Sources of dissolved iron to oxygen minimum zone waters on the Senegalese continental margin in the tropical North Atlantic Ocean: Insights from iron isotopes
暂无分享,去创建一个
E. Achterberg | F. Lacan | J. Milton | E. Woodward | R. James | C. Schlosser | I. Parkinson | J. Klar
[1] J. Nishioka,et al. Dissolved iron distribution in the western and central subarctic Pacific: HNLC water formation and biogeochemical processes , 2017 .
[2] Ulrike Lomnitz. Biogeochemical cycling of iron and phosphorus under low oxygen conditions , 2017 .
[3] A. Tagliabue,et al. Biogeochemical cycling of Fe and Fe stable isotopes in the Eastern Tropical South Pacific , 2017 .
[4] D. Connelly,et al. Isotopic signature of dissolved iron delivered to the Southern Ocean from hydrothermal vents in the East Scotia Sea , 2017 .
[5] M. Trimmer,et al. Remineralization of particulate organic carbon in an ocean oxygen minimum zone , 2017, Nature Communications.
[6] E. Achterberg,et al. Particulate phases are key in controlling dissolved iron concentrations in the (sub)tropical North Atlantic , 2017 .
[7] K. Johnson,et al. The integral role of iron in ocean biogeochemistry , 2017, Nature.
[8] D. Connelly,et al. Stability of dissolved and soluble Fe(II) in shelf sediment pore waters and release to an oxic water column , 2017, Biogeochemistry.
[9] Sunke Schmidtko,et al. Decline in global oceanic oxygen content during the past five decades , 2017, Nature.
[10] F. Poitrasson,et al. Iron isotopes reveal distinct dissolved iron sources and pathways in the intermediate versus deep Southern Ocean , 2017, Proceedings of the National Academy of Sciences.
[11] T. Jickells,et al. Atmospheric transport of trace elements and nutrients to the oceans , 2016, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[12] F. Lacan,et al. Intercomparison of Dissolved Iron Isotope Profiles from Reoccupation of three GEOTRACES Stations in the Atlantic Ocean , 2016 .
[13] S. Kasten,et al. Determination of the stable iron isotopic composition of sequentially leached iron phases in marine sediments , 2016 .
[14] E. Boyle,et al. Dissolved iron and iron isotopes in the southeastern Pacific Ocean , 2015 .
[15] R. Holmes,et al. Iron isotope systematics in Arctic rivers , 2015 .
[16] S. Vogt,et al. Metal contents of phytoplankton and labile particulate material in the North Atlantic Ocean , 2015 .
[17] R. B. Pearce,et al. Aerosol time-series measurements over the tropical Northeast Atlantic Ocean: Dust sources, elemental composition and mineralogy , 2015 .
[18] P. Croot,et al. Total dissolvable and dissolved iron isotopes in the water column of the Peru upwelling regime , 2015 .
[19] William J. Jenkins,et al. Basin-scale transport of hydrothermal dissolved metals across the South Pacific Ocean , 2015, Nature.
[20] S. Sander,et al. Iron stable isotopes track pelagic iron cycling during a subtropical phytoplankton bloom , 2014, Proceedings of the National Academy of Sciences.
[21] P. Sedwick,et al. Estimating the benthic efflux of dissolved iron on the Ross Sea continental shelf , 2014 .
[22] J. Nishioka,et al. Laterally spreading iron, humic-like dissolved organic matter and nutrients in cold, dense subsurface water of the Arctic Ocean , 2014, Scientific Reports.
[23] F. Poitrasson,et al. Iron sources and dissolved‐particulate interactions in the seawater of the Western Equatorial Pacific, iron isotope perspectives , 2014 .
[24] S. John,et al. Quantification of dissolved iron sources to the North Atlantic Ocean , 2014, Nature.
[25] L. Gerringa,et al. The Distribution of Dissolved Iron in the West Atlantic Ocean , 2014, PloS one.
