The Impact of Rhizosphere Processes on Water Flow and Root Water Uptake

Schwartz, Nimrod;Kroener, Eva;Carminati, Andrea;Javaux, Mathieu
(2015) European Geosciences Union (EGU) General Assembly — Location: Vienna (Austria) (13.April.2015)

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Authors
  • Schwartz, NimrodUCLouvain
    Author
  • Kroener, EvaUniversity of Goettingen, Germany
    Author
  • Carminati, AndreaUniversity of Goettingen, Germany
    Author
  • Author
Abstract
For many years, the rhizosphere, which is the zone of soil in the vicinity of the roots and which is influenced by the roots, is known as a unique soil environment with different physical, biological and chemical properties than those of the bulk soil. Indeed, in recent studies it has been shown that root exudate and especially mucilage alter the hydraulic properties of the soil, and that drying and wetting cycles of mucilage result in non-equilibrium water dynamics in the rhizosphere. While there are experimental evidences and simplified 1D model for those concepts, an integrated model that considers rhizosphere processes with a detailed model for water and roots flow is absent. Therefore, the objective of this work is to develop a 3D physical model of water flow in the soil-plant continuum that take in consideration root architecture and rhizosphere specific properties. Ultimately, this model will enhance our understanding on the impact of processes occurring in the rhizosphere on water flow and root water uptake.
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Citations

Schwartz, N., Kroener, E., Carminati, A., & Javaux, M. (2015). The Impact of Rhizosphere Processes on Water Flow and Root Water Uptake. Geophysical Research Abstracts, 17, EGU2015-13052. https://hdl.handle.net/2078.5/193990 (Original work published 2015)