PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Petrogenetic and Compositional Features of Rare Metal PanAfrican Post-Collisional Pegmatites of Southwestern Nigeria; A Status Review

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This research reviews the geology, petrogenesis, compositional trends and geochronology of the rare-metal pegmatite of southwestern Nigeria. The source of these pegmatites is still presently debated which have been explained as either product of highly fractionated molten material or anatexis of the local crust. However, published works of past authors have been compiled to give a detailed understanding of the formation of the mineral deposits. The basement complex of southwestern Nigeria comprises of Precambrian rocks of amphibolite, the hornblende gneiss and the granite gneisses which were formed as a result of the opening and closing of the ensialic basin with significant, extensive subduction during the Pan-African orogeny. The pegmatites in this region have shown internal zoning and a high degree of evolution from the border zone to the core zone during the crystallization and solidification of the felsic granite to pegmatite melt. The rare-metal pegmatites have distinct chemical compositions and mineralogy, containing quartz, biotite, muscovite, microcline, garnet with localized tourmaline, tantalite and columbite. These pegmatites vary significantly by their bulk-rock and mineral chemistry which indicates a more peraluminous attribute and enrichments of lithophile elements of Rb, Cs, Ta and Ba. Previous K/Ar isotopic ages (502.8±13.0 Ma and 514.5±13.2 Ma) suggest that the pegmatites are related to the post-collisional phase of intensive metasomatism. Adopted from previous studies, a five-stage conceptual model of evolution which is widely accepted have been proposed for the origin of the pegmatites.
Wydawca
Rocznik
Strony
166--187
Opis fizyczny
Bibliogr. 80 poz., rys., tab.
Twórcy
autor
  • 1State Key Laboratory of Ore Deposit Geochemistry, Institute of Geochemistry, Chinese Academy of Sciences, Guiyang 550081, China
  • University of Chinese Academy of Sciences, Beijing 100049, China
  • Department of Science Laboratory Technology, Ekiti State University, Ado-Ekiti, Nigeria
  • Department of Geological Sciences, Achievers University, Owo, Nigeria
autor
  • 1State Key Laboratory of Ore Deposit Geochemistry, Institute of Geochemistry, Chinese Academy of Sciences, Guiyang 550081, China
  • University of Chinese Academy of Sciences, Beijing 100049, China
autor
  • Department of Geological Services, Ogun State Ministry of Commerce and Industry, Oke-Mosan, Abeokuta, Nigeria
autor
  • CSIR- Central Building Research Institute, CBRI, Roorkee, India
  • Academy of Scientific and Innovative Research (AcSIR), India
autor
  • CSIR-Central Road Research Institute, CRRI, Delhi, India
  • Academy of Scientific and Innovative Research (AcSIR), India
Bibliografia
  • Abaa, S. I., 1983. The structure and petrography of alkaline rocks of the Mada Younger Granite complex, Nigeria. Journal of African Earth Sciences (1983), 3(1-2), 107-113.
  • Abstract, 1st Symposium on the Precambrian Geology of Nigeria.
  • Adekoya, J. A., 2003. Environmental effect of solid minerals mining. Journal of Physical Sciences, Kenya, 625-640.
  • Adetunji, A., & Ocan, O. O., 2010. Characterization and mineralization potentials of granitic pegmatites of Komu area, Southwestern Nigeria. Resource geology, 60(1), 87-97. DOI: 10.1111/j. 1751-3928.2010.00116.x.
  • Akinola, O. O., 2014. Lithostructural framework and rare metal (Ta-Nb-Sn-LiBe) mineralisation in lepidolite from the Ijero-Aramoko pegmatite field, southwestern Nigeria. African Journal of Science, Technology, Innovation and Development, 6(2), 127-133.
  • Akintola, A. I., 2004. Petrography and Petrogenetic features of rare metal pegmatites and associated amphibolitic schist of Sepeteri area, southwestern Nigeria (Doctoral dissertation, M. Sc. Thesis University of Ibadan (Unpublished)).
  • Akintola, A. I., Ikhane, P. R., Akintola, G. O., Sanni, O. G., & Oduneye, O. A., 2012. Petrochemical Evaluations of the Pan African Pegmatites of Apomu Area, Southwestern Nigeria. Environment and Natural Resources Research, 2(4), 8.
  • Akintola, A. I., Ikhane, P. R., Laniyan, T. A., Akintola, G. O., Kehinde-Phillips, O. O., & Ojajuni, P., 2011. Compositional trends and rare-metal (Ta-Nb) mineralization potential of Precambrian pegmatites in Komu area, Southwestern Nigeria. International Journal of Current Research, 4(02), 031-039.
