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Geosciences  2013 

Volcanosedimentary Basins in the Arabian-Nubian Shield: Markers of Repeated Exhumation and Denudation in a Neoproterozoic Accretionary Orogen

DOI: 10.3390/geosciences3030389

Keywords: Arabian-Nubian Shield, marine sediments, terrestrial sediments, post-amalgamation basins, transpressional basins, exhumation, erosion, subsidence, Cryogenian, Ediacaran

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Abstract:

The Arabian-Nubian Shield (ANS) includes Middle Cryogenian-Ediacaran (790–560 Ma) sedimentary and volcanic terrestrial and shallow-marine successions unconformable on juvenile Cryogenian crust. The oldest were deposited after 780–760 Ma shearing and suturing in the central ANS. Middle Cryogenian basins are associated with ~700 Ma suturing in the northern ANS. Late Cryogenian basins overlapped with and followed 680–640 Ma Nabitah orogenesis in the eastern ANS. Ediacaran successions are found in pull-apart and other types of basins formed in a transpressive setting associated with E-W shortening, NW-trending shearing, and northerly extension during final amalgamation of the ANS. Erosion surfaces truncating metamorphosed arc rocks at the base of these successions are evidence of periodic exhumation and erosion of the evolving ANS crust. The basins are evidence of subsequent subsidence to the base level of alluvial systems or below sea level. Mountains were dissected by valley systems, yet relief was locally low enough to allow for seaways connected to the surrounding Mozambique Ocean. The volcanosedimentary basins of the ANS are excellently exposed and preserved, and form a world-class natural laboratory for testing concepts about crustal growth during the Neoproterozoic and for the acquisition of data to calibrate chemical and isotopic changes, at a time in geologic history that included some of the most important, rapid, and enigmatic changes to Earth’s environment and biota.

References

[1]  Stern, R.J. Arc assembly and continental collision in the neoproterozoic East African Orogen: Implications for the consolidation of Gondwanaland. Annu. Rev. Earth Planet Sci. 1994, 22, 319–351, doi:10.1146/annurev.ea.22.050194.001535.
[2]  Collins, A.S.; Pisarevsky, S.A. Amalgamating eastern Gondwana: The evolution of the circum-Indian Orogens. Earth-Sci. Rev. 2005, 71, 229–270.
[3]  Johnson, P.R.; Kattan, F.H. The Geology of the Saudi Arabian Shield; Saudi Geological Survey: Jiddah, Saudi Arabia, 2012; pp. 1–479.
[4]  Stern, R.J. Crustal evolution in the East African Orogen: A neodymium isotopic perspective. J. Afr. Earth Sci. 2002, 34, 109–117, doi:10.1016/S0899-5362(02)00012-X.
[5]  Whitehouse, M.J.; Windley, B.F.; Stoeser, D.B.; Al-Khirbash, S.; Ba-Bttat, M.A.O.; Haider, A. Precambrian basement character of Yemen and correlations with Saudi Arabia and Somalia. Precambrian Res. 2001, 105, 357–369, doi:10.1016/S0301-9268(00)00120-0.
[6]  Whitehouse, M.J.; Stoeser, D.B.; Stacey, J.S. The Khida terrane-geochronological and isotopic evidence for Paleoproterozoic and Archean crust in the Eastern Arabian Shield of Saudi Arabia. Gondwana Res. 2001, 4, 200–202, doi:10.1016/S1342-937X(05)70695-X.
[7]  Cox, G.M.; Lewis, C.J.; Collins, A.S.; Halverson, G.P.; Jourdan, F.; Foden, J.; Nettle, D.; Kattan, F. Ediacaran Terrane accretion within the Arabian-Nubian Shield. Gondwana Res. 2011, 21, 341–352.
[8]  Abdelsalam, M.G.; Abdel-Rahman, E.M.; El-Faki, E.M.; Al-Hur, B.; El-Bashier, F.R.M.; Stern, R.J.; Thurmond, A.L. Neoproterozoic deformation in the northeastern part of the Saharan Metacraton, northern Sudan. Precambrian Res. 2003, 123, 203–221, doi:10.1016/S0301-9268(03)00068-8.
[9]  Johnson, P.R. Post-amalgamation basins of the NE Arabian Shield and implications for Neoproterozoic III tectonism in the Northern East African Orogen. Precambrian Res. 2003, 123, 321–337, doi:10.1016/S0301-9268(03)00074-3.
[10]  Igersoll, R.V. Tectonics of sedimentary basins, with revised nomenclature. In Tectonics of Sedimentary Basins, Recent Advances; Busby, C., Azor, A., Eds.; Wiley-Blackwell: Chichester, UK, 2012; pp. 3–43.
[11]  Johnson, P.R.; Andresen, A.; Collins, A.S.; Fowler, A.R.; Fritz, H.; Ghebreab, W.; Kusky, T.; Stern, R.J. Late Cryogenian-Ediacaran history of the Arabian-Nubian Shield: A review of depositional, plutonic, structural, and tectonic events in the closing stages of the northern East African Orogen. J. Afr. Earth Sci. 2011, 61, 167–232, doi:10.1016/j.jafrearsci.2011.07.003.
