<?xml version="1.0" encoding="UTF-8"?><!--*** Generated from internal PANGAEA metadata schema by dif.xslt ***--><DIF xsi:schemaLocation="http://gcmd.gsfc.nasa.gov/Aboutus/xml/dif/ http://gcmd.gsfc.nasa.gov/Aboutus/xml/dif/dif_v9.4.xsd" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns="http://gcmd.gsfc.nasa.gov/Aboutus/xml/dif/">
<Entry_ID>PANGAEA_844138</Entry_ID>
<Entry_Title>Hydrochemistry measured on water bottle samples in the North Atlantic subpolar gyre during SURATLANT cruise AGSK20050528</Entry_Title>
<Data_Set_Citation>
<Dataset_Creator>Reverdin, Gilles; Ólafsdóttir, Sólveig Rósa; Metzl, Nicolas</Dataset_Creator>
<Dataset_Title>Hydrochemistry measured on water bottle samples in the North Atlantic subpolar gyre during SURATLANT cruise AGSK20050528</Dataset_Title>
<Dataset_Release_Date>2015-03-13</Dataset_Release_Date>
<Dataset_Publisher>PANGAEA</Dataset_Publisher>
<Data_Presentation_Form>Dataset</Data_Presentation_Form>
<Online_Resource>https://doi.pangaea.de/10.1594/PANGAEA.844138</Online_Resource>
</Data_Set_Citation>
<Personnel>
<Role>Investigator</Role>
<First_Name>Gilles</First_Name>
<Last_Name>Reverdin</Last_Name>
<Email>gilles.reverdin@locean.ipsl.fr</Email>
</Personnel>
<Personnel>
<Role>Investigator</Role>
<First_Name>Sólveig Rósa</First_Name>
<Last_Name>Ólafsdóttir</Last_Name>
<Email>solveig@hafro.is</Email>
</Personnel>
<Discipline>
<Discipline_Name>Earth Science</Discipline_Name>
</Discipline>
<Parameters>
<Detailed_Variable>DATE/TIME</Detailed_Variable>
</Parameters>
<Parameters>
<Detailed_Variable>LATITUDE</Detailed_Variable>
</Parameters>
<Parameters>
<Detailed_Variable>LONGITUDE</Detailed_Variable>
</Parameters>
<Parameters>
<Detailed_Variable>DEPTH, water</Detailed_Variable>
</Parameters>
<Parameters>
<Detailed_Variable>Temperature, water</Detailed_Variable>
</Parameters>
<Parameters>
<Detailed_Variable>Salinity</Detailed_Variable>
</Parameters>
<Parameters>
<Detailed_Variable>Carbon, inorganic, dissolved</Detailed_Variable>
</Parameters>
<Parameters>
<Detailed_Variable>Alkalinity, total</Detailed_Variable>
</Parameters>
<Parameters>
<Detailed_Variable>Phosphate</Detailed_Variable>
</Parameters>
<Parameters>
<Detailed_Variable>Nitrate</Detailed_Variable>
</Parameters>
<Parameters>
<Detailed_Variable>Silicate</Detailed_Variable>
</Parameters>
<ISO_Topic_Category>geoscientificInformation</ISO_Topic_Category>
<Keyword>AGSK20050528</Keyword>
<Keyword>AGSK20050528-suratlant</Keyword>
<Keyword>Bucket water sampling</Keyword>
<Sensor_Name>
<Long_Name>Thermosalinograph Seacat SBE-21 system</Long_Name>
</Sensor_Name>
<Sensor_Name>
<Long_Name>Determined potentiometrically (Edmond 1970)</Long_Name>
</Sensor_Name>
<Source_Name>
<Long_Name>Skogafoss</Long_Name>
</Source_Name>
<Temporal_Coverage>
<Start_Date>2005-05-28</Start_Date>
<Stop_Date>2005-06-01</Stop_Date>
</Temporal_Coverage>
<Data_Set_Progress>Complete</Data_Set_Progress>
<Spatial_Coverage>
<Southernmost_Latitude>48.160000000000004</Southernmost_Latitude>
<Northernmost_Latitude>62.160000000000004</Northernmost_Latitude>
<Westernmost_Longitude>-51.50999999999999</Westernmost_Longitude>
<Easternmost_Longitude>-28.910000000000025</Easternmost_Longitude>
