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Low-temperature alteration of uranium–thorium bearing minerals and its significance in neoformation of radioactive minerals in stream sediments of Wadi El-Reddah, North Eastern Desert, Egypt 被引量:1

Low-temperature alteration of uranium–thorium bearing minerals and its significance in neoformation of radioactive minerals in stream sediments of Wadi El-Reddah, North Eastern Desert, Egypt
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摘要 The stream sediments of Wadi El Reddah(North Eastern Desert,Egypt)are geochemically and mineralogically investigated.Their content of radioactive and other heavy minerals is mainly represented by thorite,uranothorite,zircon,monazite,xenotime,columbite,fergusonite,and unknown rare earth elements(REEs)bearing minerals as well as cassiterite.Special emphasis on REE content of thorite,uranothorite,zircon and xenotime has been done to correlate them with the increase of uranium contents in these sediments.The key evidence for the presence lowtemperature alteration processes includes the presence of some zircon crystals as remnants after complete dissolution of the overgrowth zircon in severe acidic environment,the sulphur content,biogenic minerals,occurrence of unusual minerals as cassiterite pore filling in zircon,variation in the REEs content from the surrounding granites to the stream sediments and the abundance of monazite in the surrounding granites.Most minerals are partially and/or completely altered,which indicated by the pseudomorphism of zircon by xenotime,thorite,and uranothorite. The stream sediments of Wadi El Reddah(North Eastern Desert, Egypt) are geochemically and mineralogically investigated. Their content of radioactive and other heavy minerals is mainly represented by thorite, uranothorite, zircon, monazite, xenotime, columbite, fergusonite,and unknown rare earth elements(REEs) bearing minerals as well as cassiterite. Special emphasis on REE content of thorite, uranothorite, zircon and xenotime has been done to correlate them with the increase of uranium contents in these sediments. The key evidence for the presence lowtemperature alteration processes includes the presence of some zircon crystals as remnants after complete dissolution of the overgrowth zircon in severe acidic environment, the sulphur content, biogenic minerals, occurrence of unusual minerals as cassiterite pore filling in zircon, variation in the REEs content from the surrounding granites to the stream sediments and the abundance of monazite in the surrounding granites. Most minerals are partially and/or completely altered, which indicated by the pseudomorphism of zircon by xenotime, thorite, and uranothorite.
出处 《Acta Geochimica》 EI CAS CSCD 2020年第1期96-115,共20页 地球化学学报(英文)
关键词 Zircon Thorite Xenotime Radioactive minerals Low-temperature alteration Wadi El-Reddah Zircon Thorite Xenotime Radioactive minerals Low-temperature alteration Wadi El-Reddah
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  • 1Abdalla H.M. (2001) Geochemistry and origin of rare metal mineralization of Um Sail felsite, Centeral Eastern Dessert, Egypt [J]. Egyp. Jour. Geol. 45(1A), 131-149.
  • 2Abd El-Wahed A.A., Ammar S.E., Youssief T.E, and E1-Husseiny M.O. (2002) Petrography, REE geochemistry and Rb-Sr isotopes study of Abu Tiyur granite, Central Eastern Desert, Egypt. M.E.R.C. Ain Shams University [J]. Earth Science Ser. 16, 16-24.
  • 3Abla A.A.R., E1 Kholy D.M., and Ayoub R.R. (2005) Geological, petrochemical and radiometrical studies of the Pan African late proterozoic rocks, in Wadi Elgammalyia Area, Northern Eastern Desert, Egypt [C] The fourth International Conference on the Geology of Africa. E Sci-Assiut Univ. 2, 355-385.
  • 4Alexandre P. and Kyser T.K. (2005) Effects of cationic substitutions and alteration in uraninite, and implications for the dating of uranium deposits [J]. Can. Miner. 43, 1005-1017.
  • 5Baker J. Ronald (2003) FLUIDS, Package of Computer Programs for Fluid Inclusion Studies [Z]. Program 1: BULK, version 01/03.
  • 6Bau M. and Dulski E (1995) Comparative study of yttrium and rare earth elements behaviors in fluorine-rich hydrothermal fluids [J]. Contrib. Mineral. Petrol. 119, 213-223.
  • 7Bau M. (1996) Controls on the fractionation of isovalent trace elements in magmatie and aqueous systems: evidence from Y/Ho, Zr/Hf, and lanthanide tetrad effect [J]. Contrlb. Mineral. Petrol. 123, 323-333.
  • 8Biddau R., Cidu R., and Frau F. (2002) Rare earth elements in waters from the albitite-bearing granodiorites of Central Sardinia, Italy [J]. Chem. Geol. 182, 1-14.
  • 9Bodnar R.J. (1993) Revised equation and stable for determining the freezing point depression of H2O-NaCl solutions [J]. Geochim. et Cosmochim. Acta. 57, 683-684.
  • 10Boulvais R, Ruffet G, Cornichet J., and Mermet M. (2007) Cretaceous albitization and dequartzification of Hercynian peraluminous granite in the Salvezines Massif (French Pyr6n6es) [J]. Lithos. 93, 89-106.

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