IMH-CNA (1976) Internal procedures for environmental radioactivity measurements,
IMH-Bucharest
Ioannidou A, Papastefanou CJ (2006) Precipitation scavenging of
7
Be and
137
Cs radionuclides in
air. J Environ Radioact 85(1):121–136
Maxwell RM, Anspaugh LR (2011) An improved model for prediction of resuspension. Health
Phys 101(6):722–730. doi:10.1097/HP.0b013e31821ddb07
Nicholson KW (1988) A review of particle resuspension. Atmos Environ 22:2639–2651
Oncescu M (1994) Artificial radioactivity in Romania, SRR, Bucharest, cap.2, 17–27
Osuch S, Jastrzebski J, Pienkowski I, Dabrowska M, Jaracz J, Kaczanowski J, Le van Khoi S,
Mirowski S, Piasecki E, Szeflinska Z, Tropilo J, Wilhelmi Z (1989) Isotopic composition of
high-activity particles released in the Chernobyl accident. Health Phys 57:707–716
Osvath I, Dovlete C (1992) Post Chernobyl fallout in Romania. In: Proceedings of eighth
international congress of the IRPA, Montreal, May 1992, 2:1545–1548
Osvath I, Dovlete C, Bologa A (1988) Artificial gamma emitters in Black Sea bottom water and
sediment off the Danube Mouths in 1986–1987. Rapp Comm Int Mer Medit 31(2): X-III1,
p 307
Osvath I, Bologa A, Dovlete C (1990a) Environmental Cs-137 concentration factors for Black Sea
biota. Preliminary data. Rapp Comm Int Mer Medit 01/1990 32:320
Osvath I, Dovlete C, Bologa A (1990b) Radioactivity in the Romanian sector of the Black Sea.
Proceedings international symposium on post-chernobyl environmental radioactivity studies in
East-European countries. Kazimierz, Poland, pp 108–112
Pollanen R, Valkama I, Toivonen H (1997) Transport of radioactive particles from the Chernobyl
accident. Atmos Environ 31(21):3575–3590
Pomme S, Collins SM (2014) Unbiased equations for
95 Zr–
95
Nb chronometry. Appl Radiat Isot
90:234–240. doi:10.1016/j.apradiso.2014.04.010
Raes F, De Cort M, Graziani G (1991) Multi-fractal nature of radioactivity deposition on soil after
the chernobyl accident. Health Phys 61(2):271–274
Rosner G, H€ otzl H, Winkler R (1990) Effect of dry deposition, washout and resuspension on
radionuclide ratios after the Chernobyl accident. Sci Total Environ 90:1–12
Sandals FJ, Segal MG, Victorova N (1993) Hot particles from Chernobyl: a review. J Environ
Radioact 18:5–22
Sima O (1978) Radioactivitatea naturala a aerosolilor, Culegere de lucrari IMH, Partea I, 361–381
Sima O, Dovlete C, Alexandrescu M (1983) Particularitati ale radioactivitatii descendentilor
radonului si ai toronului in anumite situatii meteorologice. Studii si Cercetari de Fizica 35
(6):537–545
Sima O, Sonoc S, Dovlete C (1986) Critical analysis of the least-squares method applied to the
determination of environmental radon and thoron daughters, St Cerc Fiz 38, 5 (in Romanian)
Smith JT, Fesenko SV, Howard BJ, Horrill AD, Sanzharova NI, Alexahin RM, Elder DG, Naylor
C (1999) Temporal change in Fallout Cs-137 in terrestrial and aquatic systems: a whole
ecosystem approach. Environ Sci Technol 33:49–54
Sonoc S, Dovlete C (1983a) Hot particle from nuclear atmospheric test of October 1980. St Cerc
Fiz 35(8):744–747
Sonoc S, Dovlete C (1983b) Determination of the deposition rates for some radioactive aerosols.
