PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Lithologically-related rare earth element variations the Mio-Pliocene Poznań Formation (Poland)

Autorzy
Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Concentrations of rare earth elements (REEs) were determined in 129 clay samples collected from the Mio-Pliocene Poznań Formation in Poland. The REEs occur in a relatively wide range from 58.2 to 1,709 mg/kg. Low North American Shale Composite (NASC)-normalized total REE contents with heavy rare earth element (HREE) depletion were noted in most of the samples analysed. Small variations were detected in the REE contents in the lithologies distinguished. Red clays are characterised by slightly lower REE concentrations relative to green and grey clays. All the Poznań Formation clays exhibit a negative Eu anomaly when normalized to the average of chondrites. Values increase according to the following sequence: grey clays < red clays < green clays. The NASC-normalized REE concentration curves show a positive Eu anomaly. The LaNASC/YbNASC ratio indicates HREE depletion. A small variation in this ratio was observed in the sequence green clays > grey clays > red clays. The variability of the REE contents of the Poznań Formation decreased from west to east.
Rocznik
Strony
146--154
Opis fizyczny
Bibliogr. 40 poz., tab., rys., wykr.
Twórcy
autor
  • Polish Geological Institute – National Research Institute, Rakowiecka 4, 00-975 Warszawa, Poland
Bibliografia
  • 1. Ajayi, T.R., Oyawale, A.A., IsIander, F.Y., Ausbiojo, O.I., Klein, D.E., Adediran, A.I., 2006. Trace and rare earth elements geochemistry of Oshosun sediments of Dahomey Basin, southwestern Nigeria. Journal of Applied Science, 6: 2067-2076.
  • 2. Brański, P., 1994. Możliwości wykorzystania iłów serii poznańskiej w ochronie środowiska (in Polish). Przegląd Geologiczny, 42: 446-449.
  • 3. Brański, P., 1998. Badania trzeciorzędowych iłów o podwyższonej zawartości smektytów (montmorylonitu) (in Polish). In: Ochrona litosfery (ed. S. Kozłowski): 197-200. Państwowy Instytut Geologiczny.
  • 4. Brański, P., 2002. Iły formacji poznańskiej kopaliny służące ochronie i rekonstrukcji środowiska naturalnego (in Polish). Przegląd Geologiczny, 50: 266.
  • 5. Brański, P., 2012. Distribution of the prognostic and perspective resources of building ceramics raw materials in Poland (in Polish with English summary). Biuletyn Państwowego Instytutu Geologicznego, 448: 411-418.
  • 6. Cavalante, F., Belviso, C., Piccarreta, G., Saverio, F., 2014. Grain-size control on the rare earth elements distribution in the late diagenesis of Cretaceous shales from the Southern Apennines (Italy). Journal of Chemistry, 2014: Article ID 841747.
  • 7. Connelly, N.G., Damhus, T., Hartshorn, R.M., Hutton, A.T., 2005. Nomenclature of Inorganic Chemistry. IUPAC Recommendations 2005.
  • 8. Cullers, R.L., Chaudhurii, S., Arnold, B., Lee, M., Wolfe, C., 1975. Rare earth distributions in clay minerals and in the clay-sized fraction of the Lower Permian Havensville and Eskridge shales of Kansas and Oklahoma. Geochimica et Cosmochimica Acta, 39: 1691-1703.
  • 9. Ding, Z.L., Sun, J.M., Yang, S.L., Liu, T.S., 2001. Geochemistry of the Pliocene red clay formation in the Chinese Loess Plateau and implications for its origin, source provenance and paleoclimate change. Geochimica et Cosmochimica Acta, 65: 901-913.
  • 10. Duczmal-Czernikiewicz, A., 2012. Rare earth elements in selected clay deposits of the Polish Lowland (Neogene). Biuletyn Państwowego Instytutu Geologicznego, 448: 419-430.
  • 11. Foley, N.K., Ayuso, R.A., Bern, C.R., Hubbard, B., Vazquez, J., 2014. REE distribution and mobility in regolith formed on granite bedfock, Southeast United States. Acta Geologica Sinica, 88 (suppl. 2): 428-430.
  • 12. Gromet, L.P., Dymek, R.F., Haskin, L.A., Korotev, R.L., 1984. The “North American shale composite”: its compilation major and trace element characteristics. Geochimica et Cosmochimica Acta, 48: 2469-2482.
  • 13. Henderson, P., 1984. Rare Earth Element Geochemistry. Developments in Geochemistry, 2. Elsevier.
  • 14. Kabata-Pendias, A., Mukherjee, A.B., 2007. Trace Elements from Soil to Human. Springer.
  • 15. Kabata-Pendias, A., Pendias, H., 1999. Biogeochemia pierwiastków śladowych (in Polish). PWN.
  • 16. Koporulin, V.I., Lyapunov, S.M., Seredin, V.V., 2007. Rare earth elements in the clay fraction of coaliferous sediments of the Arkagalinskoe (Magadan District) and Dolinskoe (Sakhalin Island) coalfields. Lithology and Mineral Resources, 44: 483-496.
  • 17. Kozydra, Z., Wyrwicki, R., 1970. Surowce ilaste (in Polish). Wyd. Geol., Warszawa.