[12]  Hadley, D.G.; Schmidt, D.L. Sedimentary rocks and basins of the Arabian Shield and Their evolution. In Evolution and Mineralization of the Arabian-Nubian Shield; Cooray, P.G., Tahoun, S.A., Eds.; Institute of Applied Geology, King Abdulaziz University: Jiddah, Saudi Arabia, 1980. Bulletin 3; Volume 4, pp. 26–50.
[13]  Ahmed Suliman, E.T.B. Keraf shear zone, NE Sudan: Geodynamic characteristics of the Nile Craton-Nubian Shield boundary. Ph.D. Thesis, Technical University Berlin, Berlin, Germany, 2000.
[14]  Kemp, J. The Kuara formation (northern Arabian Shield); definition and interpretation: A probable fault-trough sedimentary succession. J. Afr. Earth Sci. 1996, 27, 507–523.
[15]  Kemp, J. Caldera-related Volcanic Rocks in the Shammar Group, northern Arabian Shield. J. Afr. Earth Sci. 1996, 27, 551–572.
[16]  Schmidt, D.L.; Hadley, D.G.; Greenwood, W.R.; Gonzalez, L.; Coleman, R.G.; Brown, G.F. Stratigraphy and Tectonism of the Southern Part of the Precambrian SHIELD of Saudi Arabia; Saudi Arabian Directorate General of Mineral Resources: Jiddah, Saudi Arabia, 1973. Bulletin 8; pp. 1–13.
[17]  Greenwood, W.R. Geologic Map of the Abha Quadrangle, Sheet 18F, Kingdom of Saudi Arabia; Saudi Arabian Deputy Ministry for Mineral Resources: Jiddah, Saudi Arabia, 1985. GM 75; pp. 1–27.
[18]  Genna, A.; Guerrot, C.; Deschamps, Y.; Nehlig, P.; Shanti, M. Les formations Ablah d’Arabie Saoudite (datation et implication géologique). C.R. Acad. Sci. IIA 1999, 329, 661–667.
[19]  Johnson, P.R.; Kattan, F.H.; Wooden, J.L. Implications of SHRIMP and microstructural data on the age and kinematics of shearing in the Asir Terrane, southern Arabian Shield, Saudi Arabia. Gondwana Res. 2001, 4, 172–173, doi:10.1016/S1342-937X(05)70683-3.
[20]  Cooper, J.A.; Stacey, J.S.; Stoeser, D.B.; Fleck, R.J. An evaluation of the zircon method of isotopic dating in the southern Arabian Craton. Contrib. Mineral. Petr. 1979, 68, 429–439, doi:10.1007/BF01164527.
[21]  Blasband, B.B. Neoproterozoic Tectonics of the Arabian-Nubian Shield. Ph.D. Thesis, Mededelingen van die Faculteit Geowetenschappen, Universiteit Utrecht, Utrecht, The Netherlands, 2006.
[22]  Hamimi, Z.; El-Shafei, M.; Kattu, G.; Matsah, M. Transpressional regime in southern Arabian Shield: Insights from Wadi Yiba area, Saudi Arabia. Miner. Petrol. 2012, doi:10.1007/s00710-012-0198-6.
[23]  Kattu, G.; Hamimi, Z.; El-Shafei, M. Transpressional Regime in Asir Tectonic Terrane, Saudi Arabia; Lap Lambert Academic Press: Saarbrücken, Germany, 2013; pp. 1–120.
[24]  Kemp, J.; Gros, Y.; Prian, J.P. Geologic Map of the Mahd adh Dhahab Quadrangle, Sheet 23E, Kingdom of Saudi Arabia; Saudi Arabian Deputy Ministry for Mineral Resources: Jiddah, Saudi Arabia, 1982. GM 64; pp. 1–39.
[25]  Ramsay, C.R. Geologic Map of the Rabigh Quadrangle, Sheet 22D, Kingdom of Saudi Arabia; Saudi Arabian Deputy Ministry for Mineral Resources: Jiddah, Saudi Arabia, 1986. GM 84; pp. 1–49.
[26]  Johnson, P.R.; Abdelsalam, M.G.; Stern, R.J. The Bi’r Umq-Nakasib suture zone in the Arabian-Nubian Shield: A key to understanding crustal growth in the east African Orogen. Gondwana Res. 2003, 6, 523–530, doi:10.1016/S1342-937X(05)71003-0.
[27]  Hargrove, U.S. Crustal evolution of the Neoproterozoic Bi’r Umq suture zone, Kingdom of Saudi Arabia: Geochronological, Isotopic, and Geochemical Constraints. Ph.D. Thesis, University of Texas, Dallas, TX, USA, 2006.
[28]  Calvez, J.Y.; Kemp, J. Geochronological Investigations in the Mahd Adh Dhahab Quadrangle, Central Arabian Shield; Deputy Ministry for Mineral Resources: Jiddah, Saudi Arabia, 1982. BRGM-TR-02-5; pp. 1–41.
