Modeling of radionuclide intake in humans living in the area affected by the semipalatinsk test site
Vestnik KRAUNC. Fiziko-matematičeskie nauki, Tome 38 (2022) no. 1, pp. 147-165 Cet article a éte moissonné depuis la source Math-Net.Ru

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In this study, Bodene village in Beskaragai district of East Kazakhstan Oblast of Kazakhstan was chosen as an object of study because it is close to the site of the nuclear test site and has a large accumulated array of data on the radioecological situation. As part of the study, a questionnaire survey was conducted, which made it possible to compile statistics on the population of the village, as well as on the characteristics of the diet and activities of long-term residents. The work included modeling of technogenic radionuclide intake into a human organism living and carrying out agricultural activity on the territory affected by the Semipalatinsk test site. Calculations are given for intake of radionuclides with plant and animal food, as well as by inhalation. These studies allow to make an assessment and forecast of radiation burden. At the same time it is important to note that no exceedances ofradiation norms have been detected. Contaminated food is the main risk factor for human health, therefore more attention should be paid to monitoring of radiation burden in radioecologically unfavorable areas. The methodology of the study can also be used to control the situation of other settlements, and the results of calculations of this work, in the future, can be used for comparison with the results of biophysical measurements.
Mots-clés : technogenic radionuclides, transfer coefficients
Keywords: STS, testing, intake, crop products, livestock products.
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E. V. Romanenko; M. A. Umarov; G. A. Yakovlev. Modeling of radionuclide intake in humans living in the area affected by the semipalatinsk test site. Vestnik KRAUNC. Fiziko-matematičeskie nauki, Tome 38 (2022) no. 1, pp. 147-165. http://geodesic.mathdoc.fr/item/VKAM_2022_38_1_a8/

[1] Aktivnost' radionuklidov v ob"emnykh obraztsakh. Metodika izmereniy na gamma-spektrometrakh s ispol'zovaniem programmnogo obespecheniya «SpectraLine» [Radionuclide activity in bulk samples. Methods of measurements on gamma-spectrometers using “SpectraLine” software], Introduced in 2004-08-26. Reg. No. KZ.07.00.00303-2004, RSE “Kazakh Institute of Metrology”, Moscow, 2004 (in Russian)

[2] Metodika opredeleniya soderzhaniya iskusstvennykh radionuklidov plutoniya – (239+240), strontsiya – 90 v ob"ektakh okruzhayushchey sredy (pochvakh, gruntakh, donnykh otlozheniyakh i rasteniyakh) [Methodology for determining the content of artificial radionuclides of plutonium – (239+240), strontium – 90 in environmental objects (soils, soil, bottom sediments and plants)], Introduced in 2010-12-01. Reg. No. 43151.4B207/01.00294-2010, NPO VNIIFTRI, Moscow, 2010 (in Russian)

[3] Metodika vypolneniya izmereniy «Opredelenie udel'noy aktivnosti iskusstvennykh radionuklidov plutoniya-(239+240), strontsiya-90 v ob"ektakh okruzhayushchey sredy: pochvakh, gruntakh, donnykh otlozheniyakh i rasteniyakh» [Measurement procedure “Determination of specific activity of artificial radionuclides of plutonium-(239+240), strontium-90 in environmental objects: soils, grounds, bottom sediments and plants”.], Introduced in 2004-08-26. Reg. No. KZ.07.00.00303-2004, Republican State Enterprise “Institute of Nuclear Physics”, Almaty, 2016, 10 pp. (in Russian)

[4] Shestakov Yu. G., Matematicheskie metody v geologii: uchebnoe posobie dlya studentov geologicheskikh spetsial'nostey [Mathematical Methods in Geology : Textbook for Geology Students], Krasnoyarsk University Press, Krasnoyarsk, 1988, 208 pp. (in Russian)

[5] Gigienicheskie normativy «Sanitarno-epidemiologicheskie trebovaniya k obespecheniyu radiatsionnoy bezopasnosti»[Hygienic Standards "Sanitary and Epidemiological Requirements for Radiation Safety"], issued by Decree of the Government of the Republic of Kazakhstan No 155 of February 27, 2015 (in Russian)

[6] Quantification of Radionuclide Transfer in Terrestrial and Freshwater Environments for Radiological Assessments, (IAEA Technical Document, No. 1616), IAEA \year 2009, Vienna, Austria, 616 pp.

[7] Lukashenko S. N., “Otsenka kachestva sel'skokhozyaystvennoy rastenievodcheskoy produktsii pri ee proizvodstve na uslovno «fonovykh» territoriyakh SIP [ Assessment of the quality of agricultural crop production in the conditionally “background” areas of the CIP]”, Optimization of studies of the territories of the Semipalatinsk test site for the purpose of their transfer into economic turnover, Current Issues of Radioecology of Kazakhstan., v. 5, Pavlodar, Printing House, 2015, 249–268 (in Russian)

[8] Korneev P. A., Sirotkin A. N., Osnovy radioekologii sel'skokhozyaystvennykh zhivotnykh [Fundamentals of radioecology of farm animals], Energoatomizdat, Moscow, 1987, 184 pp. (in Russian)

[9] Aleksakhin R. M., Vasiliev A. V., Dikarev V. G. et al., Sel'skokhozyaystvennaya radioekologiya / Pod red. R.M. Aleksakhina, N.A. Korneeva [Agricultural radioecology / Edited by R.M. Aleksakhin, N.A. Korneev], Ecology, Moscow, 1992, 400 pp. (in Russian)

[10] Poleznye kameshki dlya domashney ptitsy [Useful pebbles for poultry], Web resource (in Russian) (Access date: 26.10.2021) URL: https://forum.rmnt.ru/threads/poleznye-kameshki-dlja-domashnej-pticy.102290/

[11] Skol'ko vesit kurinoe yaytso? Ves po markirovke [How much does a chicken egg weigh? Weight by label], Web resource (in Russian) (Access date: 26.10.2021) URL: http://vesit-skolko.ru/yajco-jajco/

[12] Human Respiratory Tract Model for Radiological Protection, ICRP Publication 66. Ann. ICRP 24 (1-3), ICRP

[13] Oatway W. B., Mobbs F., Methodology for Estimating The Doses to Members of the Public from the Future Use of Land Previously Contaminated with Radioactivity, Report NRPB W36 National Radiological Protection Board Great Britain, 2003