[26] M. Bonnet,et al. Iron isotope composition of the bulk waters and sediments from the Amazon River Basin , 2014 .
[27] F. Scholz,et al. Beyond the Black Sea paradigm: The sedimentary fingerprint of an open-marine iron shuttle , 2014 .
[28] E. Achterberg,et al. Seasonal ITCZ migration dynamically controls the location of the (sub)tropical Atlantic biogeochemical divide , 2013, Proceedings of the National Academy of Sciences.
[29] P. Worsfold,et al. Impact of atmospheric deposition on the contrasting iron biogeochemistry of the North and South Atlantic Ocean , 2013 .
[30] C. Mead,et al. Source apportionment of aerosol iron in the marine environment using iron isotope analysis , 2013 .
[31] J. Adkins,et al. A new method for precise determination of iron, zinc and cadmium stable isotope ratios in seawater by double-spike mass spectrometry. , 2013, Analytica chimica acta.
[32] E. Boyle,et al. Dissolved iron in the tropical North Atlantic Ocean , 2013 .
[33] S. John,et al. Distinct iron isotopic signatures and supply from marine sediment dissolution , 2013, Nature Communications.
[34] G. Johnson,et al. Shallow Overturning Circulations of the Tropical‐Subtropical Oceans , 2013 .
[35] Atul K. Jain,et al. The global carbon budget 1959-2011 , 2012 .
[36] J. Moffett,et al. The flux of iron and iron isotopes from San Pedro Basin sediments , 2012 .
[37] E. Boyle,et al. GEOTRACES IC1 (BATS) contamination‐prone trace element isotopes Cd, Fe, Pb, Zn, Cu, and Mo intercalibration , 2012 .
[38] E. Achterberg,et al. Fluxes and distribution of dissolved iron in the eastern (sub‐) tropical North Atlantic Ocean , 2012 .
[39] J. Adkins,et al. The vertical distribution of iron stable isotopes in the North Atlantic near Bermuda , 2012 .
[40] M. Graco,et al. Benthic iron and phosphorus fluxes across the Peruvian oxygen minimum zone , 2012 .
[41] P. Statham,et al. Dissolved oxygen and suspended particles regulate the benthic flux of iron from continental margins , 2012 .
[42] P. Laan,et al. Dissolved iron in the Arctic Ocean: Important role of hydrothermal sources, shelf input and scavenging removal , 2012 .
[43] K. Buck,et al. The Organic Complexation of Iron in the Marine Environment: A Review , 2012, Front. Microbio..
[44] S. Siedlecki,et al. Mechanism for export of sediment‐derived iron in an upwelling regime , 2012 .
[45] P. Croot,et al. Surface water dissolved aluminum and titanium: Tracers for specific time scales of dust deposition to the Atlantic? , 2011 .
[46] P. Laan,et al. Dissolved iron in the Southern Ocean (Atlantic sector) , 2011 .
[47] M. Taillefert,et al. The flux of soluble organic‐iron(III) complexes from sediments represents a source of stable iron(III) to estuarine waters and to the continental shelf , 2011 .
[48] F. Lacan,et al. Iron isotopes in the seawater of the equatorial Pacific Ocean: New constraints for the oceanic iron cycle , 2011 .
[49] P. Boyd,et al. The biogeochemical cycle of iron in the ocean , 2010 .
[50] F. Poitrasson,et al. High-precision determination of the isotopic composition of dissolved iron in iron depleted seawater by double spike multicollector-ICPMS. , 2010, Analytical chemistry.
[51] A. Anbar,et al. Fe isotope fractionation during equilibration of Fe-organic complexes. , 2010, Environmental science & technology.
[52] Verena Hormann,et al. Changes in the Ventilation of the Oxygen Minimum Zone of the Tropical North Atlantic , 2010 .
[53] D. Hammond,et al. The continental shelf benthic iron flux and its isotope composition , 2010 .