[29]  Sahl, M.; Smith, J.W. Geologic Map of the Al Muwayh Quadrangle Sheet 22E, Kingdom of Saudi Arabia; Saudi Arabian Directorate General of Mineral Resources: Jiddah, Saudi Arabia, 1986. GM 88; pp. 1–29.
[30]  Stern, R.J.; Avigad, D.; Miller, N.R.; Beyth, M. Evidence for the snowball Earth hypothesis in the Arabian-Nubian Shield and the east African Orogen. J. Afr. Earth Sci. 2006, 44, 1–20, doi:10.1016/j.jafrearsci.2005.10.003.
[31]  Stern, R.J.; Johnson, P.R.; Ali, K.A.; Mukherjee, S. Evidence for early and mid-cryogenian glaciation in the northern Arabian-Nubian Shield (Egypt, Sudan, and western Arabia). In The Geological Record of Neoproterozoic Glaciation; Arnaud, E., Halverson, G.P., Shield-Zhou, G., Eds.; Geological Society: London, UK, 2011. Memoirs 36; pp. 277–284.
[32]  Pallister, J.S.; Stacey, J.S.; Fischer, L.B.; Premo, W.R. Precambrian ophiolites of Arabia: Geologic settings, U-Pb geochronology, Pb-isotope characteristics, and implications for continental accretion. Precambrian Res. 1988, 38, 1–54, doi:10.1016/0301-9268(88)90092-7.
[33]  Pellaton, C. Geologic Map of the Yanbu’al Bahr Quadrangle, Sheet 24C, Kingdom of Saudi Arabia; Saudi Arabian Directorate General of Mineral Resources: Jiddah, Saudi Arabia, 1979. GM 48; pp. 1–16.
[34]  Kemp, J. Geologic map of the Wadi Al Ays Quadrangle, Sheet 25C, Kingdom of Saudi Arabia; Saudi Arabian Deputy Ministry for Mineral Resources: Jiddah, Saudi Arabia, 1981. GM 53; pp. 1–39.
[35]  Hassan, M.M.; Abu-Alam, T.S.; Stuewe, K.; Meyer, S.; Passchier, C.W. On the Evolution of the Arabian-Nubian Shield and the Largest Shear Zone on Earth. In Proceedings of American Geophysical Union Fall Meeting, San Francisco, CA, USA, 3–7 December 2012.
[36]  Kennedy, A.; Johnson, P.R.; Kattan, F.H. SHRIMP Geochronology in the Northern Arabian Shield Part I: Data Acquisition; Saudi Geological Survey: Jiddah, Saudi Arabia, 2004. SGS-OF-2004-11; pp. 1–28.
[37]  Kennedy, A.; Johnson, P.R.; Kattan, F.H. SHRIMP Geochronology in the Northern Arabian Shield Part II: Data Acquisition 2004; Saudi Geological Survey: Jiddah, Saudi Arabia, 2005. SGS-OF-2005–10; pp. 1–44.
[38]  Hadley, D.G. Geologic Map of the Sahl al Matran Quadrangle, Sheet 26C, Kingdom of Saudi Arabia; Saudi Arabian Deputy Ministry for Mineral Resources: Jiddah, Saudi Arabia, 1987. GM 86; pp. 1–24.
[39]  Johnson, P.R. Proterozoic Geology of Western Saudi Arabia—North-Central Sheet: Explanatory Notes on Precambrian Stratigraphic Relations; Saudi Arabian Deputy Ministry for Mineral Resources: Jiddah, Saudi Arabia, 1995. USGS-OF-95-5; pp. 1–44.
[40]  Genna, A.; Nehlig, P.; le Goff, E.; Guerrot, C.; Shanti, M. Proterozoic tectonism of the Arabian Shield. Precambrian Res. 2002, 117, 21–40, doi:10.1016/S0301-9268(02)00061-X.
[41]  MacGabhann, B.A. Age Constraints on Precambrian Glaciations and the Subdivision of Neoproterozoic Time. Available online: http://www.academia.edu/1773698/Age_constraints_ on_Precambrian_glaciations_and_the_subdivision_of_Neoproterozoic_time (accessed on 25 April 2013).
[42]  Macdonald, F.A.; Schmidt, M.D.; Crowley, J.L.; Roots, C.F.; Jones, D.S.; Maloof, A.C.; Strauss, J.V.; Cohen, P.A.; Johnston, D.T.; Schrag, D.P. Calibrating the Cryogenian. Science 2010, 327, 1241–1243, doi:10.1126/science.1183325.
[43]  Delfour, J. Geologic Map of the Al Hissu Quadrangle, Sheet 24E, Kingdom of Saudi Arabia; Saudi Arabian Deputy Ministry for Mineral Resources: Jiddah, Saudi Arabia, 1981. GM 58; pp. 1–47.
