publications
Find most PDFs by clicking on the DOI; otherwise, just send me an e-mail. Updated October 2018.
2018
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Diverging seasonal extremes for ocean acidification during the twenty-first century, Nature Climate Change 8, 2, 141–145, doi:10.1038/s41558-017-0054-0, 2018. [Link]
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Routine uncertainty propagation for the marine carbon dioxide system, Mar. Chem. 207, 84-107, doi:10.1016/j.marchem.2018.10.006, 2018.
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Biogeochemical response of the Mediterranean Sea to the transient SRES-A2 climate change scenario, Biogeosciences Discuss. 1–42, doi:10.5194/bg-2018-208, 2018.
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Model constraints on the anthropogenic carbon budget of the Arctic Ocean, Biogeosciences Discuss. 1–36, doi:10.5194/bg-2018-283, 2018.
2017
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Biogeochemical protocols and diagnostics for the CMIP6 Ocean Model Intercomparison Project (OMIP), Geosci. Model Dev. 10, 6, 2169–2199, doi:12.5194/gmd-10-2169-2017, 2017.
2016
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Coastal-ocean uptake of anthropogenic carbon, Biogeosciences 13, 14, 4167–4185, doi:10.5194/bg-13-4167-2016, 2016. [Link] [PDF]
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OMIP contribution to CMIP6: experimental and diagnostic protocol for the physical component of the Ocean Model Intercomparison Project, Geosci. Model Dev. 9, 3231–3296, doi:10.5194/gmd-9-3231-2016, 2016.
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Inconsistent strategies to spin up models in CMIP5: implications for ocean biogeochemical model performance assessment, Geosci. Model Dev. 9, 1827–1851, doi:10.5194/gmd-9-1827-2016, 2016.
2015
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Improved routines to model the ocean carbonate system: mocsy 2.0, Geosci. Model Dev. 8, 485–499, doi:10.5194/gmd-8-485-2015, 2015. [Code]
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Comparison of ten packages that compute ocean carbonate chemistry, Biogeosciences 12, 1483-1510, doi:10.5194/bg-12-1483-2015, 2015.
2014
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Projected pH reductions by 2100 might put deep North Atlantic biodiversity at risk, Biogeosciences 11, 23, 6955-6967, doi:10.5194/bg-11-6955-2014, 2014.
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Exposure of Mediterranean countries to ocean acidification, Water 6, 6, 1719-1744, doi:10.3390/w6061719, 2014.
2013
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Multiple stressors of ocean ecosystems in the 21st century: projections with CMIP5 models, Biogeosciences 10, 10, 6225–6245, doi:10.5194/bg-10-6225-2013, 2013.
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Oxygen and indicators of stress for marine life in multi-model global warming projections, Biogeosciences 10, 3, 1849–1868, doi:10.5194/bg-10-1849-2013, 2013.
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Eddy compensation and controls of the enhanced sea-to-air CO2 flux during positive phases of the Southern Annular Mode, Global Biogeochem. Cycles 27, 950–961, doi:10.1002/gbc.20090, 2013.
2012
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Standing and Transient Eddies in the Response of the Southern Ocean Meridional Overturning to the Southern Annular Mode, J. Climate 25, 6958–6974, doi:10.1175/JCLI-D-11-00309.1, 2012.
2011
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Recent and future changes in ocean carbonate chemistry, In: Gattuso, J.-P. and Hansson, L. (eds.), Ocean Acidification, Oxford Univ. Press, 41–66, 2011. [Link]
2010
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EPOCA/EUR-OCEANS data compilation on the biological and biogeochemical responses to ocean acidification, Earth System Science Data 2, 2, 167–175, doi:10.5194/essd-2-167-2010, 2010.
2009
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On the role of mesoscale eddies in the ventilation of Antarctic intermediate water, Deep-Sea Res. Part I Oceanogr. Res. Pap. 56, 6, 909–925, doi:10.1016/j.dsr.2009.01.013, 2009.
