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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 doi:10.1007/s00710-012-0213-y

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Reference TypeJournal (article/letter/editorial)
TitleOrigin of Neoproterozoic ophiolitic peridotites in south Eastern Desert, Egypt, constrained from primary mantle mineral chemistry
JournalMineralogy and Petrology
AuthorsKhedr, Mohamed ZakiAuthor
Arai, ShojiAuthor
Year2013 (October)Volume107
Page(s)807-828Issue5
PublisherSpringer Science and Business Media LLC
DOIdoi:10.1007/s00710-012-0213-ySearch in ResearchGate
Mindat Ref. ID17173Long-form Identifiermindat:1:5:17173:7
GUID77457a4f-35ca-4c55-ab4a-2f3a16ad83f7
Full ReferenceKhedr, 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 doi:10.1007/s00710-012-0213-y
Plain TextKhedr, 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 doi:10.1007/s00710-012-0213-y
In(2013, October) Mineralogy and Petrology Vol. 107 (5) Springer Science and Business Media LLC

References Listed

These are the references the publisher has listed as being connected to the article. Please check the article itself for the full list of references which may differ. Not all references are currently linkable within the Digital Library.

Abdel-Karim AM, El-Mahallawi MM, Finger F (1996) The ophiolite mélange of Wadi Dunqash and Arayis, Eastern Desert of Egypt: Petrogenesis and tectonic evolution. Acta Mineral Petrogr, Szeged XXXVII:129–141
Abdel-Khalek ML, Takla MA, Sehim A, Hamimi Z, El-Manawi AW (1992) Geology and tectonic evolution of Wadi Beitan area, southeastern Desert, Egypt. 1st Int Conf Geol Arab World, Univ Cairo 2:369–394
Arai S (1987) An estimation of the least depleted spinel peridotite on the basis of olivine-spinel mantle array. Neues Jahrb Mineral Monatsh 8:347–354
Arai S, Matsukage K (1996) Petrology of the gabbro-troctolite-peridotite complex from Hess Deep, equaotrial Pacific: implications for mantle-melt interaction within the oceanic lithosphere. Proc ODP, Sci Results 147:135–155
Not Yet Imported: The Tectonic and Geologic Evolution of Southeast Asian Seas and Islands: Part 2 - book-chapter : 10.1029/GM027p0294

If you would like this item imported into the Digital Library, please contact us quoting Journal ID
El-Sharkawi MA, El-Bayoumi RM (1979) The ophiolites of Wadi Ghadir area, Eastern Desert, Egypt. Ann Geol Surv, Egypt 9:125–135
El-Tahlawi MR, Khudeir A, Wagih A, Bishara W, Boghdady GY (1997) An inquiry into the tectonic setting of an ophiolite association from Egypt. 3rd Int Conf Geochem Alex, Egypt 1:395–408
Evans BW, Guggenheim S (1988) Talc, pyrophyllite, and related minerals. In: Bailey SW (ed) Hydrous Phyllosilicates (exclusive of micas). Rev Mineral 19:225–294
Ghoneim MF, Lebda EM, Nasr BB, Khedr MZ (2002) Geology and tectonic evolution of the area around Wadi Arais, Southern Eastern Desert, Egypt. 6th Conf Geol Arab World, Univ Cairo 1:45–66
Ishii T, Robinson PT, Maekawa H, Fiske R (1992) Petrological studies of peridotites from diapiric serpentinite seamounts in the Izu-Ogasawara-Mariana forearc. In: Fryer P, Pearce JA, Stokking LB (eds) Proceedings of the Ocean Drilling Program Scientific Results 125. Ocean Drilling Program, College Station, pp 445–485
Khedr MZ (2004) Petrological and geochemical studies on the area around Wadi Arais, south Eastern Desert, Egypt. M.Sc. Dissertation. University of Tanta, Egypt
Khudeir AA (1995) Chromian spinel-silicate chemistry in peridotite and orthopyroxenite relicts from ophiolitic serpentinites, Eastern Desert, Egypt. Bull Fac Sci Assuit Univ Egypt 24:221–261
Loferski P, Lipin BR (1983) Exsolution in metamorphosed chromite from the Red Lodge district, Montana. Amer Mineral 68:777–789
O’Hanley DS (1996) Serpentinites: records of tectonic and petrologic history. Oxford University Press, Oxford, p 277
Sack RO, Ghiorso MS (1991) Chromian spinels as petrogenetic indicators: Thermodynamics and petrological applications. Amer Mineral 76:827–847
Stern RJ (1994) Arc assembly and continental collision in the neoproterozoic east African orogen: implications for the consolidation of Gondwana. Ann Rev Earth Planet Sci Lett 152:75–91
Takahashi E, Uto K, Schilling JG (1987) Primary magma compositions and Mg/Fe ratios of their mantle residues along Mid-Atlantic Ridge 29 N to 73 N. Tech Rep Inst Study Earth’s Inter Okayama Univ Ser A 9:1–14
Umino S, Kushiro I (1989) Experimental studies on boninite petrogenesis. In: Crowford AJ (ed) Boninites and Related Rocks. Unwin Hyman, London, pp 89–111
van der Laan SR, Arculus RJ, Pearce JA, Murton JB (1992) Petrography, mineral chemistry, and phase relations of the basement boninite series of Site 786, Izu–Bonin forearc. In: Fryer P, Pearce JA, Stokking LB (eds) Proceedings of the ocean drilling program, scientific results, vol. 125. Ocean Drilling Program, College Station, pp 171–202
Wicks FJ, Whittaker EJW (1977) Serpentine textures and serpentinization. Can Mineral 15:446–488


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