[44]  Johnson, P.R. Proterozoic Geology of Western Saudi Arabia, North-Central Sheet (Revised, Digital Edition): Notes on Proterozoic Stratigraphy; Saudi Geological Survey: Jiddah, Saudi Arabia, 2004. SGS-OF-2004-5; pp. 1–31.
[45]  Camp, V.E. Geologic map of the Umm al Birk Quadrangle, Sheet 23D, Kingdom of Saudi Arabia; Saudi Arabian Directorate General of Mineral Resources: Jiddah, Saudi Arabia, 1986. GM 87; pp. 1–30.
[46]  Pellaton, C. Geologic Map of the Al Madinah Quadrangle, Sheet 24D, Kingdom of Saudi Arabia; Saudi Arabian Deputy Ministry for Mineral Resources: Jiddah, Saudi Arabia, 1981. GM 52; pp. 1–19.
[47]  Stoeser, D.B.; Stacey, J.S. Evolution, U-BP geochronology, and isotope geology of the Pan-African Nabitah orogenic belt of the Saudi Arabian Shield. In The Pan-African belt of NE Africa and Adjacent Areas; Friedrich Viewig and Sohn: Braunschweig/Wiesbaden, Germany, 1988; pp. 227–288.
[48]  Zahran, A.M.; Stewart, I.C.F.; Johnson, P.R.; Basahel, M.H. Aeromagnetic-Anomaly Maps of Central and Western Saudi Arabia; Saudi Geological Survey: Jiddah, Saudi Arabia, 2003. SGS-OF-2002-8; pp. 1–6.
[49]  Agar, R.A. The Bani Ghayy group: Sedimentation and volcanism in pull-apart grabens of the Najd strike-slip orogen, Saudi Arabian Shield. Precambrian Res. 1986, 31, 259–274, doi:10.1016/0301-9268(86)90076-8.
[50]  Greene, R.C. Stratigraphy of the Late Proterozoic Murdama Group, Saudi Arabia; U.S. Government Printing Office: Washington, DC, USA, 1993.
[51]  Delfour, J. Geologic Map of the Halaban Quadrangle, Sheet 23G, Kingdom of Saudi Arabia; Saudi Arabian Directorate General of Mineral Resources: Jiddah, Saudi Arabia, 1979. GM 46; pp. 1–32.
[52]  Delfour, J. Geologic Map of the Wadi ar Rika Quadrangle, Sheet 22G, Kingdom of Saudi Arabia; Saudi Arabian Directorate General of Mineral Resources: Jiddah, Saudi Arabia, 1980. GM 51; pp. 1–34.
[53]  Kennedy, A.; Kozdroj, W.; Kattan, F.H.; Ziolkowska-Kozdroj, M.; Johnson, P.R. SHRIMP Geochronology in the Arabian Shield (Midyan Terrane, Afif Terrane, Ad Dawadi Terrane) and Nubian Shield (Central Eastern Desert Terrane) Part IV: Data Acquisition 2008; Saudi Geological Survey: Jiddah, Saudi Arabia, 2010. SGS-OF-2010-10; pp. 1–101.
[54]  Cole, J.C.; Hedge, C.E. Geochronologic Investigation of Late Proterozoic Rocks in the Northeastern Shield of Saudi Arabia; Saudi Arabian Deputy Ministry of Mineral Resources: Jiddah, Saudi Arabia, 1986. USGS-TR-05-5; pp. 1–42.
[55]  Letalenet, J. Geologic Map of the Afif Quadrangle, Sheet 23F, Kingdom of Saudi Arabia; Saudi Arabian Directorate General of Mineral Resources: Jiddah, Saudi Arabia, 1979. GM 47; pp. 1–20.
[56]  Cole, J.C. Geologic Map of the Aban al Ahmar Quadrangle, Sheet 25F, Kingdom of Saudi Arabia; Saudi Arabian Deputy Ministry for Mineral Resources: Jiddah, Saudi Arabia, 1988. GM 105; pp. 1–45.
[57]  Roobol, M.J.; Ramsay, C.R.; Jackson, N.J.; Darbyshire, D.P.F. Late Proterozoic lavas of the central Arabian Shield—Evolution of an ancient volcanic arc system. J. Geol. Soc. Lond. 1983, 140, 185–202, doi:10.1144/gsjgs.140.2.0185.
[58]  Johnson, P.R. Proterozoic Geology of Western Saudi Arabia, East-Central Sheet: Description of Proterozoic Map Units; Saudi Arabian Deputy Ministry for Mineral Resources: Jiddah, Saudi Arabia, 1996. USGS-OF-96-4; pp. 1–71.
[59]  Williams, P.L.; Vaslet, D.; Johnson, P.R.; Berthiaux, A.; Le Strat, P.; Fourniguet, J. Geologic Map of the Jabal Habashi Quadrangle, Sheet 26F, Kingdom of Saudi Arabia; Saudi Arabian Deputy Ministry for Mineral Resources: Jiddah, Saudi Arabia, 1986. GM 98; pp. 1–52.
