Skip to main content

ETHNOS_APP

Home • Search • Journals • List 0

Five years of variability in the global carbon cycle

Comparing an estimate from the Orbiting Carbon Observatory-2 and process-based models

Bibliographic Data

ID15549271
AuthorsZichong Chen (0000-0003-2779-1554, Johns Hopkins University, corresponding author), D N Huntzinger (0000-0003-2998-099X, Northern Arizona University), Junjie Liu (0009-0002-6907-3470, Jet Propulsion Laboratory), Shilong Piao (0000-0001-8057-2292, Peking University), Xuhui Wang (0000-0003-0818-9816, Peking University), Stephen Sitch (0000-0003-1821-8561, University of Exeter), Pierre Friedlingstein (0000-0003-3309-4739, University of Exeter), Peter Anthoni (0000-0001-5459-6506, Karlsruhe Institute of Technology), Almut Arneth (0000-0001-6616-0822, Karlsruhe Institute of Technology), Vladislav Bastrikov (0000-0002-4462-9607, Centre National de la Recherche Scientifique), Daniel S Goll (0000-0001-9246-9671, University of Augsburg), Vanessa Haverd (0000-0003-4359-5895, CSIRO Oceans and Atmosphere), Atul K Jain (0000-0002-4051-3228, University of Illinois Urbana-Champaign), Émilie Joetzjer (0000-0001-6781-1535, Centre National de la Recherche Scientifique), Etsushi Kato (0000-0001-8814-804X, Institute of Applied Energy), Sebastian Lienert (0000-0003-1740-918X, University of Bern), Danica Lombardozzi (0000-0003-3557-7929, NSF National Center for Atmospheric Research), Patrick Mcguire (0000-0003-4381-0532), Patrick C McGuire (0000-0001-6592-4966, National Centre for Atmospheric Science), Joe R Melton (0000-0002-9414-064X, Environment and Climate Change Canada), Julia E M S Nabel (0000-0002-8122-5206, Max Planck Institute for Meteorology), Julia Pongratz (0000-0003-0372-3960, Max Planck Institute for Meteorology), Benjamin Poulter (0000-0002-9493-8600, Goddard Space Flight Center), Hanqin Tian (0000-0002-1806-4091, Auburn University), A Wiltshire (0000-0001-7307-173X, Met Office), Andrew J Wiltshire, Sönke Zaehle (0000-0001-5602-7956, Max Planck Institute for Biogeochemistry), Scot M Miller (0000-0003-4462-8126, Johns Hopkins University)
Year2021
Volume16
Issue5
Pages054041-054041
Publication date2021-04-22
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueEnvironmental Research Letters (JOURNAL)
Journal identifiersISSN: 1748-9326 • E-ISSN: 1748-9326
PublisherIOP Publishing (PUBLISHER • GB)
DOI10.1088/1748-9326/abfac1
OpenAlexW3158274007
LanguageEN
Citations received1
References cited81

Year-to-year variability in CO 2 fluxes can yield insight into climate-carbon cycle relationships, a fundamental yet uncertain aspect of the terrestrial carbon cycle. In this study, we use global observations from NASA’s Orbiting Carbon Observatory-2 (OCO-2) satellite for years 2015–2019 and a geostatistical inverse model to evaluate 5 years of interannual variability (IAV) in CO 2 fluxes and its relationships with environmental drivers. OCO-2 launched in late 2014, and we specifically evaluate IAV during the time period when OCO-2 observations are available. We then compare inferences from OCO-2 with state-of-the-art process-based models (terrestrial biosphere model, TBMs). Results from OCO-2 suggest that the tropical grasslands biome (including grasslands, savanna, and agricultural lands within the tropics) makes contributions to global IAV during the 5 year study period that are comparable to tropical forests, a result that differs from a majority of TBMs. Furthermore, existing studies disagree on the environmental variables that drive IAV during this time period, and the analysis using OCO-2 suggests that both temperature and precipitation make comparable contributions. TBMs, by contrast, tend to estimate larger IAV during this time and usually estimate larger relative contributions from the extra-tropics. With that said, TBMs show little consensus on both the magnitude and the contributions of different regions to IAV. We further find that TBMs show a wide range of responses on the relationships of CO 2 fluxes with annual anomalies in temperature and precipitation, and these relationships across most of the TBMs have a larger magnitude than inferred from OCO-2. Overall, the findings of this study highlight large uncertainties in process-based estimates of IAV during recent years and provide an avenue for evaluating these processes against inferences from OCO-2

