The Greenhouse Gas Budget of Terrestrial Ecosystems in East Asia Since 2000

Author:

Wang Xuhui1ORCID,Gao Yuanyi1ORCID,Jeong Sujong2ORCID,Ito Akihiko3,Bastos Ana4ORCID,Poulter Benjamin56ORCID,Wang Yilong7,Ciais Philippe8ORCID,Tian Hanqin9ORCID,Yuan Wenping10ORCID,Chandra Naveen11ORCID,Chevallier Frédéric8ORCID,Fan Lei12ORCID,Hong Songbai1ORCID,Lauerwald Ronny13ORCID,Li Wei14ORCID,Lin Zhengyang1,Pan Naiqing15ORCID,Patra Prabir K.1116ORCID,Peng Shushi1ORCID,Ran Lishan17,Sang Yuxing1,Sitch Stephen18ORCID,Takashi Maki19,Thompson Rona Louise20ORCID,Wang Chenzhi1,Wang Kai1ORCID,Wang Tao21ORCID,Xi Yi18,Xu Liang22,Yan Yanzi1,Yun Jeongmin23,Zhang Yao1ORCID,Zhang Yuzhong2425ORCID,Zhang Zhen26ORCID,Zheng Bo27ORCID,Zhou Feng1ORCID,Tao Shu1ORCID,Canadell Josep G.28ORCID,Piao Shilong1ORCID

Affiliation:

1. College of Urban and Environmental Sciences Institute of Carbon Neutrality Sino‐French Institute for Earth System Sciences Peking University Beijing China

2. Department of Environmental Planning Graduate School of Environmental Studies Seoul National University Seoul South Korea

3. National Institute for Environmental Studies Tsukuba Japan

4. Department of Biogeochemical Integration Max Planck Institute for Biogeochemistry Jena Germany

5. Institute on Ecosystems and the Department of Ecology Montana State University Bozeman MT USA

6. Biospheric Science Laboratory NASA Goddard Space Flight Center Greenbelt MD USA

7. Key Laboratory of Land Surface Pattern and Simulation Institute of Geographical Sciences and Natural Resources Research Chinese Academy of Sciences Beijing China

8. Laboratoire des Sciences du Climat et de l’Environnement LSCE/IPSL CEA‐CNRS‐UVSQ Université Paris‐Saclay Palaiseau France

9. Department of Earth and Environmental Sciences Schiller Institute for Integrated Science and Society Boston College Chestnut Hill MA USA

10. School of Atmospheric Sciences SUN YAT‐SEN University Guangzhou China

11. Japan Agency for Marine‐Earth Science and Technology (JAMSTEC) Yokohama Japan

12. School of Geographical Sciences Chongqing Jinfo Mountain Karst Ecosystem National Observation and Research Station Southwest University Chongqing China

13. Université Paris‐Saclay INRAE AgroParisTech UMR ECOSYS Thiverval‐Grignon France

14. Department of Earth System Science Tsinghua University Beijing China

15. Department of Earth and Environmental Sciences Boston College Schiller Institute for Integrated Science and Society Chestnut Hill PA USA

16. Research Institute for Humanity and Nature (RIHN) Kamigamo Kyoto Japan

17. Department of Geography The University of Hong Kong Hong Kong China

18. Faculty of Environment Science and Economy University of Exeter Exeter UK

19. Department of Atmosphere, Ocean and Earth System Modeling Research Meteorological Research Institute Japan Meteorological Agency Tsukuba Japan

20. Norsk Institutt for Luftforskning Kjeller Norway

21. Department of Civil and Environmental Engineering The Hong Kong Polytechnic University Hong Kong China

22. Pachama, Inc San Francisco CA USA

23. Jet Propulsion Laboratory California Institute of Technology Pasadena CA USA

24. Key Laboratory of Coastal Environment and Resources of Zhejiang Province School of Engineering Westlake University Hangzhou China

25. Institute of Advanced Technology Westlake Institute for Advanced Study Hangzhou China

26. Department of Geographical Sciences University of Maryland College Park MD USA

27. Shenzhen International Graduate School Institute of Environment and Ecology Tsinghua University Shenzhen China

28. CSIRO Environment Canberra CAN Australia

Abstract

AbstractEast Asia (China, Japan, Koreas, and Mongolia) has been the world's economic engine over at least the past two decades, exhibiting a rapid increase in fossil fuel emissions of greenhouse gases (GHGs) and has expressed the recent ambition to achieve climate neutrality by mid‐century. However, the GHG balance of its terrestrial ecosystems remains poorly constrained. Here, we present a synthesis of the three most important long‐lived greenhouse gases (CO2, CH4, and N2O) budgets over East Asia during the decades of 2000s and 2010s, following a dual constraint approach. We estimate that terrestrial ecosystems in East Asia is close to neutrality of GHGs, with a magnitude of between −46.3 ± 505.9 Tg CO2eq yr−1 (the top‐down approach) and −36.1 ± 207.1 Tg CO2eq yr−1 (the bottom‐up approach) during 2000–2019. This net GHG sink includes a large land CO2 sink (−1229.3 ± 430.9 Tg CO2 yr−1 based on the top‐down approach and −1353.8 ± 158.5 Tg CO2 yr−1 based on the bottom‐up approach) being offset by biogenic CH4 and N2O emissions, predominantly coming from the agricultural sectors. Emerging data sources and modeling capacities have helped achieve agreement between the top‐down and bottom‐up approaches, but sizable uncertainties remain in several flux terms. For example, the reported CO2 flux from land use and land cover change varies from a net source of more than 300 Tg CO2 yr−1 to a net sink of ∼−700 Tg CO2 yr−1. Although terrestrial ecosystems over East Asia is close to GHG neutral currently, curbing agricultural GHG emissions and additional afforestation and forest managements have the potential to transform the terrestrial ecosystems into a net GHG sink, which would help in realizing East Asian countries' ambitions to achieve climate neutrality.

Funder

National Natural Science Foundation of China

Publisher

American Geophysical Union (AGU)

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