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Samaoui, Samir, Aabi, Ayoub, Boushaba, Abdellah, Mohammed, Belkasmi, Nait Bba, Abdellah, Essaifi, Abderrahim, Baidder, Lahssen, Lamrani, Othmane (2024) Metallogeny and Genesis of Fault-Filling Barite-Sulfide Veins (Ougnat, Morocco): Petrography, Fluid Inclusion, and Sr-S Isotopic Constraints. Geosciences, 14 (3) doi:10.3390/geosciences14030083

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Reference TypeJournal (article/letter/editorial)
TitleMetallogeny and Genesis of Fault-Filling Barite-Sulfide Veins (Ougnat, Morocco): Petrography, Fluid Inclusion, and Sr-S Isotopic Constraints
JournalGeosciences
AuthorsSamaoui, SamirAuthor
Aabi, AyoubAuthor
Boushaba, AbdellahAuthor
Mohammed, BelkasmiAuthor
Nait Bba, AbdellahAuthor
Essaifi, AbderrahimAuthor
Baidder, LahssenAuthor
Lamrani, OthmaneAuthor
Year2024Volume<   14   >
Issue<   3   >
URL
DOIdoi:10.3390/geosciences14030083Search in ResearchGate
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Mindat Ref. ID17221463Long-form Identifiermindat:1:5:17221463:6
GUID0
Full ReferenceSamaoui, Samir, Aabi, Ayoub, Boushaba, Abdellah, Mohammed, Belkasmi, Nait Bba, Abdellah, Essaifi, Abderrahim, Baidder, Lahssen, Lamrani, Othmane (2024) Metallogeny and Genesis of Fault-Filling Barite-Sulfide Veins (Ougnat, Morocco): Petrography, Fluid Inclusion, and Sr-S Isotopic Constraints. Geosciences, 14 (3) doi:10.3390/geosciences14030083
Plain TextSamaoui, Samir, Aabi, Ayoub, Boushaba, Abdellah, Mohammed, Belkasmi, Nait Bba, Abdellah, Essaifi, Abderrahim, Baidder, Lahssen, Lamrani, Othmane (2024) Metallogeny and Genesis of Fault-Filling Barite-Sulfide Veins (Ougnat, Morocco): Petrography, Fluid Inclusion, and Sr-S Isotopic Constraints. Geosciences, 14 (3) doi:10.3390/geosciences14030083
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Abstract/NotesThe Ougnat Massif of the eastern Anti-Atlas (Morocco) hosts barite and sulfide vein-type deposits of vital economic importance. With over 150 mineralized structures reported in the Ougnat Massif, the ore-bearing ones are predominantly composed of barite, quartz, calcite, and minor portions of sulfides. The mineralized veins are driven by NW-SE and NE-SW to E-W oblique-slip opening faults that cross both the Precambrian basement and its Paleozoic cover. The mineralized structures occur as lenses and sigmoidal veins that follow stepped tension fracture sets oblique to the fault planes. These geometries and kinematic indicators of these structures point to a predominantly normal-sinistral opening in a brittle-ductile tectonic setting. The S isotopic compositions of barite from the Ougnat Massif (+10.8 to +19.5‰) fall mostly within the range of δ34S values of Late Triassic to Jurassic seawater, thus suggesting that some of the SO2− in barite comes from seawater sulfate. This range of δ34S values also corresponds approximately to the hydrothermal barite context. The 87Sr/86Sr ratios of barite, which range from 0.710772 to 0.710816, lie between the radiogenic strontium isotopic compositions of deposition by hydrothermal solutions, and also coincide with the non-radiogenic isotopic signature of Triassic to Jurassic seawater. Based on a fluid inclusions study, the ore-forming fluids were a mixture of two or more fluids. A deep hot fluid with an average temperature of 368 °C leached the granodiorites and volcanic-sedimentary complex of the Ouarzazate Group. This fluid provided the hydrothermal system with most of the Ba, radiogenic Sr, and some of the dissolved S. A second, shallow fluid with an average temperature of 242 °C was derived from Late Triassic to Jurassic seawater. The barite mineralization of the Ougnat Massif constitutes a typical example of vein-type mineralization that occurred along the northern margin of the West African Craton and regionally tied to the central Atlantic opening.

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Locality Pages

LocalityCitation Details
Ougnat Massif, Errachidia Province, Drâa-Tafilalet Region, Morocco
Aberchane deposit, Ougnat Massif, Errachidia Province, Drâa-Tafilalet Region, Morocco
Aghri n’Imacher deposit, Ougnat Massif, Errachidia Province, Drâa-Tafilalet Region, Morocco
Amda deposit, Ougnat Massif, Errachidia Province, Drâa-Tafilalet Region, Morocco
Ansmine deposit, Ougnat Massif, Errachidia Province, Drâa-Tafilalet Region, Morocco
Isk n’Oudaden deposit, Ougnat Massif, Errachidia Province, Drâa-Tafilalet Region, Morocco
Mouassaie vein, Ougnat Massif, Errachidia Province, Drâa-Tafilalet Region, Morocco
Taggat mine, Ougnat Massif, Errachidia Province, Drâa-Tafilalet Region, Morocco
Tiberguente deposit, Ougnat Massif, Errachidia Province, Drâa-Tafilalet Region, Morocco
Tichraramine mine, Ougnat Massif, Errachidia Province, Drâa-Tafilalet Region, Morocco
Tismaght deposit, Ougnat Massif, Errachidia Province, Drâa-Tafilalet Region, Morocco

Mineral Occurrences

LocalityMineral(s)
Ougnat Massif, Errachidia Province, Drâa-Tafilalet Region, Morocco Andalusite, Andesite, Arkose, Azurite, Baryte, Basalt, Biotite, Calcite, Cerussite, Chalcopyrite, Chert, Chlorite Group, Conglomerate, Cordierite, Diorite, Fluorite, Galena, Garnet Group, Granite, Granitoid, Greenschist, Greywacke, Limestone, Malachite, Mudstone, Muscovite, Pyrite, Quartz, Rhyolite, Sandstone, Schist, Sericite, Wacke, Wad
Aberchane deposit, Ougnat Massif, Errachidia Province, Drâa-Tafilalet Region, Morocco Baryte
Tiberguente deposit, Ougnat Massif, Errachidia Province, Drâa-Tafilalet Region, Morocco Sandstone
Tichraramine mine, Ougnat Massif, Errachidia Province, Drâa-Tafilalet Region, Morocco Baryte


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