[60]  Dickinson, W.R.; Suczek, C.A. Plate tectonics and sandstone compositions. Am. Assoc. Petroleum Geol. Bull. 1979, 63, 2164–2182.
[61]  Dickinson, W.R.; Beard, L.S.; Brakenridge, G.R.; Erjavec, J.L.; Ferguson, R.C.; Inman, K.F.; Knepp, R.A.; Lindberg, F.A.; Ryberg, P.T. Provenance of North American Phanerozoic sandstones in relation to tectonic setting. Geol. Soc. Am. Bull. 1983, 93, 222–235.
[62]  Jackson, N.J.; Basahel, A.N.; Cooray, P.G.; Darbyshire, D.P.F. Late Precambrian (Sequence A) Rocks of the East Central Shield of Saudi Arabia; Faculty of Earth Sciences, King Abdulaziz University: Jiddah, Saudi Arabia, 1983. Bulletin 5; pp. 119–134.
[63]  Wallace, C.A. Lithofacies and Depositional Environments of the Maraghan Formation and Speculation on the Origin of Gold in Ancient Mines, an Najadi Area, Kingdom of Saudi Arabia; Saudi Arabian Deputy Ministry for Mineral Resources: Jiddah, Saudi Arabia, 1986. USGS-OF-06-6; pp. 1–19.
[64]  Morag, N.; Avigad, D.; Gerdes, A.; Harlavan, Y. 1000–580 Ma crustal evolution in the northern Arabian-Nubian Shield revealed by U-Pb-Hf of detrital zircons from late Neoproterozoic sediments (Elat area, Israel). Precambrian Res. 2012, 206–211, 197–212.
[65]  Meiler, M.; Reshef, M.; Shulman, H. Late Proterozoic-Paleozoic geology of the Golan Heights and its relation to the surrounding Arabian Platform. In Earth and Environmental Sciences; Dar, I.A., Dar, M.A., Eds.; InTech: Rijeka, Croatia, 2011.
[66]  Fowler, A.; Osman, A.F. Sedimentation and inversion history of three molasse basins of the western Central Eastern Desert of Egypt: Implications for the tectonic significance of Hammamat basins. Gondwana Res. 2013, 23, 1511–1534, doi:10.1016/j.gr.2012.08.022.
[67]  Breitkreuz, C.; Eliwa, H.; Khalaf, I.; El Gameel, K.; Bühler, B.; Sergeev, S.; Larinov, A.; Murata, M. Neoproterozoic SHRIMP U-BP zircon agers of silica-rich Dokhan Volcanics in the Northeastern Desert, Egypt. Precambrian Res. 2010, 182, 163–174, doi:10.1016/j.precamres.2010.06.019.
[68]  Davies, F.B. Geologic Map of the Al Wajh Quadrangle, Sheet 26B, Kingdom of Saudi Arabia; Saudi Arabian Deputy Ministry for Mineral Resources: Jiddah, Saudi Arabia, 1985. GM 83; pp. 1–27.
[69]  Abdel-Rahman, A.M.; Doig, R. The Rb-Sr geochronologic evolution of the Ras Gharib segment of the northern Nubian Shield. J. Geol. Soc. Lond. 1987, 144, 577–586, doi:10.1144/gsjgs.144.4.0577.
[70]  Stern, R.J.; Hedge, C.E. Geochronologic and isotopic constraints on late Precambrian crustal evolution in the Eastern desert of Egypt. Am. J. Sci. 1985, 285, 97–127, doi:10.2475/ajs.285.2.97.
[71]  Wilde, S.A.; Youssef, K. Significance of SHRIMP U-BP dating of the Imperial Porphyry and associated Dokhan Volcanics, Gebel Dokhan, north Eastern Desert, Egypt. J. Afr. Earth Sci. 2000, 31, 403–413, doi:10.1016/S0899-5362(00)00096-8.
[72]  Wilde, S.A.; Youssef, K. A re-evaluation of the origin and setting of the late Precambrian Hammamat Group based on SHRIMP U-Pb dating of detrital zircons from Gebel Umm Tawat, North Eastern Desert, Egypt. J. Geol. Soc. Lond. 2002, 159, 595–604, doi:10.1144/0016-764901-081.
[73]  Willis, K.M.; Stern, R.J.; Clauer, N. Age and geochemistry of late Precambrian sediments of the Hammamat Series from the Northeastern Desert of Egypt. Precambrian Res. 1988, 42, 173–187, doi:10.1016/0301-9268(88)90016-2.
[74]  Fritz, H.; Wallbrecher, E.; Khudeir, A.A.; Abu El Ela, F.; Dallmeyer, D.R. Formation of Neoproterozoic metamorphic core complexes during oblique convergence (Eastern Desert, Egypt). J. Afr. Earth Sci. 1996, 32, 311–329.
[75]  Loizenbauer, J.; Wallbrecher, E.; Fritz, H.; Neumayer, P.; Khudeir, A.A.; Kloetzli, U. Structural geology, single zircon ages and fluid inclusion studies of the Meatiq metamorphic core complex: Implications for Neoproterozoic tectonics in the Eastern Desert of Egypt. Precambrian Res. 2001, 110, 357–383, doi:10.1016/S0301-9268(01)00176-0.
