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Data from Dumont et al. (2026), Self- and Electrodic-Potential Response to Hydrological and Biogeochemical Processes in the Soil-Tree Continuum


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Created: Aug 05, 2025 at 9:21 p.m. (UTC)
Last updated: Feb 23, 2026 at 3:14 p.m. (UTC) (Metadata update)
Published date: Feb 23, 2026 at 3:14 p.m. (UTC)
DOI: 10.4211/hs.da9436b0422d4902911f41b405f5dbba
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Content types: Single File Content 
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Abstract

These data are published in Dumont, M., Takver, X., Jarecke, K., Yilangai, R., Slater, L., Graham, E., Holly, B., Sullivan, P., Singha, K. (2026). Self- and Electrodic-Potential Response to Hydrological and Biogeochemical Processes in the Soil-Tree Continuum. Journal of Geophysical Research-Biogeochemistry, doi: 10.1029/2025JG009375.

• We explore the potential of passive electrical methods to concurrently track water and biochemical fluxes across the soil–tree continuum.
• We hypothesize and test an electro-hydro-biogeochemical conceptual model using electrical potential monitored within the soil-root-trunk continuum at the H.J. Andrews Experimental Forest, Oregon, USA during the summer of 2023.
• Despite disturbances caused by wildfire smoke, electrical signals revealed strong correlations with daily and seasonal tree transpiration, water uptake, hydraulic redistribution, and soil respiration.
• This study presents a framework for using passive electrical methods as proxies for monitoring forest ecohydrological sustainability.

Subject Keywords

Coverage

Spatial

Coordinate System/Geographic Projection:
WGS 84 EPSG:4326
Coordinate Units:
Decimal degrees
Place/Area Name:
H.J. Andrews WS10
Longitude
-122.2608°
Latitude
44.2173°

Temporal

Start Date:
End Date:

Content

Related Resources

This resource is described by Dumont, M., Takver, X., Jarecke, K.M., Yilangai, R., Slater, L., Graham, E.B., Barnard, H.R., Sullivan, P.L. and Singha, K. (2026). Self- and electrodic-potential response to hydrological and biogeochemical processes in the soil-tree continuum. Journal of Geophysical Research: Biogeosciences, 131, e2025JG009375. https://doi.org/10.1029/2025JG009375

Credits

Funding Agencies

This resource was created using funding from the following sources:
Agency Name Award Title Award Number
Department of Energy None DE-SC0023312

Contributors

People or Organizations that contributed technically, materially, financially, or provided general support for the creation of the resource's content but are not considered authors.

Name Organization Address Phone Author Identifiers
Holly R Barnard University of Colorado at Boulder Colorado, US 3037357062
Pamela Sullivan College of Earth, Ocean and Atmospheric Sciences, Oregon State University, Corvallis, OR, USA
Xander Takver College of Earth, Ocean and Atmospheric Sciences, Oregon State University, Corvallis, OR, USA
Karla Jarecke Oregon State University OR, US
Rahila Yilangai University of Colorado at Boulder
Emily B. Graham Biological Sciences Division, Pacific Northwest National Laboratory, USA

How to Cite

Dumont, M., K. Singha (2026). Data from Dumont et al. (2026), Self- and Electrodic-Potential Response to Hydrological and Biogeochemical Processes in the Soil-Tree Continuum, HydroShare, https://doi.org/10.4211/hs.da9436b0422d4902911f41b405f5dbba

This resource is shared under the Creative Commons Attribution-NoCommercial CC BY-NC.

http://creativecommons.org/licenses/by-nc/4.0/
CC-BY-NC

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