Observational evidence confirms modelling of the long-term integrity of CO2-reservoir caprocks

Anthropogenic CO2 storage, where CO2 is injected into saline geological resevoirs, relies on an impermeable caprock to seal in the CO2, but caprock reaction rates to CO2 acid brines are unclear. Here, Kampman et al. show that mineral reaction front alteration in caprocks takes place over 100,000 yea...

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Autores principales: N. Kampman, A. Busch, P. Bertier, J. Snippe, S. Hangx, V. Pipich, Z. Di, G. Rother, J. F. Harrington, J. P. Evans, A. Maskell, H. J. Chapman, M. J. Bickle
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/21df6c3dae4b43d89b3499e81dbb9f81
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spelling oai:doaj.org-article:21df6c3dae4b43d89b3499e81dbb9f812021-12-02T17:32:05ZObservational evidence confirms modelling of the long-term integrity of CO2-reservoir caprocks10.1038/ncomms122682041-1723https://doaj.org/article/21df6c3dae4b43d89b3499e81dbb9f812016-07-01T00:00:00Zhttps://doi.org/10.1038/ncomms12268https://doaj.org/toc/2041-1723Anthropogenic CO2 storage, where CO2 is injected into saline geological resevoirs, relies on an impermeable caprock to seal in the CO2, but caprock reaction rates to CO2 acid brines are unclear. Here, Kampman et al. show that mineral reaction front alteration in caprocks takes place over 100,000 years.N. KampmanA. BuschP. BertierJ. SnippeS. HangxV. PipichZ. DiG. RotherJ. F. HarringtonJ. P. EvansA. MaskellH. J. ChapmanM. J. BickleNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-10 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
N. Kampman
A. Busch
P. Bertier
J. Snippe
S. Hangx
V. Pipich
Z. Di
G. Rother
J. F. Harrington
J. P. Evans
A. Maskell
H. J. Chapman
M. J. Bickle
Observational evidence confirms modelling of the long-term integrity of CO2-reservoir caprocks
description Anthropogenic CO2 storage, where CO2 is injected into saline geological resevoirs, relies on an impermeable caprock to seal in the CO2, but caprock reaction rates to CO2 acid brines are unclear. Here, Kampman et al. show that mineral reaction front alteration in caprocks takes place over 100,000 years.
format article
author N. Kampman
A. Busch
P. Bertier
J. Snippe
S. Hangx
V. Pipich
Z. Di
G. Rother
J. F. Harrington
J. P. Evans
A. Maskell
H. J. Chapman
M. J. Bickle
author_facet N. Kampman
A. Busch
P. Bertier
J. Snippe
S. Hangx
V. Pipich
Z. Di
G. Rother
J. F. Harrington
J. P. Evans
A. Maskell
H. J. Chapman
M. J. Bickle
author_sort N. Kampman
title Observational evidence confirms modelling of the long-term integrity of CO2-reservoir caprocks
title_short Observational evidence confirms modelling of the long-term integrity of CO2-reservoir caprocks
title_full Observational evidence confirms modelling of the long-term integrity of CO2-reservoir caprocks
title_fullStr Observational evidence confirms modelling of the long-term integrity of CO2-reservoir caprocks
title_full_unstemmed Observational evidence confirms modelling of the long-term integrity of CO2-reservoir caprocks
title_sort observational evidence confirms modelling of the long-term integrity of co2-reservoir caprocks
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/21df6c3dae4b43d89b3499e81dbb9f81
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