[54] P. Worsfold,et al. Distribution of size fractionated dissolved iron in the Canary Basin. , 2010, Marine environmental research.
[55] J. Resing,et al. The solubility and deposition of aerosol Fe and other trace elements in the North Atlantic Ocean: Observations from the A16N CLIVAR/CO2 repeat hydrography section , 2010 .
[56] J. Adkins,et al. Analysis of dissolved iron isotopes in seawater , 2010 .
[57] A. Pourmand,et al. Routine isotopic analysis of iron by HR-MC-ICPMS: How precise and how accurate? , 2009 .
[58] P. Statham,et al. Pore-fluid Fe isotopes reflect the extent of benthic Fe redox recycling: evidence from continental shelf and deep-sea sediments , 2009 .
[59] O. Rouxel,et al. Iron isotope systematics in estuaries: The case of North River, Massachusetts (USA) , 2009 .
[60] C. Jeandel,et al. Measurement of the isotopic composition of dissolved iron in the open ocean , 2008 .
[61] K. Edwards,et al. Integrated Fe- and S-isotope study of seafloor hydrothermal vents at East Pacific Rise 9–10°N , 2008 .
[62] J. Karstensen,et al. The oxygen minimum zones in the eastern tropical Atlantic and Pacific oceans , 2008 .
[63] J. Baker,et al. Equilibrium Fe isotope fractionation between inorganic aqueous Fe(III) and the siderophore complex, Fe(III)-desferrioxamine B , 2008 .
[64] J. Sprintall,et al. Expanding Oxygen-Minimum Zones in the Tropical Oceans , 2008, Science.
[65] Arne Körtzinger,et al. Oxygen minimum zone in the North Atlantic south and east of the Cape Verde Islands , 2008 .
[66] J. Lubchenco,et al. Emergence of Anoxia in the California Current Large Marine Ecosystem , 2008, Science.
[67] K. Bruland,et al. An improved flow‐injection analysis method for the determination of dissolved aluminum in seawater , 2008 .
[68] T. Bianchi. Geochemistry of Marine Sediments , 2007 .
[69] T. Jickells,et al. Global dust teleconnections: aerosol iron solubility and stable isotope composition , 2007 .
[70] N. Mahowald,et al. Dissolved iron in the vicinity of the Crozet Islands, Southern Ocean , 2007 .
[71] D. Burdige. Geochemistry of Marine Sediments , 2006 .
[72] E. Boyle,et al. Iron isotopes in the Amazon River system: Weathering and transport signatures , 2006 .
[73] O. Rouxel,et al. Mass spectrometry and natural variations of iron isotopes. , 2006, Mass spectrometry reviews.
[74] J. McManus,et al. The effect of early diagenesis on the Fe isotope compositions of porewaters and authigenic minerals in continental margin sediments , 2006 .
[75] L. Stramma,et al. Water masses and currents in the upper tropical northeast Atlantic off northwest Africa , 2005 .
[76] N. Mahowald,et al. Global Iron Connections Between Desert Dust, Ocean Biogeochemistry, and Climate , 2005, Science.
[77] A. Baker,et al. Short residence time for iron in surface seawater impacted by atmospheric dry deposition from Saharan dust events , 2004 .
[78] P. Worsfold,et al. Marine biogeochemistry of iron , 2004 .
[79] K. Timmermans,et al. Distribution of dissolved aluminium in the high atmospheric input region of the subtropical waters of the North Atlantic Ocean , 2004 .
[80] Taro Takahashi,et al. Southern Ocean Iron Enrichment Experiment: Carbon Cycling in High- and Low-Si Waters , 2004, Science.
[81] K. V. Damm,et al. Iron isotope constraints on Fe cycling and mass balance in oxygenated Earth oceans , 2003 .
[82] S. Welch,et al. Kinetic and equilibrium Fe isotope fractionation between aqueous Fe(II) and Fe(III) , 2002 .