  • Akintola, A. I., Ikhane, P. R., Okunlola, O. A., Akintola, G. O., & Oyebolu, O. O., 2012. Compositional features of Precambrian pegmatites of Ago-Iwoye area South Western, Nigeria. Journal of ecology and the natural environment, 4(3), 71-87.
  • Akintola, A. I., Omosanya, K. O., Ajibade O. M., Okunlola, O. A & Kehinde-Philips, O. O., 2011. Petrographic and Geochemical Evaluations of Rare - Metal (Ta-Nb) Potentials of Precambrian Pegmatites of Awo Area Southwestern, Nigeria. International Journal of Basic & Applied Sciences IJBAS-IJENS Vol: 11 No: 04.
  • Audtat, A., Gn̈ther, D., & Heinrich, C. A., 2000. Magmatic-hydrothermal evolution in a fractionating granite: A microchemical study of the Sn-WF-mineralized Mole Granite (Australia). Geochimica et Cosmochimica Acta, 64(19), 3373-3393, DOI: 10.1016/S0016-7037(00)00428-2.
  • Belkasmi, M., Cuney, M., Pollard, P. J., & Bastoul, A., 2000. Chemistry of the Ta-NbSn-W oxide minerals from the Yichun rare metal granite (SE China): genetic implications and comparison with Moroccan and French Hercynian examples. Mineralogical Magazine, 64(3), 507-523, DOI: 10.1180/002646100549391.
  • Beus, A. A., 1960. On the Article by LA Rossovskiy, AI Shostatskiy and LS Zil'Berfarb, Concerning Certain Concepts in the Works of KA Vlasov and Their Role in Prospecting for and Evaluating Rare Metal Pegmatites (No. JPRS-5870). Joint Publications Research Service Arlington Va.
  • Black, R. D., 1980. Upper Cretaceous and Tertiary geology of Mangatu State Forest, Raukumara Peninsula, New Zealand. Journal of Geology and Geophysics, 23(3), 293-312.
  • Boynton, W. V., 1984. In Rare Earth Element Geochemistry, ed. P. Henderson.
  • Breaks, F. W., Twindle, A. G and Smith, S. R. (1999). Rare metal mineralization associated with Berens River-Sachiago Subprovincial Boundary, Northwestern Ontario: Discovery of a new zone of complex-type, petalite sub-type of pegmatite and implications for future exploration. Ontario Geological Survey Miscellaneous paper 169,33p.
  • Burke, K., & Dewey, J. F., 1972. Orogeny in Africa. Orogeny in Africa, 583-608.
  • Cameron, E. N., Jahns, R. H., McNair, A. H., & Page, L. R. 1949. Internal structure of granitic pegmatites. Economic Geology, Monograph 2.
  • Černý, P., & Ercit, T. S., 2005. The classification of granitic pegmatites revisited. The Canadian Mineralogist, 43(6).
  • Černý, P., 1988. Characteristics of pegmatite deposits of tantalum, In Moller, P., Cerny, P., and Saupe., F., (eds) Lanthanides, Tantalum and Niobium. Society for Geology Applied to Mineral Deposits, Special Publication 7; Springer Verlag, pp.192-236.
  • Černý, P., London, D., & Novák, M., 2012a. Granitic pegmatites as reflections of their sources. Elements, 8(4), 289-294.
  • Dada, S. S. 2006. Proterozoic evolution of Nigeria. The basement complex of Nigeria and its mineral resources (A Tribute to Prof. M. A. O. Rahaman). Akin Jinadu & Co. Ibadan, pp 29-44.
  • Dada, S.S., 2008. Proterozoic evolution of the Nigeria-Boborema province. In: Pankhurst, R.J., Trouw, R.A.J., Brito Neves, B.B., de Wit, M.J. (Eds.), Geological Society of London Special Publication, 294, pp. 121-136.
  • Egbuniwe, E. G., 1982. Geotectonic evolution of the Maru belt, NW Nigeria; unpub (Doctoral dissertation, Ph. D. thesis, Univ. of Wales, Aberystwyth).
  • Ercit, T. S., 2005. REE-enriched granitic pegmatites. Rare-element geochemistry and mineral deposits: Geological Association of Canada, GAC Short Course Notes, 17, 175-199.
  • Falconer, J. D., Longbottom, A., & Woods, H., 1911. The geology and geography of northern Nigeria. Macmillan and Company, limited.
