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Potential of renewable surplus electricity for power-to-gas and geo-methanation in Switzerland

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BORIS DOI
10.48350/179722
Publisher DOI
10.1016/j.ijhydene.2022.12.290
Description
Energy systems are increasingly exposed to variable surplus electricity from renewable sources, particularly photovoltaics. This study estimates the potential to use surplus electricity for power-to-gas with geo-methanation for Switzerland by integrated energy system and power-to-gas modelling. Various CO2 point sources are assessed concerning exploitable emissions for power-to-gas, which were found to be abundantly available such that 60 TWh surplus electricity could be converted to methane, which is the equivalent of the current annual Swiss natural gas demand. However, the maximum available surplus electricity is only 19 TWh even in a scenario with high photovoltaic expansion. Moreover, making this surplus electricity available for power-to-gas requires an ideal load shifting capacity of up to 10 times the currently installed pumped-hydro capacity. Considering also geological and economic boundary conditions for geo-methanation at run-of-river and municipal waste incinerator sites with nearby CO2 sources reduces the exploitable surplus electricity from 19 to 2 TWh.
Date of Publication
2023-01-19
Publication Type
Article
Subject(s)
500 Science > 550 Earth sciences & geology
Language(s)
en
Contributor(s)
Rüdisüli, Martin
Mutschler, Robin
Teske, Sinan L.
Sidler, Daniel
Van den Heuvel, Daniela
Institute of Geological Sciences (GEO) - Rock-Water-Interaction Group
Institute of Geological Sciences (GEO)
Diamond, Larryn Williamorcid-logo
Institute of Geological Sciences (GEO) - Rock-Water-Interaction Group
Institute of Geological Sciences (GEO)
Orehounig, Kristina
Eggimann, Sven
Additional Credits
Institute of Geological Sciences (GEO) - Rock-Water-Interaction Group
Series
International journal of hydrogen energy
Publisher
Elsevier
ISSN
0360-3199
Access(Rights)
open.access
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