reaktiivne ekstrusioon, survevalu, kile ekstrusioon, termovormimine, puhumisvormimine, survevalu, lamineerimine ja kiudude ketramine, sh. elektroketrus. Seosed töötlemistehnoloogiate, biopolümeeride liikide ja rakenduste vahel. Biopolümeeridel põhinev tootearendus ja disain: juhtumiuuringud ja tööstuse praktikad. Biopolümeeride töötlemise ja rakenduste keskkonnaaspektid: taaskasutus ja ringmajandus, ökodisain ja olelusringi analüüs. Biopolümeeridega seotud rahvusvahelised eeskirjad ja regulatiivne raamistik.
brief description of the course in English
Additives and modifiers of biopolymers. Engineering properties of biopolymers. Insight into processing technologies of biopolymers: extrusion, mixing and compounding, reactive extrusion, injection moulding, film extrusion, thermoforming, blow moulding, compression moulding, lamination and fibre spinning, including electrospinning. Relations between the processing technologies, biopolymer types and applications. Biopolymer based product development and design: case studies and industry practices. Environmental aspects of biopolymers processing and applications: recycling and circular economy, eco-design and life cycle analysis. International policies and regulatory framework of biopolymers.
type of assessment in Estonian
-
type of assessment in English
-
independent study in Estonian
Seminariettekannete ja referaatide valmistamine, laboratoorsete tööde aruannete koostamine.
independent study in English
Preparation for the presentations, composing term papers and reports of practical exercises.
study literature
Ashter, Syed Ali. (2016). Introduction to Bioplastics Engineering. Elsevier;
Endres, Hans-Josef Siebert-Raths, Andrea. (2011). Engineering Biopolymers - Markets, Manufacturing, Properties and Applications. Hanser Publishers.
study forms and load
daytime study: weekly hours
4.0
session-based study work load (in a semester):
lectures
2.0
lectures
-
practices
1.0
practices
-
exercises
1.0
exercises
-
lecturer in charge
-
LECTURER SYLLABUS INFO
semester of studies
teaching lecturer / unit
language of instruction
Extended syllabus
2025/2026 autumn
Illia Krasnou, EK - Department of Materials and Environmental Technology
English
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    2024/2025 autumn
    Andres Krumme, EK - Department of Materials and Environmental Technology
    English
      Course description in Estonian
      Course description in English