Raw CO2 and CH4 concentration data from a Picarro CRDS during experiments which tested the utility of methane as a tracer to quantify CO2 leakage into aqueous environments
Raw CO2 and CH4 concentration data from a Picarro Cavity Ring Down Spectroscopy (CRDS) during experiments which tested the utility of methane as a tracer to quantify CO2 leakage into aqueous environments, as described in Myers, M., Roberts, J.J., White, C., and Stalker, L (2019) ‘An experimental investigation into quantifying CO2 leakage in aqueous environments using chemical tracers’ Chemical Geology
nonGeographicDataset
http://www.bgs.ac.uk/ukccs/accessions/index.html#item125824
function: download
http://dx.doi.org/10.5285/40172f68-1eaa-4374-a0ec-02ebe621a954
name: Digital Object Identifier (DOI)
function: information
http://data.bgs.ac.uk/id/dataHolding/13607420
eng
geoscientificInformation
publication
2008-06-01
Monitoring
Carbon capture and storage
Tracers
Methane
Accounting
revision
2011
NERC_DDC
2016-09-01
2018-09-01
creation
2016-09-01
notApplicable
We used a benchtop experimental setup to explore how effectively methane, a common constituent of captured CO2 and of reservoir fluids, can aid the quantitation of CO2 leakage in aqueous environments. The experiment simulated gas leakage into sediments that mimic the seabed at the QICS experiment. We measured the partitioning of co-released gases under different environmental conditions and injection rates. The full method is described in Myers, M., Roberts, J.J., White, C., and Stalker, L (2019) ‘An experimental investigation into quantifying CO2 leakage in aqueous environments using chemical tracers’ Chemical Geology.
publication
2011
false
See the referenced specification
publication
2010-12-08
false
See http://eur-lex.europa.eu/LexUriServ/LexUriServ.do?uri=OJ:L:2010:323:0011:0102:EN:PDF
.opju (Origin)
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University of Strathclyde
author
University of Strathclyde
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2021-08-31