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2020 | 79 |
Tytuł artykułu

Radionuclides content in tissues and organs of pumpkinseed Lepomis gibbosus (Linnaeus, 1758) from the Zaporizhzhia (Dnipro) reservoir

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Abstrakty
EN
The article presents the results of studies on the content of artificial (¹³⁷Cs, ⁹⁰Sr) and natural radionuclides (²²⁶Ra, ²³²Th, ⁴⁰K) in tissues and organs of various individuals of pumpkinseed Lepomis gibbosus (Linnaeus, 1758) from the Zaporizhzhia (Dnipro) reservoir. It has been revealed that in the bones of sexually mature pumpkinseed females, the content of radionuclides ¹³⁷Cs and⁹⁰Sr is 24.7% and 28.6% less, respectively, than in the bones of males. Summing up the materials of radioecological studies of 2017–2018, the following sequence of tissues and organs of the pumpkinseed by the ability to accumulate radionuclides was obtained: bone> muscle> scales> gills. Research results can be useful for further study on the fish radiation load in the basins of the Dnipro River and during monitoring radioecological research. It was determined that the content of radionuclides in the pumpkinseed muscles did not exceed the permissible levels of radionuclide content for fish as a food product (permissible levels of radionuclide content for ¹³⁷Cs – 150 Bq/kg, ⁹⁰Sr – 35 Bq/kg).
Wydawca
-
Rocznik
Tom
79
Opis fizyczny
p.16-22,fig.,ref.
Twórcy
  • Scientific Research Laboratory of Hydrobiology, Ichthyology and Radiobiology, Scientific Research Institute of Biolog, Oles Honchar Dnipro National University, Dnipro, Ukraine
  • Scientific Research Laboratory of Hydrobiology, Ichthyology and Radiobiology, Scientific Research Institute of Biolog, Oles Honchar Dnipro National University, Dnipro, Ukraine
Bibliografia
  • [1] A.S. Bilokon. Accumulation of radionuclides in industrial species of fish of the Dnipro reservoir. Fish Farming 66 (2009) 230. (in Ukrainian)
  • [2] A.S. Belokon, O.N. Marenkov, A.I. Dvoretskij. Contents of radionuclides and heavy metals in fish roe of commercial fish of the Zaporizhya reservoir. Yaderna Fizyka ta Energetyka (Nucl. Phys. At. Energy) 14(1) (2013) 82. (in Russian)
  • [3] B.S. Prister, N.A. Loshchilov, O.F. Nemets, V.A. Poyarkov. Fundamentals of Agricultural Radiology. 2-nd ed. (Kyiv: Urozhaj, 1991) 472 p. (in Russian)
  • [4] O.M. Volkova, V.V. Belyaev, O.E. Kahlyan. Method of estimation of the radioecological state of aquatic ecosystems in the content of radionuclides in hydrobionts. Natural almanac. Biological sciences 8 (Kherson: PP Vishemirsky, 2006) 12. (in Ukrainian)
  • [5] M.S. Meixler, M.B. Bain. Predicting ecological outcomes of stream creation using fish community attributes. Ecological engineering 37(9) (2011) 1422.
  • [6] I.A. Shehanova. Radioecology of fish (Moscow: Legaya i pishchevaya promyshlennost, 1983) 208 p. (in Russian)
  • [7] E.N. Volkova, V.V. Belyaev, O.L. Zarubin, Z.O. Shirokaya, A.E. Kaglin. Dynamics of ¹³⁷Cs in the hydrobionts of the Dnieper reservoirs. Scientific notes of Ternopil National Pedagogical University named after Volodymyr Hnatyuk. Series: Biology 3(26) (2005) 70. (in Russian)
  • [8] Methods of Hydroecological Surveys of Surface Waters. Ed. V. D. Romanenko (Kyiv: LOGOS, 2006) 408 p. (in Ukrainian)
  • [9] E.V. Fedonenko, O. N. Marenkov. Spreading, spatial distribution, and morphometric characteristics of the pumpkinseed sunfish Lepomis gibbosus (Centrarchidae, Perciformes) in the Zaporozhye Reservoir. Russian journal of biological invasions 4(3) (2013) 196.
  • [10] O. Marenkov. Ichthyofauna of the Zaporizhia Nuclear Power Plant cooling pond (Enerhodar, Ukraine) and its biomeliorative significance. Ukrainian Journal of Ecology, 8(2) (2018) 140.
  • [11] M. H. Paller, D. E. Fletcher, M. M. Standora, T. B. Grabowski, T. A. Jones, S. A. Dyer, J. J. Isely. Emigration of fish from two South Carolina cooling reservoirs. North American Journal of Fisheries Management 26(4) (2006) 978.
  • [12] O. Marenkov, O. Nesterenko. Estimation of physiological and biological indices and consequences of biological invasion of the pumpkinseed Lepomis gibbosus (Linnaeus, 1758) in the Zaporizke Reservoir, Ukraine. World Scientific News, 95 (2018) 27.
  • [13] Methods for fish biology. Ed. by Carl B. Schreck and Peter B. Moyle. (Bethesda, Maryland, USA, 1990) 685 p.
  • [14] Methods of sampling agricultural products and foodstuffs for laboratory analysis of the content of radionuclides. Directory for Radiological Services of the Ministry of Agriculture and Food of Ukraine (Kiev, 1997) 14 p. (in Ukrainian)
  • [15] V.V. Babenko, O.S. Kazimirov, O.F. Ruddyk Activity of beta-radiation radionuclides in counting samples. Method of measuring performance using scintillation spectrometers and software AK-1 (Kiev: NPP Atom Complex Instrument, 1998) 27 p. (in Ukrainian)
  • [16] Norms of radiation safety of Ukraine (NRBU-97). State Hygiene Standards. (Kyiv: Department of Polygraphy of the Ukrainian Center for State Surveillance of the Ministry of Health of Ukraine, 1997) 121 p. (in Ukrainian)
  • [17] Permissible levels of radionuclide content ¹³⁷Cs and ⁹⁰Sr in food and drinking water. State Hygiene Standards. Official Bulletin of Ukraine, 29 (2006)142. (in Ukrainian)
  • [18] V.M. Kozak, V.V. Brygadyrenko. Impact of cadmium and lead on Megaphyllum kievense (Diplopoda, Julidae) in a laboratory experiment. Biosystems Diversity, 26(2) (2018) 128–131. http://doi.org/10.15421/011820
Typ dokumentu
Bibliografia
Identyfikator YADDA
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