[83] D. Mackey,et al. Iron in the western Pacific: a riverine or hydrothermal source for iron in the Equatorial Undercurrent? , 2002 .
[84] M. Gehlen,et al. Unraveling the atomic structure of biogenic silica: evidence of the structural association of Al and Si in diatom frustules , 2002 .
[85] P. Falkowski,et al. Iron availability, cellular iron quotas, and nitrogen fixation in Trichodesmium , 2001 .
[86] C. W. Childs,et al. Demonstration of significant abiotic iron isotope fractionation in nature , 2001 .
[87] Matthew H. England,et al. On the water masses and mean circulation of the South Atlantic Ocean , 1999 .
[88] Paul G. Falkowski,et al. Evolution of the nitrogen cycle and its influence on the biological sequestration of CO2 in the ocean , 1997, Nature.
[89] J. Resing,et al. Fluorometric Determination of Al in Seawater by Flow Injection Analysis with In-Line Preconcentration , 1994 .
[90] S. B. Moran,et al. Kinetics of the Removal of Dissolved Aluminum by Diatoms in Seawater - a Comparison with Thorium , 1992 .
[91] John H. Martin. glacial-interglacial Co2 change : the iron hypothesis , 1990 .
[92] D. Canfield. Reactive iron in marine sediments. , 1989, Geochimica et cosmochimica acta.
[93] W. Zenk,et al. The Madeira Mode Water , 1987 .
[94] F. Millero,et al. The oxidation kinetics of Fe(II) in seawater , 1987 .
[95] David M. Karl,et al. VERTEX: carbon cycling in the northeast Pacific , 1987 .
[96] B. Peterson,et al. Particulate organic matter flux and planktonic new production in the deep ocean , 1979, Nature.
[97] D. Wolfle. The Continental Shelf , 1965, Nature.
[98] James H. Carpenter,et al. THE ACCURACY OF THE WINKLER METHOD FOR DISSOLVED OXYGEN ANALYSIS1 , 1965 .
[99] S. Taylor,et al. Abundance of chemical elements in the continental crust: A new table: Geochimica e t Cosmochimica Ac , 1964 .
[100] Edward D. Goldberg,et al. Marine Geochemistry 1. Chemical Scavengers of the Sea , 1954, The Journal of Geology.
[101] O. Rouxel,et al. Iron Isotope Systematics , 2017 .
[102] Xrin –Xe,et al. DEPARTMENT OF COMMERCE National Oceanic and Atmospheric Administration , 2017 .
[103] D. Eichelberger. Abundance Of Chemical Elements , 2016 .
[104] M. Dengler. Expanding oxygen minimum zones , 2010 .
[105] Nicolas Gruber,et al. Ocean deoxygenation in a warming world. , 2010, Annual review of marine science.
[106] Loth. On the water masses and mean circulation of the South Atlantic Ocean , 2007 .
[107] A. Butler,et al. The marine biogeochemistry of iron. , 2005, Metal ions in biological systems.
[108] F. Albarède,et al. Analytical Methods for Non-Traditional Isotopes , 2004 .
[109] F. Millero,et al. The solubility of iron in seawater , 2002 .
[110] S. Doney,et al. Iron cycling and nutrient-limitation patterns in surface waters of the World Ocean , 2001 .
[111] A. Rees,et al. Nutrient distributions in an anticyclonic eddy in the northeast Atlantic Ocean, with reference to nanomolar ammonium concentrations , 2001 .
[112] F. Schott,et al. The mean flow field of the tropical Atlantic Ocean , 1999 .
[113] E. Brown,et al. Estimating Dust Input to the Atlantic Ocean Using Surface Water Aluminium Concentrations , 1996 .
[114] S. Fitzwater,et al. Iron deficiency limits phytoplankton growth in the north-east Pacific subarctic , 1988, Nature.
[115] F. Armstrong,et al. Chemical Oceanography , 1959, Nature.