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Illite crystallinity patterns in the Anti-Atlas of Morocco

Auteur(s)
Ruiz, Geoffrey M. H.
Helg, Urs 
Centre d'hydrogéologie et de géothermie 
Negro, François 
Centre d'hydrogéologie et de géothermie 
Adatte, Thierry 
Centre d'hydrogéologie et de géothermie 
Burkhard, Martin 
Centre d'hydrogéologie et de géothermie 
Date de parution
2008
In
Swiss Journal of Geosciences, Springer, 2008/101/2/387-395
Mots-clés
  • Anti-Atlas
  • low-grade metamorphism
  • Illite crystallinity
  • paleo-geothermal gradient
  • Carboniferous
  • Anti-Atlas

  • low-grade metamorphis...

  • Illite crystallinity

  • paleo-geothermal grad...

  • Carboniferous

Résumé
The low-grade metamorphism of the sedimentary cover of the Moroccan Anti-Atlas is investigated using Illite crystallinity (IC) method. More than 200 samples from three key areas (southwestern, central and eastern Anti-Atlas) have been taken from a maximum of different stratigraphic levels and have been analysed. The metamorphism is of low to very low degree throughout the southern flank of the Anti-Atlas. It increases from northeast to southwest. Whereas in the eastern Anti-Atlas diagenetic and anchizonal IC-values are predominant, in the western and central Anti-Atlas also epizonal IC-values are found. In every respective area the IC improves with stratigraphic age. At the scale of the entire Palaeozoic Anti-Atlas basin the IC correlates best with estimated paleo-overburden. However, burial metamorphism cannot be the cause even though considering missing sedimentary pile of Late Carboniferous age. The ‘abnormal’ paleo-geothermal gradient of 43–35 °C/km we evidenced for the Carboniferous is a true one, and has to be related to a basement sequence enriched in heat producing elements such as series of the West African Craton.
Identifiants
https://libra.unine.ch/handle/123456789/14758
_
10.1007/s00015-008-1267-z
Type de publication
journal article
Dossier(s) à télécharger
 main article: Ruiz_Geoffrey_M._H._-_Illite_crystallinity_patterns_in_the_Anti-Atlas_20091201.pdf (995.8 KB)
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