Arid
DOI10.1080/00206814.2019.1708816
The Neoproterozoic ophiolitic ultramafic rocks in Eastern Desert of Egypt: implications for petrogenesis and metasomatic processes
Abdel-Karim, Abdel-Aal M.1; El-Shafei, Shaimaa A.1; Azer, Mokhles K.2
通讯作者El-Shafei, Shaimaa A.
来源期刊INTERNATIONAL GEOLOGY REVIEW
ISSN0020-6814
EISSN1938-2839
出版年2020
英文摘要

This paper deals with the mineral chemistry and geochemistry of ophiolitic peridotites from three localities in the Eastern Desert of Egypt, namely; Wadi Muweilha, Wadi Arayis and Gabal Kurbiyay. The present peridotites show variable degrees of alteration, including; serpentinized peridotites, serpentinites and talc-carbonate rocks with small-scale outcrops of chromitites, serpentinized pyroxenites and chloritites. Cr-spinel together with olivine and pyroxene relics represents the most common primary phases in the studied rock types. The investigated rocks represent mantle residues that experienced high degrees of partial melting. The Cr numbers of Cr-spinels reveal that serpentinized pyroxenites exhibit lower degrees of partial melting (similar to 35%) than serpentinites and chromitites (> 35%). The whole-rock trace and rare earth elements (REE) data together with the elevated Cr# of Cr-spinels (>0.6), high Mg# of olivines (Fo = 90.82-92.61) and depleted composition of clinopyroxene are consistent with a fore-arc supra-subduction zone environment. The enrichment of light rare earth elements (LREEs) relative to heavy ones (HREE) in samples of W. Muweilha and W. Arayis could be attributed to the induction of serpentinization-related hydrothermal fluids. In contrast, the studied samples of G. Kurbiyay are depleted in LREE compared with HREE in common with a previously formed abyssal peridotite that later modified in a fore-arc region. The serpentinized pyroxenites and chloritites are speculated a genetic relationship with the rest of the mantle suite. The former is produced by the assimilation of subducted sediments in arc-related magmas. The latter is considered to be products of retrograde metamorphism simultaneously with the obduction and thrusting of the ophiolitic ultramafics. The investigated Cr-rich chromitites were formed from boninitic melts resulting from the high-degree melting of the sub-arc depleted mantle in the presence of slab-derived fluids at a mature-arc stage.


英文关键词Metasomatized peridotite Mineral chemistry Geochemistry Eastern Desert of Egypt Metasomatism petrogenesis tectonic setting pyroxenite chromitite chloritite
类型Article ; Early Access
语种英语
国家Egypt
收录类别SCI-E
WOS记录号WOS:000505093800001
WOS关键词MARIANA FORE-ARC ; DUNITE-CHROMITITE COMPLEXES ; PAN-AFRICAN SERPENTINITES ; ARABIAN-NUBIAN SHIELD ; MID-ATLANTIC RIDGE ; SUBDUCTION ZONE ; MANTLE PERIDOTITES ; PODIFORM CHROMITITES ; ABYSSAL PERIDOTITES ; TRANSITION ZONE
WOS类目Geology
WOS研究方向Geology
EI主题词2020-01-02
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/312351
作者单位1.Zagazig Univ, Geol Dept, Fac Sci, Zagazig, Egypt;
2.Natl Res Ctr, Dept Geol Sci, Cairo, Egypt
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GB/T 7714
Abdel-Karim, Abdel-Aal M.,El-Shafei, Shaimaa A.,Azer, Mokhles K.. The Neoproterozoic ophiolitic ultramafic rocks in Eastern Desert of Egypt: implications for petrogenesis and metasomatic processes[J],2020.
APA Abdel-Karim, Abdel-Aal M.,El-Shafei, Shaimaa A.,&Azer, Mokhles K..(2020).The Neoproterozoic ophiolitic ultramafic rocks in Eastern Desert of Egypt: implications for petrogenesis and metasomatic processes.INTERNATIONAL GEOLOGY REVIEW.
MLA Abdel-Karim, Abdel-Aal M.,et al."The Neoproterozoic ophiolitic ultramafic rocks in Eastern Desert of Egypt: implications for petrogenesis and metasomatic processes".INTERNATIONAL GEOLOGY REVIEW (2020).
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