CO 2 capture, storage and reuse potential in Finland

Abstract Economical feasibility and potential of CO 2 capture, storage and reuse in Finland was evaluated under the National Programme on Technology and Climate Change (Climtech). In Finland, no suitable geologic formations exist to sequester CO 2 . The nearest potential CO 2 sequestration sites are...

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Main Authors: T Koljonen, H Siikavirta, R Zevenhoven, I Savolainen
Other Authors: The Pennsylvania State University CiteSeerX Archives
Format: Text
Language:English
Published: 2004
Subjects:
Online Access:http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.1054.1360
http://webpages.fc.ul.pt/%7Efbarriga/ZeroEm/Bibliografia_files/Koljonen%2Bal_2004_Energy.pdf
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spelling ftciteseerx:oai:CiteSeerX.psu:10.1.1.1054.1360 2023-05-15T15:38:52+02:00 CO 2 capture, storage and reuse potential in Finland T Koljonen H Siikavirta R Zevenhoven I Savolainen The Pennsylvania State University CiteSeerX Archives 2004 application/pdf http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.1054.1360 http://webpages.fc.ul.pt/%7Efbarriga/ZeroEm/Bibliografia_files/Koljonen%2Bal_2004_Energy.pdf en eng http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.1054.1360 http://webpages.fc.ul.pt/%7Efbarriga/ZeroEm/Bibliografia_files/Koljonen%2Bal_2004_Energy.pdf Metadata may be used without restrictions as long as the oai identifier remains attached to it. http://webpages.fc.ul.pt/%7Efbarriga/ZeroEm/Bibliografia_files/Koljonen%2Bal_2004_Energy.pdf text 2004 ftciteseerx 2020-04-12T00:19:14Z Abstract Economical feasibility and potential of CO 2 capture, storage and reuse in Finland was evaluated under the National Programme on Technology and Climate Change (Climtech). In Finland, no suitable geologic formations exist to sequester CO 2 . The nearest potential CO 2 sequestration sites are offshore oil and gas fields in the North Sea and Barents Sea, which would mean a transport of 500-1000 km for captured CO 2 . With current knowledge, capturing CO 2 near the storage sites and investing to new cross-border electricity transmission capacity seems the most feasible option for Finland. Storing CO 2 as solid mineral carbonate could be an option in the future, since large resources of suitable silicates exist in Finland as natural minerals and as wastes of mining industry. The reuse potential of captured CO 2 is less than 0.5% of the annual CO 2 emissions. # Text Barents Sea Unknown Barents Sea
institution Open Polar
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description Abstract Economical feasibility and potential of CO 2 capture, storage and reuse in Finland was evaluated under the National Programme on Technology and Climate Change (Climtech). In Finland, no suitable geologic formations exist to sequester CO 2 . The nearest potential CO 2 sequestration sites are offshore oil and gas fields in the North Sea and Barents Sea, which would mean a transport of 500-1000 km for captured CO 2 . With current knowledge, capturing CO 2 near the storage sites and investing to new cross-border electricity transmission capacity seems the most feasible option for Finland. Storing CO 2 as solid mineral carbonate could be an option in the future, since large resources of suitable silicates exist in Finland as natural minerals and as wastes of mining industry. The reuse potential of captured CO 2 is less than 0.5% of the annual CO 2 emissions. #
author2 The Pennsylvania State University CiteSeerX Archives
format Text
author T Koljonen
H Siikavirta
R Zevenhoven
I Savolainen
spellingShingle T Koljonen
H Siikavirta
R Zevenhoven
I Savolainen
CO 2 capture, storage and reuse potential in Finland
author_facet T Koljonen
H Siikavirta
R Zevenhoven
I Savolainen
author_sort T Koljonen
title CO 2 capture, storage and reuse potential in Finland
title_short CO 2 capture, storage and reuse potential in Finland
title_full CO 2 capture, storage and reuse potential in Finland
title_fullStr CO 2 capture, storage and reuse potential in Finland
title_full_unstemmed CO 2 capture, storage and reuse potential in Finland
title_sort co 2 capture, storage and reuse potential in finland
publishDate 2004
url http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.1054.1360
http://webpages.fc.ul.pt/%7Efbarriga/ZeroEm/Bibliografia_files/Koljonen%2Bal_2004_Energy.pdf
geographic Barents Sea
geographic_facet Barents Sea
genre Barents Sea
genre_facet Barents Sea
op_source http://webpages.fc.ul.pt/%7Efbarriga/ZeroEm/Bibliografia_files/Koljonen%2Bal_2004_Energy.pdf
op_relation http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.1054.1360
http://webpages.fc.ul.pt/%7Efbarriga/ZeroEm/Bibliografia_files/Koljonen%2Bal_2004_Energy.pdf
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