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Connecting saturated hydraulic conductivity to soil aggregation on croplands along a European climate transect

Dymphie Burger, Wulf Amelung, A.P. Heidtmann, M.S. Geske and 20 more

Geoderma | Jun 23, 2026

Abstract

Abstract

Soil aggregates facilitate the infiltration of water into soils. However, information on soil aggregates has not been used for prediction of saturated hydraulic conductivity ( Ks ) in hydrological or Land Surface Models (LSM) so far. We hypothesized that aggregate size, described by the mean weight diameter (MWD), is a key driver of Ks across different climates. To test this, 49 cropland soils were sampled along a climosequence from Northern Sweden to Southern Spain. Tension infiltrometer measurements were performed to determine Ks , which were then predicted using basic soil properties and aggregate size. 10 existing pedotransfer functions (PTFs) using easy-to-measure soil properties were tested. Without recalibration of the regression coefficients to our data, all existing PTFs performed poorly. After calibration, Root Mean Squared Error (RMSE) and R 2 values improved to 0.81–1.10 (ln Ks ) and 0.10–0.51, respectively. Subsequently, two new regression-based PTFs were developed, using soil organic carbon (SOC) content and soil texture as predictors, and explained up to 61% of the data variability. Additionally, MWD could be predicted using soil texture, bulk density, and SOC, with an R 2 of 0.9 and an RMSE of 343 µm, which allowed replacement of laboratory MWD measurements. Aggregate MWD alone could not predict Ks , but the performance of the two newly developed PTF substantially reduced the RMSE and increased the R 2 up to 0.68 after combining MWD with soil texture and SOC. Using simple linear models for predicting aggregate MWD and implementing MWD into PTFs allows for better Ks estimation , and thus, water infiltration and transport in soils.

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Authors

Researchers on this paper

Dymphie Burger

first | University of Bonn | ORCID 0000-0002-8773-3578

Wulf Amelung

middle | University of Bonn | ORCID 0000-0002-4920-4667

A.P. Heidtmann

middle | University of Bonn

M.S. Geske

middle | University of Bonn

Heike Schimmel

middle | University of Bonn | ORCID 0000-0002-3993-7074

M. Andersson

middle | Swedish University of Agricultural Sciences | ORCID 0009-0009-9465-2985

J. Cobos Sabate

middle | Estación Biológica de Doñana

R. Díaz Delgado

middle | Estación Biológica de Doñana

P. Gundersen

middle | University of Copenhagen

M. Ibañez

middle | Forest Science and Technology Centre of Catalonia

Karsten H. Jensen

middle | University of Copenhagen | ORCID 0000-0003-4020-0050

Majken C. Looms

middle | University of Copenhagen | ORCID 0000-0002-3831-6305

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Citation

BibTeX

@article{Burger2026Connecting,
  title = {Connecting saturated hydraulic conductivity to soil aggregation on croplands along a European climate transect},
  author = {Dymphie Burger and Wulf Amelung and A.P. Heidtmann and M.S. Geske and Heike Schimmel and M. Andersson and J. Cobos Sabate and R. Díaz Delgado and P. Gundersen and M. Ibañez and Karsten H. Jensen and Majken C. Looms and Paula E. Redondo‐Hasselerharm and Andreu Rico and Maria‐Teresa Sebastià and S. Spielvogel and Lars Vesterdal and J. Wallsten and J. Westin and S. Zacharias and I. Zimmerman and L. Weihermüller and Harry Vereecken and Sara L. Bauke},
  journal = {Geoderma},
  year = {2026},
  doi = {10.1016/j.geoderma.2026.117911},
  url = {https://doi.org/10.1016/j.geoderma.2026.117911}
}

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