Polikarpov GG, Kulebakina LG, Timoschuk VI, Stokozov NA, Korotkov AA (1991) Radionuclides migration in the Dnieper River cascade, the Dnieper–Bug estuary and the Black Sea
shallow waters. (Materials) The SCOPE–RADPATH Meeting: Biochemical Pathways of
Artificial Radionuclides, 12–20 April. RE.40.91. Essex University, p 26
Polikarpov GG, Egorov VN, Gulin SB, Stokozov NA, Lasorenko GE, Mirzoeva NYu,
Tereshchenko NN, Tsytsugina VG, Kulebakina LG, Popovichev VN, Korotkov AA,
Evtushenko DB, Zherko NV (2008) Radioecological response of the Black Sea to the Chernobyl accident. Polikarpov GG, Egorov VN (eds) EKOSI–Gidrophisica, Sevastopol, 667 p
(in Russian)
Sanchez AL, Gastaud J, Noshkin V, Buesseler KO (1991) Plutonium oxidation states in the
southwestern Black Sea: evidence regarding the origin of the cold intermediate layer. Deep
Sea Res. 38(2):845–853
SanPiN 2.6.1.2523–09 Radiation Safety Standards NRB-99/2009 (2009) 93 p. http://www.seogan.
ru/sanpin-2.6.1.2523–09–normi–radiacionnoiy–bezopasnosti–nrb–99/2009.html (in Russian)
Skopintsev BA (1975) Formation of the modern chemical composition of the Black Sea.
Gidrometeoizdat, Leningrad, 336 p (in Russian)
Sources and effects of ionizing radiation. United Nations Scientific Committee on the effects of
atomic radiation (1996) Report to the General Assembly, with scientific annex: effect of
radiation on the environment. United Nations, New York, 86 p
Strezov A, Yordanova I, Pimpl M, Stoilova T (1996) Natural radionuclide and plutonium content
in Black Sea bottom sediments. Health Phys 7(1):70–80
Tereshchenko NN (2005) Plutonium radionuclides in the components of the Black Sea coastal
ecosystems in the waters of Sevastopol. Scietific notes. Serіya Bіology. Sp Is Hydroecol 27
(4):243–247
Tereshchenko NN (2011) Leading role in the redistribution of sediments in the Black Sea
plutonium ekosistemah. Naukovі pratsі Naukovo–methodical journal. Technogenic Safety
CHDU im. Petra Mogili, Nikolaev 169(157):63–70 (in Russian)
Tereshchenko NN (2013) Plutonium in hydrobionts of the Black Sea. Naukovі pratsі Naukovo–
methodical journal. Technogenic Safety CHDU im. Petra Mogili, Nikolaev 210(198):52–61
(in Russian)
Tereshchenko NN, Polikarpov GG (2007) The radioecological situation in the Black Sea in respect
of radioisotopes
238, 239,240
Pu after the Chernobyl accident in comparison with some other
bodies of water, and is within a 30-km zone of Chernobyl NPP. Problems of radioecology and
border disciplines. Nizhnevartovsk, 10:12–29 (in Russian)
Tereshchenko NN, Polikarpov GG, Lazorenko GE (2007) Radioecological situation in the Black
Sea with regard to plutonium: the pollution levels of ecosystem components and doses to biota.
Morskoy Ecol J VI (2):25–37 (in Russian)
Tereshchenko NN, Gulin SB, Proskurnin VY (2011) A modified technique of plutonium concentration determination in seawater. Ecol. Safety of Coastal and Shelf Zones and Comprehensive
Use of Shelf. Resources 25(1):241–251. (in Russian)
Tereshchenko NN, Polikarpov GG, Krilova TA (2012) The barrier role of the Black Sea regarding
239,240
Pu,
137
Cs,
90
Sr – the main dose–forming man–made radionuclides in the post-Chernobyl
period. Ecosyst Optim Safety 7:243–250. (in Russian)
Tereshchenko NN, Proskurnin VY, Gulin SB, Krylova TA (2013) Radioecological monitoring of
plutonium in the bottom sediments of the Sevastopol bays. Ecol. Safety of Coastal and Shelf
Zones and Comprehensive Use of Shelf. Resources 27:289–293. (in Russian)
Tereshchenko NN, Mirzoyeva NY, Gilin SB, Milchakova NA (2014) Contemporary
radioecological state of the North-western Black Sea and the problems of environment
conservation. Mar Pollut Bull 81(1):7–23
Tereshchenko NN, Gulin SB, Proskurin VY (2016) Radiological regularities of redistribution of
plutonium alpha–radionuclides in the ecosystem of the Black Sea. Mar Biol J 1(3):3–13. doi:
10.21072/mbj.01.2.05 (in Russian)
272
N.N. Tereshchenko
shallow waters. (Materials) The SCOPE–RADPATH Meeting: Biochemical Pathways of
Artificial Radionuclides, 12–20 April. RE.40.91. Essex University, p 26
Polikarpov GG, Egorov VN, Gulin SB, Stokozov NA, Lasorenko GE, Mirzoeva NYu,
Tereshchenko NN, Tsytsugina VG, Kulebakina LG, Popovichev VN, Korotkov AA,
Evtushenko DB, Zherko NV (2008) Radioecological response of the Black Sea to the Chernobyl accident. Polikarpov GG, Egorov VN (eds) EKOSI–Gidrophisica, Sevastopol, 667 p
(in Russian)
Sanchez AL, Gastaud J, Noshkin V, Buesseler KO (1991) Plutonium oxidation states in the
southwestern Black Sea: evidence regarding the origin of the cold intermediate layer. Deep
Sea Res. 38(2):845–853
SanPiN 2.6.1.2523–09 Radiation Safety Standards NRB-99/2009 (2009) 93 p. http://www.seogan.
