Regional and global impact of CO2 uptake in the Benguela Upwelling System through preformed nutrients
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[1] B. Halpern,et al. Protecting the global ocean for biodiversity, food and climate , 2021, Nature.
[2] K. Matsumoto,et al. Linkages Between Dynamic Phytoplankton C:N:P and the Ocean Carbon Cycle Under Climate Change , 2020, Oceanography.
[3] H. Claustre,et al. Multi-faceted particle pumps drive carbon sequestration in the ocean , 2019, Nature.
[4] M. Alexander,et al. On the role of climate modes in modulating the air–sea CO2 fluxes in eastern boundary upwelling systems , 2019, Biogeosciences.
[5] P. Landschützer,et al. The Variable Southern Ocean Carbon Sink. , 2019, Annual review of marine science.
[6] W. Ekau,et al. Pelagic key species and mechanisms driving energy flows in the northern Benguela upwelling ecosystem and their feedback into biogeochemical cycles , 2018, Journal of Marine Systems.
[7] R. Kerr,et al. On the influence of Subtropical Mode Water on the South Atlantic Ocean , 2018, Journal of Marine Systems.
[8] J. Tison,et al. Global high resolution monthly pCO 2 climatology for the coastal ocean derived from neural network interpolation , 2017 .
[9] T. Rixen,et al. Biogeochemical processes and turnover rates in the Northern Benguela Upwelling System , 2017, Journal of Marine Systems.
[10] S. Bograd,et al. Upwelling indices for comparative ecosystem studies: Variability in the Benguela Upwelling System , 2017, Journal of Marine Systems.
[11] Jacqueline Boutin,et al. A multi-decade record of high-quality fCO2 data in version 3 of the Surface Ocean CO2 Atlas (SOCAT) , 2016 .
[12] Jochen Kämpf,et al. Upwelling Systems of the World: A Scientific Journey to the Most Productive Marine Ecosystems , 2016 .
[13] M. Gehlen,et al. Coastal-ocean uptake of anthropogenic carbon , 2016 .
[14] M. Ostrowski,et al. Synthesis: climate effects on biodiversity, abundance and distribution of marine organisms in the Benguela , 2015 .
[15] R. Feely,et al. Diagnosing CO 2 fluxes in the upwelling system off the Oregon-California coast , 2014 .
[16] C. Reason,et al. Computing transport budgets along the shelf and across the shelf edge in the northern Benguela during summer (DJF) and winter (JJA) , 2014 .
[17] A. Eggert,et al. Cross shelf hydrographic and hydrochemical conditions and their short term variability at the northern Benguela during a normal upwelling season , 2014 .
[18] Taro Takahashi,et al. Climatological distributions of pH, pCO2, total CO2, alkalinity, and CaCO3 saturation in the global surface ocean, and temporal changes at selected locations , 2014 .
[19] Rik Wanninkhof,et al. Relationship between wind speed and gas exchange over the ocean revisited , 2014 .
[20] Nicolas Gruber,et al. Spatiotemporal variability and drivers of p CO 2 and air–sea CO 2 fluxes in the California Current System: an eddy-resolving modeling study , 2013 .
[21] T. Rixen,et al. Spatio-temporal patterns of C : N : P ratios in the northern Benguela upwelling system , 2013 .
[22] Taro Takahashi,et al. Sea–air CO 2 fluxes in the Southern Ocean for the period 1990–2009 , 2013 .
[23] P. Monteiro,et al. Is the southern Benguela a significant regional sink of CO2? : research letter , 2013 .
[24] M. Holzer,et al. Southern Ocean nutrient trapping and the efficiency of the biological pump , 2013 .
[25] Jasper A. Vrugt,et al. Strong latitudinal patterns in the elemental ratios of marine plankton and organic matter , 2013 .
[26] M. Follows,et al. Wind-driven changes in Southern Ocean residual circulation, ocean carbon reservoirs and atmospheric CO2 , 2013, Climate Dynamics.