[76]  Grothaus, B.; Eppler, D.; Ehrlich, R. Depositional environments and structural implications of the Hammamat Formation, Egypt. Annu. Geol. Surv. Egypt 1979, 9, 564–590.
[77]  Abdeen, M.M.; Greiling, R.O. A quantitative structural study of late Pan-African compressional deformation in the Central Eastern Desert (Egypt) during Gondwana assembly. Gondwana Res. 2005, 8, 457–471, doi:10.1016/S1342-937X(05)71148-5.
[78]  El-Wahed, M.A.A. The role of the Najd Fault System in the tectonic evolution of the Hammamat molasse sediments, Eastern Desert, Egypt. Arab. J. Geosci. 2009, 3, 1–26, doi:10.1007/s12517-008-0030-0.
[79]  Shalaby, A.; Stüwe, K.; Fritz, H.; Makroum, F. The El Mayah molasse basin in the Eastern Desert of Egypt. J. Afr. Earth Sci. 2006, 45, 1–15, doi:10.1016/j.jafrearsci.2006.01.004.
[80]  Andresen, A.; El-Rus, M.A.A.; Myhre, P.I.; Boghdady, G.Y. U-Pb TIMS age constraints on the evolution of the Neoproterozoic Meatiq gneiss dome, Eastern Desert. Egypt. Int. J. Earth Sci. 2009, 98, 481–497, doi:10.1007/s00531-007-0276-x.
[81]  Bregar, M.; Bauernhofer, A.; Pelz, K.; Kloetzli, U.; Fritz, H.; Neumayr, P. A late Neoproterozoic magmatic core complex in the Eastern Desert of Egypt: Emplacement of granitoids in a wrench-tectonic setting. Precambrian Res. 2002, 118, 59–82, doi:10.1016/S0301-9268(02)00062-1.
[82]  Fritz, H.; Messner, M. Intramontane basin formation during oblique convergence in the Eastern Desert of Egypt: Magmatically versus tectonically induced subsidence. Tectonophysics 1999, 315, 145–162, doi:10.1016/S0040-1951(99)00284-X.
[83]  Eliwa, H.; Breitkreuz, C.; Khalaf, I.; El Gameel, K. Depositional styles of early Ediacaran terrestrial volcanosedimentary succession in Gebel El Urf area, North Eastern Desert, Egypt. J. Afr. Earth Sci. 2010, 57, 328–344, doi:10.1016/j.jafrearsci.2009.11.002.
[84]  Stern, R.J.; Gottfried, D. Petrogenesis of late Precambrian (575–600 Ma) bimodal suite in northeast Africa. Contrib. Mineral. Petr. 1986, 92, 492–501, doi:10.1007/BF00374431.
[85]  Mohammed, F.H.; Moghazi, A.M.; Hassanen, M.A. Geochemistry, petrogenesis and tectonic setting of late Neoproterozoic Dokhan-type volcanic rocks in the Fatira area, eastern Egypt. Inter. J. Earth Sci. 2000, 88, 764–777, doi:10.1007/s005310050304.
[86]  Eliwa, H.A.; Kimura, J.-I.; Itaya, T. Late Neoproterozoic Dokhan Volcanics, north Eastern Desert, Egypt: Geochemistry and petrogenesis. Precambrian Res. 2006, 151, 31–52, doi:10.1016/j.precamres.2006.08.005.
[87]  Hedge, C.E. Precambrian Geochronology of Part of Northwestern Saudi Arabia; Saudi Arabian Deputy Ministry for Mineral Resources: Jiddah, Saudi Arabia, 1984. USGS-OF-04-31; pp. 1–12.
[88]  Kennedy, A.; Kozdroj, W.; Kadi, K.; Ziolkowska-Kozdroj, M.; Johnson, P.R. SHRIMP Geochronology of the Arabian Shield (Midyan Terrane, Afif Terrane) and Nubian Shield (Central Eastern Desert Terrane) Part V: Data Acquisition 2009; Saudi Geological Survey: Jiddah, Saudi Arabia, 2010. SGS-OF-2010-11; pp. 1–80.
[89]  Pease, V.; Kadi, K.; Whitehouse, M.; Kozdroj, W. The provenance of Proterozoic sediments of the Midyan terrane, Saudi Arabia from U-Pb zircon SIMS ages. Precambrian Res. 2013. Submitted for Publication.
[90]  Hamimi, Z.; Matsah, M.; El-Shafei, M.; El-Fakharani, A.; Shujoon, A.; Al-Gabali, M. Wadi Fatima thin-skinned foreland FAT belt: A post-amalgamation marine basin in the Arabian Shield. Open J. Geol. 2012, 2, 271–293, doi:10.4236/ojg.2012.24027.
[91]  Grainger, D.J. GeoArabia field trips: The late Proterozoic Fatima group near Jiddah. Geoarabia 2001, 6, 103–114.
