PAMUCAKYAYLA (ANTALYA) CİVARI ORGANİK KAYAÇLARINDAKİ MAJÖR VE İZ ELEMENTLERİN JEOKİMYASAL DAVRANIŞLARI

Organik maddece zengin kayaçlardan kömürler ve bitümlü kayaçlar majör ve iz elementleri bünyelerinde çeşitli miktarlarda biriktirirler. Bu elementler birikme oranlarına göre maden yatağı olma özelliklerine sahip olabilirler. Aynı zamanda be elementler yeterli önlem alınmadığı taktirde işletmelerde çevresel kirliliğe de yol açabilirler. Pamucakyayla kömür örneklerine ait iz elementler ABD kömürleri, Çin kömürleri ve Dünya kömürleri ortalamaları ile karşılaştırıldığında, Pamucakyayla örneklerinin ABD kömürlerine göre Cs, Hf, Nb, Rb, Th, U, V, Zr, Y ve Mo, Çin kömürlerine göre Sr, U, Dünya kömürlerine göre ise Cs, Rb, Th, U, V, Zr, Y, Mo elementlerince zenginleşmeler gösterdiği belirlenmiştir.

GEOCHEMICAL CHARACTERISTICS OF MAJOR AND TRACE ELEMENTS IN ORGANIC ROCKS IN THE PAMUCAKYAYLA AREA, ANTALYA

Among the organic-material rich rocks, coals and bituminous rocks accumulate major and trace elements in varying quantities. These elements, based on their accumulation rates, might comprise a mineral deposit. But, if sufficient preventative measures are not taken at the worksites, they may also result in environmental contamination. When compared to trace element contents of coals in different parts of the world, the Pamucakyayla coal samples are found to be enriched in Cs, Hf, Nb, Rb, Th, U, V, Zr, Y and Mo with respect to coals in the United States, enriched in Sr and U with respect to Chinese coals and enriched in Cs, Rb, Th, U, V, Zr, Y and Mo with respect to World coals.

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  • Altunsoy, M., 1999, “Organic geochemical characteristics of the Miocene Yazır Limestones in the southern Isparta”, Geol. Bull. Turkey, cilt 42, no 2, 51-62.
  • Altunsoy, M., Özçelik, O., Hökerek, S., Taka, M., 2011, Karapınar (Konya) Güneyindeki Kömürlü Pliyosen Birimlerinin Organik Fasiyes Özellikleri, Akdeniz Üniversitesi Bilimsel Araştırma Projeleri Yönetim Birimi, Proje No: 2010.01.0102.003, 94s.
  • Bozkaya, Ö., Yalçın, H., 2010, “Geochemistry of mixed-layer illite-smectites from an extensional basin, Antalya Unit, Southwestern Turkey”, Clays and Clay Minerals, 58, 644-666.
  • Brumsack, H.J., 2006, “The trace metal content of recent organic carbon-rich sediments: Implications for Cretaceous black shale formation”, Palaeogeogr., Palaeocimatol., Palaeoecol., cilt 232, 344-361.
  • Demirel, İ.H., Günay, Y., Yurtsever, T.S., 2001, “Evaluation of petroleum source rocks on the coastal area of the western Taurus Region, Turkey”, Energy Sources, cilt 23, no 6, 47-58.
  • Demirel, İ.H., Günay, Y., Yurtsever, T.S., 2002, “Evaluation of hydrocarbon source rock potential from well data on the Elmalı nappes, western Taurus region, Turkey”, Energy Sources, cilt 24, no 5, 461-470.
  • Eskenazy, G.M., 2009, “Trace elements geochemistry of the Dobrudza coal basin, Bulgaria”, International Journal of Coal Geology, 78, 192-200.
  • Finkelman, R.B., 1993, “Trace and minor elements in coal”, Organic Geochemistry, Engel, M.H. & Macko S.A. (Ed.), Plenum Press, New York, 593-607.
  • Finkelman, R.B., Gross, P.M.K., 1999, “The types of data needed for assessing the environmental and human health impacts of coal”, International Journal of Coal Geology, cilt 40, 91-101.
  • Güllüdağ, C.B., 2012, Pamucakyayla (Kemer–Antalya) Yöresi Karbonifer çökellerinin organofasiyes özellikleri,
  • Yüksek Lisans Tezi, Akdeniz Üniversitesi, Fen Bilimleri Enstitüsü, Antalya. Gürdal, G., 2008, “Geochemistry of Trace Elements in Çan Coal (Miocene),Çanakkale,Turkey”, International Journal of Coal Geology, cilt 74, no 1, 28-40.
  • Hoşgörmez, H., 2007, “Origin of the natural gas seep of Çirali (Chimera), Turkey: Site of the first Olympic fire”, Journal of Asian Earth Sciences, cilt 30, 131–141.
  • Ketris, M.P., Yudovich, Ya.E., 2009, “Estimations of Clarkes for Carbonaceous biolithes: world averages for trace element contents in black shales and coals”, International Journal of Coal Geology, cilt 78, 135–148.
  • Özçelik, O., Altunsoy, M., Acar, F., Yalçın Erik, N., 2009, “Organic geochemical characteristic of the Miocene Lycian Basin, Western Taurides, Turkey”, Int. Geol. Rev., cilt 51, no 1, 77-93.
  • Querol, X., Whateley, M.K.G., Fernandes-Junel, J.L., Tuncali, E., 2006, “Geological controls on the mineralogy of the Beypazarı lignite, Central Anatolia, Turkey”, International Journal of Coal Geology, cilt 33, 255–271, 1997.
  • Radenovic, A., 2006, “Inorganic constituents in coal”, Kem. Ind. 55, 65–77. Ren, D., Zhao, F., Wang, Y., Yang, S., 1999, “Distribution of minor and trace elements in Chinese coals”, International Journal of Coal Geology, 40, 109–118.
  • Spears, D.A., Zheng, Y., 1999, “Geochemistry and origin of elements in some UK coals”, International Journal of Coal Geology, cilt 38, 161–179.
  • Swaine, D.J., 1990, Trace Elements in Coal, Butterworths, London. 290.
  • Swaine, D.J., Goodarzi, A., 1995, Environmental Aspects of Trace Elements in Coal, Kluwer Academic Publishers, Netherlands.
  • Şenel, M., Serdaroğlu, M. Kendil, R., Ünverdi, M., Gözler, M.Z., 1981 “Teke Torosları Güneydoğusunun Jeolojisi”, MTA Dergisi, no 95-96, 13-43.
  • Şenel, M., 1985, “Alakırçay grubu, Kumluca zonunun litostratigrafi özellikleri ve yaşı : Güneybatı Antalya –Türkiye”, MTA Dergisi, no 103-104, 151-153.
  • Şenel, M., 2004, “Batı Toroslar'daki Yeşilbarak Napının Stratigrafik ve Yapısal Özellikleri, GD Anadolu'daki ve Kuzey Kıbrıs'taki Benzer Birimlerle Karşılaştırılması”, MTA Dergisi, no 128, 1- 26.
  • Varol, B., Koşun, E., Ünal-Pınar N., Ayrancı, K., 2011, “Pyritized mudstone and associated facies in the Permian –Triassic boundary of the Çürük Dağ section, Southern Turkey”, Journal of Asian Earth Sciences, cilt 40, no 5, 1068-1078.