Trends and drivers of regional sources and sinks of carbon dioxide over the past two decades
暂无分享,去创建一个
Corinne Le Quéré | M. Lomas | G. Bonan | J. Canadell | A. Arneth | P. Ciais | C. Heinze | B. Poulter | P. Friedlingstein | S. Doney | R. Myneni | S. Piao | S. Sitch | S. Levis | L. Bopp | F. Chevallier | P. Levy | N. Viovy | N. Zeng | P. Peylin | M. Gloor | Zaichun Zhu | R. Ellis | C. Huntingford | N. Gruber | A. Ahlström | G. Murray-Tortarolo | S. Jones | S. Zaehle | H. Graven | Benjamin Smith | Guillermo N. Murray-Tortarolo
[1] Atul K. Jain,et al. Evaluation of 11 terrestrial carbon–nitrogen cycle models against observations from two temperate Free-Air CO2 Enrichment studies , 2014, The New phytologist.
[2] S. Seneviratne,et al. Climate extremes and the carbon cycle , 2013, Nature.
[3] M. Lomas,et al. Evaluation of terrestrial carbon cycle models for their response to climate variability and to CO2 trends , 2013, Global change biology.
[4] Sönke Zaehle,et al. Towards a more objective evaluation of modelled land-carbon trends using atmospheric CO 2 and satellite-based vegetation activity observations , 2013 .
[5] Galen A. McKinley,et al. Global trends in surface ocean pCO2 from in situ data , 2013 .
[6] S. Doney,et al. An assessment of the Atlantic and Arctic sea–air CO2 fluxes, 1990–2009 , 2013 .
[7] Benjamin Smith,et al. Guess the impact of Ips typographus—An ecosystem modelling approach for simulating spruce bark beetle outbreaks , 2012 .
[8] Benjamin Smith,et al. Implementing storm damage in a dynamic vegetation model for regional applications in Sweden , 2012 .
[9] Ranga B. Myneni,et al. Recent trends in Inner Asian forest dynamics to temperature and precipitation indicate high sensitivity to climate change , 2012 .
[10] Philippe Ciais,et al. A framework for benchmarking land models , 2012 .
[11] N. Gruber,et al. Changing controls on oceanic radiocarbon: New insights on shallow‐to‐deep ocean exchange and anthropogenic CO2 uptake , 2012 .
[12] R. Matear,et al. The non-steady state oceanic CO 2 signal: its importance, magnitude and a novel way to detect it , 2012 .
[13] Yong Geng,et al. The gigatonne gap in China’s carbon dioxide inventories , 2012 .
[14] Taro Takahashi,et al. Global ocean carbon uptake: magnitude, variability and trends , 2012 .
[15] J. B. Miller,et al. Increase in observed net carbon dioxide uptake by land and oceans during the past 50 years , 2012, Nature.
[16] Scott C. Doney,et al. Global ocean storage of anthropogenic carbon , 2012 .
[17] Gab Abramowitz,et al. Towards a public, standardized, diagnostic benchmarking system for land surface models , 2012 .
[18] P. Ciais,et al. Archived Version from Ncdocks Institutional Repository a Synthesis of Carbon Dioxide Emissions from Fossil-fuel Combustion Title: a Synthesis of Carbon Dioxide Emissions from Fossil-fuel Combustion a Synthesis of Carbon Dioxide Emissions from Fossil-fuel Combustion , 2022 .
[19] David Medvigy,et al. Identification and characterization of abrupt changes in the land uptake of carbon , 2012 .
[20] James C. McWilliams,et al. Eddy-induced reduction of biological production in eastern boundary upwelling systems , 2011 .
[21] Scott J. Goetz,et al. Satellite observations of high northern latitude vegetation productivity changes between 1982 and 2008: ecological variability and regional differences , 2011 .
[22] Sönke Zaehle,et al. Carbon–nitrogen interactions on land at global scales: current understanding in modelling climate biosphere feedbacks , 2011 .
