HR: 1340h
AN: B43B-0158 [Abstracts]
TI: High Precision Stable Isotope Analysis of Methane and Carbon Dioxide using Trace Gas CF-IRMS:
Instrumentation Development, London Diurnal Studies and Measurements of Emissions from Irish
Wetlands
AU: * Fisher, R
EM: r.fisher@gl.rhul.ac.uk
AF: Dept of Geology, Royal Holloway, University of London, Egham Hill, Egham, TW20 0EX
United Kingdom
AU: Lowry, D
EM: d.lowry@gl.rhul.ac.uk
AF: Dept of Geology, Royal Holloway, University of London, Egham Hill, Egham, TW20 0EX
United Kingdom
AU: O'Brien, P
EM: phillip.obrien@nuigalway.ie
AF: Martin Ryan Marine Science Insitute, NUI Galway, University Road, Galway, Co. Galway
Ireland
AU: Sriskantharajah, S
EM: s.sriskantharajah@gl.rhul.ac.uk
AF: Dept of Geology, Royal Holloway, University of London, Egham Hill, Egham, TW20 0EX
United Kingdom
AU: Nisbet, E G
EM: e.nisbet@gl.rhul.ac.uk
AF: Dept of Geology, Royal Holloway, University of London, Egham Hill, Egham, TW20 0EX
United Kingdom
AB:
Continuous flow isotope ratio mass spectrometry coupled with the Trace Gas preparation system (GV Instruments) has been used
to analyse air samples with a precision of better than 0.1 $\permil$ for $\delta$$^{13}$C of CH$_{4}$ and $\delta$$^{13}$C
and $\delta$$^{18}$O of CO$_{2}$. 75cm$^{3}$ of air is required, with a 16-minute analysis time. This precision makes the
technique ideal for source studies, although it is also approaching the precision required to identify annual variations in
measurements at some background stations.
Diurnal studies have been carried out from the sampling site at Royal Holloway, west of London, measuring either
$\delta$$^{13}$C of CH$_{4}$ or $\delta$$^{13}$C and $\delta$$^{18}$O of CO$_{2}$ at 30-minute intervals. Source
calculations for methane showed the local sources had $\delta$$^{13}$C values of between -37.9$\permil$ (typical of gas
leaks) and -54.0$\permil$ (landfill emissions). The methane was most enriched in $^{13}$C in the early evening, during the
rush hour, suggesting that at this time vehicle exhaust emissions are a measurable local source of methane.
Methane and carbon dioxide mixing ratios and isotopes were measured on samples collected from Irish wetlands. Samples were
collected in early summer and autumn to investigate variations in emissions from blanket bogs, raised bogs and fens. Air
samples were collected upwind, downwind and in the centre of the bogs and were supplemented with soil air samples and chamber
collection above waterlogged areas. Results were compared with the Atlantic background record of methane $\delta$$^{13}$C at
Mace Head for which measurements have been carried out using a conventional cryogenic extraction line since 1995, to
investigate whether Irish wetland emissions affect the Mace Head record for trajectories passing over the southwestern corner
of Ireland. Preliminary results from the summer campaign indicate that blanket bogs, which are the prevalent type of
peatland along the western coast of Ireland, did not emit significant amounts of methane. Hence Atlantic blanket bog is
unlikely to affect the methane isotopes measured at Mace Head. However raised bogs and fens were found to have much larger
methane emissions. Source $\delta$$^{13}$C isotope values of emitted methane ranged from -55 $\permil$ at a fen
(Pollardstown fen) to -80 $\permil$ at a raised bog (Clara bog).
DE: 0315 Biosphere/atmosphere interactions
DE: 0394 Instruments and techniques
SC: Biogeosciences [B]
MN: 2004 AGU Fall Meeting