arrow
返回

The global methane budget 2000-2012

delete2016-12-12
delete886
delete
OA
AI
M
Marielle Saunois *
P
Philippe Bousquet
P
Poulter, Ben
A
Anna Peregon
P
Philippe Ciais
J
Josep G. Canadell
E
Edward J. Dlugokencky
G
Giuseppe Etiope
D
David Bastviken
S
Sander Houweling
G
Greet Janssens‐Maenhout
F
Francesco N. Tubiello
S
Simona Castaldi
R
Robert B. Jackson
M
Mihai Alexe
V
Vivek K. Arora
D
David J. Beerling
P
P. Bergamaschi
D
D. R. Blake
G
Gordon Brailsford

Victor Brovkin
L
Lori Bruhwiler
C
Cyril Crévoisier
P
Patrick Crill
K
Kristofer Covey
C
Charles L. Curry
C
Christian Frankenberg
N
Nicola Gedney
L
Lena Höglund-Isaksson
M
Misa Ishizawa
A
Akihiko Ito
F
Fortunat Joos
H
Heon-Sook Kim
T
Thomas Kleinen
P
Paul B. Krummel
J
Jean‐François Lamarque
R
R. L. Langenfelds
R
Robin Locatelli
T
Toshinobu Machida
S
Shamil Maksyutov
K
K. C. McDonald
J
Julia Marshall
J
Joe R. Melton
I
Isamu Morino
V
Vaishali Naïk
S
Simon O’Doherty
F
Frans‐Jan W. Parmentier
P
Prabir K. Patra
C
Changhui Peng
彭书时 封面图
彭书时 (Shushi Peng)
G
Glen P. Peters
I
Isabelle Pison
C
Catherine Prigent
R
Ronald G. Prinn
M
Michel Ramonet
W
W. J. Riley
M
Makoto Saito
M
Monia Santini
R
R. Schroeder
I
Isobel J. Simpson
R
Renato Spahni
P
P. Steele
A
Atsushi Takizawa
B
Brett F. Thornton
H
Hanqin Tian
Y
Yasunori Tohjima
N
Nicolas Viovy
A
Apostolos Voulgarakis
M
Michiel van Weele
G
Guido R. van der Werf
R
Ray F. Weiss
C
Christine Wiedinmyer
D
David J. Wilton
A
Andy Wiltshire
D
Doug Worthy
D
Debra Wunch
X
Xiyan Xu
Y
Yukio Yoshida
B
Bowen Zhang
Z
Zhen Zhang
Q
Qiuan Zhu
DOI:10.5194/essd-8-697-2016delete
delete原文链接
delete原文求助
delete分享
delete收藏
摘要

