Arid
DOI10.1007/s00710-012-0213-y
Origin of Neoproterozoic ophiolitic peridotites in south Eastern Desert, Egypt, constrained from primary mantle mineral chemistry
Khedr, Mohamed Zaki1,2; Arai, Shoji1
通讯作者Khedr, Mohamed Zaki
来源期刊MINERALOGY AND PETROLOGY
ISSN0930-0708
EISSN1438-1168
出版年2013
卷号107期号:5页码:807-828
英文摘要

The ophiolitic peridotites in the Wadi Arais area, south Eastern Desert of Egypt, represent a part of Neoproterozoic ophiolites of the Arabian-Nubian Shield (ANS). We found relics of fresh dunites enveloped by serpentinites that show abundances of bastite after orthopyroxene, reflecting harzburgite protoliths. The bulk-rock chemistry confirmed the harzburgites as the main protoliths. The primary mantle minerals such as orthopyroxene, olivine and chromian spinel in Arais serpentinites are still preserved. The orthopyroxene has high Mg# [=Mg/(Mg + Fe2+)], similar to 0.923 on average. It shows intra-grain chemical homogeneity and contains, on average, 2.28 wt.% A1(2)O(3), 0.88 wt.% Cr2O3 and 0.53 wt.% CaO, similar to primary orthopyroxenes in modern forearc peridotites. The olivine in harzburgites has lower Fo (93-94.5) than that in dunites (Fo(94.3)-Fo(95.9)). The Arais olivine is similar in NiO (0.47 wt.% on average) and MnO (0.08 wt.% on average) contents to the mantle olivine in primary peridotites. This olivine is high in Fo content, similar to Mg-rich olivines in ANS ophiolitic harzburgites, because of its residual origin. The chromian spinel, found in harzburgites, shows wide ranges of Cr#s [=Cr/(Cr + Al)], 0.46-0.81 and Mg#s, 0.34-0.67. The chromian spinel in dunites shows an intra-grain chemical homogeneity with high Cr#s (0.82-0.86). The chromian spinels in Arais peridotites are low in TiO2, 0.05 wt.% and Y-Fe [= Fe3+/(Cr + Al + Fe3+)], similar to 0.06 on average. They are similar in chemistry to spinels in forearc peridotites. Their compositions associated with olivine’s Fo suggest that the harzburgites are refractory residues after high-degree partial melting (mainly similar to 25-30 % partial melting) and dunites are more depleted, similar to highly refractory peridotites recovered from forearcs. This is in accordance with the partial melting (> 20 % melt) obtained by the whole-rock Al2O3 composition. The Arais peridotites have been possibly formed in a sub-arc setting (mantle wedge), where high degrees of partial melting were available during subduction and closing of the Mozambique Ocean, and emplaced in a forearc basin. Their equilibrium temperature based on olivine-spinel thermometry ranges from 650 to 780 A degrees C, and their oxygen fugacity is high (Delta log AE’O-2 = 2.3 to 2.8), which is characteristic of mantle-wedge peridotites. The Arais peridotites are affected by secondary processes forming microinclusions inside the dunitic olivine, abundances of carbonates and talc flakes in serpentinites. These microinclusions have been formed by reaction between trapped fluids and host olivine in a closed system. Lizardite and chrysotile, based on Raman analyses, are the main serpentine minerals with lesser antigorite, indicating that serpentines were possibly formed under retrograde metamorphism during exhumation and near the surface at low T (< 400 A degrees C).


类型Article
语种英语
国家Japan ; Egypt
收录类别SCI-E
WOS记录号WOS:000325018200011
WOS关键词MARIANA FORE-ARC ; CHROMIAN SPINEL ; CHEMICAL CHARACTERISTICS ; ULTRAMAFIC ROCKS ; MELT EXTRACTION ; ORTHO-PYROXENE ; NUBIAN SHIELD ; TONGA TRENCH ; OCEAN RIDGES ; HAPPO-ONE
WOS类目Geochemistry & Geophysics ; Mineralogy
WOS研究方向Geochemistry & Geophysics ; Mineralogy
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/178907
作者单位1.Kanazawa Univ, Grad Sch Nat Sci & Technol, Dept Earth Sci, Kanazawa, Ishikawa 9201192, Japan;
2.Kafrelsheikh Univ, Dept Geol, Fac Sci, Kafrelsheikh, Egypt
推荐引用方式
GB/T 7714
Khedr, Mohamed Zaki,Arai, Shoji. Origin of Neoproterozoic ophiolitic peridotites in south Eastern Desert, Egypt, constrained from primary mantle mineral chemistry[J],2013,107(5):807-828.
APA Khedr, Mohamed Zaki,&Arai, Shoji.(2013).Origin of Neoproterozoic ophiolitic peridotites in south Eastern Desert, Egypt, constrained from primary mantle mineral chemistry.MINERALOGY AND PETROLOGY,107(5),807-828.
MLA Khedr, Mohamed Zaki,et al."Origin of Neoproterozoic ophiolitic peridotites in south Eastern Desert, Egypt, constrained from primary mantle mineral chemistry".MINERALOGY AND PETROLOGY 107.5(2013):807-828.
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