<Minimum_Depth>5.0 m (DEPTH, water)</Minimum_Depth>
<Maximum_Depth>5.0 m (DEPTH, water)</Maximum_Depth>
</Spatial_Coverage>
<Project>
<Short_Name>CARBOCHANGE</Short_Name>
<Long_Name>Changes in the carbon uptake and emissions by oceans in a changing climate</Long_Name>
</Project>
<Access_Constraints>unrestricted</Access_Constraints>
<Use_Constraints>CC-BY-3.0: Creative Commons Attribution 3.0 Unported</Use_Constraints>
<Data_Set_Language>English</Data_Set_Language>
<Data_Center>
<Data_Center_Name>
<Short_Name>PANGAEA</Short_Name>
<Long_Name>Data Publisher for Earth &amp; Environmental Science</Long_Name>
</Data_Center_Name>
<Data_Center_URL>https://www.pangaea.de/</Data_Center_URL>
<Personnel>
<Role>Data Center Contact</Role>
<First_Name>Michael</First_Name>
<Last_Name>Diepenbroek</Last_Name>
<Email>info@pangaea.de</Email>
<Contact_Address>
<Address>Leobener Str.</Address>
<City>Bremen</City>
<Province_or_State>Bremen</Province_or_State>
<Postal_Code>28359</Postal_Code>
<Country>Germany</Country>
</Contact_Address>
</Personnel>
</Data_Center>
<Distribution>
<Distribution_Media>online</Distribution_Media>
<Distribution_Size>196 data points</Distribution_Size>
<Distribution_Format>text/tab-separated-values</Distribution_Format>
</Distribution>
<Reference>Fay, Amanda R; McKinley, Galen A (2013): Global trends in surface ocean pCO2 from in situ data. Global Biogeochemical Cycles, 27(2), 541-557, https://doi.org/10.1002/gbc.20051</Reference>
<Reference>Keller, Kathrin M; Joos, Fortunat; Raible, Christoph C; Cocco, Valentina; Frölicher, Thomas L; Dunne, J P; Gehlen, Marion; Bopp, Laurent; Orr, James C; Tjiputra, Jerry; Heinze, Christoph; Segschneider, Joachim; Roy, Tilla; Metzl, Nicolas (2012): Variability of the ocean carbon cycle in response to the North Atlantic Oscillation. Tellus Series B-Chemical and Physical Meteorology, 64, https://doi.org/10.3402/tellusb.v64i0.18738</Reference>
<Reference>McKinley, Galen A; Fay, Amanda R; Takahashi, Taro; Metzl, Nicolas (2011): Convergence of atmospheric and North Atlantic carbon dioxide trends on multidecadal timescales. Nature Geoscience, 4, 606-610, https://doi.org/10.1038/ngeo1193</Reference>
<Reference>Metzl, Nicolas; Corbière, Antoine; Reverdin, Gilles; Lenton, Andrew; Takahashi, Taro; Olsen, Are; Johannessen, Truls; Pierrot, Denis; Wanninkhof, Rik; Ólafsdóttir, Sólveig Rósa; Ólafsson, Jón; Ramonet, M (2010): Recent acceleration of the sea surface fCO2 growth rate in the North Atlantic subpolar gyre (1993-2008) revealed by winter observations. Global Biogeochemical Cycles, 24(4), https://doi.org/10.1029/2009GB003658</Reference>
<Reference>Racapé, V; Metzl, Nicolas; Pierre, Catherine; Reverdin, Gilles; Quay, Paul; Ólafsdóttir, Sólveig Rósa (2014): The seasonal cycle of d13CDIC in the North Atlantic subpolar gyre. Biogeosciences, 11(6), 1683-1692, https://doi.org/10.5194/bg-11-1683-2014</Reference>
<Reference>Rödenbeck, Christian; Keeling, Ralph F; Bakker, Dorothee C E; Metzl, Nicolas; Olsen, Are; Sabine, Christopher L; Heimann, Martin (2013): Global surface-ocean pCO2 and sea–air CO2 flux variability from an observation-driven ocean mixed-layer scheme. Ocean Science, 9(2), 193-216, https://doi.org/10.5194/os-9-193-2013</Reference>
