Petrogenesis and Tectonic Evolution of Kab Amiri Ophiolites and Island-Arc Assemblages, Central Eastern Desert, Egypt: Petrological and Geochemical Constraints

Author:

Taalab Sherif A.1ORCID,Abdel-Rahman Ahmed M.1,El-Awny Hamada1,Awad Hamdy A.2,Zakaly Hesham M. H.3,Fahmy Wael1,Ene Antoaneta4ORCID

Affiliation:

1. Geology Department, Faculty of Science, Al-Azhar University, Cairo 11884, Egypt

2. Geology Department, Faculty of Science, Al-Azhar University, Assiut Branch, Assiutt 71524, Egypt

3. Institute of Physics and Technology, Ural Federal University, 620002 Yekaterinburg, Russia

4. INPOLDE Research Center, Department of Chemistry, Physics and Environment, Faculty of Sciences and Environment, Dunarea de Jos University of Galati, 47 Domneasca Street, 800008 Galati, Romania

Abstract

The Kab Amiri area in the Central Eastern Desert (CED) of Egypt comprises ophiolitic rocks, island arc metasediments, and granitic rocks. This study deals with the petrography and geochemistry of the ophiolitic and island arc rocks to understand their petrogenesis and geodynamic evolution of the CED ophiolitic belt. The Kab Amiri ophiolite is dismembered, comprising serpentinites and metabasalt (spilite). Serpentinites have low contents of Al2O3 (1.14 wt%) and CaO (0.65 wt%), suggesting they are depleted peridotite protoliths (e.g., depleted harzburgites to dunites). The high L.O.I. value (13.7 wt%) of serpentinite rocks indicates intense hydration and serpentinization during alteration processes. Petrographic and geochemical studies suggest that serpentinites were likely formed after depleted peridotites in a supra-subduction zone (SSZ) setting (e.g., a fore-arc setting). Spilitic basalt shows a tholeiitic affinity of the depleted mantle source. The arc-related metasediments are represented mainly by schists and slate. Many samples of metasediments are relatively low in alumina (Al2O3 < 15%), suggesting a low clay content and formation in an island arc setting. In contrast, protoliths of island-arc metabasalts and meta-andesites crystallized from calc-alkaline magmas in the immature oceanic arcs.

Funder

Ministry of Science and Higher Education of the Russian Federation

Dunarea de Jos University of Galati, Romania

Publisher

MDPI AG

Subject

Geology,Geotechnical Engineering and Engineering Geology

Reference78 articles.

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