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Mapping topsoil physical properties at European scale using the LUCAS database

Geoderma · 2015 · Vol. 261 · pp. 110–123
Cristiano BallabioPanos PanagosLuca Monatanarella

Abstract

The Land Use and Cover Area frame Statistical survey (LUCAS) aimed at the collecting harmonized data about the state of land use/cover over the extent of European Union (EU). Among these 2•105 land use/cover observations selected for validation, a topsoil survey was conducted at about 10% of these sites. Topsoil sampling locations were selected as to be representative of European landscape using a latin hypercube stratified random sampling, taking into account CORINE land cover 2000, the Shuttle Radar Topography Mission (SRTM) DEM and its derived slope, aspect and curvature.\nIn this study we will discuss how the LUCAS topsoil database can be used to map soil properties at continental scale over the geographical extent of Europe. Several soil properties were predicted using hybrid approaches like regression kriging. In this paper we describe the prediction of topsoil texture and related derived physical properties. Regression models were fitted using, along other variables, remotely sensed data coming from the MODIS sensor. The high temporal resolution of MODIS allowed detecting changes in the vegetative response due to soil properties, which can then be used to map soil features distribution. We will also discuss the prediction of intrinsically collinear variables like soil texture which required the use of models capable of dealing with multivariate constrained dependent variables like Multivariate Adaptive Regression Splines (MARS).\nCross validation of the fitted models proved that the LUCAS dataset constitutes a good sample for mapping puropses leading to cross-validation R2 between 0.47 and 0.50 for soil texture and normalised errors between 4 and 10%.

Soil Geostatistics and MappingLandslides and related hazardsRemote Sensing in AgricultureTopsoilLand coverSoil textureEnvironmental scienceShuttle Radar Topography MissionSoil mapDigital soil mappingScale (ratio)DatabaseRemote sensing

Funding

  • European Commission
  • Joint Research Centre
Citations
530
FWCI
19.34
field-weighted impact
References
43
Percentile
100%
vs. same field & year
Citations per year
References
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Geoderma · 2003 · 3,478 citations
Multivariate Adaptive Regression Splines
The Annals of Statistics · 1991 · 8,036 citations
Late Quaternary ice sheet history of northern Eurasia
Quaternary Science Reviews · 2004 · 1,560 citations
A Closed‐form Equation for Predicting the Hydraulic Conductivity of Unsaturated Soils
Soil Science Society of America Journal · 1980 · 26,990 citations
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