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Evaluating China's fossil-fuel CO2 emissions from a comprehensive dataset of nine inventoriesChina's fossil-fuel CO2 (FFCO2) emissions accounted for approximately 28 % of the global total FFCO2 in 2016. An accurate estimate of China's FFCO2 emissions is a prerequisite for global and regional carbon budget analyses and the monitoring of carbon emission reduction efforts. However, significant uncertainties and discrepancies exist in estimations of China's FFCO2 emissions due to a lack of detailed traceable emission factors (EFs) and multiple statistical data sources. Here, we evaluated China's FFCO2 emissions from nine published global and regional emission datasets. These datasets show that the total emissions increased from 3.4 (3.0–3.7) in 2000 to 9.8 (9.2–10.4) Gt CO2 per yr in 2016. The variations in these estimates were largely due to the different EF (0.491–0.746 t C per t of coal) and activity data. The large-scale patterns of gridded emissions showed a reasonable agreement, with high emissions being concentrated in major city clusters, and the standard deviation mostly ranged from 10 % to 40 % at the provincial level. However, patterns beyond the provincial scale varied significantly, with the top 5 % of the grid level accounting for 50 %–90 % of total emissions in these datasets. Our findings highlight the significance of using locally measured EF for Chinese coal. To reduce uncertainty, we recommend using physical CO2 measurements and use these values for dataset validation, key input data sharing (e.g., point sources), and finer-resolution validations at various levels.
Document ID
20210017489
Acquisition Source
Goddard Space Flight Center
Document Type
Accepted Manuscript (Version with final changes)
Authors
Pengfei Han ORCID
(Institute of Atmospheric Physics Beijing, China)
Ning Zeng ORCID
(University of Maryland, College Park College Park, Maryland, United States)
Tom Oda
(Universities Space Research Association Columbia, Maryland, United States)
Xiaohui Lin
(Institute of Atmospheric Physics Beijing, China)
Monica Crippa
(Joint Research Centre Ispra, Italy)
Dabo Guan
(Tsinghua University Beijing, Beijing, China)
Greet Janssens-Maenhout ORCID
(Joint Research Centre Ispra, Italy)
Xiaolin Ma
(Nanjing University Nanjing, China)
Zhu Liu ORCID
(Tsinghua University Beijing, Beijing, China)
Yuli Shan ORCID
(University of Groningen Groningen, Groningen, Netherlands)
Shu Tao
(Peking University Beijing, Beijing, China)
Haikun Wang ORCID
(Nanjing University Nanjing, China)
Rong Wang ORCID
(Peking University Beijing, Beijing, China)
Lin Wu
(Institute of Atmospheric Physics Beijing, China)
Xiao Yun
(Peking University Beijing, Beijing, China)
Qiang Zhang
(Tsinghua University Beijing, Beijing, China)
Fang Zhao
(East China Normal University Shanghai, China)
Bo Zheng ORCID
(University of Paris-Saclay Gif-sur-Yvette, France)
Date Acquired
June 14, 2021
Publication Date
October 6, 2020
Publication Information
Publication: Atmospheric Chemistry and Physics
Publisher: European Geosciences Union / Copernicus Publications
Volume: 20
Issue: 19
Issue Publication Date: September 1, 2020
ISSN: 1680-7316
e-ISSN: 1680-7324
URL: https://acp.copernicus.org/articles/20/11371/2020/#section11
Subject Category
Environment Pollution
Earth Resources And Remote Sensing
Funding Number(s)
CONTRACT_GRANT: SPEC5732
CONTRACT_GRANT: 2017YFB0504000
Distribution Limits
Public
Copyright
Portions of document may include copyright protected material.
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