[27] C. Carlson,et al. The biological pump in a high CO 2 world , 2012 .
[28] K. Speer,et al. Closure of the meridional overturning circulation through Southern Ocean upwelling , 2012 .
[29] James C. McWilliams,et al. Eddy-induced reduction of biological production in eastern boundary upwelling systems , 2011 .
[30] Nicolas Gruber,et al. What controls biological production in coastal upwelling systems? Insights from a comparative modeling study , 2011 .
[31] N. Swart,et al. Carbon export and sequestration in the southern Benguela upwelling system: lower and upper estimates , 2009 .
[32] M. Ostrowski,et al. The Benguela Current: An ecosystem of four components , 2009 .
[33] J. Santana-Casiano,et al. Seasonal variability of fCO2 in the Angola-Benguela region , 2009 .
[34] F. Chavez,et al. Potential new production estimates in four eastern boundary upwelling ecosystems , 2009 .
[35] Francisco P. Chavez,et al. A comparison of Eastern Boundary Upwelling Ecosystems , 2009 .
[36] Pierrick Penven,et al. The Benguela: A laboratory for comparative modeling studies , 2009 .
[37] Edzer J. Pebesma,et al. Real-time automatic interpolation of ambient gamma dose rates from the Dutch radioactivity monitoring network , 2009, Comput. Geosci..
[38] J. Santana-Casiano,et al. Carbon dioxide fluxes in the Benguela upwelling system during winter and spring: A comparison between 2005 and 2006 , 2009 .
[39] C. S. Wong,et al. Climatological mean and decadal change in surface ocean pCO2, and net seaair CO2 flux over the global oceans , 2009 .
[40] C. Sweeney,et al. Advances in quantifying air-sea gas exchange and environmental forcing. , 2009, Annual review of marine science.
[41] F. Chavez,et al. Air–sea carbon dioxide fluxes in the coastal southeastern tropical Pacific , 2008 .
[42] Claude Roy,et al. Remotely sensed variability of temperature and chlorophyll in the southern Benguela: upwelling frequency and phytoplankton response , 2006 .
[43] C. M. Rae. A demonstration of the hydrographic partition of the Benguela upwelling ecosystem at 26°40'S , 2005 .
[44] Michael J. Follows,et al. Preformed phosphate, soft tissue pump and atmospheric CO 2 , 2005 .
[45] C. Whittle,et al. Seasonal variation in phytoplankton in the southern Benguela: pigment indices and ocean colour , 2005 .
[46] Edzer J. Pebesma,et al. Multivariable geostatistics in S: the gstat package , 2004, Comput. Geosci..
[47] Manfred Ehrhardt,et al. Methods of seawater analysis , 1999 .
[48] D. Wallace,et al. Program developed for CO{sub 2} system calculations , 1998 .
[49] Walter H. F. Smith,et al. A global, self‐consistent, hierarchical, high‐resolution shoreline database , 1996 .
[50] Walter H. F. Smith,et al. Gridding with continuous curvature splines in tension , 1990 .
[51] F. Millero,et al. A comparison of the equilibrium constants for the dissociation of carbonic acid in seawater media , 1987 .
[52] B. Peterson,et al. Particulate organic matter flux and planktonic new production in the deep ocean , 1979, Nature.
[53] R. Weiss. Carbon dioxide in water and seawater: the solubility of a non-ideal gas , 1974 .
[54] C. Culberson,et al. MEASUREMENT OF THE APPARENT DISSOCIATION CONSTANTS OF CARBONIC ACID IN SEAWATER AT ATMOSPHERIC PRESSURE1 , 1973 .
[55] I. Hampton,et al. Plankton productivity of the Benguela Current Large Marine Ecosystem (BCLME) , 2016 .
[56] J. P. Dunne,et al. High-latitude controls of thermocline nutrients and low latitude biological productivity , 2004, Nature.
[57] L. Stramma,et al. Upper-level circulation in the South Atlantic Ocean , 1991 .