Global Carbon Budget 2017

Глобальный углеродный бюджет 2017
Philippe Ciais, Thomas A. Boden, Glen P. Peters, Thomas Gasser, Benjamin Poulter, Arne Körtzinger, Frank J. Millero, Vivek K. Arora, Robert B. Jackson, Jörg Schwinger, Pierre Friedlingstein, G. C. Hurtt, Richard Betts, Hanqin Tian, Stephen Sitch, Laurent Bopp, Corinne Le Quéré, Andrew C. Manning, Pedro M. S. Monteiro, Benjamin D. Stocker, Kees Klein Goldewijk, R. A. Houghton, Francesco N. Tubiello, Nicolas Viovy, Sönke Zaehle, Pieter P. Tans, Josep G. Canadell, Nicolas Metzl, Guido R. van der Werf, Frédéric Chevallier, Nicolas Vuichard, Atul K. Jain, Etsushi Kato, Louise Chini, Anthony P. Walker, Christian Rödenbeck, Ralph F. Keeling, Andrew Watson, Tatiana Ilyina, Dorothée C. E. Bakker, Kim Currie, Ian Harris, Julia Pongratz, Judith Hauck, Gregor Rehder, Robbie M. Andrew, Leticia Barbero, Meike Becker, Vanessa Haverd, Jan Ivar Korsbakken, Peter Landschützer, Nathalie Lefèvre, Andrew Lenton, Sebastian Lienert, Danica Lombardozzi, David R. Munro, Julia E. M. S. Nabel, Shin‐Ichiro Nakaoka, Anna Peregon, Denis Pierrot, Roland Séférian, Bronte Tilbrook, A. Wiltshire, Yukihiro Nojiri, Ingrid T. Luijkx, Ingunn Skjelvan, Dan Zhu, Oliver Andrews, Catherine E Cosca, Jessica Cross, Christopher W Hunt, Markus Kautz, Ivan D. Lima, X. A. Padín, Benjamin Pfeil, Janet J. Reimer, Steven van Heuven
2018-03-12

atmospheric CO2 growth (GATM)fossil fuel and industry CO2 emissions (EFF)global carbon budgetland-use change emissions (ELUC)ocean and land CO2 sinks (SOCEAN, SLAND)
Abstract. Accurate assessment of anthropogenic carbon dioxide (CO2) emissions and their redistribution among the atmosphere, ocean, and terrestrial biosphere – the global carbon budget – is important to better understand the global carbon cycle, support the development of climate policies, and project future climate change. Here we describe data sets and methodology to quantify the five major components of the global carbon budget and their uncertainties. CO2 emissions from fossil fuels and industry (EFF) are based on energy statistics and cement production data, respectively, while emissions from land-use change (ELUC), mainly deforestation, are based on land-cover change data and bookkeeping models. The global atmospheric CO2 concentration is measured directly and its rate of growth (GATM) is computed from the annual changes in concentration. The ocean CO2 sink (SOCEAN) and terrestrial CO2 sink (SLAND) are estimated with global process models constrained by observations. The resulting carbon budget imbalance (BIM), the difference between the estimated total emissions and the estimated changes in the atmosphere, ocean, and terrestrial biosphere, is a measure of imperfect data and understanding of the contemporary carbon cycle. All uncertainties are reported as ±1σ. For the last decade available (2007–2016), EFF was 9.4 ± 0.5 GtC yr−1, ELUC 1.3 ± 0.7 GtC yr−1, GATM 4.7 ± 0.1 GtC yr−1, SOCEAN 2.4 ± 0.5 GtC yr−1, and SLAND 3.0 ± 0.8 GtC yr−1, with a budget imbalance BIM of 0.6 GtC yr−1 indicating overestimated emissions and/or underestimated sinks. For year 2016 alone, the growth in EFF was approximately zero and emissions remained at 9.9 ± 0.5 GtC yr−1. Also for 2016, ELUC was 1.3 ± 0.7 GtC yr−1, GATM was 6.1 ± 0.2 GtC yr−1, SOCEAN was 2.6 ± 0.5 GtC yr−1, and SLAND was 2.7 ± 1.0 GtC yr−1, with a small BIM of −0.3 GtC. GATM continued to be higher in 2016 compared to the past decade (2007–2016), reflecting in part the high fossil emissions and the small SLAND consistent with El Niño conditions. The global atmospheric CO2 concentration reached 402.8 ± 0.1 ppm averaged over 2016. For 2017, preliminary data for the first 6–9 months indicate a renewed growth in EFF of +2.0 % (range of 0.8 to 3.0 %) based on national emissions projections for China, USA, and India, and projections of gross domestic product (GDP) corrected for recent changes in the carbon intensity of the economy for the rest of the world. This living data update documents changes in the methods and data sets used in this new global carbon budget compared with previous publications of this data set (Le Quéré et al., 2016, 2015b, a, 2014, 2013). All results presented here can be downloaded from https://doi.org/10.18160/GCP-2017 (GCP, 2017).
1
Atmospheric CO2 averaged 402.8 ± 0.1 ppm in 2016, and preliminary 2017 data indicate EFF growth of +2.0% (range 0.8–3.0%) based on national projections and GDP-adjusted carbon intensity.
2
For 2007–2016 decade averages: EFF = 9.4 ± 0.5 GtC yr−1, ELUC = 1.3 ± 0.7 GtC yr−1, GATM = 4.7 ± 0.1 GtC yr−1, SOCEAN = 2.4 ± 0.5 GtC yr−1, SLAND = 3.0 ± 0.8 GtC yr−1.
3
For 2016: EFF = 9.9 ± 0.5 GtC yr−1 (no significant growth that year), ELUC = 1.3 ± 0.7 GtC yr−1, GATM = 6.1 ± 0.2 GtC yr−1, SOCEAN = 2.6 ± 0.5 GtC yr−1, SLAND = 2.7 ± 1.0 GtC yr−1, and BIM = −0.3 GtC.
4
Methodology and datasets are described to quantify five major global carbon budget components and their uncertainties: EFF, ELUC, GATM, SOCEAN, and SLAND.
5
The budget imbalance (BIM) for 2007–2016 is 0.6 GtC yr−1, indicating either overestimated emissions and/or underestimated sinks.

