Publications
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Long-term tropospheric trend of octafluorocyclobutane (c-C4F8 or PFC-318)." Atmospheric Chemistry and Physics 12, no. 1 (2012): 261-269.
"Low European methyl chloroform emissions inferred from long-term atmospheric measurements." Nature 433, no. 7025 (2005): 506-508.
"Low European methyl chloroform emissions inferred from long-term atmospheric measurements." Nature 433, no. 7025 (2005): 506-508.
"Medusa: A Sample Preconcentration and GC/MS Detector System for in Situ Measurements of Atmospheric Trace Halocarbons, Hydrocarbons, and Sulfur Compounds." Analytical Chemistry 80, no. 5 (2008): 1536-1545.
"Medusa: A Sample Preconcentration and GC/MS Detector System for in Situ Measurements of Atmospheric Trace Halocarbons, Hydrocarbons, and Sulfur Compounds." Analytical Chemistry 80, no. 5 (2008): 1536-1545.
"Methane emissions from peat bogs in the vicinity of the Mace Head Atmospheric Research Station over a 12-year period." Atmospheric Environment 43, no. 14 (2009): 2328-2335.
"Methane emissions from peat bogs in the vicinity of the Mace Head Atmospheric Research Station over a 12-year period." Atmospheric Environment 43, no. 14 (2009): 2328-2335.
"Methane emissions in East Asia for 2000–2011 estimated using an atmospheric Bayesian inversion." Journal of Geophysical Research: Atmospheres 120, no. 9 (2015): 2014JD022394.
"Methane from the East Siberian Arctic Shelf." Science 329, no. 5996 (2010): 1146-1147.
"Methane from the East Siberian Arctic Shelf." Science 329, no. 5996 (2010): 1146-1147.
"Methane from the East Siberian Arctic Shelf." Science 329, no. 5996 (2010): 1146-1147.
"Model Sensitivity Studies of the Decrease in Atmospheric Carbon Tetrachloride." Atmospheric Chemistry and Physics 16 (2016): 15741-15754.
"Model Sensitivity Studies of the Decrease in Atmospheric Carbon Tetrachloride." Atmospheric Chemistry and Physics 16 (2016): 15741-15754.
"Model Sensitivity Studies of the Decrease in Atmospheric Carbon Tetrachloride." Atmospheric Chemistry and Physics 16 (2016): 15741-15754.
"Modelling long-range transport of CFCs to Mace Head, Ireland." Quarterly Journal of the Royal Meteorological Society 124, no. 546 (1998): 417-446.
"Modelling the growth of atmospheric nitrous oxide using a global hierarchical inversion." EGUsphere 2022, no. EGUsphere [preprint], https://doi.org/10.5194/egusphere-2022-513, 2022. (2022): 1-28.
"Modern inhalation anesthetics: Potent greenhouse gases in the global atmosphere." Geophysical Research Letters 42, no. 5 (2015): 2014GL062785.
"Multiannual Top-Down Estimate of HFC-23 Emissions in East Asia." Environmental Science & Technology 49, no. 7 (2015): 4345-4353.
"Multiannual Top-Down Estimate of HFC-23 Emissions in East Asia." Environmental Science & Technology 49, no. 7 (2015): 4345-4353.
"Natural chloroform emissions from the blanket peat bogs in the vicinity of Mace Head, Ireland over a 14-year period." Atmospheric Environment 44, no. 10 (2010): 1284-1291.
"Natural chloroform emissions from the blanket peat bogs in the vicinity of Mace Head, Ireland over a 14-year period." Atmospheric Environment 44, no. 10 (2010): 1284-1291.
"Natural greenhouse gas and ozone-depleting substance sources and sinks from the peat bogs of Connemara, Ireland from 1994–2020." Environmental Science: Atmospheres 1, no. 6 (2021): 406-415.
"Natural greenhouse gas and ozone-depleting substance sources and sinks from the peat bogs of Connemara, Ireland from 1994–2020." Environmental Science: Atmospheres 1, no. 6 (2021): 406-415.
"A new estimation of the recent tropospheric molecular hydrogen budget using atmospheric observations and variational inversion." Atmos. Chem. Phys. 11, no. 7 (2011): 3375-3392.
"A new estimation of the recent tropospheric molecular hydrogen budget using atmospheric observations and variational inversion." Atmos. Chem. Phys. 11, no. 7 (2011): 3375-3392.
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