摘要

En 中文
The global methane (CH4) budget is becoming an increasingly important component for managing realistic pathways to mitigate climate change. This relevance, due to a shorter atmospheric lifetime and a stronger warming potential than carbon dioxide, is challenged by the still unexplained changes of atmospheric CH4 over the past decade. Emissions and concentrations of CH4 are continuing to increase, making CH4 the second most important human-induced greenhouse gas after carbon dioxide. Two major difficulties in reducing uncertainties come from the large variety of diffusive CH4 sources that overlap geographically, and from the destruction of CH4 by the very short-lived hydroxyl radical (OH). To address these difficulties, we have established a consortium of multi-disciplinary scientists under the umbrella of the Global Carbon Project to synthesize and stimulate research on the methane cycle, and producing regular (similar to biennial) updates of the global methane budget. This consortium includes atmospheric physicists and chemists, biogeochemists of surface and marine emissions, and socio-economists who study anthropogenic emissions. Following Kirschke et al. (2013), we propose here the first version of a living review paper that integrates results of top-down studies (exploiting atmospheric observations within an atmospheric inverse-modelling framework) and bottom-up models, inventories and data-driven approaches (including process-based models for estimating land surface emissions and atmospheric chemistry, and inventories for anthropogenic emissions, data-driven extrapolations). For the 2003-2012 decade, global methane emissions are estimated by top-down inversions at 558 TgCH(4) yr(-1), range 540-568. About 60% of global emissions are anthropogenic (range 50-65 %). Since 2010, the bottom-up global emission inventories have been closer to methane emissions in the most carbon-intensive Representative Concentrations Pathway (RCP8.5) and higher than all other RCP scenarios. Bottom-up approaches suggest larger global emissions (736 TgCH(4) yr(-1), range 596-884) mostly because of larger natural emissions from individual sources such as inland waters, natural wetlands and geological sources. Considering the atmospheric constraints on the top-down budget, it is likely that some of the individual emissions reported by the bottom-up approaches are overestimated, leading to too large global emissions. Latitudinal data from top-down emissions indicate a predominance of tropical emissions (similar to 64% of the global budget, <30 degrees N) as compared to mid (similar to 32 %, 30-60 degrees N) and high northern latitudes (similar to 4 %, 60-90 degrees N). Top-down inversions consistently infer lower emissions in China (similar to 58 TgCH(4) yr(-1), range 51-72, -14 %) and higher emissions in Africa (86 TgCH(4) yr(-1), range 73-108, + 19 %) than bottom-up values used as prior estimates. Overall, uncertainties for anthropogenic emissions appear smaller than those from natural sources, and the uncertainties on source categories appear larger for top-down inversions than for bottom-up inventories and models. The most important source of uncertainty on the methane budget is attributable to emissions from wetland and other inland waters. We show that the wetland extent could contribute 30-40% on the estimated range for wetland emissions. Other priorities for improving the methane budget include the following: (i) the development of process-based models for inland-water emissions, (ii) the intensification of methane observations at local scale (flux measurements) to constrain bottom-up land surface models, and at regional scale (surface networks and satellites) to constrain top-down inversions, (iii) improvements in the estimation of atmospheric loss by OH, and (iv) improvements of the transport models integrated in top-down inversions. The data presented here can be downloaded from the Carbon Dioxide Information Analysis Center (http://doi.org/10.3334/CDIAC/GLOBAL_METHANE_BUDGET_2016_V1.1) and the Global Carbon Project.
Keyword:
ATMOSPHERIC HYDROXYL RADICALS
CARBON ISOTOPIC COMPOSITION
GREENHOUSE-GAS EMISSIONS
PROCESS-BASED MODEL
NATURAL-GAS
TRACE GASES
TROPOSPHERIC METHANE
CLIMATE-CHANGE
INTERANNUAL VARIABILITY
WETLAND EXTENT

期刊

Earth System Science Data 封面图
Earth System Science Data
IF:
11.6
论文数:
2.2K
被引数:
2.0W

