Atmospheric observations inform CO2 flux responses to enviroclimatic drivers
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[1] Vineet Yadav,et al. Using atmospheric observations to evaluate the spatiotemporal variability of CO 2 fluxes simulated by terrestrial biospheric models , 2014 .
[2] Dylan B. A. Jones,et al. Terrestrial gross primary production inferred from satellite fluorescence and vegetation models , 2014, Global change biology.
[3] A. Michalak,et al. Detecting fossil fuel emissions patterns from subcontinental regions using North American in situ CO2 measurements , 2014, Geophysical research letters.
[4] M. Nilsson,et al. A 12-year record reveals pre-growing season temperature and water table level threshold effects on the net carbon dioxide exchange in a boreal fen , 2014 .
[5] M. S. Moran,et al. Global and time-resolved monitoring of crop photosynthesis with chlorophyll fluorescence , 2014, Proceedings of the National Academy of Sciences.
[6] Steven W. Running,et al. Comparison of Gross Primary Productivity Derived from GIMMS NDVI3g, GIMMS, and MODIS in Southeast Asia , 2014, Remote. Sens..
[7] P. M. Lang,et al. CO 2 , CO, and CH 4 measurements from tall towers in the NOAA Earth System Research Laboratory's Global Greenhouse Gas Reference Network: instrumentation, uncertainty analysis, and recommendations for future high-accuracy greenhouse gas monitoring efforts , 2014 .
[8] Ranga B. Myneni,et al. A two-fold increase of carbon cycle sensitivity to tropical temperature variations , 2014, Nature.
[9] B. Wylie,et al. Influence of management and precipitation on carbon fluxes in great plains grasslands , 2013 .
[10] Maximilian Reuter,et al. Terrestrial carbon sink observed from space: variation of growth rates and seasonal cycle amplitudes in response to interannual surface temperature variability , 2013 .
[11] J. Canadell,et al. Variations in atmospheric CO2 growth rates coupled with tropical temperature , 2013, Proceedings of the National Academy of Sciences.
[12] M. Lomas,et al. Evaluation of terrestrial carbon cycle models for their response to climate variability and to CO2 trends , 2013, Global change biology.
[13] C. Frankenberg,et al. Forest productivity and water stress in Amazonia: observations from GOSAT chlorophyll fluorescence , 2013, Proceedings of the Royal Society B: Biological Sciences.
[14] Liang Zhao,et al. Spatial patterns and climate drivers of carbon fluxes in terrestrial ecosystems of China , 2013, Global change biology.
[15] C. Frankenberg,et al. Remote sensing of terrestrial chlorophyll fluorescence from space , 2013 .
[16] P. Cox,et al. Sensitivity of tropical carbon to climate change constrained by carbon dioxide variability , 2013, Nature.
[17] Atul K. Jain,et al. A model-data comparison of gross primary productivity: Results from the North American Carbon Program site synthesis , 2012 .
[18] Atul K. Jain,et al. North American Carbon Program (NACP) regional interim synthesis: Terrestrial biospheric model intercomparison , 2012 .
[19] Eric R. Crosson,et al. Field Testing of Cavity Ring-Down Spectroscopy Analyzers Measuring Carbon Dioxide and Water Vapor , 2012 .
[20] Y. Xue,et al. Terrestrial biosphere models need better representation of vegetation phenology: results from the North American Carbon Program Site Synthesis , 2012 .
[21] G. Ågren,et al. Terrestrial Ecosystem Ecology: Principles and Applications , 2012 .
[22] Natasha Miles,et al. Atmospheric CO 2 monitoring with single-cell NDIR-based analyzers , 2011 .
[23] R. Chimner,et al. Influence of grazing and precipitation on ecosystem carbon cycling in a mixed-grass prairie , 2011 .
[24] John C. Lin,et al. North American CO 2 exchange: inter-comparison of modeled estimates with results from a fine-scale atmospheric inversion , 2011 .
[25] R. McALLISTER. du Toit J, Kock J, Deutsch J and (eds): Wild Rangelands: Conserving Wildlife While Maintaining Livestock in Semi-arid Ecosystems , 2011 .
[26] D. Huntzinger,et al. A systematic approach for comparing modeled biospheric carbon fluxes across regional scales , 2011 .
[27] B. Law,et al. Sensitivity of a subregional scale atmospheric inverse CO2 modeling framework to boundary conditions , 2010 .
[28] E. Middleton,et al. First observations of global and seasonal terrestrial chlorophyll fluorescence from space , 2010 .
[29] Vineet Yadav,et al. A geostatistical synthesis study of factors affecting gross primary productivity in various ecosystems of North America , 2010 .
[30] Vineet Yadav,et al. Attributing the variability of eddy‐covariance CO2 flux measurements across temporal scales using geostatistical regression for a mixed northern hardwood forest , 2010 .
[31] T. A. Black,et al. A model‐data intercomparison of CO2 exchange across North America: Results from the North American Carbon Program site synthesis , 2010 .