[23] Peter R. Gent,et al. Response to Increasing Southern Hemisphere Winds in CCSM4 , 2011 .
[24] P. Cox,et al. The Joint UK Land Environment Simulator (JULES), model description – Part 2: Carbon fluxes and vegetation dynamics , 2011 .
[25] Taro Takahashi,et al. Convergence of atmospheric and North Atlantic carbon dioxide trends on multidecadal timescales , 2011 .
[26] S. Higgins,et al. TRY – a global database of plant traits , 2011, Global Change Biology.
[27] R. B. Jackson,et al. A Large and Persistent Carbon Sink in the World’s Forests , 2011, Science.
[28] Niklaus E. Zimmermann,et al. Impacts of land cover and climate data selection on understanding terrestrial carbon dynamics and the CO 2 airborne fraction , 2011 .
[29] S. Seneviratne,et al. Drought and ecosystem carbon cycling , 2011 .
[30] N. Viovy,et al. Impact of tropospheric ozone on the Euro‐Mediterranean vegetation , 2011 .
[31] Nicolas Gruber,et al. Warming up, turning sour, losing breath: ocean biogeochemistry under global change , 2011, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[32] F. Joos,et al. Regional Impacts of Climate Change and Atmospheric CO2on Future Ocean Carbon Uptake: A Multimodel Linear Feedback Analysis , 2011 .
[33] P. Boyd. Beyond ocean acidification , 2011 .
[34] J. Thepaut,et al. The ERA‐Interim reanalysis: configuration and performance of the data assimilation system , 2011 .
[35] Corinne Le Quéré,et al. An international effort to quantify regional carbon fluxes , 2011 .
[36] Deborah K. Smith,et al. A Cross-calibrated, Multiplatform Ocean Surface Wind Velocity Product for Meteorological and Oceanographic Applications , 2011 .
[37] N. McDowell,et al. Mechanisms Linking Drought, Hydraulics, Carbon Metabolism, and Vegetation Mortality1[W] , 2011, Plant Physiology.
[38] D. Lawrence,et al. Parameterization improvements and functional and structural advances in Version 4 of the Community Land Model , 2011 .
[39] E. Buitenhuis,et al. Biogeochemical fluxes through microzooplankton , 2010 .
[40] C. Rödenbeck,et al. Impact of climate change and variability on the global oceanic sink of CO2 , 2010 .
[41] Philippe Ciais,et al. Update on CO2 emissions , 2010 .
[42] A. Olsen,et al. The Nordic Seas carbon budget: Sources, sinks, and uncertainties , 2010 .
[43] Fabienne Maignan,et al. CO2 surface fluxes at grid point scale estimated from a global 21 year reanalysis of atmospheric measurements , 2010 .
[44] S. Los,et al. A comprehensive set of benchmark tests for a land surface model of simultaneous fluxes of water and carbon at both the global and seasonal scale , 2010 .
[45] C. Tucker,et al. Circumpolar Arctic Tundra Vegetation Change Is Linked to Sea Ice Decline , 2010 .
[46] Stephen Sitch,et al. Multiple mechanisms of Amazonian forest biomass losses in three dynamic global vegetation models under climate change. , 2010, The New phytologist.
[47] K. Assmann,et al. Anthropogenic carbon dynamics in the changing ocean , 2010 .
[48] P. Ciais,et al. Benchmarking coupled climate‐carbon models against long‐term atmospheric CO2 measurements , 2010 .
[49] Gordon B. Bonan,et al. Quantifying carbon‐nitrogen feedbacks in the Community Land Model (CLM4) , 2010 .
[50] Andrew D. Friend,et al. Carbon and nitrogen cycle dynamics in the O‐CN land surface model: 1. Model description, site‐scale evaluation, and sensitivity to parameter estimates , 2010 .
[51] N. McDowell,et al. A global overview of drought and heat-induced tree mortality reveals emerging climate change risks for forests , 2010 .