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Seasonal and mesoscale variability of oceanic transport of anthropogenic CO2, Biogeosciences 6, 11, 2509–2523, doi:10.5194/bg-6-2509-2009, 2009.
2008
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Impacts of ocean acidification on marine fauna and ecosystem processes, ICES J. Mar. Sci. 65, 3, 414, doi:10.1093/icesjms/fsn048, 2008.
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Present and future changes in seawater chemistry due to ocean acidification, AGU Monograph on “The Science and Technology of Carbon Sequestration” doi:10.1029/2005GM000337, 2008.
2007
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Comment on “Modern-age buildup of CO_2 and its effects on seawater acidity and salinity” by Hugo A. Loáiciga, Geophys. Res. Lett. 34, 18, L18608, doi:10.1029/2006GL027288, 2007.
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Effects of mesoscale eddies on global ocean distributions of CFC-11, CO2, and ∆14C, Ocean Sci. 3, 4, 461–482, doi:10.5194/os-3-461-2007, 2007.
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On evaluating ocean models with atmospheric potential oxygen, Tellus B 59, 1, 138–156, doi:10.1111/j.1600-0889.2006.00242.x, 2007.
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Impact of circulation on export production, dissolved organic matter, and dissolved oxygen in the ocean: Results from Phase II of the Ocean Carbon-cycle Model Intercomparison Project (OCMIP-2), Global Biogeochem. Cycles 21, 3, GB3007, doi:10.1029/2006GB002857, 2007.
2006
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Will human-induced changes in seawater chemistry alter the distribution of deep-sea scleractinian corals, Front. Ecol. Environ. 4, 3, 141–146, doi:10.1890/1540-9295(2006)004[0141:WHCISC]2.0.CO;2, 2006.
2005
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Anthropogenic ocean acidification over the twenty-first century and its impact on calcifying organisms, Nature 437, 681–686, doi:10.1038/nature04095, 2005. [PDF]
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The Ocean in a High-CO_2 World: An Introduction, J. Geophys. Res. 110, C09S01, doi:10.1029/2005JC003086, 2005.
2004
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The Ocean in a High CO_2 World, EOS Transactions 85, 37, 351, 2004.
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Meeting Report: The Ocean in a High CO_2 World, Oceanography 17, 3, 73–78, doi:10.5670/oceanog.2004.35, 2004.
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Evaluating Global Ocean Carbon Models: The Importance of Realistic Physics, Global Biogeochem. Cycles 18, 3, GB3017, doi:10.1029/2003GB002150, 2004.
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Evaluation of OCMIP-2 ocean models’ deep circulation with mantle helium-3, J. Mar. Systems 48, 1–4, 15–36, doi:10.1016/j.jmarsys.2003.05.010, 2004.
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Evaluation of ocean carbon cycle models with data-based metrics, Geophys. Res. Lett. 31, 7, L07303, doi:10.1029/2003GL018970, 2004.
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Radiocarbon as a thermocline proxy for the eastern equatorial Pacific, Geophys. Res. Lett. 31, L14314, doi:10.1029/2004GL019764, 2004.
2003
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Propagation of climatic events on ocean stratification, marine biology, and CO2: Case studies over the 1979–1999 period, J. Geophys. Res. 108, 12, 1479, doi:10.1029/2003GL016867, 2003.
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Carbon dioxide fluxes in the global ocean, In: M. Fasham, J. Field, T. Platt and Zeitzschel, B. (eds.), Ocean Biogeochemistry: the Role of the Ocean Carbon Cycle in Global Change (a JGOFS Synthesis), Springer, Berlin, 123–141, doi:10.1007/978-3-642-55844-3_6, 2003.
2002
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Evaluation of ocean model ventilation with CFC-11: Comparison of 13 global ocean models, Ocean Model. 4, 2, 89-120, doi:10.1016/S1463-5003(01)00013-0, 2002.
2001
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Riverine-driven interhemispheric transport of carbon, Global Biogeochem. Cycles 15, 2, 393-405, doi:10.1029/1999GB001238, 2001.