[32] F. Woodward,et al. Terrestrial Gross Carbon Dioxide Uptake: Global Distribution and Covariation with Climate , 2010, Science.
[33] J. Randerson,et al. Climate control of terrestrial carbon exchange across biomes and continents , 2010 .
[34] Vineet Yadav,et al. Regional-scale geostatistical inverse modeling of North American CO 2 fluxes: a synthetic data study , 2009 .
[35] T. A. Black,et al. Soil CO2 efflux in contrasting boreal deciduous and coniferous stands and its contribution to the ecosystem carbon balance , 2009 .
[36] Anna M. Michalak,et al. Global monthly averaged CO2 fluxes recovered using a geostatistical inverse modeling approach: 1. Results using atmospheric measurements , 2008 .
[37] Kevin Schaefer,et al. Global monthly averaged CO2 fluxes recovered using a geostatistical inverse modeling approach: 2. Results including auxiliary environmental data , 2008 .
[38] A. Pitman,et al. Evaluating the Performance of Land Surface Models , 2008 .
[39] Sune Linder,et al. Response of soil surface CO2 flux in a boreal forest to ecosystem warming , 2008 .
[40] Scott D. Miller,et al. Seasonal drought stress in the Amazon: Reconciling models and observations , 2008 .
[41] William C. Skamarock,et al. A time-split nonhydrostatic atmospheric model for weather research and forecasting applications , 2008, J. Comput. Phys..
[42] D. Baldocchi. ‘Breathing’ of the terrestrial biosphere: lessons learned from a global network of carbon dioxide flux measurement systems , 2008 .
[43] M. Heimann,et al. Terrestrial ecosystem carbon dynamics and climate feedbacks , 2008, Nature.
[44] J. Randerson,et al. An atmospheric perspective on North American carbon dioxide exchange: CarbonTracker , 2007, Proceedings of the National Academy of Sciences.
[45] S. Wofsy,et al. Factors controlling CO2 exchange on timescales from hourly to decadal at Harvard Forest , 2007 .
[46] Natascha Kljun,et al. Climatic controls on the carbon and water balances of a boreal aspen forest, 1994–2003 , 2007 .
[47] H. Schmid,et al. Uncertainty of annual net ecosystem productivity estimated using eddy covariance flux measurements , 2006 .
[48] J. Randerson,et al. Interannual variability in global biomass burning emissions from 1997 to 2004 , 2006 .
[49] Takeshi Ise,et al. The global-scale temperature and moisture dependencies of soil organic carbon decomposition: an analysis using a mechanistic decomposition model , 2006 .
[50] David D. Parrish,et al. NORTH AMERICAN REGIONAL REANALYSIS , 2006 .
[51] A. Mariotti,et al. Terrestrial mechanisms of interannual CO2 variability , 2005 .
[52] I. C. Prentice,et al. A dynamic global vegetation model for studies of the coupled atmosphere‐biosphere system , 2005 .
[53] W. Pockman,et al. Precipitation pulses and carbon fluxes in semiarid and arid ecosystems , 2004, Oecologia.
[54] P. Tans,et al. A geostatistical approach to surface flux estimation of atmospheric trace gases , 2004 .
[55] Scott J. Goetz,et al. Remotely Sensed Interannual Variations and Trends in Terrestrial Net Primary Productivity 1981–2000 , 2004, Ecosystems.
[56] John C. Lin,et al. A near-field tool for simulating the upstream influence of atmospheric observations: The Stochastic Time-Inverted Lagrangian Transport (STILT) model , 2003 .
[57] Yiqi Luo,et al. Partitioning interannual variability in net ecosystem exchange between climatic variability and functional change. , 2003, Tree physiology.
[58] W. Oechel,et al. Environmental controls over carbon dioxide and water vapor exchange of terrestrial vegetation , 2002 .
[59] Hans Peter Schmid,et al. Measurements of CO2 and energy fluxes over a mixed hardwood forest in the mid-western United States , 2000 .
[60] J. Lloyd,et al. On the temperature dependence of soil respiration , 1994 .
[61] I. AgrenGoran,et al. Terrestrial Ecosystem Ecology , 2012 .
[62] D. Baldocchi,et al. Ecosystem CO2 fluxes of arbuscular and ectomycorrhizal dominated vegetation types are differentially influenced by precipitation and temperature. , 2010, The New phytologist.
[63] C. D. Keeling,et al. Atmospheric CO2 and 13CO2 Exchange with the Terrestrial Biosphere and Oceans from 1978 to 2000: Observations and Carbon Cycle Implications , 2005 .
[64] C. D. Keeling,et al. Atmospheric CO2 and 13CO2 Exchange with the Terrestrial Biosphere and Oceans from 1978 to 2000: Observations and Carbon Cycle Implications , 2005 .
[65] Hans Peter Schmid,et al. Measurements of CO 2 and energy fluxes over a mixed hardwood forest in the mid-western United States , 2000 .