<Reference>Schuster, Ute; McKinley, Galen A; Bates, Nicolas R; Chevallier, Frédéric; Doney, Scott C; Fay, Amanda R; González-Dávila, Melchor; Gruber, Nicolas; Jones, Steve D; Krijnen, J; Landschützer, Peter; Lefèvre, Nathalie; Manizza, M; Mathis, Jeremy T; Metzl, Nicolas; Olsen, Are; Ríos, Aida F; Rödenbeck, Christian; Santana-Casiano, Juana Magdalena; Takahashi, Taro; Wanninkhof, Rik; Watson, Andrew J (2013): An assessment of the Atlantic and Arctic sea–air CO2 fluxes, 1990–2009. Biogeosciences, 10(1), 607-627, https://doi.org/10.5194/bg-10-607-2013</Reference>
<Reference>Schuster, Ute; Watson, Andrew J; Bates, Nicolas R; Corbière, Antoine; Gonzalez Davila, Melchor; Metzl, Nicolas; Pierrot, Denis; Santana-Casiano, Juana Magdalena (2009): Trends in North Atlantic sea surface pCO2 from 1990 to 2006. Deep Sea Research Part II: Topical Studies in Oceanography, 56(8-10), 620-629, https://doi.org/10.1016/j.dsr2.2008.12.011</Reference>
<Reference>Signorini, Sergio R; Häkkinen, S; Gudmundsson, Kristinn; Olsen, Are; Omar, Abdirahman M; Ólafsson, Jón; Reverdin, Gilles; Henson, Stephanie A; McClain, Charles; Worthen, D L (2012): The role of phytoplankton dynamics in the seasonal and interannual variability of carbon in the subpolar North Atlantic – a modeling study. Geoscientific Model Development, 5(3), 683-707, https://doi.org/10.5194/gmd-5-683-2012</Reference>
<Reference>Thomas, Helmuth; Prowe, A E Friederike; Lima, Ivan D; Doney, Scott C; Wanninkhof, Rik; Greatbatch, Richard J; Schuster, Ute; Corbière, Antoine (2008): Changes in the North Atlantic Oscillation influence CO2 uptake in the North Atlantic over the past 2 decades. Global Biogeochemical Cycles, 113, GB4027, https://doi.org/10.1029/2007GB003167</Reference>
<Reference>Ullman, David J; McKinley, Galen A; Bennington, Val; Dutkiewicz, Stephanie (2009): Trends in the North Atlantic carbon sink: 1992-2006. Global Biogeochemical Cycles, 23(4), https://doi.org/10.1029/2008GB003383</Reference>
<Reference>Watson, Andrew J; Schuster, Ute; Bakker, Dorothee C E; Bates, Nicolas R; Corbière, Antoine; Gonzalez Davila, Melchor; Friedrich, Torsten; Hauck, Judith; Heinze, Christoph; Johannessen, Truls; Körtzinger, Arne; Metzl, Nicolas; Ólafsson, Jón; Olsen, Are; Oschlies, Andreas; Padín, Xose Antonio; Pfeil, Benjamin; Ríos, Aida F; Santana-Casiano, Juana Magdalena; Steinhoff, Tobias; Telszewski, Maciej; Wallace, Douglas WR; Wanninkhof, Rik (2009): Tracking the variable North Atlantic sink for atmospheric CO2. Science, 326(5958), 1391-1393, https://doi.org/10.1126/science.1177394</Reference>
<Reference>Reverdin, Gilles; Metzl, Nicolas; Corbière, Antoine (2007): Carbon dioxide measurement results in the north Atlantic subploar gyre during SURATLANT cruise AGSK20050528 [dataset]. Laboratoire d'Océanographie et du Climat: Expérimentation et Approches Numériques, Université Pierre-et-Marie-Curie, France, PANGAEA, https://doi.org/10.1594/PANGAEA.603252</Reference>
<Summary>For all details see the full metadata description at "https://doi.pangaea.de/10.1594/PANGAEA.844138"!</Summary>
<Related_URL>
<URL>http://en.wikipedia.org/wiki/ISO_6709</URL>
<Description>LATITUDE</Description>
</Related_URL>
<Related_URL>
