Technology of organic matters and fuels I
BASIC DATA
course listing
A - main register
course code
RAK0411
course title in Estonian
Orgaaniliste ainete ja kütuste tehnoloogia I
course title in English
Technology of organic matters and fuels I
course volume CP
4.00
ECTS credits
6.00
to be declared
yes
assessment form
Examination
teaching semester
autumn - spring
language of instruction
Estonian
English
Prerequisite(s)
Prerequisite 1
Organic Chemistry (RAK0310)
Study programmes that contain the course
code of the study programme version
course compulsory
EDKR16/25
yes
Structural units teaching the course
EV - Virumaa College
Course description link
Timetable link
View the timetable
Version:
VERSION SPECIFIC DATA
course aims in Estonian
Õppeaine eesmärk on anda üliõpilasele võimalus omandada põhiteadmised orgaaniliste ainete ja kütuste tehnoloogia valdkonnas; õpetada rakendama saadud teoreetilised teadmised praktikas; laiendada ja süvendada eksperimendi läbiviimise ja selle tulemuste interpreteerimise oskused.
course aims in English
The aim of the course is to give a student possibility to acquire basic knowledge in the field of organic matters and fuel technology; to teach to apply obtained theoretical knowledge in practice; to enlarge and to deepen skills of experiment carrying out and its results interpretation.
learning outcomes in the course in Est.
Aine sooritanud üliõpilane: (1) tunneb orgaaniliste ainete (metanool, etanool, äädikhape, bensoehape, formaldehüüd, eetrid ja estrid, ühe- ja mitmealuselised fenoolid, monomeerid ja polümeerid, pindaktiivsed ained jt) tootmisprotsessi: toorained, kemism, teoreetilised alused, tehnoloogilised skeemid, põhilised aparaadid, riskid ja ohud, keskkonnaprobleemid, aine kasutusalad; (2) oskab teha ühe ja sama orgaanilise aine tootmiseks kasutatavate erinevate tehnoloogiate võrdlusanalüüsi; (3) oskab teha orgaaniliste ainete tootmisprotsesside tehnoloogilisi arvutusi (materjalibilansside koostamine, kulukoefitsientide, saagise, selektiivsuse jm arvutamine); (4) oskab omandatud teoreetilisi teadmisi kasutada eksperimendi läbiviimisel; (5) suudab üles ehitada eksperimenti, selle tulemusi esitada, töödelda ning analüüsida; (6) oskab iseseisvalt kasutada kirjandusallikaid (sh võõrkeelseid) uurimisprobleemi lahendamisel.
learning outcomes in the course in Eng.
After passing the course a student: (1) knows chemism, theoretical fundamentals , ecological problems of organic matters production technologies (methanol, ethanol, acetic and benzoic acids, formaldehyde, ethers and esters, monoatomic a and multiatomic phenols, monomers and polymers, surface-active agents) and the fields of their application; (2) can make simple technological calculations of the main processes of organic matters production (to compile material balance, to calculate norms for consumption of raw material, product yield, selectivity etc.); (3) can conduct comparative analysis of different technologies of one organic matter production and make corresponding conclusions; (4) is able to apply the obtained theoretical knowledge for experiment carrying out; (5) is able to process the obtained experimental data and to analyse them; (6) can use scientific, reference and methodical literature in native and foreign languages.
brief description of the course in Estonian
Käesolev kursus arvestab Eesti keemiatööstuse omapära.
Loengud. Orgaaniliste ainete (metanool, etanool, äädikhape, bensoehape, formaldehüüd, eetrid ja estrid, ühe- ja mitmealuselised fenoolid, monomeerid ja polümeerid, pindaktiivsed ained jt) tootmisprotsessid: toorained, kemism, teoreetilised alused, tehnoloogilised skeemid, põhilised aparaadid, riskid ja ohud, keskkonnaprobleemid, aine kasutusalad. Ühe ja sama orgaanilise aine tootmiseks kasutatavate erinevate tehnoloogiate võrdlemine.
Harjutused. Tehnoloogiliste skeemide lugemine. Materjalibilansside koostamine. Kulukoefitsientide, saagise, selektiivsuse jm arvutamine. Orgaanilise aine saamise kemismi analüüsis põhi- ja kõrvalsaaduste tekkimise vaatevinklist.
