-
Autor
Alekseychik, Pavel 1 Aurela, Mika 1 Bernhofer, Christian 1 Brut, Aurore 1 Brümmer, Christian 1 Buchmann, Nina 1 Carrara, Arnaud 1 Chen, Chunbo 1 Chen, Shiping 1 Chojnicki, Bogdan 1 De Maeyer, Philippe 1 Dong, Gang 1 Du, Mingyuan 1 Fares, Silvano 1 Feigenwinter, Iris 1 Frankl, Amaury 1 Friborg, Thomas 1 Gao, Ruixiang 1 Goded, Ignacio 1 Gruenwald, Thomas 1
-
Pracoviště
A N Severtsov Institute of Ecology and Evolu... 1 Agrosphere Institute IBG 3 Forschungszentrum... 1 CESBIO Université de Toulouse CNES CNRS INRA... 1 Center Agriculture Food Environment Universi... 1 Climate Change Dept Environmental Protection... 1 Climate System Research Finnish Meteorologic... 1 College of Resources and Environment Univers... 1 Departement of Earth Sciences Gothenburg Uni... 1 Department of Agroecology Aarhus University ... 1 Department of Biology University of Antwerp ... 1 Department of Computer Vision and Remote Sen... 1 Department of Ecology and Genetics Limnology... 1 Department of Environmental Engineering Tech... 1 Department of Environmental Systems Science ... 1 Department of Environmental and Biological S... 1 Department of Geography Ghent University Ghe... 1 Department of Geography and Environmental Ma... 1 Department of Geosciences and Natural Resour... 1 Department of Matter and Energy Fluxes Globa... 1 ECOSYS INRAE AgroParisTech Université Paris ... 1
- Publikační typ
- Kategorie
- Jazyk
- Země
- Časopis/zdroj
- Nejvíce citované
Nejvíce citovaný článek - PubMed ID 37068679
Stems of Phragmites australis are buffering methane and carbon dioxide emissions
-
Xie, Mingjuan
Autor Xie, Mingjuan ORCID State Key Laboratory of Desert and Oasis Ecology, Xinjiang Institute of Ecology and Geography, Chinese Academy of Sciences, Urumqi, Xinjiang, 830011, China Department of Geography, Ghent University, Ghent, 9000, Belgium College of Resources and Environment, University of Chinese Academy of Sciences, Beijing, 100049, China Sino-Belgian Joint Laboratory for Geo-Information, Urumqi, China Sino-Belgian Joint Laboratory for Geo-Information, Ghent, Belgium
- Ma, Xiaofei
- Wang, Yuangang
- Li, Chaofan
- Shi, Haiyang
- Yuan, Xiuliang
- Hellwich, Olaf
- Chen, Chunbo
-
Zhang, Wenqiang
Autor Zhang, Wenqiang ORCID State Key Laboratory of Desert and Oasis Ecology, Xinjiang Institute of Ecology and Geography, Chinese Academy of Sciences, Urumqi, Xinjiang, 830011, China Department of Geography, Ghent University, Ghent, 9000, Belgium College of Resources and Environment, University of Chinese Academy of Sciences, Beijing, 100049, China Sino-Belgian Joint Laboratory for Geo-Information, Urumqi, China Sino-Belgian Joint Laboratory for Geo-Information, Ghent, Belgium
- Zhang, Chen
PubMed
37679357
PubMed Central
PMC10485062
DOI
10.1038/s41597-023-02473-9
PII: 10.1038/s41597-023-02473-9
Knihovny.cz E-zdroje
Simulating the carbon-water fluxes at more widely distributed meteorological stations based on the sparsely and unevenly distributed eddy covariance flux stations is needed to accurately understand the carbon-water cycle of terrestrial ecosystems. We established a new framework consisting of machine learning, determination coefficient (R2), Euclidean distance, and remote sensing (RS), to simulate the daily net ecosystem carbon dioxide exchange (NEE) and water flux (WF) of the Eurasian meteorological stations using a random forest model or/and RS. The daily NEE and WF datasets with RS-based information (NEE-RS and WF-RS) for 3774 and 4427 meteorological stations during 2002-2020 were produced, respectively. And the daily NEE and WF datasets without RS-based information (NEE-WRS and WF-WRS) for 4667 and 6763 meteorological stations during 1983-2018 were generated, respectively. For each meteorological station, the carbon-water fluxes meet accuracy requirements and have quasi-observational properties. These four carbon-water flux datasets have great potential to improve the assessments of the ecosystem carbon-water dynamics.
- Publikační typ
- časopisecké články MeSH
- dataset MeSH
Upřesnit dle MeSH
Sdílet
Název dokumentu
Po ukončení testovacího provozu bude odkaz přesměrován adresu produkční verze portálu Medvik.