Atmospheric sciences · Biology · Biome · Biosphere · Carbon cycle · Climatology · Ecosystem · Geography · Meteorology · Observatory · Precipitation · Tropics · Atmospheric and Environmental Gas Dynamics · Atmospheric chemistry and aerosols · Climate variability and models · Environmental Science · Ecology · Geology

  • Satellite-detected large CO 2 release in southwestern North America during the 2020–2021 drought and associated wildfires

    Open Access•Hui Chen, Wei He et al.•Environmental Research Letters•2024

  • Analysis of daily, monthly, and annual burned area using the fourth‐generation global fire emissions database (GFED4)

    Open Access•Louis Giglio, James T Randerson et al.•Journal of Geophysical Research:…•2013

  • Terrestrial Gross Carbon Dioxide Uptake

    Open Access•Christian Beer, Markus Reichstein et al.•Science•2010

  • Global Carbon Budget 2018

    Open Access•Corinne Le Quéré, Robbie M Andrew et al.•Earth System Science Data•2018

  • Version 4 of the CRU TS monthly high-resolution gridded multivariate climate dataset

    Open Access•Ian Harris, Timothy J Osborn et al.•Scientific Data•2020

  • Merra

    Michele M Rienecker, Max J Suárez et al.•Journal of Climate•2011

  • Updated high‐resolution grids of monthly climatic observations – the CRU TS3 .10 Dataset

    Open Access•Ian Harris, P D Jones et al.•International Journal of…•2014

  • The dominant role of semi-arid ecosystems in the trend and variability of the land CO 2 sink

    Open Access•Anders Ahlström, Michael Raupach et al.•Science•2015

  • Drought-Induced Reduction in Global Terrestrial Net Primary Production from 2000 Through 2009

    Open Access•Maosheng Zhao, W Running et al.•Science•2010

  • Terrestrial Ecoregions of the World

    David M Olson, E Dinerstein et al.•BioScience•2001

  • Soil organic carbon pools in the northern circumpolar permafrost region

    Open Access•C Tarnocai, Josep G Canadell et al.•Global Biogeochemical Cycles•2009

  • Global Carbon Budget 2019

    Open Access•Pierre Friedlingstein, Matthew W Jones et al.•Earth System Science Data•2019

  • The JRA-55 Reanalysis

    Open Access•Shinya Kobayashi, Yukinari OTA et al.•Journal of the Meteorological…•2015

  • The Open-source Data Inventory for Anthropogenic CO 2 , version 2016 (Odiac2016)

    Open Access•Tomohiro Oda, Shamil Maksyutov et al.•Earth System Science Data•2018

  • Bayes Factors

    Robert E Kass, Adrian E Raftery•Journal of the American…•1995

  • Forests dominate the interannual variability of the North American carbon sink

    Open Access•Yoichi P Shiga, A M Michalak et al.•Environmental Research Letters•2018

  • Detecting drought impact on terrestrial biosphere carbon fluxes over contiguous US with satellite observations

    Open Access•Junjie Liu, K W Bowman et al.•Environmental Research Letters•2018

  • Bayesian Model Selection in Social Research

    Adrian E Raftery•Sociological Methodology•1995

Unique citing works1
Citations per year0,5
Citation span2024 - 2024 (1)
Citation velocityrecent
Highly citedNo
Citation typesNeutral: 1

Tools

Open DOIOpen Access
Ethnos_APP • Open Source Project • MIT License • Frontend v2.0.0 • Privacy and Cookies • API Documentation: api.ethnos.app/docs • API Source Code: GitHub • DOI: 10.5281/zenodo.17049435 • Frontend Source Code: GitHub • DOI: 10.5281/zenodo.17050053 • cruz.rio.br • Expectantes Misericordiae