[52] R. Houghton,et al. How well do we know the flux of CO2 from land-use change? , 2010 .
[53] R. McMurtrie,et al. CO2 enhancement of forest productivity constrained by limited nitrogen availability , 2009, Proceedings of the National Academy of Sciences.
[54] J. Randerson,et al. Technical Description of version 4.0 of the Community Land Model (CLM) , 2010 .
[55] P. Ciais,et al. Spatiotemporal patterns of terrestrial carbon cycle during the 20th century , 2009 .
[56] Corinne Le Quéré,et al. Trends in the sources and sinks of carbon dioxide , 2009 .
[57] Nicolas Gruber,et al. Trends and regional distributions of land and ocean carbon sinks , 2009 .
[58] J. Randerson,et al. Carbon-nitrogen interactions regulate climate-carbon cycle feedbacks: results from an atmosphere-ocean general circulation model , 2009 .
[59] S. Zaehle,et al. Improved understanding of drought controls on seasonal variation in Mediterranean forest canopy CO2 and water fluxes through combined in situ measurements and ecosystem modelling. , 2009 .
[60] Christoph Heinze,et al. An isopycnic ocean carbon cycle model , 2009 .
[61] P. Cox,et al. Impact of changes in diffuse radiation on the global land carbon sink , 2009, Nature.
[62] Philippe Ciais,et al. The carbon balance of terrestrial ecosystems in China , 2009, Nature.
[63] K. Lindsay,et al. Mechanisms governing interannual variability in upper-ocean inorganic carbon system and air–sea CO2 fluxes: Physical climate and atmospheric dust , 2009 .
[64] Taro Takahashi,et al. Oceanic sources, sinks, and transport of atmospheric CO2 , 2009 .
[65] Taro Takahashi,et al. Skill metrics for confronting global upper ocean ecosystem-biogeochemistry models against field and remote sensing data , 2009 .
[66] Sean C. Thomas,et al. Increasing carbon storage in intact African tropical forests , 2009, Nature.
[67] S. Lewis,et al. Changing Ecology of Tropical Forests: Evidence and Drivers , 2009 .
[68] Mathias Disney,et al. Impact of land cover uncertainties on estimates of biospheric carbon fluxes , 2008 .
[69] S. Rintoul,et al. The response of the Antarctic Circumpolar Current to recent climate change , 2008 .
[70] A. Lenton,et al. Impact of Historical Climate Change on the Southern Ocean Carbon Cycle , 2008 .
[71] I. C. Prentice,et al. Evaluation of the terrestrial carbon cycle, future plant geography and climate‐carbon cycle feedbacks using five Dynamic Global Vegetation Models (DGVMs) , 2008 .
[72] S. Doney,et al. Toward a mechanistic understanding of the decadal trends in the Southern Ocean carbon sink , 2008 .
[73] Benjamin Smith,et al. Representation of vegetation dynamics in the modelling of terrestrial ecosystems: comparing two contrasting approaches within European climate space , 2008 .
[74] N. McDowell,et al. Mechanisms of plant survival and mortality during drought: why do some plants survive while others succumb to drought? , 2008, The New phytologist.
[75] Peter E. Thornton,et al. Influence of carbon‐nitrogen cycle coupling on land model response to CO2 fertilization and climate variability , 2007 .
[76] Markus Reichstein,et al. Uncertainties of modeling gross primary productivity over Europe: A systematic study on the effects of using different drivers and terrestrial biosphere models , 2007 .
[77] R. Dickinson,et al. Couplings between changes in the climate system and biogeochemistry , 2007 .
[78] Philippe Ciais,et al. Growing season extension and its impact on terrestrial carbon cycle in the Northern Hemisphere over the past 2 decades , 2007 .
[79] C. Huntingford,et al. Indirect radiative forcing of climate change through ozone effects on the land-carbon sink , 2007, Nature.
[80] G. Hegerl,et al. Detection of human influence on twentieth-century precipitation trends , 2007, Nature.
