Inland Water Greenhouse Gas Budgets for RECCAP2: 1. State‐Of‐The‐Art of Global Scale Assessments

Author:

Lauerwald Ronny1ORCID,Allen George H.2,Deemer Bridget R.3ORCID,Liu Shaoda45,Maavara Taylor46ORCID,Raymond Peter4ORCID,Alcott Lewis7,Bastviken David8ORCID,Hastie Adam910ORCID,Holgerson Meredith A.11ORCID,Johnson Matthew S.12ORCID,Lehner Bernhard13ORCID,Lin Peirong14,Marzadri Alessandra15,Ran Lishan16ORCID,Tian Hanqin17,Yang Xiao18,Yao Yuanzhi19ORCID,Regnier Pierre20

Affiliation:

1. Université Paris‐Saclay INRAE AgroParisTech UMR ECOSYS Palaiseau France

2. Department of Geosciences Virginia Polytechnic Institute and State University VA Blacksburg USA

3. U.S. Geological Survey Southwest Biological Science Center AZ Flagstaff USA

4. Yale School of the Environment Yale University CT New Haven USA

5. State Key Laboratory of Water Environment Simulation School of Environment Beijing Normal University Beijing China

6. School of Geography University of Leeds Leeds UK

7. Department of Earth & Planetary Sciences Yale University CT New Haven USA

8. Department of Thematic Studies—Environmental Change Linköping University Linköping Sweden

9. Carbon and Wetlands Group, Faculty of Science Charles University Prague Czech Republic

10. School of GeoSciences University of Edinburgh Edinburgh UK

11. Department of Ecology and Evolutionary Biology Cornell University NY Ithaca USA

12. Earth Science Division NASA Ames Research Center CA Moffett Field USA

13. Department of Geography McGill University QC Montreal Canada

14. School of Earth and Space Sciences Institute of Remote Sensing and GIS Peking University Beijing China

15. Department of Civil, Environmental and Mechanical Engineering University of Trento Trento Italy

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

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

18. Department of Earth Sciences Southern Methodist University TX Dallas USA

19. School of Geographic Sciences East China Normal University Shanghai China

20. Department Geoscience, Environment & Society—BGEOSYS Université Libre de Bruxelles Bruxelles Belgium

Abstract

AbstractInland waters are important emitters of the greenhouse gasses (GHGs) carbon dioxide (CO2), methane (CH4), and nitrous oxide (N2O) to the atmosphere. In the framework of the 2nd phase of the REgional Carbon Cycle Assessment and Processes (RECCAP‐2) initiative, we review the state of the art in estimating inland water GHG budgets at global scale, which has substantially advanced since the first phase of RECCAP nearly 10 years ago. The development of increasingly sophisticated upscaling techniques, including statistical prediction and process‐based models, allows for spatially explicit estimates that are needed for regionalized assessments of continental GHG budgets such as those established for RECCAP. A few recent estimates also resolve the seasonal and/or interannual variability in inland water GHG emissions. Nonetheless, the global‐scale assessment of inland water emissions remains challenging because of limited spatial and temporal coverage of observations and persisting uncertainties in the abundance and distribution of inland water surface areas. To decrease these uncertainties, more empirical work on the contributions of hot‐spots and hot‐moments to overall inland water GHG emissions is particularly needed.

Funder

Agence Nationale de la Recherche

National Key Research and Development Program of China

Natural Environment Research Council

HORIZON EUROPE European Research Council

Publisher

American Geophysical Union (AGU)

Subject

Atmospheric Science,General Environmental Science,Environmental Chemistry,Global and Planetary Change

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