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  4. Influence of some physicochemical and biological parameters on soil structure formation in alluvial soils
 
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Influence of some physicochemical and biological parameters on soil structure formation in alluvial soils

Auteur(s)
Bullinger-Weber, Géraldine 
Institut de biologie 
Le Bayon, Renée-Claire 
Institut de biologie 
Guenat, Claire
Gobat, Jean-Michel 
Institut de biologie 
Date de parution
2007-4-27
In
European Journal of Soil Biology
Vol.
1
No
43
De la page
57
A la page
70
Mots-clés
  • soil aggregate stabil...

  • earthworms

  • enchytraeids

  • physicochemical

  • factors

  • humus form

  • alluvial soil

  • softwood forest

  • ORGANIC-MATTER

  • EARTHWORM POPULATION

  • AGGREGATE STABILITY

  • CULTIVATED

  • SOILS

  • BEECH FORESTS

  • HUMUS FORMS

  • ENCHYTRAEIDAE

  • CLAY

  • OLIGOCHAETA

  • DEGRADATION

Résumé
This study examines the role of abiotic (texture, calcium carbonates or iron) and biotic parameters (earthworm and enchytraeid activities) on the initial phases of soil aggregation. Our research focused on humus forms in alluvial soils, which are considered as young and heterogeneous environments. We hypothesized that the soil structure formation is determined by both the nature of the recent alluvial deposits and the soil fauna. For this purpose, six sites were chosen throughout two types of softwood forests (willow and alder forest) representing two stages of vegetation succession. Evidence of soil texture influence on aggregate stability was observed. A dominance of a coarse sand fraction caused a quick colonization of enchytraeids and epigeic earthworms while a silty texture favoured the presence of anecic earthworms, thus increasing the aggregate stabilisation. Iron forms, acting as cementing agents, were observed in the coarse silt, while calcium carbonates were equally distributed among the textural fractions. Active calcium carbonate fraction, binding organic matter with mineral components, was not found in the coarse sand fraction. In conclusion, the tree age cannot alone be used as an indicator of the humus form evolution but biological and physicochemical parameters also influence the initial steps of soil structuration. (c) 2006 Elsevier Masson SAS. All rights reserved.
Lié au projet
Role of organic matter and soil biota on first steps of soil structuring. The case of alluvial soils from alpine to plain level (FLOODSTRUBIO) 
URI
https://libra.unine.ch/handle/123456789/11871
Type de publication
Resource Types::text::journal::journal article
Dossier(s) à télécharger
 main article: 2020-12-12_447_6749.pdf (496.72 KB)
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