Integrating depth function and hyper-scale terrain analysis for 3D soil organic carbon modeling in agricultural fields at regional scale

Ramirez Lopez, Leonardo;van Wesemael, Bas;Stevens, Antoine;Doetterl, Sebastian;Schmidt, K.;et.al.
(2012) EGU General Assembly Conference 2012 — Location: Vienna, Austria (2.May.2012)

Files

No attached file found for this publication.

Details

Authors
  • Ramirez Lopez, LeonardoUCLouvain
    Author
  • van Wesemael, BasUCLouvain
    Author
  • Author
  • Doetterl, SebastianUCLouvain
    Author
  • Author
  • Schmidt, K.
    Author
Show more
Abstract
Soil Organic Carbon (SOC) represents a key component in the global C cycle and has an important influence on the global CO2 fluxes between terrestrial biosphere and atmosphere. In the context of agricultural
Affiliations

Citations

Ramirez Lopez, L., van Wesemael, B., Stevens, A., Doetterl, S., Van Oost, K., Behrens, T., & Schmidt, K. (2012). Integrating depth function and hyper-scale terrain analysis for 3D soil organic carbon modeling in agricultural fields at regional scale. Geophysical Research Abstracts, 14, 5529. https://hdl.handle.net/2078.5/73481 (Original work published 2012)