  • 18. Lisboa, J.V., de Oliveira, D.P.S., Rocha, F., Oliveira, A., Carvalho, J., 2015. Patterns of rare earth and other trace elements in Paleogene and Miocene clayey sediments from the Mondego platform (Central Portugal). Chemie der Erde, 75: 389-401.
  • 19. Łuczak-Wilamowska, B., 2013. Geological conditions of municipal waste landfilling (in Polish with English summary). Biuletyn Państwowego Instytutu Geologicznego, 455: 1-142.
  • 20. Marques, R., Dias, M.I., Prudencio, M.I., Rocha, F., 2011. Upper Cretaceous clayey levels from western Portugal (Aveiro and Taveiro regions): clay mineral and trace-element distribution. Clay and Clay Minerals, 59: 315-327.
  • 21. Mahjoor, A.S., Karimi, M., Rastegarlari, A., 2009. Mineralogical and geochemical characteristics of clay deposits from South Abarkouh District of clay deposit (Central Iran) and their applications. Journal of Applied Science, 9: 601-614.
  • 22. Mao, L., Mo, D., Li, M., Zhou, K., Yang, J., Guo, W., 2011. The rare earth element compositions of sediments from loess tableland in the Liyang Plain, southern China: implications for province and weathering intensity. Environmental Earth Sciences, 62: 1609-1617.
  • 23. McLennan, S.M., 1989. Rare earth elements in sedimentary rocks; influence of provenance and sedimentary processes. Reviews in Mineralogy and Geochemistry, 21: 169-200.
  • 24. McLennan, S.M., Hemming, D., McDaniel, D.K., Hanson, G.N., 1993. Geochemical approaches to sedimentation, provenance, and tectonics. GSA Special Paper, 284: 21-40.
  • 25. Migaszewski, Z.M., Gałuszka, A., Dołęgowska, S., 2016. Rare earth and trace element signatures for assessing an impact of rock mining and processing on the environment: Wiśniówka case study, south-central Poland. Environmental Science and Pollution Research, 23: 24943-24959.
  • 26. Nieć, M., Ratajczak, T., 2004. Złoża kopalin ilastych do produkcji ceramiki budowlanej, kruszyw lekkich i cementu (in Polish). In: Surowce mineralne polski. Surowce skalne. Surowce ilaste. (ed. R. Ney): 117-217. Wydawnictwo Instytutu GSMiE PAN.
  • 27. Nyakairu, G.W.A., Koeberl, C., Kurzweil, H., 2001. The Buwambo kaolin deposit in central Uganda: mineralogical and chemical composition. Geochemical Journal, 35: 245-256.
  • 28. Paulo, A., 1999. Pierwiastki ziem rzadkich pod koniec XX wieku (in Polish). Przegląd Geologiczny, 47: 34-41.
  • 29. Piper, D.Z., Bau, M., 2013. Normalized rare earth elements in water, sediments, and wine: identifying sources and environmental redox conditions. American Journal of Analytical Chemistry, 4: 69-83.
  • 30. Piwocki, M., 2002. Ewolucja poglądów na stratygrafię utworów formacji poznańskiej na Niżu Polskim (in Polish). Przegląd Geologiczny, 50: 255.
  • 31. Piwocki, M., Ziembińska-Tworzydło, M., 1997. Neogene of the Polish Lowlands lithostratigraphy and pollen-spore zones. Geological Quarterly, 41 (1): 21-40.
  • 32. Prudencio, M.I., Figueiredo, M.O., Cabral, J.M.P., 1989. Rare earth distribution and its correlation with clay mineralogy in the clay-sized fraction of Cretaceous and Pliocene sediments (central Portugal). Clay Minerals, 24: 67-74.
  • 33. Taylor, S.R., McLennan, S.M., Mcculloch, M.T., 1983. Geochemistry of loess, continental crustal composition and crustal model ages. Geochimica et Cosmochimica Acta, 47: 1897-1905.
  • 34. Wichrowski, Z., 1981. Studium mineralogiczno-geochemiczne iłów serii poznańskiej (in Polish). Archiwum Mineralogiczne, 37: 93-106.
  • 35. Wiewióra, A., Wyrwicki, R., 1974. Clay minerals in the mottled clay horizon of the Poznań series (in Polish with English summary). Kwartalnik Geologiczny, 18 (3): 615-635.
  • 36. Wiewióra, A., Wyrwicki, R., 1976. Clay minerals of the Poznań series in the section of Rogaczewo (in Polish with English summary). Kwartalnik Geologiczny, 20 (3): 823-837.
  • 37. Wyrwicki, R., 1974. Clay sediments of the Poznań Series as ceramic raw materials (in Polish with English summary). Biuletyn Instytutu Geologicznego, 280: 107-205.
  • 38. Wyrwicki, R., 2002. Iły formacji poznańskiej jako surowce ceramiczne (in Polish). Przegląd Geologiczny, 50: 267-268.
  • 39. Yuan, H., Li, S., Pei, Q., Ding, A., 2014. Research of weathering crust profile of REE deposit in Guposhan, Guangxi. Acta Geologica Sinica, 88 (suppl. 2): 1317-1318.
  • 40. Zhang, Z., Zheng, G., Takahashi, Y., Wu, C., Zheng, C., Yao, J., Xiao, C., 2016. Extreme enrichment of rare earth elements in hard clay rocks and its potential as a resource. Ore Geology Reviews, 72: 191-212.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-3d7a0cff-10db-4f4f-a6a4-bda60441fb99
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.