ru/sanpin-2.6.1.2523–09–normi–radiacionnoiy–bezopasnosti–nrb–99/2009.html (in Russian)
Skopintsev BA (1975) Formation of the modern chemical composition of the Black Sea.
Gidrometeoizdat, Leningrad, 336 p (in Russian)
Sources and effects of ionizing radiation. United Nations Scientific Committee on the effects of
atomic radiation (1996) Report to the General Assembly, with scientific annex: effect of
radiation on the environment. United Nations, New York, 86 p
Strezov A, Yordanova I, Pimpl M, Stoilova T (1996) Natural radionuclide and plutonium content
in Black Sea bottom sediments. Health Phys 7(1):70–80
Tereshchenko NN (2005) Plutonium radionuclides in the components of the Black Sea coastal
ecosystems in the waters of Sevastopol. Scietific notes. Serіya Bіology. Sp Is Hydroecol 27
(4):243–247
Tereshchenko NN (2011) Leading role in the redistribution of sediments in the Black Sea
plutonium ekosistemah. Naukovі pratsі Naukovo–methodical journal. Technogenic Safety
CHDU im. Petra Mogili, Nikolaev 169(157):63–70 (in Russian)
Tereshchenko NN (2013) Plutonium in hydrobionts of the Black Sea. Naukovі pratsі Naukovo–
methodical journal. Technogenic Safety CHDU im. Petra Mogili, Nikolaev 210(198):52–61
(in Russian)
Tereshchenko NN, Polikarpov GG (2007) The radioecological situation in the Black Sea in respect
of radioisotopes
238, 239,240
Pu after the Chernobyl accident in comparison with some other
bodies of water, and is within a 30-km zone of Chernobyl NPP. Problems of radioecology and
border disciplines. Nizhnevartovsk, 10:12–29 (in Russian)
Tereshchenko NN, Polikarpov GG, Lazorenko GE (2007) Radioecological situation in the Black
Sea with regard to plutonium: the pollution levels of ecosystem components and doses to biota.
Morskoy Ecol J VI (2):25–37 (in Russian)
Tereshchenko NN, Gulin SB, Proskurnin VY (2011) A modified technique of plutonium concentration determination in seawater. Ecol. Safety of Coastal and Shelf Zones and Comprehensive
Use of Shelf. Resources 25(1):241–251. (in Russian)
Tereshchenko NN, Polikarpov GG, Krilova TA (2012) The barrier role of the Black Sea regarding
239,240
Pu,
137
Cs,
90
Sr – the main dose–forming man–made radionuclides in the post-Chernobyl
period. Ecosyst Optim Safety 7:243–250. (in Russian)
Tereshchenko NN, Proskurnin VY, Gulin SB, Krylova TA (2013) Radioecological monitoring of
plutonium in the bottom sediments of the Sevastopol bays. Ecol. Safety of Coastal and Shelf
Zones and Comprehensive Use of Shelf. Resources 27:289–293. (in Russian)
Tereshchenko NN, Mirzoyeva NY, Gilin SB, Milchakova NA (2014) Contemporary
radioecological state of the North-western Black Sea and the problems of environment
conservation. Mar Pollut Bull 81(1):7–23
Tereshchenko NN, Gulin SB, Proskurin VY (2016) Radiological regularities of redistribution of
plutonium alpha–radionuclides in the ecosystem of the Black Sea. Mar Biol J 1(3):3–13. doi:
10.21072/mbj.01.2.05 (in Russian)
272
N.N. Tereshchenko
