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#30182 / #6

Seit WS 2019/20

English

Waste-to-energy processes
Technik der Abfallbehandlung I: Thermische Abfallbehandlung und Energienutzung aus Abfällen

6

Rotter, Vera Susanne

Benotet

Mündliche Prüfung

English

Zugehörigkeit


Fakultät III

Institut für Technischen Umweltschutz

33331700 FG Kreislaufwirtschaft und Recyclingtechnologie

MSc Technischer Umweltschutz

Kontakt


Z 2

Moloeznik Paniagua, Daniela

info@circulareconomy.tu-berlin.de

Lernergebnisse

This course enables students to: - know and predict the quality and quantity of waste flows suitable for thermal waste treatment options and resulting products, residues and emissions, - explain, describe and apply the physico-chemical principles and the process engineering aspects in waste-to-energy processes, - suggest appropriate emission reduction techniques for waste-to-energy plants, - design thermal waste-to-energy systems based on practice-oriented calculations, - discuss energy efficiency and strategies to increase waste-to-energy processes, - assess the implementation of waste-to-energy plants and co-incineration globally, - understand economic drivers for implementation waste-to-energy processes, - to consider environmental aspects of waste-to-energy systems in a broader context. The course is divided into: 40 % Knowledge and Understanding 30 % Development and Design 10 % Research and Evaluation 20 % Implementation and Praxis.

Lehrinhalte

- Status and relevance of thermal waste treatment operations in waste management - Characterization of waste as a fuel - Physico-chemical principles of thermal waste conversion - Process description and aggregates of thermal treatment units - Flue gas cleaning, emissions reduction, and residue treatment - Legal framework in the EU and technical concepts according to Best Available Techniques (BAT) Reference Document (BREF) - Mass and energy balances of the waste-to-energy processes (incineration (combustion calculations and Rankine cycle), drying processes, anaerobic digestions processes) - Optimization strategies for energy recovery from waste and biomass - Production and utilization of refuse derived fuels in mono- and co-incineration

Modulbestandteile

Compulsory area

Die folgenden Veranstaltungen sind für das Modul obligatorisch:

LehrveranstaltungenArtNummerTurnusSpracheSWS ISIS VVZ
Waste-to-Energy TechnologiesVL0333 L 540WiSeen2
Efficiency optimization of Waste-to-Energy processesUE0333 L 541WiSeen2

Arbeitsaufwand und Leistungspunkte

Waste-to-Energy Technologies (VL):

AufwandbeschreibungMultiplikatorStundenGesamt
Presence time15.02.0h30.0h
Preparation and post-processing10.01.0h10.0h
40.0h(~2 LP)

Efficiency optimization of Waste-to-Energy processes (UE):

AufwandbeschreibungMultiplikatorStundenGesamt
Calculation exercises and homeworks10.04.0h40.0h
Presence time15.02.0h30.0h
Preparation and post-processing5.04.0h20.0h
90.0h(~3 LP)

Lehrveranstaltungsunabhängiger Aufwand:

AufwandbeschreibungMultiplikatorStundenGesamt
Exam preparation1.050.0h50.0h
50.0h(~2 LP)
Der Aufwand des Moduls summiert sich zu 180.0 Stunden. Damit umfasst das Modul 6 Leistungspunkte.

Beschreibung der Lehr- und Lernformen

This module follows a blended learning approach. The module consists of an integrated course (lecture, seminar, excursion) and a calculation phase. The integrated course illustrates the fundamentals and essential technical concepts and principles with teacher's and student's presentations and short movies. Time is allocated for interactive discussions related to recent developments and topics. An excursion gives a good view of the praxis. The calculation phase illustrates the theoretical content with practical examples. The exercises to be solved require the independent work of the students, which will strengthen their system and methodological competence. For this online self-learning tutorials and knowledge testing quizzes are available. Off-line tutorials allow students to work on MS Excel-based calculation sheets under the supervision of tutors. Furthermore, background information on current trends related to waste, expert opinions and scientific articles are given. In addition, the ISIS learning platform is intensely used as a presentation and information medium, as well as a discussion platform and as preparation for the lecture and exercise.

Voraussetzungen für die Teilnahme / Prüfung

Wünschenswerte Voraussetzungen für die Teilnahme an den Lehrveranstaltungen:

English Level C1 equivalent Desirable Module: „Einführung der Abfallwirtschaft“ Basics of thermodynamics Prerequisite to register to the oral exam is the to present a performance certificate (Leistungnachweis) which is given when all homeworks from the exercise part are sucessfully passed

Verpflichtende Voraussetzungen für die Modulprüfungsanmeldung:

Voraussetzung
Leistungsnachweis »Successful completion of the exercise homework: efficiency optimization of waste-to-energy processes exercise«

Abschluss des Moduls

Benotung

Benotet

Prüfungsform

Oral exam

Sprache(n)

English

Dauer/Umfang

45 min

Dauer des Moduls

Für Belegung und Abschluss des Moduls ist folgende Semesteranzahl veranschlagt:
1 Semester.

Dieses Modul kann in folgenden Semestern begonnen werden:
Wintersemester.

Maximale teilnehmende Personen

Dieses Modul ist nicht auf eine Anzahl Studierender begrenzt.

Anmeldeformalitäten

Oral exam are registered at the examination office, or through the online registration with QUISPOS. Prerequisite is the to present a performance certificate (Leistungnachweis) which is given when all calculation exercises of the module are sucessfully passed

Literaturhinweise, Skripte

Skript in Papierform

Verfügbarkeit:  nicht verfügbar

 

Skript in elektronischer Form

Verfügbarkeit:  verfügbar
Zusätzliche Informationen:

 

Literatur

Empfohlene Literatur
Keine empfohlene Literatur angegeben

Zugeordnete Studiengänge


Diese Modulversion wird in folgenden Studiengängen verwendet:

Studiengang / StuPOStuPOsVerwendungenErste VerwendungLetzte Verwendung
Physikalische Ingenieurwissenschaft (M. Sc.)217SoSe 2021SoSe 2025
Process Energy and Environmental Systems Engineering (M. Sc.)216WiSe 2020/21SoSe 2025
Regenerative Energiesysteme (M. Sc.)211SoSe 2021SoSe 2025
Technischer Umweltschutz (M. Sc.)112WS 2019/20SoSe 2025
Wirtschaftsingenieurwesen (B. Sc.)113WS 2019/20SoSe 2025
Wirtschaftsingenieurwesen (M. Sc.)138WS 2019/20SoSe 2025
Master Environmental Science and Technology Component of the supplementary module list (TUS) Component of the module "Technology of Waste Treatment" (TUS) Assignment of this module as a supplementary module and simultaneous selection with core moduule "Solid waste treatment technologies" is not permitted due to overlap.

Sonstiges

-The course materials will be provided in electronic form. They are uploaded within the learning progress in the ISIS learning platform and help the students with the preparation for the lectures and examination (Automatic de-registration is done after 1 year, please save all wanted material before this date). -Quizzes and other online teaching elements allow students to check their individual learning progress. -The oral examination takes place after the course. The calculation exercises are graded, and passing them is a prerequisite for registration. -An excursion takes place to show real-life example.