[81] Philippe Ciais,et al. Weak Northern and Strong Tropical Land Carbon Uptake from Vertical Profiles of Atmospheric CO2 , 2007, Science.
[82] M. Levasseur,et al. Ocean Biogeochemical Dynamics , 2007 .
[83] S. Doney,et al. Enhanced CO2 outgassing in the Southern Ocean from a positive phase of the Southern Annular Mode , 2007 .
[84] C. Sweeney,et al. Constraining global air‐sea gas exchange for CO2 with recent bomb 14C measurements , 2007 .
[85] Inez Y. Fung,et al. The changing carbon cycle at Mauna Loa Observatory , 2007, Proceedings of the National Academy of Sciences.
[86] Josep G. Canadell,et al. Terrestrial Ecosystems in a Changing World , 2007 .
[87] Will Steffen,et al. Saturation of the terrestrial carbon sink , 2007 .
[88] Taro Takahashi,et al. Constraints on the Global Atmospheric CO 2 Budget , 2007 .
[89] P. Ciais,et al. Effect of climate and CO2 changes on the greening of the Northern Hemisphere over the past two decades , 2006 .
[90] Benjamin Smith,et al. Implementing plant hydraulic architecture within the LPJ Dynamic Global Vegetation Model , 2006 .
[91] Corinne Le Quéré,et al. North Pacific carbon cycle response to climate variability on seasonal to decadal timescales , 2006 .
[92] L. Bopp,et al. Globalizing results from ocean in situ iron fertilization studies , 2006 .
[93] D Hauglustaine,et al. The global atmospheric environment for the next generation. , 2006, Environmental science & technology.
[94] K. Lindsay,et al. Inverse estimates of anthropogenic CO2 uptake, transport, and storage by the ocean , 2006 .
[95] Myles R. Allen,et al. Incorporating model uncertainty into attribution of observed temperature change , 2006 .
[96] R. Betts,et al. Detection of a direct carbon dioxide effect in continental river runoff records , 2006, Nature.
[97] R. Ceulemans,et al. Forest response to elevated CO2 is conserved across a broad range of productivity. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[98] P. Thornton,et al. Ecosystem model spin-up: Estimating steady state conditions in a coupled terrestrial carbon and nitrogen cycle model , 2005 .
[99] Andrew J. Watson,et al. Ecosystem dynamics based on plankton functional types for global ocean biogeochemistry models , 2005 .
[100] D. Stone,et al. Attribution studies of observed land precipitation changes with nine coupled models , 2005 .
[101] K. Matsumoto,et al. How accurate is the estimation of anthropogenic carbon in the ocean? An evaluation of the ΔC* method , 2005 .
[102] C J Tucker,et al. Drier summers cancel out the CO2 uptake enhancement induced by warmer springs. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[103] Atul K. Jain,et al. Modeling the effects of two different land cover change data sets on the carbon stocks of plants and soils in concert with CO2 and climate change , 2005 .
[104] Jeffrey A. Hicke,et al. NCEP and GISS solar radiation data sets available for ecosystem modeling: Description, differences, and impacts on net primary production , 2005 .
[105] I. C. Prentice,et al. A dynamic global vegetation model for studies of the coupled atmosphere‐biosphere system , 2005 .
[106] A. Mariotti,et al. Terrestrial mechanisms of interannual CO2 variability , 2005 .
[107] F. Woodward,et al. Vegetation dynamics – simulating responses to climatic change , 2004, Biological reviews of the Cambridge Philosophical Society.
[108] Nicolas Gruber,et al. The Oceanic Sink for Anthropogenic CO2 , 2004, Science.
[109] Andrew D. Friend,et al. Modelling the impact of future changes in climate, CO2 concentration and land use on natural ecosystems and the terrestrial carbon sink , 2004 .
[110] A. Di Fiore,et al. Increasing biomass in Amazonian forest plots. , 2004, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[111] Stephen G. Yeager,et al. Diurnal to decadal global forcing for ocean and sea-ice models: The data sets and flux climatologies , 2004 .
