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Biological CO2-Methanation: An Approach to Standardization
by
Brotsack, Raimund
, Bellack, Annett
, Hörl, Manuel
, Neubert, Michael
, Mörs, Friedemann
, Karl, Jürgen
, Trabold, Thomas
, Weidlich, Tobias
, Stabenau, Carsten
, Hackl, Florian
, Sterner, Michael
, Schmack, Doris
, Hafenbradl, Doris
, Thema, Martin
, Kohlmayer, Matthias
, Gleich, Jasmin
, Huber, Harald
, Ortloff, Felix
in
Alternative energy sources
/ biological methanation
/ bubble column reactor
/ Carbon dioxide
/ Climate change
/ CO2-methanation
/ CSTR
/ Electricity distribution
/ Emissions
/ Energy industry
/ Greenhouse gases
/ Hydrogen
/ membrane reactor
/ Membrane reactors
/ methanation
/ Microorganisms
/ Natural gas
/ power-to-gas
/ power-to-methane
/ Spacetime
/ standardization
/ trickle-bed reactor
2019
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Biological CO2-Methanation: An Approach to Standardization
by
Brotsack, Raimund
, Bellack, Annett
, Hörl, Manuel
, Neubert, Michael
, Mörs, Friedemann
, Karl, Jürgen
, Trabold, Thomas
, Weidlich, Tobias
, Stabenau, Carsten
, Hackl, Florian
, Sterner, Michael
, Schmack, Doris
, Hafenbradl, Doris
, Thema, Martin
, Kohlmayer, Matthias
, Gleich, Jasmin
, Huber, Harald
, Ortloff, Felix
in
Alternative energy sources
/ biological methanation
/ bubble column reactor
/ Carbon dioxide
/ Climate change
/ CO2-methanation
/ CSTR
/ Electricity distribution
/ Emissions
/ Energy industry
/ Greenhouse gases
/ Hydrogen
/ membrane reactor
/ Membrane reactors
/ methanation
/ Microorganisms
/ Natural gas
/ power-to-gas
/ power-to-methane
/ Spacetime
/ standardization
/ trickle-bed reactor
2019
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Do you wish to request the book?
Biological CO2-Methanation: An Approach to Standardization
by
Brotsack, Raimund
, Bellack, Annett
, Hörl, Manuel
, Neubert, Michael
, Mörs, Friedemann
, Karl, Jürgen
, Trabold, Thomas
, Weidlich, Tobias
, Stabenau, Carsten
, Hackl, Florian
, Sterner, Michael
, Schmack, Doris
, Hafenbradl, Doris
, Thema, Martin
, Kohlmayer, Matthias
, Gleich, Jasmin
, Huber, Harald
, Ortloff, Felix
in
Alternative energy sources
/ biological methanation
/ bubble column reactor
/ Carbon dioxide
/ Climate change
/ CO2-methanation
/ CSTR
/ Electricity distribution
/ Emissions
/ Energy industry
/ Greenhouse gases
/ Hydrogen
/ membrane reactor
/ Membrane reactors
/ methanation
/ Microorganisms
/ Natural gas
/ power-to-gas
/ power-to-methane
/ Spacetime
/ standardization
/ trickle-bed reactor
2019
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Biological CO2-Methanation: An Approach to Standardization
Journal Article
Biological CO2-Methanation: An Approach to Standardization
2019
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Overview
Power-to-Methane as one part of Power-to-Gas has been recognized globally as one of the key elements for the transition towards a sustainable energy system. While plants that produce methane catalytically have been in operation for a long time, biological methanation has just reached industrial pilot scale and near-term commercial application. The growing importance of the biological method is reflected by an increasing number of scientific articles describing novel approaches to improve this technology. However, these studies are difficult to compare because they lack a coherent nomenclature. In this article, we present a comprehensive set of parameters allowing the characterization and comparison of various biological methanation processes. To identify relevant parameters needed for a proper description of this technology, we summarized existing literature and defined system boundaries for Power-to-Methane process steps. On this basis, we derive system parameters providing information on the methanation system, its performance, the biology and cost aspects. As a result, three different standards are provided as a blueprint matrix for use in academia and industry applicable to both, biological and catalytic methanation. Hence, this review attempts to set the standards for a comprehensive description of biological and chemical methanation processes.
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