High-resolution carbon cycling data from 2019 to 2021 measured at six Austrian long-term ecosystem research sites
<p>Seven long-term observation sites have been established in six regions across Austria, covering major ecosystem types such as forests, grasslands, and wetlands across a wide bioclimatic range. The purpose of these observations is to measure key ecosystem parameters serving as baselines for...
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Copernicus Publications
2025-02-01
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| Series: | Earth System Science Data |
| Online Access: | https://essd.copernicus.org/articles/17/685/2025/essd-17-685-2025.pdf |
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| author | T. Dirnböck M. Bahn E. Diaz-Pines I. Djukic M. Englisch K. Gartner G. Gollobich J. Ingrisch B. Kitzler K. Knaebel J. Kobler A. Maier A. Malli I. Offenthaler J. Peterseil G. Pröll S. Venier C. Wohner S. Zechmeister-Boltenstern A. Zolles S. Glatzel |
| author_facet | T. Dirnböck M. Bahn E. Diaz-Pines I. Djukic M. Englisch K. Gartner G. Gollobich J. Ingrisch B. Kitzler K. Knaebel J. Kobler A. Maier A. Malli I. Offenthaler J. Peterseil G. Pröll S. Venier C. Wohner S. Zechmeister-Boltenstern A. Zolles S. Glatzel |
| author_sort | T. Dirnböck |
| collection | DOAJ |
| description | <p>Seven long-term observation sites have been established in six regions across Austria, covering major ecosystem types such as forests, grasslands, and wetlands across a wide bioclimatic range. The purpose of these observations is to measure key ecosystem parameters serving as baselines for assessing the impacts of extreme climate events on the carbon cycle. The datasets collected include meteorological variables, soil microclimate, CO<span class="inline-formula"><sub>2</sub></span> fluxes, and tree stem growth, all recorded at high temporal resolution (15–60 min) between 2019 and 2021 (including 1 year of average climate conditions and 2 comparatively dry years). The DOIs of the dataset can be found in the “Data availability” section. The sites will be integrated into the European Research Infrastructure for Integrated European Long-Term Ecosystem, Critical Zone, and Socio-Ecological Research (eLTER RI). Subsequently, new data covering the variables presented here will be continuously available through the data integration portal. This step will allow the data to reach their full potential for research on drought-related ecosystem carbon cycling.</p> |
| format | Article |
| id | doaj-art-bb21e1474235409f95162ca65cfcede7 |
| institution | DOAJ |
| issn | 1866-3508 1866-3516 |
| language | English |
| publishDate | 2025-02-01 |
| publisher | Copernicus Publications |
| record_format | Article |
| series | Earth System Science Data |
| spelling | doaj-art-bb21e1474235409f95162ca65cfcede72025-08-20T02:43:20ZengCopernicus PublicationsEarth System Science Data1866-35081866-35162025-02-011768570210.5194/essd-17-685-2025High-resolution carbon cycling data from 2019 to 2021 measured at six Austrian long-term ecosystem research sitesT. Dirnböck0M. Bahn1E. Diaz-Pines2I. Djukic3M. Englisch4K. Gartner5G. Gollobich6J. Ingrisch7B. Kitzler8K. Knaebel9J. Kobler10A. Maier11A. Malli12I. Offenthaler13J. Peterseil14G. Pröll15S. Venier16C. Wohner17S. Zechmeister-Boltenstern18A. Zolles19S. Glatzel20Environment Agency Austria, Spittelauer Lände 5, 1090 Vienna, AustriaDepartment of Ecology, Universität Innsbruck, Innrain 52, 6020 Innsbruck, AustriaInstitute of Soil Research, Department of Forest and Soil Sciences, BOKU University, Peter-Jordan-Straße 82, 1190 Vienna, AustriaEnvironment Agency Austria, Spittelauer Lände 5, 1090 Vienna, AustriaAustrian Research Centre for Forests, Seckendorff-Gudent Weg 8, 1131 Vienna, AustriaAustrian Research Centre for Forests, Seckendorff-Gudent Weg 8, 1131 Vienna, AustriaAustrian Research Centre for