[112] P. Stott,et al. Estimating signal amplitudes in optimal fingerprinting, part I: theory , 2003 .
[113] Pete Smith,et al. Europe's Terrestrial Biosphere Absorbs 7 to 12% of European Anthropogenic CO2 Emissions , 2003, Science.
[114] C. Tucker,et al. Climate-Driven Increases in Global Terrestrial Net Primary Production from 1982 to 1999 , 2003, Science.
[115] Myles R. Allen,et al. Estimating signal amplitudes in optimal fingerprinting. Part II: application to general circulation models , 2003 .
[116] I. C. Prentice,et al. Evaluation of ecosystem dynamics, plant geography and terrestrial carbon cycling in the LPJ dynamic global vegetation model , 2003 .
[117] NingZENG. Glacial-Interglacial Atmospheric CO2 Change—The Glacial Burial Hypothesis , 2003 .
[118] S. Doney,et al. The Impact of Climate Change and Feedback Processes on the Ocean Carbon Cycle , 2003 .
[119] A. Guenther. The contribution of reactive carbon emissions from vegetation to the carbon balance of terrestrial ecosystems. , 2002, Chemosphere.
[120] J. Townshend,et al. Carbon emissions from tropical deforestation and regrowth based on satellite observations for the 1980s and 1990s , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[121] J. Sarmiento,et al. Sinks for Anthropogenic Carbon , 2002 .
[122] C. Tucker,et al. Higher northern latitude normalized difference vegetation index and growing season trends from 1982 to 1999 , 2001, International journal of biometeorology.
[123] P. Ciais,et al. Consistent Land- and Atmosphere-Based U.S. Carbon Sink Estimates , 2001, Science.
[124] Robert J. Scholes,et al. The Carbon Cycle and Atmospheric Carbon Dioxide , 2001 .
[125] P. Jones,et al. Representing Twentieth-Century Space-Time Climate Variability. Part II: Development of 1901-96 Monthly Grids of Terrestrial Surface Climate , 2000 .
[126] P. Tans,et al. Global Carbon Sinks and Their Variability Inferred from Atmospheric O2 and δ13C , 2000 .
[127] Phillips,et al. Changes in the carbon balance of tropical forests: evidence from long-term plots , 1998, Science.
[128] Gloor,et al. A Large Terrestrial Carbon Sink in North America Implied by Atmospheric and Oceanic Carbon Dioxide Data and Models , 2022 .
[129] T. D. Dickey,et al. Influence of mesoscale eddies on new production in the Sargasso Sea , 1998, Nature.
[130] M. R. Allen,et al. Checking for model consistency in optimal fingerprinting , 1999 .
[131] C. Tucker,et al. Increased plant growth in the northern high latitudes from 1981 to 1991 , 1997, Nature.
[132] Thomas M. Smith,et al. A global land primary productivity and phytogeography model , 1995 .
[133] P. Ciais,et al. A Large Northern Hemisphere Terrestrial CO2 Sink Indicated by the 13C/12C Ratio of Atmospheric CO2 , 1995, Science.
[134] M. Wahlen,et al. Interannual extremes in the rate of rise of atmospheric carbon dioxide since 1980 , 1995, Nature.
[135] R. Wanninkhof. Relationship between wind speed and gas exchange over the ocean , 1992 .
[136] P. Falkowski,et al. Role of eddy pumping in enhancing primary production in the ocean , 1991, Nature.
[137] Robert W. Howarth,et al. Nitrogen limitation on land and in the sea: How can it occur? , 1991 .
[138] I. Fung,et al. Observational Contrains on the Global Atmospheric Co2 Budget , 1990, Science.
[139] W. Broecker,et al. The distribution of bomb radiocarbon in the ocean , 1985 .
[140] R. Bacastow,et al. Modulation of atmospheric carbon dioxide by the Southern Oscillation , 1976, Nature.