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Global Carbon Budget 2021

delete2022-04-26
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OA
AI
P
Pierre Friedlingstein *
M
Matthew W. Jones
M
Michael O’Sullivan
R
Robbie M. Andrew
D
Dorothée C. E. Bakker
J
Judith Hauck
C
Corinne Le Quéré
G
Glen P. Peters
W
Wouter Peters
J
Julia Pongratz
S
Stephen Sitch
J
Josep G. Canadell
P
Philippe Ciais
R
Robert B. Jackson
S
Simone R. Alin
P
Peter Anthoni
N
Nicholas R. Bates
M
Meike Becker
N
Nicolas Bellouin
L
Laurent Bopp
T
Thi Tuyet Trang Chau
F
Frédéric Chevallier
L
Louise Chini
M
Margot Cronin
K
Kim Currie
B
Bertrand Decharme
L
Laique Djeutchouang
X
Xinyu Dou
W
Wiley Evans
R
Richard A. Feely
L
Liang Feng
T
Thomas Gasser
D
Dennis Gilfillan
T
Thanos Gkritzalis
G
Giacomo Grassi
L
Luke Gregor
N
Nicolas Gruber
Ö
Özgür Gürses
I
Ian Harris
R
R. A. Houghton
G
G. C. Hurtt
Y
Yosuke Iida
T
Tatiana Ilyina
I
Ingrid T. Luijkx
A
Atul K. Jain
S
S. D. M. Jones
K
Kato, Etsushi
D
Daniel Kennedy
K
Kees Klein Goldewijk
J
Jürgen Knauer
J
Jan Ivar Korsbakken
A
Arne Körtzinger
P
Peter Landschützer
S
Siv K. Lauvset
N
Nathalie Lefèvre
S
Sebastian Lienert
J
Junjie Liu
G
Gregg Marland
P
Patrick McGuire
J
Joe R. Melton
D
David R. Munro
J
Julia E. M. S. Nabel
S
Shin‐Ichiro Nakaoka
Y
Yosuke Niwa
T
Tsuneo Ono
D
Denis Pierrot
B
Benjamin Poulter
G
Gregor Rehder
L
Laure Resplandy
E
Eddy Robertson
C
Christian Rödenbeck
T
Thais M. Rosan
J
Jörg Schwinger
C
Clemens Schwingshackl
R
Roland Séférian
A
Adrienne J. Sutton
C
Colm Sweeney
T
Toste Tanhua
P
Pieter P. Tans
H
Hanqin Tian
B
Bronte Tilbrook
F
Francesco N. Tubiello
G
Guido R. van der Werf
N
Nicolas Vuichard
C
Chisato Wada
R
Rik Wanninkhof
A
Andrew Watson
D
David Willis
A
A. Wiltshire
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Wenping Yuan
C
Chao Yue
X
Xu Yue
S
Sönke Zaehle
J
Jiye Zeng
DOI:10.5194/essd-14-1917-2022delete
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Abstract

Abstract

En 中文
Accurate assessment of anthropogenic carbon dioxide (CO2) emissions and their redistribution among the atmosphere, ocean, and terrestrial biosphere in a changing climate is critical to better understand the global carbon cycle, support the development of climate policies, and project future climate change. Here we describe and synthesize datasets and methodology to quantify the five major components of the global carbon budget and their uncertainties. Fossil CO2 emissions (E-FOS) are based on energy statistics and cement production data, while emissions from land-use change (E-LUC), mainly deforestation, are based on land use and land-use change data and bookkeeping models. Atmospheric CO2 concentration is measured directly, and its growth rate (G(ATM)) is computed from the annual changes in concentration. The ocean CO2 sink (S-OCEAN) is estimated with global ocean biogeochemistry models and observation-based data products. The terrestrial CO2 sink (S-LAND) is estimated with dynamic global vegetation models. The resulting carbon budget imbalance (B-IM), 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 +/- 1 sigma. For the first time, an approach is shown to reconcile the difference in our E-LUC estimate with the one from national greenhouse gas inventories, supporting the assessment of collective countries' climate progress. For the year 2020, E-FOS declined by 5.4 % relative to 2019, with fossil emissions at 9.5 +/- 0.5 GtC yr(-1) (9.3 +/- 0.5 GtC yr(-1) when the cement carbonation sink is included), and E-LUC was 0.9 +/- 0.7 GtC yr(-1), for a total anthropogenic CO2 emission of 10.2 +/- 0.8 GtC yr(-1) (37.4 +/- 2.9 GtCO(2)). Also, for 2020, G(ATM) was 5.0 +/- 0.2 GtC yr-1 (2.4 +/- 0.1 ppm yr(-1)), S-OCEAN was 3.0 +/- 0.4 GtC yr(-1), and S-LAND was 2.9 +/- 1 GtC yr(-1), with a B-IM of -0.8 GtC yr(-1). The global atmospheric CO2 concentration averaged over 2020 reached 412.45 +/- 0.1 ppm. Preliminary data for 2021 suggest a rebound in E-FOS relative to 2020 of +4.8 % (4.2 % to 5.4 %) globally. Overall, the mean and trend in the components of the global carbon budget are consistently estimated over the period 1959-2020, but discrepancies of up to 1 GtC yr(-1) persist for the representation of annual to semi-decadal variability in CO2 fluxes. Comparison of estimates from multiple approaches and observations shows (1) a persistent large uncertainty in the estimate of land-use changes emissions, (2) a low agreement between the different methods on the magnitude of the land CO2 flux in the northern extra-tropics, and (3) a discrepancy between the different methods on the strength of the ocean sink over the last decade. This living data update documents changes in the methods and datasets used in this new global carbon budget and the progress in understanding of the global carbon cycle compared with previous publications of this dataset (Friedlingstein et al., 2020, 2019; Le Quere et al., 2018b, a, 2016, 2015b, a, 2014, 2013). The data presented in this work are available at (Friedlingstein et al., 2021).
Keywords:
LAND-COVER CHANGE
LEAF-AREA INDEX
SEA CO2 FLUXES
GREENHOUSE-GAS EMISSIONS
FOSSIL-FUEL COMBUSTION
SURFACE OCEAN PCO(2)
ECOSYSTEM MODEL CTEM
EARTH SYSTEM MODEL
ATMOSPHERIC CO2
ANTHROPOGENIC CO2

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