Praktikum. Orgaaniliste ainete (näiteks, eetrid ja estrid, bensoehape, erinevad vaigud) süntees ja analüüs õppejõu valikul. Õppeekskursioonid ja õppepäevad keemiaettevõtetes.
brief description of the course in English
The given course has been compiled with an allowance for peculiarities of chemical industry of Estonia.
Lectures. Organic matters production: methanol, ethanol, acetic and benzoic acids, formalin, ethers and esters, monoatomic and multiatomic phenols, monomers and polymers (phenol-formaldehyde, petropolymer and other resins), surface-active agents) etc. Raw material, physical-chemical basics of the processes, technological peculiarities, the main apparatuses, risks and hazards, ecological problems. Comparison of different process flow diagrams one and the same organic matter production.
Exercises. Reading of process flow diagrams. Compiling of material balances. Calculation of norms for consumption of raw material, product yield, load of the reactor and etc. Process chemism analysis for the purpose of prime product and by-products formation.
Practical training. Synthesis and analysis of some organic matters (for example, ethers and esters, benzoic acid, various resins) by the choice of the lecturer. Study excursions to chemical enterprises.
type of assessment in Estonian
vt fail
type of assessment in English
see attachment
independent study in Estonian
Iseseisva töö orienteeruvaks mahuks eeldatakse 90-92 tundi. Sellest 24 tundi (ca 1,5 tundi nädalas) on mõeldut aine teoreetilise osa iseseisvaks läbitöötamiseks, 16 tundi (ca 1,0 tund nädalas) koduste ülesannete lahendamiseks, 16 tundi (ca 1,0 tund nädalas) laboratoorsete tööde andmete töötlemiseks ja tööde vormistamiseks; 20 tundi referaadi koostamiseks, 8 tundi kontrolltöödeks ja 8 tundi eksamiks ettevalmistamiseks.
independent study in English
Supposed volume of independent work is 92 hours. Herein 24 hours (ca 1,5 hours per a week) are intended for lectures materials self-dependent elaborating, 16 hours (ca 1,0 hours per a week) for hometasks solving, 16 hours (ca 1,0 hour per a week) for laboratory data processing and works forming; 20 hours for essay compiling, 8 hours for the tests and 8 hours for exam preparation.
study literature
1) Uttam Ray Chaudhuri. Fundamentals of Petroleum and Petrochemical Engineering. CRC Press. 2010. - 411 pages.
2) У.Р. Чаудури. Нефтехимия и нефтепереработка. Процессы, технологии, интеграция. Санкт-Петербург: издательство Профессия, 2014 г. – 425 с.
3) Donald L. Burdick, William L. Leffler. Petrochemicals in Nontechnical Language. PennWell Books, 2010. - 387 pages.
4) Доналд Л. Бардик, Уильям Л. Леффлер. Нефтехимия. Пер. с англ. – Москва.: ЗАО Олимп-Бизнес, 2007. – 496 с.
5) Тимофеев В.С., Серафимов Л.А. Принципы технологии основного органического и нефтехимического синтеза. Учебное пособие для ВУЗов. Москва: Высшая школа, 2003. - 536 с.
6) Черных С.П. Новые процессы органического синтеза. Москва: Химия, 1989. - 400 с.
study forms and load
daytime study: weekly hours
4.0
session-based study work load (in a semester):
lectures
2.0
lectures
16.0
practices
1.0
practices
12.0
exercises
1.0
exercises
4.0
lecturer in charge
-
LECTURER SYLLABUS INFO
semester of studies
teaching lecturer / unit
language of instruction
Extended syllabus
2025/2026 autumn
Allan Niidu, EV - Virumaa College
Estonian
    Org_tehnoloogia I_Hindamine_eng_OIS.pdf 
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    2024/2025 autumn
    Allan Niidu, EV - Virumaa College
    Estonian
      2023/2024 autumn
      Allan Niidu, EV - Virumaa College
      Estonian
        2022/2023 autumn
        Allan Niidu, EV - Virumaa College
        Estonian
          2021/2022 autumn
          Allan Niidu, EV - Virumaa College
          Estonian
            Org_tehnoloogia I_Hindamine_eng_OIS.pdf 
            2020/2021 autumn
            Larisa Grigorieva, EV - Virumaa College
            Estonian
              Org_tehnoloogia I_Hindamine_eng_OIS.pdf 
              2019/2020 autumn
              Larisa Grigorieva, EV - Virumaa College
              Estonian
                Org_tehnoloogia I_Hindamine_eng_OIS.pdf 
                Course description in Estonian
                Course description in English