[92]  Delfour, J. Le Groupe de J’Balah, une nouvelle unité du bouclier arabe (The Jubaylah group, a new unit of the Arabian Shield). Fr. Bur. Rech. Géol. Min. Bull. 1970, 4, 19–32.
[93]  Hadley, D.G. The Taphrogeosynclinal Jubaylah Group in the Mashhad Area, Northwestern Hijaz, Kingdom of Saudi Arabia; Saudi Arabian Directorate General of Mineral Resources: Jiddah, Saudi Arabia, 1975. Bulletin 10; pp. 1–10.
[94]  Al-Husseini, M. Late Ediacaran to early Cambrian (Infracambrian) Jibalah group of Saudi Arabia. Geoarabia 2011, 16, 69–90.
[95]  Kusky, T.M.; Matsah, M.I. Neoproterozoic dextral faulting on the Najd fault system, Saudi Arabia, preceded sinistral faulting and escape tectonics related to closure of the Mozambique Ocean. Geol. Soc. Spec. Publ. 2003, 206, 327–361, doi:10.1144/GSL.SP.2003.206.01.16.
[96]  Nettle, D. A sequence stratigraphic, geochronological and chemostratigraphic investigation of the Ediacaran Antaq basin, eastern Arabian Shield, Saudi Arabia. M.Sc. Thesis, University of Adelaide, Adelaide, Australia, 2009.
[97]  Matsah, M.I.; Kusky, T.M. Sedimentary facies of the Neoproterozoic Al-Jifn basin, NE Arabian Shield: relationships to the Halaban-Zarghat (Najd) fault system and the closure of the Mozambique Ocean. In Aspects of Pan-African Tectonics; De Wall, H., Greiling, R.O., Eds.; Bilateral Series of the International Bureau 32; Forschungszentrum Jülich: Jülich, Germany, 1999; pp. 17–21.
[98]  Vickers-Rich, P.; Ivantsov, A.; Kattan, F.H.; Johnson, P.R.; Al Qubsani, A.; Kashghari, W.; Leonov, M.; Rich, T.; Linnemann, U.; Hofmann, M. In Search of the Kingdom’s Ediacarans: The First Genuine Metazoans (Macroscopic Body and Trace Fossils) from the Neoproterozoic Jibalah Group (Vendian/Ediacaran) on the Arabian Shield; Saudi Geological Survey: Jiddah, Saudi Arabia, 2013. in press.
[99]  Kennedy, A.; Kozdroj, W.; Johnson, P.R.; Kattan, F.H. SHRIMP Geochronology of the Northern Arabian Shield Part III: Data acquisition 2006; Saudi Geological Survey: Jiddah, Saudi Arabia, 2011. SGS-OF-2007-9; pp. 1–85.
[100]  Nicholson, P.G.; Janjou, D.; Fanning, C.M.; Heaman, L.M.; Grotzinger, J.P. Deposition, age and Pan-African correlation of late Neoproterozoic outcrops in Saudi Arabia. In Proceedings of 8th Middle East Geoscience Conference and Exhibition, Manama, Bahrain, 2–5 March 2008.
[101]  Condon, D.J.; Bowring, S.A. A user’s guide to Neoproterozoic geochronology. In The Geological Record of Neoproterozoic Glaciations; Arnaud, E., Halverson, G., Eds.; Geological Society: London, UK, 2011; pp. 135–149.
[102]  Miller, N.; Johnson, P.R.; Stern, R.J. Marine versus non-marine environments for the Jibalah group, NW Arabian Shield: A sedimentologic and geochemical survey and report of possible Metazoa in the Dhaiqa formation. Arab. J. Sci. Eng. 2008, 33, 55–77.
[103]  Fike, D.A.; Grotzinger, J.P.; Pratt, L.M.; Summons, R.E. Oxidation of the Ediacaran ocean. Nature 2006, 444, 744–747, doi:10.1038/nature05345.
[104]  Halverson, G.; Shield-Zhou, G. Chemostratigraphy and the Neoproterozoic glaciations. In The Geological Record of Neoproterozoic Glaciations; Arnaud, E., Halverson, G., Eds.; Geological Society: London, UK, 2011; pp. 51–66.
[105]  Brown, G.F.; Schmidt, D.L.; Huffman, A.C., Jr. Geology of the Arabian Peninsula: Shield Area of Western Saudi Arabia; Professional Paper 560-A; U.S. Geological Survey: Denver, CO, USA, 1989; pp. 1–180.
[106]  Kusky, T.M.; Abdelsalam, M.; Stern, R.J. Tucker, Preface to Special Issue Precambrian Research on the East African and related Orogen and the assembly of Gondwana. Precambrian Res. 2003, 123, 81–85, doi:10.1016/S0301-9268(03)00062-7.
