Egorov VN, Povinec PP, Polikarpov GG, Stokozov NA, Gulin SB (1999)
90
Sr and
137
Cs in the
Black Sea after the Chernobyl NPP accident: inventories, balance and tracer applications. J
Environ Radioact 43(2):137–155
Egorov VN, Stokozov NA, Mirzoeva NY (2001) Long-term post-Chernobyl
90
Sr and
137
Cs
profiles as the indicators of the large-scale vertical water mixing in the Black Sea. Book of
extended synopses of international conference on the study of environmental change using
isotope techniques, IAEA-CN-80,Vienna (Austria), pp 182–184
Goncharov VP, Emelyanova LP, Mikhailov OV, Tsiplev YI (1965) Areas and volumes of the
Mediterranean and Black Seas. Oceanology 5(6):918–925 (in Russian)
Gudiksen PH, Harvey TF, Lange R (1989) Chernobyl source term, atmospheric dispersion and
dose estimation. J Health Phys 57(5):697–705
Gudiksen PH, Harvey TF, Lange R (1991) Chernobyl source term estimation. In: Radiation
protection-53: proceedings of seminar on comperativе assessment of the environmental impact
of radionuclides released during three major nuclear accidents: Kyshtym, Windscale, Chernobyl, 1–5 Oct. 1990. Rep. EUR 13574 (1), Luxembourg, pp 93–112
Gulin SB, Polikarpov GG, Egorov VN, Martin JM, Korotkov AA, Stokozov NA (2002) Radioactive contamination of the north-western Black Sea sediments. Estuar J Coast Shelf Sci
54:541–549
Gulin SB, Egorov VN, Polikarpov GG, Stokozov NA, Mirzoyeva NY, Tereschenko NN, Osvath I
(2011) In: Burlakova EB, Naydich VI (eds) The lessons of Chernobyl: 25 years later. Nova
Science Publishers, New York, pp 281–299
Gulin SB, Mirzoyeva NY, Egorov VN, Polikarpov GG, Sidorov IG, Proskurnin VY (2013)
Secondary radioactive contamination of the Black Sea after Chernobyl accident: recent levels,
pathways and trends. J Environ Radioact 124:50–56
Gulin SB, Egorov VN, Duka MS, Sidorov IG, Proskurnin VY, Mirzoyeva NY (2015) Deep-water
profiling of
137 Cs and
90
Sr in the Black Sea: a further insight into dynamics of the postChernobyl radioactive contamination. J Radioanal Nucl Chem 304(2):779–783
Harvey BK, Ibbett RD, Lovett MB and Williams KJ (1989) Analytical procedures for the
determination of strontium radionuclides in environmental materials. Aquatic Environment
Protection: Analytical Methods, Lowestoft, 33 p
IAEA (2004) Marine Environmental Assessment of the Black Sea. Working Material, Regional
Technical Co-operation Project RER/2/003, IAEA, Vienna, Austria, 358 p
Instrument description (1989) «Quantulus 1220»: instrument manual LKB Wallac. Pharmacia
Wallac Oy, Ontario, Canada, 350 p
Mirzoyeva NYu (2008) Distribution and migration of
90
Sr in components of the Dnieper River
basin and the Black Sea ecosystems after the Chernobyl NPP accident. Abstract of dissertation
on competition of a degree of the candidate of biological sciences: specialty 03.00.17,
Sevastopol, 24 p (in Russian)
Mirzoyeva NY, Egorov VN, Polikarpov GG (2013) Distribution and migration of
90 Sr in components of the Dnieper River basin and the Black Sea ecosystems after the Chernobyl NPP
accident. J Environ Radioact 125:27–35
Polikarpov GG, Egorov VN, Gulin SB, Stokozov NA, Lasorenko GE, Mirzoyeva 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. ECOSY–Hydrophysics, Sevastopol, 667 p. (in Russian)
Skopincev BA (1975) Formation of the modern chemical composition of the Black Sea.
Hydrometeoizdat, Leningrad, 336 p. (in Russian)
Stokozov NA (2004) Long-lived radionuclides
137
Cs and
90
Sr in the Black Sea after the Chernobyl
NPP accident and their use as tracers of water exchange processes. Dissertation on competition
of a degree of the candidate of geographical sciences: specialty 11.00.08, Sevastopol, 24 p
(in Russian)
17 Radionuclides
137
Cs and
90
Sr in Components of the Black Sea Ecosystems. . .