机构

C
canadian centre for climate modelling & analysis (cccma)
学者数:
275
论文数: 240
被引数: 0
U
University of Sheffield
学者数:
3.0W
论文数: 2.9W
被引数: 3.9W
N
national center atmospheric research (ncar) - usa
学者数:
4.7K
论文数: 5.1K
被引数: 8
C
centre national de la recherche scientifique (cnrs)
学者数:
24.5W
论文数: 18.2W
被引数: 279
J
japan agency for marine-earth science & technology (jamstec)
学者数:
2.9K
论文数: 3.2K
被引数: 0
N
national institute for environmental studies - japan
学者数:
3.1K
论文数: 3.3K
被引数: 2
N
national oceanic atmospheric admin (noaa) - usa
学者数:
1.4W
论文数: 1.1W
被引数: 10
F
food & agriculture organization of the united nations (fao)
学者数:
2.6K
论文数: 1.7K
被引数: 3
Observatoire de Paris 封面图
Observatoire de Paris
学者数:
6.5K
论文数: 4.8K
被引数: 5.5K
U
Utrecht University
学者数:
6.0W
论文数: 5.1W
被引数: 5.8W
L
Linkoping University
学者数:
1.6W
论文数: 1.5W
被引数: 184
H
hadley centre
学者数:
1.1K
论文数: 940
被引数: 0
L
lund university
学者数:
4.1W
论文数: 3.9W
被引数: 54
Y
Yale University
学者数:
6.5W
论文数: 6.0W
被引数: 10.0W
S
Stanford University
学者数:
9.6W
论文数: 8.2W
被引数: 17.0W
N
national aeronautics & space administration (nasa)
学者数:
3.1W
论文数: 2.6W
被引数: 46
E
ec jrc ispra site
学者数:
3.5K
论文数: 2.9K
被引数: 5
C
CEA
学者数:
3.5W
论文数: 2.3W
被引数: 62
U
University of Victoria
学者数:
1.0W
论文数: 1.0W
被引数: 1.5W
N
NASA Goddard Space Flight Center
学者数:
1.0W
论文数: 7.7K
被引数: 16
N
nasa jet propulsion laboratory (jpl)
学者数:
6.9K
论文数: 5.3K
被引数: 14
M
met office - uk
学者数:
3.1K
论文数: 3.1K
被引数: 1
C
U
university of quebec montreal
学者数:
3.9K
论文数: 3.5K
被引数: 7
University of California System 封面图
University of California System
学者数:
37.5W
论文数: 33.7W
被引数: 6.6K
U
university of quebec
学者数:
2.0W
论文数: 1.9W
被引数: 19
Far Eastern Federal University 封面图
Far Eastern Federal University
学者数:
1.6K
论文数: 1.0K
被引数: 1.4K
C
CSIRO Oceans and Atmosphere
学者数:
750
论文数: 602
被引数: 6.1K
M
Max Planck Society
学者数:
8.2W
论文数: 7.7W
被引数: 3.3W
U
University of Bristol
学者数:
3.1W
论文数: 3.0W
被引数: 5.3W
C
centro euro-mediterraneo sui cambiamenti climatici (cmcc)
学者数:
827
论文数: 610
被引数: 1
I
istituto nazionale geofisica e vulcanologia (ingv)
学者数:
3.3K
论文数: 2.6K
被引数: 0
C
city university of new york (cuny) system
学者数:
1.6W
论文数: 1.5W
被引数: 26
U
universita della campania vanvitelli
学者数:
1.8W
论文数: 1.3W
被引数: 13
E
Ecole Polytechnique
学者数:
6.6K
论文数: 4.8K
被引数: 211
I
institut polytechnique de paris
学者数:
1.3W
论文数: 1.0W
被引数: 6
U
Universite Paris Saclay
学者数:
7.3W
论文数: 5.3W
被引数: 540
U
university of california irvine
学者数:
2.3W
论文数: 1.7W
被引数: 55
U
University of Bern
学者数:
4.0W
论文数: 3.1W
被引数: 4.8W
S
Sorbonne Universite
学者数:
6.2W
论文数: 4.5W
被引数: 605
学者 查看更多机构
引用论文

引用论文

Preparation of Fe3O4/SiO2/TiO2/PrVO4 nanocomposite in various molar ratios: Investigation on photocatalytic performance on organic contaminate and bacterial environments, and anti-cancer properties
err2020-01-01
err0
PREAI
errMohammad Amin Marsooli; Mahdi Rahimi Nasrabadi; Mahdi Fasihi-Ramandi; Kourosh Adib; Mohammad Eghbali; Saeid Pourmasoud; Farhad Ahmadi; Esmail Sohouli; Ali Sobhani Nasab; Seyed Ali Mirhosseini; Mohammad Reza Ganjali
err分享
err收藏
β-D-Glucosiduronic Acid Conjugation by the Mucosa of Various Organs
err1964-03-01
err0
errOAAI
errK. J. W. HARTIALA; M. O. PULKKINEN; P. SAVOLA
err分享
err收藏
err分享
err收藏
Selective killing of the human malaria parasite Plasmodium falciparum by a benzylthiazolium dye
err2007-06-01
err0
errOAAI
errJane X. Kelly; Rolf W. Winter; Theodore P. Braun; Myralyn Osei-Agyemang; David J. Hinrichs; Michael K. Riscoe
err分享
err收藏
Postinjury neutrophil priming and activation: An early vulnerable window*
err1995-08-01
err0
PREAI
errA BOTHA; F MOORE; E MOORE; F KIM; A BANERJEE; V PETERSON
err分享
err收藏
Life cycle inventory data on French organic waste treatments yielding organic amendments and fertilisers
err2020-02-01
err0
errOAAI
errAngel Avadí; Lynda Aissani; Marilys Pradel; Aurélie Wilfart
err分享
err收藏
学者 查看更多内容