  • Ferré, E.C., Caby, R., 2006. Granulite facies metamorphism and charnockite plutonism: examples from the Neoproterozoic Belt of Northern Nigeria. Proceeding of the Geologists Association. 118, 1-8.
  • Gandu, A. H., Ojo, S. B., & Ajakaiye, D. E., 1986. A gravity study of the Precambrian rocks in the Malumfashi area of Kaduna State, Nigeria. Tectonophysics, 126(2-4), 181-194, DOI: 10.1016/0040-1951(86)902 27-1.
  • Garba, I., 2003. Geochemical discrimination of newly discovered rare-metal bearing and barren pegmatites in the Pan-African (600±150 Ma) basement of northern Nigeria. Applied Earth Science, 112(3), 287-292, DOI: 10.1179/037174503225011 270.
  • Ginsburg, A. I., 1984. The geological condition of the location and the formation of granitic pegmatites. In Proceedings of the 27th International Geological Congress (Vol. 15, pp. 245-260).
  • Goodenough, K. M., Lusty, P. A. J., Roberts, N. M. W., Key, R. M., & Garba, A., 2014. Post-collisional Pan-African granitoids and rare metal pegmatites in western Nigeria: Age, petrogenesis, and the ‘pegmatite conundrum’. Lithos, 200, 22-34. http://dx.doi.org/10.1016/j.lithos.2014.04.0 06.
  • Grant N. K., 1970. Geochronology of Precambrian basement rocks from Ibadan, South-Western Nigeria. Earth Planet Sci Lett 10:19-38, DOI: 10.1016/0012-821X (70)90061-0.
  • Grant N. K., 1978. Structural distinction between a metasedimentary cover and an underlying basement in the 600 my old Pan-African domain of Northwestern Nigeria. Geol Soc Am Bull 89:50-58, DOI: 10.1130/0016-7606.
  • Holt R. W., 1982. The Geotectonic Evolution of the Anka Belt in the Precambrian Basement Complex of N.W. Nigeria. Unpublished PhD Thesis, The Open University.
  • Johnston, A. D., & Schwab, B. E., 2004. Constraints on clinopyroxene/melt partitioning of REE, Rb, Sr, Ti, Cr, Zr, and Nb during mantle melting: First insights from direct peridotite melting experiments at 1.0 GPa. Geochimica et Cosmochimica Acta, 68(23), 4949-4962, DOI: 10.1016/j. gca.2004.06.009.
  • Keshav, S., & Sen, G., 2004. The depth of magma fractionation in the oceanic mantle: Insights from garnet-bearing xenoliths from Oahu, Hawaii. Geophysical Research Letters, 31(4). DOI: 10.1029/2003GL018990.
  • Kinnaird, J. A., 1984. Contrasting styles of SnNb-Ta-Zn mineralization in Nigeria. Journal of African Earth Sciences (1983), 2(2), 81-90, DOI: 10.1016/S0731-7247(84)80001-4.
  • Küster, D., 1990. Rare-metal pegmatites of Wamba, Central Nigeria-their formation in relationship to late Pan-African granites. Mineralium Deposita, 25(1), 25-33. DOI: 10.1007/BF03326380.
  • Landes, K. K., 1933. Origin and classification of pegmatites. American Mineralogist, 18(2), 33-56.
  • Leake, B. E., 1990. Granite magmas: their sources, initiation and consequences of emplacement. Journal of the Geological Society, 147(4), 579-589, DOI: 10.1144 /gsjgs.147.4.0579.
  • London, D., 1995. Geochemical features of peraluminous granites, pegmatites, and rhyolites as sources of lithophile metal deposits. Magmas, fluids, and ore deposits, 23, 175-202.
  • London, D., 2005. Granitic pegmatites: an assessment of current concepts and directions for the future. Lithos, 80(1), 281-303,DOI: 10.1016/j.lithos.2004.02.009.
  • London, D. 2014. A petrologic assessment of internal zonation in granitic pegmatites. Lithos, 184, 74-104, DOI: 10.1016/j.lithos.2013.10.025.
  • Lv Z. H., Zhang H., Tang Y., Liu Y. L. & Zhang X., 2018. Petrogenesis of synorogenic rare metal pegmatites in the Chinese Altai: evidences from geology, mineralogy, zircon U-Pb age and Hf isotope[J]. Ore Geology Reviews, 95.
  • Martin, R. F., & De Vito, C., 2005. The patterns of enrichment in felsic pegmatites ultimately depend on tectonic setting. The Canadian Mineralogist, 43(6), 2027-2048.
