Identification, Characterization, and Deposit Model of Calcite Mineralization in the Middle Atlas Belts, Morocco

Author:

Ait Ali Abdelkhiar1ORCID,Charroud Mohammed1,Choukrad Jaouad1ORCID,Ouahzizi Youssef1,Si Mhamdi Hicham2ORCID,El Moutaouakkil Nacir3,Saoud Naoufal1,Mechaqrane Abdellah1

Affiliation:

1. Intelligent Systems, Georesources and Renewable Energies Laboratory, Faculty of Sciences and Techniques of Fez, Sidi Mohamed Ben Abdellah University, P.O. Box 2202, Fez 28810, Morocco

2. Laboratory of Applied Geology, Department of Geosciences, Faculty of Sciences and Techniques of Errachidia, Moulay Ismail University, Meknes 50050, Morocco

3. Laboratory of Géosciences, Water and Environment. Department of Earth Sciences, Faculty of Sciences, University Mohamed V Rabat, Rabat 10090, Morocco

Abstract

The Middle Atlas hosts calcite veins of considerable economic value, being found in the Mahdi and Bou Naceur ridges in the eastern part of the Moroccan Middle Atlas. In this study, we aim to identify the fundamental factors controlling mineralization, which could be essential for the exploration of calcite minerals. Jurassic dolomites and limestones host calcite deposits. Mineralization is controlled by the NE-SW sinistral fault system of the Mahdi Ridge as well as by the NW-SE dextral fault system of the Bou Naceur Ridge. These veins exhibit a Riedel shear system. The edges of the veins display different textures, such as banded and brecciated calcite. At the heart of the veins are deposits of massive, automorphic, pure crystalline calcite. Geochemical analyses revealed carbonate rock dissolution and carbonate fluid infiltration, indicating the presence of a low-temperature hydrothermal system. These mineralizations are a response to the evolution of the geodynamic uplift of the Middle Atlas during the Neogene, which occurred during the Alpine orogeny.

Publisher

MDPI AG

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