<URL>http://en.wikipedia.org/wiki/ISO_6709</URL>
<Description>LONGITUDE</Description>
</Related_URL>
<Related_URL>
<URL>http://en.wikipedia.org/wiki/ISO_8601</URL>
<Description>DATE/TIME</Description>
</Related_URL>
<Related_URL>
<URL>https://cordis.europa.eu/project/id/264879</URL>
<Description>CARBOCHANGE</Description>
</Related_URL>
<Related_URL>
<URL>https://doi.org/10.1002/gbc.20051</URL>
<Description>Global trends in surface ocean pCO2 from in situ data</Description>
</Related_URL>
<Related_URL>
<URL>https://doi.org/10.1016/0011-7471(70)90038-0</URL>
<Description>Determined potentiometrically (Edmond 1970)</Description>
</Related_URL>
<Related_URL>
<URL>https://doi.org/10.1016/j.dsr2.2008.12.011</URL>
<Description>Trends in North Atlantic sea surface pCO2 from 1990 to 2006</Description>
</Related_URL>
<Related_URL>
<URL>https://doi.org/10.1029/2007GB003167</URL>
<Description>Changes in the North Atlantic Oscillation influence CO2 uptake in the North Atlantic over the past 2 decades</Description>
</Related_URL>
<Related_URL>
<URL>https://doi.org/10.1029/2008GB003383</URL>
<Description>Trends in the North Atlantic carbon sink: 1992-2006</Description>
</Related_URL>
<Related_URL>
<URL>https://doi.org/10.1029/2009GB003658</URL>
<Description>Recent acceleration of the sea surface fCO2 growth rate in the North Atlantic subpolar gyre (1993-2008) revealed by winter observations</Description>
</Related_URL>
<Related_URL>
<URL>https://doi.org/10.1038/ngeo1193</URL>
<Description>Convergence of atmospheric and North Atlantic carbon dioxide trends on multidecadal timescales</Description>
</Related_URL>
<Related_URL>
<URL>https://doi.org/10.1126/science.1177394</URL>
<Description>Tracking the variable North Atlantic sink for atmospheric CO2</Description>
</Related_URL>
<Related_URL>
<URL>https://doi.org/10.3402/tellusb.v64i0.18738</URL>
<Description>Variability of the ocean carbon cycle in response to the North Atlantic Oscillation</Description>
</Related_URL>
<Related_URL>
<URL>https://doi.org/10.5194/bg-10-607-2013</URL>
<Description>An assessment of the Atlantic and Arctic sea–air CO2 fluxes, 1990–2009</Description>
</Related_URL>
<Related_URL>
<URL>https://doi.org/10.5194/bg-11-1683-2014</URL>
<Description>The seasonal cycle of d13CDIC in the North Atlantic subpolar gyre</Description>
</Related_URL>
<Related_URL>
<URL>https://doi.org/10.5194/gmd-5-683-2012</URL>
<Description>The role of phytoplankton dynamics in the seasonal and interannual variability of carbon in the subpolar North Atlantic – a modeling study</Description>
</Related_URL>
<Related_URL>
<URL>https://doi.org/10.5194/os-9-193-2013</URL>
<Description>Global surface-ocean pCO2 and sea–air CO2 flux variability from an observation-driven ocean mixed-layer scheme</Description>
</Related_URL>
<Related_URL>
<URL>https://doi.pangaea.de/10.1594/PANGAEA.603252</URL>
<Description>Carbon dioxide measurement results in the north Atlantic subploar gyre during SURATLANT cruise AGSK20050528</Description>
</Related_URL>
<Metadata_Name>DIF</Metadata_Name>
<Metadata_Version>9.4</Metadata_Version>
<DIF_Creation_Date>2015-03-13</DIF_Creation_Date>
<Last_DIF_Revision_Date>2026-06-26</Last_DIF_Revision_Date>
</DIF>
