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From:Earth System Science Data (Vol. 14, Issue 4) Peer-ReviewedAccurate assessment of anthropogenic carbon dioxide (CO.sub.2) emissions and their redistribution among the atmosphere, ocean, and terrestrial biosphere in a changing climate is critical to better understand the global...
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From:Geoscientific Model Development (Vol. 15, Issue 3) Peer-ReviewedRegional land carbon budgets provide insights into the spatial distribution of the land uptake of atmospheric carbon dioxide and can be used to evaluate carbon cycle models and to define baselines for land-based...
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From:Earth System Science Data (Vol. 13, Issue 11) Peer-ReviewedTo track progress towards keeping global warming well below 2 .sup." C or even 1.5 .sup." C, as agreed in the Paris Agreement, comprehensive up-to-date and reliable information on anthropogenic emissions and removals of...
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From:Earth System Science Data (Vol. 10, Issue 4) Peer-Reviewed
Accurate assessment of anthropogenic carbon dioxide (CO.sub.2) emissions and their redistribution among the atmosphere, ocean, and terrestrial biosphere - the "global carbon budget" - is important to better...
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From:Atmospheric Chemistry and Physics (Vol. 17, Issue 18) Peer-ReviewedFollowing the recent Global Carbon Project (GCP) synthesis of the decadal methane (CH.sub.4) budget over 2000-2012 (Saunois et al., 2016), we analyse here the same dataset with a focus on quasi-decadal and inter-annual...
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From:Earth System Science Data (Vol. 12, Issue 3) Peer-ReviewedUnderstanding and quantifying the global methane (CH.sub.4) budget is important for assessing realistic pathways to mitigate climate change. Atmospheric emissions and concentrations of CH.sub.4 continue to increase,...
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From:Geoscientific Model Development (Vol. 13, Issue 8) Peer-ReviewedAnthropogenic increases in atmospheric greenhouse gas concentrations are the main driver of current and future climate change. The integrated assessment community has quantified anthropogenic emissions for the shared...
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From:Proceedings of the National Academy of Sciences of the United States (Vol. 104, Issue 24) Peer-ReviewedAbstract Only
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From:Earth System Science Data (Vol. 12, Issue 4) Peer-ReviewedAccurate assessment of anthropogenic carbon dioxide (CO.sub.2) emissions and their redistribution among the atmosphere, ocean, and terrestrial biosphere in a changing climate - the "global carbon budget" - is important...
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From:Proceedings of the National Academy of Sciences of the United States (Vol. 104, Issue 47) Peer-ReviewedAbstract Only
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From:Atmospheric Chemistry and Physics (Vol. 20, Issue 15) Peer-ReviewedThe hydroxyl radical (OH), which is the dominant sink of methane (CH.sub.4 ), plays a key role in closing the global methane budget. Current top-down estimates of the global and regional CH.sub.4 budget using 3D models...
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From:Bulletin of the American Meteorological Society (Vol. 99, Issue 6) Peer-ReviewedABSTRACT Nitrous oxide ([N.sub.2]O) is an important greenhouse gas and also an ozone-depleting substance that has both natural and anthropogenic sources. Large estimation uncertainty remains on the magnitude and...
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From:Geoscientific Model Development (Vol. 11, Issue 7) Peer-Reviewed
The Community Atmosphere-Biosphere Land Exchange model (CABLE) is a land surface model (LSM) that can be applied stand-alone and provides the land surface-atmosphere exchange within the Australian Community Climate...
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From:BioScience (Vol. 58, Issue 8) Peer-ReviewedThawing permafrost and the resulting microbial decomposition of previously frozen organic carbon (C) is one of the most significant potential feedbacks from terrestrial ecosystems to the atmosphere in a changing...
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From:Proceedings of the National Academy of Sciences of the United States (Vol. 110, Issue 32) Peer-ReviewedAbstract Only
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From:Nature (Vol. 509, Issue 7502) Peer-ReviewedThe land and ocean act as a sink for fossil-fuel emissions, thereby slowing the rise of atmospheric carbon dioxide concentrations (1). Although the uptake of carbon by oceanic and terrestrial processes has kept pace...