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April 21, 2026Scientific Data10 citationsOpen Access

Global Soil Water Stable Isotope Dataset

JYJiangwei YangRLRui LiYLYitian Lei

Key Points

  • The aim is to create a comprehensive dataset of soil-water stable isotopes to improve global-scale eco-hydrological research.
  • Compiled a dataset of 27,455 records from 463 observation sites across 37 countries.
  • Classified records into standardized depth intervals for soil layers: shallow, active-root, mid-depth, and deep.
  • Included geospatial and temporal metadata to support comparative analysis.
  • The dataset provides a harmonized view of soil-water isotopes from 1975 to 2024.
  • Facilitates evaluation of terrestrial water cycling and supports hydrological model calibration.
  • Aids in tracing ecosystem water-use strategies under environmental changes.

Abstract

Soil water is a key medium linking the atmosphere, vegetation, and groundwater systems, and its stable isotopes (2H and 18O) are powerful tracers of ecohydrological processes. However, historical soil-water isotope observations remain fragmented, lack structurally harmonized formatting, and are unevenly distributed in space and time, which severely constrains cross-regional and global-scale research. To address these gaps, we compiled and structurally harmonized a comprehensive global dataset of soil-water stable isotopes spanning 1975 to 2024. The dataset integrates primary in-situ measurements, literature-extracted records, and open-repository data, comprising a total of 27,455 records from 463 observation sites across 37 countries on six continents. To facilitate comparative analysis, the records are classified into standardized profile intervals representing shallow (0-10 cm), active-root (10-40 cm), mid-depth (40-100 cm), and deep (>100 cm) soil layers, coupled with essential geospatial and temporal metadata. This globally representative dataset provides a robust empirical foundation for evaluating terrestrial water cycling, calibrating regional hydrological models, tracing ecosystem water-use strategies, and addressing hydroclimatic challenges under global environmental change.

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Cite This Study

Yang et al. (2026) studied this question.

synapsesocial.com/papers/69e7138bcb99343efc98cf86https://doi.org/10.1038/s41597-026-07262-8
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Also Consider

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  5. 5Technical note: Simple, exact and reliable way to extract soil water for stable isotope analysis2024