The global carbon budget (quantification of anthropogenic CO2 emissions and their redistribution among atmosphere, ocean, and terrestrial biosphere)

Quantification of the five major components (fossil fuel and industry emissions, land-use change emissions, atmospheric CO2 growth, ocean CO2 sink, terrestrial CO2 sink) and their uncertainties, and assessment of the budget imbalance

Publication Details
Publication Date
2018-03-12
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Authors
Philippe Ciais
Thomas A. Boden
Glen P. Peters
Thomas Gasser
Benjamin Poulter
Arne Körtzinger
Frank J. Millero
Vivek K. Arora
Robert B. Jackson
Jörg Schwinger
Pierre Friedlingstein
G. C. Hurtt
Richard Betts
Hanqin Tian
Stephen Sitch
Laurent Bopp
Corinne Le Quéré
Andrew C. Manning
Pedro M. S. Monteiro
Benjamin D. Stocker
Kees Klein Goldewijk
R. A. Houghton
Francesco N. Tubiello
Nicolas Viovy
Sönke Zaehle
Pieter P. Tans
Josep G. Canadell
Nicolas Metzl
Guido R. van der Werf
Frédéric Chevallier
Nicolas Vuichard
Atul K. Jain
Etsushi Kato
Louise Chini
Anthony P. Walker
Christian Rödenbeck
Ralph F. Keeling
Andrew Watson
Tatiana Ilyina
Dorothée C. E. Bakker
Kim Currie
Ian Harris
Julia Pongratz
Judith Hauck
Gregor Rehder
Robbie M. Andrew
Leticia Barbero
Meike Becker
Vanessa Haverd
Jan Ivar Korsbakken
Peter Landschützer
Nathalie Lefèvre
Andrew Lenton
Sebastian Lienert
Danica Lombardozzi
David R. Munro
Julia E. M. S. Nabel
Shin‐Ichiro Nakaoka
Anna Peregon
Denis Pierrot
Roland Séférian
Bronte Tilbrook
A. Wiltshire
Yukihiro Nojiri
Ingrid T. Luijkx
Ingunn Skjelvan
Dan Zhu
Oliver Andrews
Catherine E Cosca
Jessica Cross
Christopher W Hunt
Markus Kautz
Ivan D. Lima
X. A. Padín
Benjamin Pfeil
Janet J. Reimer
Steven van Heuven
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