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  3. Soil and Tree Stem Xylem Water Isotope Data from Two Pan-European Sampling Campaigns
 

Soil and Tree Stem Xylem Water Isotope Data from Two Pan-European Sampling Campaigns

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BORIS DOI
10.48620/92456
Publisher DOI
10.5194/essd-17-6129-2025
Description
<jats:p>Abstract. The stable isotope ratios of hydrogen (δ2H) and oxygen (δ18O) are useful for studying ecohydrological dynamics in forests. However, most isotope-based eco-hydrological studies are limited to single sites, resulting in a lack of large-scale isotope data for understanding tree water uptake. Here, we provide a first systematic isotope dataset for soil and stem xylem water collected during two pan-European sampling campaigns at 40 beech (Fagus sylvatica), spruce (Picea abies), or mixed beech-spruce forest sites in spring and summer 2023 (https://doi.org/10.16904/envidat.542, Lehmann et al., 2024). The dataset is complemented by additional site-, soil-, and tree-specific metadata. The samples and metadata were collected by different researchers across Europe following a standardized protocol. Soil samples were taken at up to 5 depths (ranging from 0 to 90 cm) and stem xylem samples from the trunks of three beech and/or spruce trees per site. All samples were sent to a single laboratory, where all analytical work was conducted. Water was extracted using cryogenic vacuum distillation and analyzed with an isotope laser spectrometer. Additionally, a subset of the samples was analyzed with an isotope ratio mass spectrometer. Data quality checks revealed a high mean total extraction efficiency, mean water amount (>1 mL), accuracy, and precision. The isotopic signature of soil and stem xylem water varied as a function of the geographic origin and changed from spring to summer across all sites. While δ2H and δ18O were strongly correlated, the soil water data plotted closer to the Global Meteoric Water Line (GMWL) than the stem xylem water. Specifically, the δ2H values of the xylem water were more enriched than those of the soil water, leading to a systematic deviation from the GMWL. Isotopic enrichment of the stem xylem water at mixed forest sites was larger for spruce trees than for beech trees. This dataset is particularly useful for large-scale studies on plant water use, ecohydrological model testing, and isotope mapping across Europe.</jats:p>
Date of Publication
2025
Publication Type
Article
Language(s)
en
Contributor(s)
Lehmann, Marco M.
Geris, Josie
Van Meerveld, Ilja
Penna, Daniele
Rothfuss, Youri
Verdone, Matteo
Ala-Aho, Pertti
Arvai, Matyas
Babre, Alise
Balandier, Philippe
Bernhard, Fabian
Institute of Geography, Geocomputation and Earth Observation
Butorac, Lukrecija
Carrière, Simon D.
Ceperley, Natalie C.orcid-logo
Institute of Geography, Hydrology
Chen, Zuosinan
Correa, Alicia
Diao, Haoyu
Dubbert, David
Dubbert, Maren
Ercoli, Fabio
Floriancic, Marius G.
Ghazoul, Alligin
Gimeno, Teresa E.
Gounelle, Damien
Hagedorn, Frank
Hissler, Christophe
Huneau, Frédéric
Iraheta, Alberto
Jakovljevic, Tamara
Kazakis, Nerantzis
Kern, Zoltan
Kinzinger, Laura
Knaebel, Karl
Kobler, Johannes
Kocum, Jiri
Koeber, Charlotte
Koren, Gerbrand
Kübert, Angelika
Kupka, Dawid
Le Gall, Samuel
Lehtonen, Aleksi
Leydier, Thomas
Malagoli, Philippe
Manca Di Villahermosa, Francesca Sofia
Marchina, Chiara
Martínez-Carreras, Núria
Martin-StPaul, Nicolas
Marttila, Hannu
Meyer Oliveira, Aline
Monvoisin, Gael
Orlowski, Natalie
Palmik-Das, Kadi
Persoiu, Aurel
Popa, Andrei
Prikaziuk, Egor
Quantin, Cécile
Rinne-Garmston, Katja T.
Rohde, Clara
Sanda, Martin
Saurer, Matthias
Schulz, Daniel
Stockinger, Michael P.
Stumpp, Christine
Vénisse, Jean-Stéphane
Vlcek, Lukas
Voudouris, Stylianos
Weeser, Björn
Wilkinson, Mark E.
Zuecco, Giulia
Meusburger, Katrin
Additional Credits
Institute of Geography, Hydrology
Institute of Geography, Geocomputation and Earth Observation
Series
Earth System Science Data
Publisher
Copernicus Publications
ISSN
1866-3516
1866-3508
Access(Rights)
open.access
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