Forests, Seckendorff-Gudent Weg 8, 1131 Vienna, AustriaDepartment of Ecology, Universität Innsbruck, Innrain 52, 6020 Innsbruck, AustriaAustrian Research Centre for Forests, Seckendorff-Gudent Weg 8, 1131 Vienna, AustriaEnvironment Agency Austria, Spittelauer Lände 5, 1090 Vienna, AustriaEnvironment Agency Austria, Spittelauer Lände 5, 1090 Vienna, AustriaDepartment of Geography and Regional Research, Faculty of Earth Sciences, Geography and Astronomy, University of Vienna, Josef-Holaubek-Platz 2, 1090 Vienna, AustriaAustrian Research Centre for Forests, Seckendorff-Gudent Weg 8, 1131 Vienna, AustriaEnvironment Agency Austria, Spittelauer Lände 5, 1090 Vienna, AustriaEnvironment Agency Austria, Spittelauer Lände 5, 1090 Vienna, AustriaEnvironment Agency Austria, Spittelauer Lände 5, 1090 Vienna, AustriaEnvironment Agency Austria, Spittelauer Lände 5, 1090 Vienna, AustriaEnvironment Agency Austria, Spittelauer Lände 5, 1090 Vienna, AustriaInstitute of Soil Research, Department of Forest and Soil Sciences, BOKU University, Peter-Jordan-Straße 82, 1190 Vienna, AustriaAustrian Research Centre for Forests, Seckendorff-Gudent Weg 8, 1131 Vienna, AustriaDepartment of Geography and Regional Research, Faculty of Earth Sciences, Geography and Astronomy, University of Vienna, Josef-Holaubek-Platz 2, 1090 Vienna, Austria<p>Seven long-term observation sites have been established in six regions across Austria, covering major ecosystem types such as forests, grasslands, and wetlands across a wide bioclimatic range. The purpose of these observations is to measure key ecosystem parameters serving as baselines for assessing the impacts of extreme climate events on the carbon cycle. The datasets collected include meteorological variables, soil microclimate, CO<span class="inline-formula"><sub>2</sub></span> fluxes, and tree stem growth, all recorded at high temporal resolution (15–60 min) between 2019 and 2021 (including 1 year of average climate conditions and 2 comparatively dry years). The DOIs of the dataset can be found in the “Data availability” section. The sites will be integrated into the European Research Infrastructure for Integrated European Long-Term Ecosystem, Critical Zone, and Socio-Ecological Research (eLTER RI). Subsequently, new data covering the variables presented here will be continuously available through the data integration portal. This step will allow the data to reach their full potential for research on drought-related ecosystem carbon cycling.</p>https://essd.copernicus.org/articles/17/685/2025/essd-17-685-2025.pdf |
| spellingShingle | T. Dirnböck M. Bahn E. Diaz-Pines I. Djukic M. Englisch K. Gartner G. Gollobich J. Ingrisch B. Kitzler K. Knaebel J. Kobler A. Maier A. Malli I. Offenthaler J. Peterseil G. Pröll S. Venier C. Wohner S. Zechmeister-Boltenstern A. Zolles S. Glatzel High-resolution carbon cycling data from 2019 to 2021 measured at six Austrian long-term ecosystem research sites Earth System Science Data |
| title | High-resolution carbon cycling data from 2019 to 2021 measured at six Austrian long-term ecosystem research sites |
| title_full | High-resolution carbon cycling data from 2019 to 2021 measured at six Austrian long-term ecosystem research sites |
| title_fullStr | High-resolution carbon cycling data from 2019 to 2021 measured at six Austrian long-term ecosystem research sites |
| title_full_unstemmed | High-resolution carbon cycling data from 2019 to 2021 measured at six Austrian long-term ecosystem research sites |
| title_short | High-resolution carbon cycling data from 2019 to 2021 measured at six Austrian long-term ecosystem research sites |
| title_sort | high resolution carbon cycling data from 2019 to 2021 measured at six austrian long term ecosystem research sites |
| url | https://essd.copernicus.org/articles/17/685/2025/essd-17-685-2025.pdf |
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