[107]  Küster, D.; Liégeois, J.P.; Sergeev, S.; Lucassen, F. Zircon geochronology and Sr, Nd, Pb isotope geochemistry of granitoids from Bayuda Desert and Sabaloka (Sudan): Evidence for a Bayudian event (920–900 Ma) preceding the Pan-African orogenic cycle (860–590 Ma) at the eastern boundary of the Saharan Metacraton. Precambrian Res. 2008, 164, 16–39, doi:10.1016/j.precamres.2008.03.003.
[108]  Avigad, D.; Stern, R.J.; Beyth, M.; Miller, N.; McWilliams, M.O. Detrital zircon U-BP geochronology of Cryogenian diamictites and lower Paleozoic sandstone in Ethiopia (Tigrai): age constraints on Neoproterozoic glaciation and crustal evolution of the southern Arabian-Nubian Shield. Precambrian Res. 2007, 154, 88–106, doi:10.1016/j.precamres.2006.12.004.
[109]  Cosca, M.A.; Shimron, A.; Caby, R. Late Precambrian metamorphism and cooling in the Arabian-Nubian Shield. Petrology and 40Ar/39Ar geochronology of metamorphic rocks of the Elat area (southern Israel). Precambrian Res. 1999, 98, 107–127.
[110]  Avigad, D.; Cvirtzman, Z. Late Neoproerozoic rise and fall of the northern Arabian-Nubian Shield: the role of lithospheric mantle delamination and subsequent thermal subsidence. Tectonophysics 2009, 477, 217–228, doi:10.1016/j.tecto.2009.04.018.
[111]  Be’eri-Shlevin, Y.; Katzir, Y.; Blichert-Toft, J.; Kleinhanns, I.C.; Whitehouse, M.J. Nd-Sr-Hf-O isotope provinciality in the northernmost Arabian-Nubian Shield: Implications for crustal evolution. Contrib. Mineral. Petr. 2010, 160, 181–201, doi:10.1007/s00410-009-0472-8.
[112]  Be’eri-Shlevin, Y.; Katzir, Y.; Whitehouse, M. Post-collisional tectonomagmatic evolution in the northern Arabian-Nubian Shield: Constraints from ion-probe U-BP dating of zircon. J. Geol. Soc. Lond. 2009, 166, 71–85, doi:10.1144/0016-76492007-169.
[113]  Fritz, H.; Dallmeyer, D.R.; Wallbrecher, E.; Loizenbauer, J.; Hoinkes, G.; Neymayr, P.; Khudeir, A.A. Neoproterozoic tectonothermal evolution of the Central Eastern Desert, Egypt: A slow velocity tectonic process of core complex exhumation. J. Afr. Earth Sci. 2002, 34, 137–155, doi:10.1016/S0899-5362(02)00014-3.
[114]  Garfunkel, Z. History and paleogeography during the Pan-African orogen to stable platform transition: Reappraisal of the evidence from the Elat area and the northern Arabian-Nubian Shield. Israeli J. Earth Sci. 1999, 48, 135–157.
[115]  Jarrar, G.; Stern, R.J.; Saffarini, G.; Al-Zubi, H. Late- and post-orogenic Neoproterozoic intrusions of Jordan: Implications for crustal growth in the northernmost segment of the East African Orogen. Precambrian Res. 2003, 123, 295–319, doi:10.1016/S0301-9268(03)00073-1.
[116]  Al-Saleh, A.M.; Boyle, A.P. Structural rejuvenation of the eastern Arabian Shield during continental collision: 40Ar/39Ar evidence from the Ar Ridaniyah ophiolite mélange. J. Afr. Earth Sci. 2001, 33, 135–141, doi:10.1016/S0899-5362(01)90094-6.
[117]  Al-Saleh, A.M.; Boyle, A.P.; Mussett, A.E. Metamorphism and 40Ar/39Ar dating of the Halaban ophiolite and associated units: Evidence for two-stage orogenesis in the eastern Arabian Shield. J. Geol. Soc. Lond. 1998, 155, 165–175, doi:10.1144/gsjgs.155.1.0165.
[118]  Abdelsalam, M.G.; Stern, R.J.; Copeland, P.; Elfaki, E.M.; Elhur, B.; Ibrahim, F.M. The Neoproterozoic Keraf suture in NE Sudan: Sinistral transpression along the eastern margin of West Gondwana. J. Geol. 1998, 106, 133–147.
[119]  Dabbagh, M.E.; Rogers, J.J.W. Depositional environments and tectonic significance of the Wajid Sandstone of southern Saudi Arabia. J. Afr. Earth Sci. 1983, 1, 47–57.
[120]  Samuel, M.D.; Moussa, H.E.; Azer, M.K. A-type volcanics in central eastern Sinai, Egypt. J. Afr. Earth Sci. 2007, 47, 203–226, doi:10.1016/j.jafrearsci.2007.02.006.
[121]  Ring, U.; Brandon, M.T.; Willett, S.D.; Lister, G. Exhumation processes. In Exhumation Processes: Normal Faulting, Ductile Flow, and Erosion; Ring, U., Brandon, M.T., Lister, G.S., Willett, S.D., Eds.; Geological Society: London, UK, 1999; pp. 1–27.

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