Volcanic Stratigraphy, Petrology, Geochemistry and Precise U-Pb Zircon Geochronology of the Late Ediacaran Ouarzazate Group at the Oued Dar’a Caldera: Intracontinental Felsic Super-Eruptions in Association with Continental Flood Basalt Magmatism on the West African Craton (Saghro Massif, Anti-Atlas)

  • Rachid Oukhro
  • , Nasrrddine Youbi
  • , Boriana Kalderon-Asael
  • , David A.D. Evans
  • , James Pierce
  • , Jörn Frederik Wotzlaw
  • , Maria Ovtcharova
  • , João Mata
  • , Mohamed Achraf Mediany
  • , Jihane Ounar
  • , Warda El Moume
  • , Ismail Hadimi
  • , Oussama Moutbir
  • , Moulay Ahmed Boumehdi
  • , Abdelmalek Ouadjou
  • , Andrey Bekker

Research output: Contribution to journalArticlepeer-review

2 Citations (Scopus)

Abstract

The Ouarzazate Group in the Anti-Atlas Belt of southern Morocco, part of the West African Craton (WAC), is a significant Proterozoic lithostratigraphic unit formed during the late Ediacaran period. It includes extensive volcanic rocks associated with the early stages of Iapetus Ocean opening. Zircon U-Pb dating and geochemical analyses of the Oued Dar’a Caldera (ODC) volcanic succession in the Saghro Massif reveal two major eruptive cycles corresponding to the lower and upper Ouarzazate Group. The 1st cycle (588–563 Ma) includes pre- and syn-caldera volcanic succession characterized by basaltic andesite to rhyolitic rocks, formed in a volcanic arc setting through lithospheric mantle-derived mafic magmatism and crustal melting. A major caldera-forming eruption occurred approximately 571–562 Ma, with associated rhyolitic dyke swarms indicating a larger caldera extent than previously known. The 2nd cycle (561–543 Ma) features post-caldera bimodal volcanism, with tholeiitic basalts and intraplate felsic magmas, signaling a shift to continental flood basalts and silicic volcanic systems. The entire volcanic activity spans approximately 23–40 million years. This succession is linked to late Ediacaran intracontinental super-eruptions tied to orogenic collapse and continental extension, likely in association with the Central Iapetus Magmatic Province (CIMP), marking a significant transition in the geodynamic evolution of the WAC.

Original languageEnglish
Article number776
JournalMinerals
Volume15
Issue number8
DOIs
Publication statusPublished - Aug 2025

Keywords

  • Anti-Atlas
  • Ouarzazate Group
  • U-Pb geochronology
  • geochemistry
  • silicic large igneous province (SLIP)

ASJC Scopus subject areas

  • Geotechnical Engineering and Engineering Geology
  • Geology

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