St Cerc Fiz 01/1983 35(2):120–123
Sonoc S, Dovlete C (1984) On the ratios of the radionuclide concentrations in aerosol and
deposition samples. Rev Roum Phys 29(10):931–934
Sonoc S, Sima O (1992) Optimal method for environmental Radon and Thoron daughters
determination by alpha spectrometry, Jan. 1992, Rad Prot Dosimetry
Sonoc S, Alexandrescu M, Dovlete C, Cuculeanu V (1984a) Die radioactivitat des Sedimentes der
Unteren Donau in den Jahren 1982 und 1983 – 24 Arbeitstagung der IAD, Szentendre/Ungarn
1984
Sonoc S, Alexandrescu M, Dovlete C (1984b) Masurari ale radioactivitatii aerosolilor in unele
mofete din Covasna. Studii si Cercetari de Fizica 36(2)
12 Pre and Post-Chernobyl Environmental Radioactivity in Romania: a Review
219
IMH-Bucharest
Ioannidou A, Papastefanou CJ (2006) Precipitation scavenging of
7
Be and
137
Cs radionuclides in
air. J Environ Radioact 85(1):121–136
Maxwell RM, Anspaugh LR (2011) An improved model for prediction of resuspension. Health
Phys 101(6):722–730. doi:10.1097/HP.0b013e31821ddb07
Nicholson KW (1988) A review of particle resuspension. Atmos Environ 22:2639–2651
Oncescu M (1994) Artificial radioactivity in Romania, SRR, Bucharest, cap.2, 17–27
Osuch S, Jastrzebski J, Pienkowski I, Dabrowska M, Jaracz J, Kaczanowski J, Le van Khoi S,
Mirowski S, Piasecki E, Szeflinska Z, Tropilo J, Wilhelmi Z (1989) Isotopic composition of
high-activity particles released in the Chernobyl accident. Health Phys 57:707–716
Osvath I, Dovlete C (1992) Post Chernobyl fallout in Romania. In: Proceedings of eighth
international congress of the IRPA, Montreal, May 1992, 2:1545–1548
Osvath I, Dovlete C, Bologa A (1988) Artificial gamma emitters in Black Sea bottom water and
sediment off the Danube Mouths in 1986–1987. Rapp Comm Int Mer Medit 31(2): X-III1,
p 307
Osvath I, Bologa A, Dovlete C (1990a) Environmental Cs-137 concentration factors for Black Sea
biota. Preliminary data. Rapp Comm Int Mer Medit 01/1990 32:320
Osvath I, Dovlete C, Bologa A (1990b) Radioactivity in the Romanian sector of the Black Sea.
Proceedings international symposium on post-chernobyl environmental radioactivity studies in
East-European countries. Kazimierz, Poland, pp 108–112
Pollanen R, Valkama I, Toivonen H (1997) Transport of radioactive particles from the Chernobyl
accident. Atmos Environ 31(21):3575–3590
Pomme S, Collins SM (2014) Unbiased equations for
95 Zr–
95
Nb chronometry. Appl Radiat Isot
90:234–240. doi:10.1016/j.apradiso.2014.04.010
Raes F, De Cort M, Graziani G (1991) Multi-fractal nature of radioactivity deposition on soil after
the chernobyl accident. Health Phys 61(2):271–274
Rosner G, H€ otzl H, Winkler R (1990) Effect of dry deposition, washout and resuspension on
radionuclide ratios after the Chernobyl accident. Sci Total Environ 90:1–12
Sandals FJ, Segal MG, Victorova N (1993) Hot particles from Chernobyl: a review. J Environ
Radioact 18:5–22
Sima O (1978) Radioactivitatea naturala a aerosolilor, Culegere de lucrari IMH, Partea I, 361–381
Sima O, Dovlete C, Alexandrescu M (1983) Particularitati ale radioactivitatii descendentilor
radonului si ai toronului in anumite situatii meteorologice. Studii si Cercetari de Fizica 35
(6):537–545
Sima O, Sonoc S, Dovlete C (1986) Critical analysis of the least-squares method applied to the
determination of environmental radon and thoron daughters, St Cerc Fiz 38, 5 (in Romanian)
Smith JT, Fesenko SV, Howard BJ, Horrill AD, Sanzharova NI, Alexahin RM, Elder DG, Naylor
C (1999) Temporal change in Fallout Cs-137 in terrestrial and aquatic systems: a whole
ecosystem approach. Environ Sci Technol 33:49–54
Sonoc S, Dovlete C (1983a) Hot particle from nuclear atmospheric test of October 1980. St Cerc
Fiz 35(8):744–747
Sonoc S, Dovlete C (1983b) Determination of the deposition rates for some radioactive aerosols.
St Cerc Fiz 01/1983 35(2):120–123
Sonoc S, Dovlete C (1984) On the ratios of the radionuclide concentrations in aerosol and
deposition samples. Rev Roum Phys 29(10):931–934
Sonoc S, Sima O (1992) Optimal method for environmental Radon and Thoron daughters
determination by alpha spectrometry, Jan. 1992, Rad Prot Dosimetry
Sonoc S, Alexandrescu M, Dovlete C, Cuculeanu V (1984a) Die radioactivitat des Sedimentes der
Unteren Donau in den Jahren 1982 und 1983 – 24 Arbeitstagung der IAD, Szentendre/Ungarn
1984
Sonoc S, Alexandrescu M, Dovlete C (1984b) Masurari ale radioactivitatii aerosolilor in unele
mofete din Covasna. Studii si Cercetari de Fizica 36(2)
12 Pre and Post-Chernobyl Environmental Radioactivity in Romania: a Review
219