  • Martin, R. F., De Vito, C., & Pezzotta, F., 2008. Why is amazonitic K-feldspar an earmark of NYF-type granitic pegmatites? Clues from hybrid pegmatites in Madagascar. American Mineralogist, 93(2- 3), 263-269, DOI: 10.2138/am.2008.2595.
  • Matheis, G., & Caen-Vachette, M., 1983. RbSr isotopic study of rare-metal bearing and barren pegmatites in the Pan-African reactivation zone of Nigeria. Journal of African Earth Sciences (1983), 1(1), 35-40, DOI: 10.1016/0899-5362(83)90029-5.
  • McDonough, W. F., & Sun, S. S., 1995. The composition of the Earth. Chemical Geology, 120(3-4), 223-253, DOI: 10.1016/0009-2541(94)00140-4.
  • McKeough, M.A., Lentz, D.R., McFarlane, C.R.M. and Jarrod, B., 2013 Geology and Evolution of Pegmatite-Hosted U-Th ± REE-Y-Nb Mineralization, Kulyk, Eagle, and Karin Lakes Region, Wollaston Domain, Northern Saskatchewan, Canada: Examples of the Dual Role of Extreme Fractionation and Hybridization Processes. Journal of Geosciences, 58, 321-346. DOI: 10.3190/jgeosci.153.
  • Melcher, F., Graupner, T., Gäbler, H.-E., Sitnikova, M., Henjes-Kunst, F., Oberthür, T., Gerdes, A., Dewaele, S., 2015. Tantalum-(niobium-tin) mineralisation in African pegmatites and rare metal granites: constraints from Ta-Nb oxide mineralogy, geochemistry and U–Pb geochronology. Ore Geol. Rev. 64, 667-719.
  • Mohammedyasin, M. S., 2017. Geology, Geochemistry and Geochronology of the Kenticha Rare Metal Granite Pegmatite, Adola Belt, Southern Ethiopia: A Review. International Journal of Geosciences,8(01), 46, DOI: 10.4236/ijg. 2017.81004.
  • Muller, A., Rolf L. Romer, Rolf-Birger Pedersen, 2017. The Sveconorwegian Pegmatite Province - Thousands of Pegmatites Without Parental Granites. The Canadian Mineralogist ; 55 (2): 283-315, DOI: 10.3749/canmin.1600075.
  • Novák, M., Škoda, R., Gadas, P., Krmíček, L., & Černý, P., 2012. Contrasting origins of the mixed (NYF+ LCT) signature in granitic pegmatites, with examples from the Moldanubian Zone, Czech Republic. The Canadian Mineralogist, 50(4), 1077-1094. DOI: 10.3749/ canmin.50 .4.1077.
  • Okunlola, O. A., & King, P. A., 2003. Process Test Work for the Recovery of Tantalite - Columbite Concentrates from Rare Metal Bearing Pegmatites of Nassarawa Area, Central Nigeria. Global Journal of Geological Sciences, 1(1), 95-103.
  • Okunlola, O. A., Ogedengbe, O., & Ojutalayo, A., 2003. Composition Features and Industrial Appraisal of The Baba Ode Talc Occurrence, South Western Nigeria. Global Journal of Geological Sciences, 1(1), 63-72.
  • Okunlola, O. A., 2005. Metallogeny of tantalum-niobium mineralization of Precambrian pegmatites of Nigeria. Ορυκτός Πλούτος, 2005(137), 38-50.
  • Okunlola, O. A. and Somorin, E. B. 2005. Compositional features of Precambrian pegmatites of Itakpe area, central Nigeria. Global Journal of Geological Sciences Vol.4 (2), pp. 221-230.
  • Okunlola, O. A., & Jimba, S., 2006. Compositional trends in relation to Ta-Nb mineralization in Precambrian pegmatites of Aramoko, Ara and Ijero area, southwestern Nigeria. Journal of Mining and Geology, 42(2), 113-126.
  • Okunlola, O. A., & Akintola, A. I., 2007. Geochemical Features and Rare-Metal (TaNb) Potentials of Precambrian Pegmatites of Sepeteri Area, South Western Nigeria. Ife Journal of Science, 9(2), 203-214.
  • Okunlola, O. A., & Oyedokun, M. O., 2009. Compositional trends and rare metal (TaNb) mineralization potential of pegmatite and associated lithologies of Igbeti area, Southwestern Nigeria. RMZ-Materials and Geoenvironment, 56(1), 38-53.
  • Okunlola, O. A., & Akinola, O. O., 2010. Petrochemical characteristics of the Precambrian rare metal pegmatite of OkeAsa area, Southwestern Nigeria: Implication for Ta-Nb Mineralization. RMZ–Materials and Geo Environment, 57, 525-538.
