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X-BASE: the first terrestrial carbon and water flux products from an extended data-driven scaling framework, FLUXCOM-X

116Citations signalées — pas une note de qualité
78Institutions déclarées
18Pays d’affiliation déclarés

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Abstract. Mapping in situ eddy covariance measurements of terrestrial land–atmosphere fluxes to the globe is a key method for diagnosing the Earth system from a data-driven perspective. We describe the first global products (called X-BASE) from a newly implemented upscaling framework, FLUXCOM-X, representing an advancement from the previous generation of FLUXCOM products in terms of flexibility and technical capabilities. The X-BASE products are comprised of estimates of CO2 net ecosystem exchange (NEE), gross primary productivity (GPP), evapotranspiration (ET), and for the first time a novel, fully data-driven global transpiration product (ETT), at high spatial (0.05°) and temporal (hourly) resolution. X-BASE estimates the global NEE at −5.75 ± 0.33 Pg C yr−1 for the period 2001–2020, showing a much higher consistency with independent atmospheric carbon cycle constraints compared to the previous versions of FLUXCOM. The improvement of global NEE was likely only possible thanks to the international effort to increase the precision and consistency of eddy covariance collection and processing pipelines, as well as to the extension of the measurements to more site years resulting in a wider coverage of bioclimatic conditions. However, X-BASE global net ecosystem exchange shows a very low interannual variability, which is common to state-of-the-art data-driven flux products and remains a scientific challenge. With 125 ± 2.1 Pg C yr−1 for the same period, X-BASE GPP is slightly higher than previous FLUXCOM estimates, mostly in temperate and boreal areas. X-BASE evapotranspiration amounts to 74.7×103 ± 0.9×103 km3 globally for the years 2001–2020 but exceeds precipitation in many dry areas, likely indicating overestimation in these regions. On average 57 % of evapotranspiration is estimated to be transpiration, in good agreement with isotope-based approaches, but higher than estimates from many land surface models. Despite considerable improvements to the previous upscaling products, many further opportunities for development exist. Pathways of exploration include methodological choices in the selection and processing of eddy covariance and satellite observations, their ingestion into the framework, and the configuration of machine learning methods. For this, the new FLUXCOM-X framework was specifically designed to have the necessary flexibility to experiment, diagnose, and converge to more accurate global flux estimates.

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DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
X-BASE: the first terrestrial carbon and water flux products from an extended data-driven scaling framework, FLUXCOM-X
Date Crossref
18/11/2024
Éditeur
Copernicus GmbH
Type
journal-article

Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude et ne compte pas comme une seconde source scientifique indépendante.

Institutions déclarées

Max Planck Institute for BiogeochemistryIndiana University BloomingtonETH ZurichJoint Research CentreUniversität InnsbruckCzech Academy of Sciences, Global Change Research InstituteTechnical University of DenmarkCMCC Foundation - Euro-Mediterranean Center on Climate ChangeResearch Institute on Sustainable Economic GrowthUniversity of GöttingenSouthwest Watershed Research CenterGerman Centre for Integrative Biodiversity ResearchUniversidad de GranadaInstituto Andaluz de Ciencias de la TierraLund UniversityUniversity of AntwerpAntwerp Management SchoolEcosystem SciencesUniversity of Nebraska–LincolnUniversity of UtahUniversity of FloridaJohann Heinrich von Thünen-InstitutUniversitat de ValènciaChinese Academy of SciencesInstitute of BotanyJames Cook UniversityUniversity of Wisconsin–MadisonShanxi UniversityUniversity of Alaska FairbanksAgenzia Regionale per la Protezione Ambientale del PiemonteUniversity of Aosta ValleyUniversità Cattolica del Sacro CuoreAgricultural Research ServiceWaters (United States)Virginia Commonwealth UniversityUniversity of LiègeGembloux Agro-Bio TechChiba UniversityAarhus UniversityUniversity of British ColumbiaMcGill UniversityJapan Agency for Marine-Earth Science and TechnologyFinnish Meteorological InstituteHelsinki Institute of PhysicsUniversity of MünsterArgonne National LaboratoryUniversity of ChicagoMolecular Biology ConsortiumBattelleNational Ecological Observatory NetworkFree University of Bozen-BolzanoUniversità degli Studi della TusciaClemson UniversityCentre National de la Recherche ScientifiqueÉcole Pratique des Hautes ÉtudesUniversité de MontpellierCentre d'Écologie Fonctionnelle et ÉvolutiveInstitut de Recherche pour le DéveloppementSwedish University of Agricultural SciencesWestern Sydney UniversityGFZ Helmholtz Centre for GeosciencesForschungszentrum JülichWoodwell Climate Research CenterEdith Cowan UniversityUniversity of SassariInstitute of GeographyUniversity of CopenhagenUniversity of HelsinkiUCLouvainSapienza University of RomeArizona State UniversityCommonwealth Scientific and Industrial Research OrganisationThe University of QueenslandAstronomy and SpaceSonora Institute of TechnologyQufu Normal UniversityInstitute of Applied EcologySan Diego State University

Une affiliation ne permet pas de déduire la nationalité d’un auteur.

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Atmospheric and Environmental Gas DynamicsClimate variability and modelsMeteorological Phenomena and Simulations

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