Vorlesung: 5.06.M313 Biomass Energy - Details

Vorlesung: 5.06.M313 Biomass Energy - Details

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Veranstaltungsname Vorlesung: 5.06.M313 Biomass Energy
Untertitel
Veranstaltungsnummer 5.06.M313
Semester WiSe20/21
Aktuelle Anzahl der Teilnehmenden 24
erwartete Teilnehmendenanzahl 36
Heimat-Einrichtung Institut für Physik
Veranstaltungstyp Vorlesung in der Kategorie Lehre
Erster Termin Freitag, 23.10.2020 08:00 - 10:00
Art/Form Lecture course
Teilnehmende Students of PPRE and EUREC-REMA in their first semester
Lernorganisation Lecture course on the Fundamentals of Biomass Energy utilisation.
Part of the PPRE and EUREC-REMA curriculum
Leistungsnachweis Exam or presentation or oral exam or homework or practical report
Lehrsprache englisch
Info-Link http://www.ppre.de
ECTS-Punkte 3

Themen

Written Exam

Räume und Zeiten

Keine Raumangabe
Freitag: 08:00 - 10:00, wöchentlich(14x)
W03 1-161
Freitag, 29.01.2021 15:00 - 17:00

Kommentar/Beschreibung

The students will understand the principles and potential uses for biomass as well as the shortcomings of biomass as a renewable energy. The students will develop an understanding of the growth and degradation of every type of biomass, as well as the basics of a balanced ecosystem and the sustainable use of biomass. Students gain basic understanding on biomass processing technologies. In cooperation with the Energy Systems & Society Module, one shall gain an understanding of the connection between man and the function of a healthy ecosystem and its preservation.

Competence:
The students gain competencies with critical discourse of competitive uses of biomass between human consumption, animal feed, raw material and fuel. The students are taught the issues concerning biomass transportation as well as the economic and ecological criteria involving its planning and use. They develop criteria, in order to address the complex relation between the future and a sustainable energy supply. The students gain competence to better the living conditions of rural inhabitants in developing countries through improved applications of biomass for daily energy needs.
Content:
Basic Understanding of:
• Nature or photosynthesis: chemical storage of solar energy; Efficiency of Plants
• Composition of biomass: sugar, starch, fat, oils, protein, lignin
• Knowledge of typical crop yield and energy content of various plants
• Typical energy crops in different climates
• Form and distribution of biomass uses in different geographic and climatic regions
• Traditional and modern energetic uses of biomass as well as the efficiency and technology
• Degradation process of biomass: Microorganisms, classification and metabolism (main degradation)

Sustainable Biomass Use
• Soil fertility, decrease and destruction of natural fertility
• Soil ecology
• Growth and diversity of biomass
• Roll of the microorganism in the metabolic cycle

Technology
The guiding theme are the principles of traditional and modern energetic use of biomass, the constraints and efficiencies for
food preparation, transport, and thermal and electrical energy production
• Biomass cookers, Improved Cook Stoves
• Wood gasification
• Biogas equipment
• Biodiesel production
• Ethanol production from sugarcane
• Methanol production

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