  • Okunlola, O. A., G., & Ofonime, U. B., 2010. Petrochemical Characteristics and Age of Rare Metal (Ta-Nb) Mineralization in Precambrian Pegmatites, Komu, Nigeria. Int. J. Econ. & Environ. Geol. Vol, 1(1), 21-26.
  • Olade, M. A., & Elueze, A. A., 1979. Petrochemistry of the Ilesha amphibolites and Precambrian crustal evolution in the Pan-African domain of SW Nigeria. Precambrian Research, 8(3-4), 303-318, DOI: 10.1016/0301-9268(79) 90033-0.
  • Olayinka, A. I., 1992. Geophysical siting of boreholes in crystalline basement areas of Africa. Journal of African Earth Sciences (and the Middle East), 14(2), 197-207, DOI: 10.1016/0899-5362(92)90097-V.
  • Oyebamiji A. O., 2014. Petrography and Petrochemical Characteristics of Rare Metal Pegmatites around Oro, Southwestern Nigeria. Asia Pacific Journal of Energy and Environment, Volume 1, No 1: 70-88.
  • Rahaman M. A., 1981. Recent advances in the study of the basement complex of Nigeria.
  • Rahaman, M. A., & Ocan, O., 1978. On Relationship in the Precambrian Migmatite Gneiss of Nigeria. Journal of Mining and Geology, 15, 23-30.
  • Rahaman, M. A., 1988. Recent advances in the study of the basement complex of Nigeria. Precambrian geology of Nigeria, 11-41.
  • Romer, R. L., & Kroner, U., 2016. Phanerozoic tin and tungsten mineralization-tectonic controls on the distribution of enriched protoliths and heat sources for crustal melting. Gondwana Research, 31, 60-95.
  • Rudenko S. A., Romanov V.A., Morakhovskyi V.N., Tarasov E. B., Galkin G. A., Dorokin V. K., 1975. Conditions of formation and controls of distribution of muscovite objects of the North-Baikal muscovite province, and some general problems of pegmatite consolation. In: Gordiyenko V.V. (ed.) Muscovite pegmatites of the USSR, Nauka, Leningrad, pp 174-182 (in Russia).
  • Schwab, B. E., & Johnston, A. D., 2001. Melting systematics of modally variable, compositionally intermediate peridotites and the effects of mineral fertility. Journal of Petrology, 42(10), 1789-1811, DOI: 10.1093/petrology/42.10.1789.
  • Selway, J.B., Breaks, F.W., Tindle, A.G., 2005. A review of rare-element (Li-Cs-Ta) pegmatite exploration techniques for the Superior Province, Canada, and large worldwide tantalum deposits. Explor. Min. Geol. 14, 1–30, DOI: 10.2113/gsemg.14.1- 4.1.
  • Shaw, R. A., Goodenough, K. M., Roberts, N. M. W., Horstwood, M. S. A., Chenery, S. R., & Gunn, A. G., 2016. Petrogenesis of rare-metal pegmatites in high-grade metamorphic terranes: a case study from the Lewisian gneiss complex of North-west Scotland. Precambrian Research, 281 (2), 338-362.
  • Shearer, C.K., Papike, J.J. and Jolliff, B.L., 1992. Petrogenetic Links among Granites and Pegmatites in the Harney Peak RareElement Granite-Pegmatite System, Black Hills, South Dakota. The Canadian Mineralogist, 30, 785.
  • Shelley, D., 1993. Igneous and metamorphic rocks under the microscope: Classification, textures, microstructures and mineral preferred orientations. Chapman & Hall, New York, 445p.
  • Sokolov, S., 2002. Melt inclusions as indicators of the magmatic origin of carbonatite rare metal and rare earth minerals. Chemical Geology, 183(1), 373-378, DOI: 10.1016/S0009-2541(01)00386-2.
  • Tubosun, I. A., 1983. Geochoronologie U/Pb Du Socle Precambrien Du Nigeria (Doctoral dissertation).
  • Turner D. C., 1983. Upper Proterozoic schist belts in the Nigerian sector of the PanAfrican.
  • Western Nigeria. Earth Planet Sci Lett 10:19- 38, DOI: 10.1016/0301-9268(83)900050.
  • Woakes, M., Rahaman, M. A., & Ajibade, A. C., 1987. Some metallogenetic features of the Nigerian basement. Journal of African Earth Sciences, 6(5), 655-664, DOI: 10.1016/0899-5362(87)90004-2.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-a8182f61-f60f-41b8-b16e-d261d2cd17f1
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.