293
90
Sr and
137
Cs in the
Black Sea after the Chernobyl NPP accident: inventories, balance and tracer applications. J
Environ Radioact 43(2):137–155
Egorov VN, Stokozov NA, Mirzoeva NY (2001) Long-term post-Chernobyl
90
Sr and
137
Cs
profiles as the indicators of the large-scale vertical water mixing in the Black Sea. Book of
extended synopses of international conference on the study of environmental change using
isotope techniques, IAEA-CN-80,Vienna (Austria), pp 182–184
Goncharov VP, Emelyanova LP, Mikhailov OV, Tsiplev YI (1965) Areas and volumes of the
Mediterranean and Black Seas. Oceanology 5(6):918–925 (in Russian)
Gudiksen PH, Harvey TF, Lange R (1989) Chernobyl source term, atmospheric dispersion and
dose estimation. J Health Phys 57(5):697–705
Gudiksen PH, Harvey TF, Lange R (1991) Chernobyl source term estimation. In: Radiation
protection-53: proceedings of seminar on comperativе assessment of the environmental impact
of radionuclides released during three major nuclear accidents: Kyshtym, Windscale, Chernobyl, 1–5 Oct. 1990. Rep. EUR 13574 (1), Luxembourg, pp 93–112
Gulin SB, Polikarpov GG, Egorov VN, Martin JM, Korotkov AA, Stokozov NA (2002) Radioactive contamination of the north-western Black Sea sediments. Estuar J Coast Shelf Sci
54:541–549
Gulin SB, Egorov VN, Polikarpov GG, Stokozov NA, Mirzoyeva NY, Tereschenko NN, Osvath I
(2011) In: Burlakova EB, Naydich VI (eds) The lessons of Chernobyl: 25 years later. Nova
Science Publishers, New York, pp 281–299
Gulin SB, Mirzoyeva NY, Egorov VN, Polikarpov GG, Sidorov IG, Proskurnin VY (2013)
Secondary radioactive contamination of the Black Sea after Chernobyl accident: recent levels,
pathways and trends. J Environ Radioact 124:50–56
Gulin SB, Egorov VN, Duka MS, Sidorov IG, Proskurnin VY, Mirzoyeva NY (2015) Deep-water
profiling of
137 Cs and
90
Sr in the Black Sea: a further insight into dynamics of the postChernobyl radioactive contamination. J Radioanal Nucl Chem 304(2):779–783
Harvey BK, Ibbett RD, Lovett MB and Williams KJ (1989) Analytical procedures for the
determination of strontium radionuclides in environmental materials. Aquatic Environment
Protection: Analytical Methods, Lowestoft, 33 p
IAEA (2004) Marine Environmental Assessment of the Black Sea. Working Material, Regional
Technical Co-operation Project RER/2/003, IAEA, Vienna, Austria, 358 p
Instrument description (1989) «Quantulus 1220»: instrument manual LKB Wallac. Pharmacia
Wallac Oy, Ontario, Canada, 350 p
Mirzoyeva NYu (2008) Distribution and migration of
90
Sr in components of the Dnieper River
basin and the Black Sea ecosystems after the Chernobyl NPP accident. Abstract of dissertation
on competition of a degree of the candidate of biological sciences: specialty 03.00.17,
Sevastopol, 24 p (in Russian)
Mirzoyeva NY, Egorov VN, Polikarpov GG (2013) Distribution and migration of
90 Sr in components of the Dnieper River basin and the Black Sea ecosystems after the Chernobyl NPP
accident. J Environ Radioact 125:27–35
Polikarpov GG, Egorov VN, Gulin SB, Stokozov NA, Lasorenko GE, Mirzoyeva 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. ECOSY–Hydrophysics, Sevastopol, 667 p. (in Russian)
Skopincev BA (1975) Formation of the modern chemical composition of the Black Sea.
Hydrometeoizdat, Leningrad, 336 p. (in Russian)
Stokozov NA (2004) Long-lived radionuclides
137
Cs and
90
Sr in the Black Sea after the Chernobyl
NPP accident and their use as tracers of water exchange processes. Dissertation on competition
of a degree of the candidate of geographical sciences: specialty 11.00.08, Sevastopol, 24 p
(in Russian)
17 Radionuclides
137
Cs and
90
Sr in Components of the Black Sea Ecosystems. . .
293
