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This dataset contains methane and nitrous oxide dissolved gas concentration, dissolved methane carbon isotope, and ancillary hydrographic data from research cruises in the North American Arctic Ocean between 2015-2018. Ocean samples for methane and nitrous oxide analysis were collected from Niskin bottles mounted on a CTD rosette. Water was collected into glass serum bottles and allowed to overflow three times before preserving with mercuric chloride and sealing with with butyl rubber stoppers and aluminum crimp seals. Gas concentrations were determined using a purge and trap system coupled to a gas chromatograph/mass spectrometer, following the method of Capelle et al. (2015). Equilibrium dry atmospheric concentrations were 328.25, 329.14, 330.11, and 330.96 ppb for N2O and 1919.64, 1933.67, 1934.92, and 1933.50 ppb for CH4 in 2015, 2016, 2017, and 2018, respectively. Equilibrium dissolved concentrations were calculated from the measured temperature and salinity following Wiesenburg and Guinasso (1979) for CH4 and Weiss and Price (1980) for N2O. Equilibrium concentrations were calculated based on sample temperature and salinity and the atmospheric N2O or CH4 concentrations measured at Barrow, Alaska by the NOAA Earth System Research Laboratory Global Monitoring Division (Dlugokencky et al., 2020a,b), with corrections to local sea level pressure and 100% humidity. Oxygen concentration was determined using an oxygen sensor mounted on the Niskin rosette, calibrated with discrete samples analyzed by Winkler titration. The mixed layer depth was defined based on a potential density difference criterion of 0.125 kg/m³ relative to the density at 5 m depth, using CTD profiles binned to 1 m. The mixed layer depth was set to 5 m as a minimum. The instantaneous gas transfer velocities and fluxes are based on the instantaneous wind speed at the time of sampling. The 30-day weighted gas transfer velocities and fluxes are integrated over the residence time of the gas in the mixed layer, using up to the prior 30 days of observations, following the method of Teeter et al. (2018) as described in the main manuscript of Manning et al. (2022). The 60-day weighted gas transfer velocities and fluxes are integrated over the residence time of the gas in the mixed layer, using the prior 60 days of observations, following the method of Teeter et al. (2018) as described in the main manuscript of Manning et al. (2022). Atmospheric sea level pressure was obtained from the NCEP/NCAR reanalysis product, which is provided by the NOAA-ESRL Physical Sciences Laboratory (https://psl.noaa.gov/data/gridded). Fractional ice cover was obtained from the EUMETSAT Ocean and Sea Ice Satellite Application Facility (https://osi-saf.eumetsat.int). Sea ice concentration product AMSR-2 (identifier OSI-408) was used in 2017–2018 and SSMIS (identifier OSI-401-b) was used in 2015–2016.
Salinity, Sea Bird, AMD18_3, CTD/Rosette, Nitrous oxide, dissolved, Canadian Coast Guard Sir W Laurier, Nitrous oxide, flux, Arctic, Temperature, water, Nitrous oxide, standard deviation, Canadian Coast Guard (Sir W. Laurier), Calculated, SWL1607, SWL1807, Marine Biogeochemistry and Surface Exchange of Climate Active Gases (ArcticNet), Methane, flux, Nitrous oxide, nitrous oxide, Ice cover, fractional, Louis S. St-Laurent, Temperature, dissolved, CTD Rosette, Methane, dissolved, equilibrium, AMD16_3a, Biogeochemistry, ocean, Biospheric Sciences, Global marine biogeochemical cycles of trace elements and their isotopes GEOTRACES, Mixed layer depth, International Polar Year 2007 2008 IPY, LSL1809, LSL1609, standard deviation, Natural Sciences, Station label, Pressure, water, Methane, Geosciences, Nitrous oxide, dissolved, gas transfer velocity, CTD, Sea-Bird, water, AMD15_2, Methane, standard deviation, AMD17_2, Global marine biogeochemical cycles of trace elements and their isotopes (GEOTRACES), Marine Biogeochemistry and Surface Exchange of Climate Active Gases ArcticNet, International Polar Year (2007-2008) (IPY), equilibrium, Gas chromatography Mass spectrometry GC MS, DATE TIME, Pressure, SWL1507, Louis S St Laurent, LONGITUDE, Methane, dissolved, gas transfer velocity, SWL1707, DEPTH, water, CCGS Amundsen, Event label, Nitrous oxide, dissolved, equilibrium, Methane, dissolved, CTD, rivers, flux, DATE/TIME, Gas chromatography - Mass spectrometry (GC-MS), DEPTH, fractional, LATITUDE, Ice cover, LSL1509, gas transfer velocity, LSL1709
Salinity, Sea Bird, AMD18_3, CTD/Rosette, Nitrous oxide, dissolved, Canadian Coast Guard Sir W Laurier, Nitrous oxide, flux, Arctic, Temperature, water, Nitrous oxide, standard deviation, Canadian Coast Guard (Sir W. Laurier), Calculated, SWL1607, SWL1807, Marine Biogeochemistry and Surface Exchange of Climate Active Gases (ArcticNet), Methane, flux, Nitrous oxide, nitrous oxide, Ice cover, fractional, Louis S. St-Laurent, Temperature, dissolved, CTD Rosette, Methane, dissolved, equilibrium, AMD16_3a, Biogeochemistry, ocean, Biospheric Sciences, Global marine biogeochemical cycles of trace elements and their isotopes GEOTRACES, Mixed layer depth, International Polar Year 2007 2008 IPY, LSL1809, LSL1609, standard deviation, Natural Sciences, Station label, Pressure, water, Methane, Geosciences, Nitrous oxide, dissolved, gas transfer velocity, CTD, Sea-Bird, water, AMD15_2, Methane, standard deviation, AMD17_2, Global marine biogeochemical cycles of trace elements and their isotopes (GEOTRACES), Marine Biogeochemistry and Surface Exchange of Climate Active Gases ArcticNet, International Polar Year (2007-2008) (IPY), equilibrium, Gas chromatography Mass spectrometry GC MS, DATE TIME, Pressure, SWL1507, Louis S St Laurent, LONGITUDE, Methane, dissolved, gas transfer velocity, SWL1707, DEPTH, water, CCGS Amundsen, Event label, Nitrous oxide, dissolved, equilibrium, Methane, dissolved, CTD, rivers, flux, DATE/TIME, Gas chromatography - Mass spectrometry (GC-MS), DEPTH, fractional, LATITUDE, Ice cover, LSL1509, gas transfer velocity, LSL1709
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citations This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically). | 0 | |
popularity This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network. | Average | |
influence This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically). | Average | |
impulse This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network. | Average |