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Thema, Martin ; Weidlich, Tobias ; Hörl, Manuel ; Bellack, Annett ; Mörs, Friedemann ; Hackl, Florian ; Kohlmayer, Matthias ; Gleich, Jasmin ; Stabenau, Carsten ; Trabold, Thomas ; Neubert, Michael ; Ortloff, Felix ; Brotsack, Raimund ; Schmack, Doris ; Huber, Harald ; Hafenbradl, Doris ; Karl, Jürgen ; Sterner, Michael

Biological CO2-Methanation: An Approach to Standardization

Thema, Martin, Weidlich, Tobias, Hörl, Manuel, Bellack, Annett, Mörs, Friedemann, Hackl, Florian, Kohlmayer, Matthias, Gleich, Jasmin, Stabenau, Carsten, Trabold, Thomas, Neubert, Michael, Ortloff, Felix, Brotsack, Raimund, Schmack, Doris, Huber, Harald, Hafenbradl, Doris, Karl, Jürgen and Sterner, Michael (2019) Biological CO2-Methanation: An Approach to Standardization. Energies 12 (9), p. 1670.

Date of publication of this fulltext: 03 Sep 2021 10:02
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Item typeArticle
Journal or Publication TitleEnergies
Publisher:MDPI
Place of Publication:BASEL
Volume:12
Number of Issue or Book Chapter:9
Page Range:p. 1670
Date2019
InstitutionsBiology, Preclinical Medicine > Institut für Biochemie, Genetik und Mikrobiologie > Lehrstuhl für Mikrobiologie (Archaeenzentrum)
Identification Number
ValueType
10.3390/en12091670DOI
KeywordsPOWER-TO-GAS; OF-THE-ART; MEMBRANE BIOFILM REACTOR; METHANOTHERMOBACTER-MARBURGENSIS; HYDROGENOTROPHIC COMMUNITY; BIOCATALYTIC METHANATION; RENEWABLE POWER; CARBON-DIOXIDE; ENERGY; PERFORMANCE; methanation; standardization; biological methanation; CO2-methanation; power-to-gas; power-to-methane; trickle-bed reactor; CSTR; bubble column reactor; membrane reactor
Dewey Decimal Classification500 Science > 570 Life sciences
StatusPublished
RefereedYes, this version has been refereed
Created at the University of RegensburgYes
Item ID48694

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