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Potential impact of climate change of marine export production, Global Biogeochem. Cycles 15, 1, 81–99, doi:10.1029/1999GB001256, 2001.
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Positive feedback between future climate change and the carbon cycle, Geophys. Res. Lett. 28, 8, 1543–1546, doi:10.1029/2000GL012015, 2001.
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Estimates of anthropogenic carbon uptake from four three-dimensionsal global ocean models, Global Biogeochem. Cycles 15, 1, 43–60, doi:10.1029/2000GB001273, 2001.
2000
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Interannual variability of the oceanic sink of CO2 from 1979 to 1997, Global Biogeochem. Cycles 14, 4, 1247–1265, doi:10.1029/1999GB900049, 2000.
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Sea-air CO2 fluxes and carbon transport: A comparison of three ocean general circulation models, Global Biogeochem. Cycles 14, 4, 1267–1281, doi:10.1029/1999GB900062, 2000.
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The natural latitudinal distribution of atmospheric CO2, Global and Planetary Change 26, 4, doi:10.1016/S0921-8181(00)00050-3, 2000.
1999
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Nutrient trapping in the equatorial Pacific: the ocean circulation solution, Global Biogeochem. Cycles 13, 351-370, doi:10.1029/1998GB900012, 1999.
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On ocean carbon-cycle model comparison, Tellus 51B, 509-510, doi:10.3402/tellusb.v51i2.16334, 1999. [PDF]
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Ocean circulation and the Ocean Carbon-Cycle Model Intercomparison Project, International WOCE Newsletter 35, 24-25, 1999. [PDF]
1998
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Design of OCMIP-2 simulations of chlorofluorocarbons, the solubility pump and common biogeochemistry, Internal OCMIP Report, LSCE/CEA Saclay, Gif-sur-Yvette, France 1998. [Link]
1997
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Ocean carbon transport in a box-diffusion versus a general circulation model, J. Geophys. Res. 102, C6, 12367–12388, doi:10.1029/97JC00470, 1997.
1996
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The Ocean Carbon-Cycle Intercomparison Project of IGBP/GAIM, In: Ormerod, W. (eds.), Ocean Storage of Carbon Dioxide: , Workshop 3 – International Links and Concerns, CRE Group Ltd., Cheltenham GL52 4RZ, UK, 33–52, 1996.
1993
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A method for rapid in situ extraction and laboratory determination of Th, Pb, and Ra isotopes from large volumes of seawater, DSR1 40, 4, 849-865, doi:10.1016/0967-0637(93)90075-E, 1993.
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Land and water interface zones, Water, Air, Soil Pollut. 70, 1-4, 123–137, doi:10.1007/bf01104992, 1993.
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Accord between ocean models predicting uptake of anthropogenic CO2, Water, Air, Soil Pollut. 70, 465–481, doi:10.1007/BF01105016, 1993.
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Summary of Workshop on Dissolved Organic Carbon in the Ocean, The Global Carbon Cycle, NATO ASI Series (Series I: Global Environmental Change), vol 15, Springer, 583–584, doi:10.1007/978-3-642-84608-3_26, 1993.
1992
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Potential of marine macroalgae as a sink for CO2: constraints from a 3-D general circulation model of the global ocean, Water, Air, Soil Pollut. 64, 405–421, doi:10.1007/BF00477113, 1992.
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A perturbation simulation of CO2 uptake in an ocean general circulation model, J. Geophys. Res. 97, 3621-3645, doi:10.1029/91JC02849, 1992.
1991
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Three-dimensional simulations of the impact of Southern Ocean nutrient depletion on atmospheric CO2 and ocean chemistry, Limnology & Oceanography 36, 8, 1928-1950, doi:10.4319/lo.1991.36.8.1928, 1991.
1988
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Evaluation of counting methods for oceanic radium-228, J. Geophys. Res. 93, C7, 8265–8278, doi:10.1029/JC093iC07p08265, 1988.
1985
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222Rn surpluses in warm-core rings, J. Geophys. Res. 90, C5, 8903–8916, doi:10.1029/JC090iC05p08903, 1985.