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Data from: Matrix Recharge of Vertic Forest Soil by Flooding

dataset
posted on 2024-02-27, 17:37 authored by Savannah R. Morales, Mary Grace Lemon, Ryan D. Stewart, Richard KeimRichard Keim

Experiment Overview We imposed artificial flooding on soil monoliths excavated intact from a forested Vertisol. The treatment monoliths were submerged in dyed and isotopically spiked water in short (3–4 days) versus long (31–32 days) artificial floods. After treatment, the monoliths were deconstructed to extract individual peds that were then analyzed for dye coverage, stable isotopic composition of soil water, moisture content, and organic matter content. Control monoliths were also deconstructed and analyzed for the same variables to quantify conditions prior to the artificial floods.

See README file for information on methods and experimental design.

Funding

USDA: LAB94374

History

Data contact name

Keim, Richard

Data contact email

rkeim@lsu.edu

Publisher

Ag Data Commons

Intended use

Quantify effects of flooding on soil matrix recharge and soil water movement in a Vertisol.

Temporal Extent Start Date

2018-09-01

Theme

  • Not specified

Geographic Coverage

{"type":"FeatureCollection","features":[{"geometry":{"type":"Point","coordinates":[-91.089167,30.281667]},"type":"Feature","properties":{}}]}

Geographic location - description

Floodplain of the Mississippi River near St. Gabriel, Louisiana

ISO Topic Category

  • geoscientificInformation
  • inlandWaters
  • environment

National Agricultural Library Thesaurus terms

Vertisols; forest hydrology; floods; soil water; macropore flow; macropores; infiltration (hydrology)

Primary article PubAg Handle

Pending citation

  • No

Public Access Level

  • Public

Preferred dataset citation

Morales, Savannah R.; Lemon, Mary Grace T.; Stewart, Ryan D.; Keim, Richard F. (2021). Data from: Matrix Recharge of Vertic Forest Soil by Flooding. Ag Data Commons. https://doi.org/10.15482/USDA.ADC/1520928

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