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Cs-137 in milk, vegetation, soil, and water near the former Soviet Union’s Semipalatinsk Nuclear Test Site

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Abstract

The present study was carried out to evaluate Cs-137 activity concentration in soil, water, vegetation, and cow’s milk at 10 locations within three regions (Abai, Ayaguz, and Urdzhar) to the southeast of the Semipalatinsk Nuclear Test Site (SNTS) in Kazakhstan. Cs-137 activity concentrations, determined using a pure Ge gamma-ray spectrometer, showed that, all samples collected did not exceed the National maximum allowable limits of 10,000 Bq/kg for soil, 100 Bq/kg for cow’s milk, 74 Bq/kg for vegetation, and 11 Bq/kg for water. Cs-137 is, therefore, not considered a health hazard in these regions. The highest levels of contamination were found in the Abai region, where the highest activity concentration of Cs-137 was 18.0 ± 1.0 Bq/kg in soil, 7.60 ± 0.31 Bq/kg in cow’s milk, 4.00 ± 0.14 Bq/kg in the vegetation, and 3.00 ± 0.24 Bq/kg in water. The lowest levels were measured within the Urdzhar region, where 4.00 ± 0.14 Bq/kg was found in the soil, 0.30 ± 0.02 Bq/kg in the cow’s milk, 1.00 ± 0.03 Bq/kg in the vegetation, and 0.20 ± 0.02 Bq/kg in the water.

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References

  • Adams RS (1995) “Calculating drinking water intake for lactating cows.” Dairy reference manual (NRAES-63). Northeast Regional Agricultural Engineering Service, Ithaca

    Google Scholar 

  • Aidarkhanova GS (2012) Soil degradation at the Semipalatinsk testing site near with inhabited locality. Proceedings of VIII international scientific-practical conference “Current problems of ecology” 24–26 October 2012, Grodno, Belarus: 136–138

  • Artemyev OI (2011) Radiological monitoring of Sarzhal, near the Semipalatinsk Nuclear Test Site. NNC Bull 1:131–136

    Google Scholar 

  • Bocharov VS, Zelentsoz SA, Mikhailov VN (1989) Characteristic of 96 underground nuclear explosions at the Semipalatinsk Test Site (in Russian). Atomic Energy 67:210–214

    CAS  Google Scholar 

  • Burkitbayev M, Priest N, Mitchell P, Vintro L, Pourcelot L, Kuyanova Y, Artemyev O (2009) Ecological impacts of large-scale war preparations: Semipalatinsk Test Site, Kazakhstan in Machlis GE et al. (eds.), Warfare ecology: a new synthesis for peace and security, 55 NATO science for peace and security series C: environmental security: 55–64

  • Carlsen TM, Peterson LE, Ulsh BA, Werner CA, Purvis KL, Sharber AC (2001) Radionuclide contamination at Kazakhstan’s Semipalatinsk Test Site: implications on human and ecological health. Hum Ecol Risk Assess 7:943

    Article  Google Scholar 

  • Collected works of the Institute of Radiation Safety and Ecology (IRSE) for 2007–2009 (2010) Pavlodar, “Dom pechati”. P. 528

  • Duyssembaev ST, Łozowicka B, Serikova AT, Iminova DY, Okuskhanova EK, Yessimbekov ZS, Kaczyński P (2014) Radionuclide content in system “soil–water–plants–livestock products” in East Kazakhstan. Pol J Environ Stud 23(6):1983–1993

    CAS  Google Scholar 

  • Fesenko S, Isamov N, Howard BJ et al (2009) Review of Russian language studies on radionuclide behavior in agricultural animals: 3. Transfer to muscle. J Environ Radioact 100:215–231

    Article  CAS  Google Scholar 

  • Forsberg S, Rosen K, Fernandez V, Juhan H (2000) Migration of caesium-137 and strontium-90 in undisturbed soil profiles under controlled and close-to-real conditions. J Environ Radioact 50:235–252

    Article  CAS  Google Scholar 

  • Gordeev K, Vasilenko I, Lebedev A, Bouville A, Luckyanov N, Simon SL et al (2002) Fallout from nuclear tests: dosimetry in Kazakhstan. Radiat Environ Biophys 41:61–67

    Article  CAS  Google Scholar 

  • Grosche B (2002) Semipalatinsk Test Site: introduction. Radiat Environ Biophys 41:53–55

    Article  CAS  Google Scholar 

  • Groshe B, Land C, Bauer S, Pivina LM, Abylkassimova ZN, Gusev BI (2002) Fallout from nuclear tests: health effects in Kazakhstan. Radiat Environ Biophys 41:75–80

    Article  Google Scholar 

  • Gusev BI, Abylkassimova ZN, Apsalikov KN (1997) The Semipalatinsk Nuclear Test Site: a first assessment of the radiological situation and the test-related radiation doses in the surrounding territories. Radiat Environ Biophys 36:201–204

    Article  CAS  Google Scholar 

  • Healy WB (1968) Ingestion of soil by dairy cows. N Z J Agric Res 11(2):487–499

    Article  Google Scholar 

  • Howard BJ, Semioschkina N, Voigt G, Mukusheva M, Clifford J (2004) Radiostrontium contamination of soil and vegetation within the Semipalatinsk Test Site. Radiat Environ Biophys 43:285–292

    Article  CAS  Google Scholar 

  • International Atomic Energy Agency (IAEA) (1998) Radiological conditions at the Semipalatinsk Test Site, Kazakhstan: preliminary assessment and recommendations for further studies Radiological Assessment Report Series (Vienna: IAEA) 43 pp

  • International Atomic Energy Agency (IAEA) (2010) Technical reports series no 472 (TRS-472) Handbook of parameter values for the prediction of radionuclide transfer in terrestrial and freshwater environments

  • Kawano N, Hirabayashi K, Matsuo M, Taooka Y et al (2006) Human suffering effects of nuclear tests at Semipalatinsk, Kazakhstan: established on the basis of questionnaire surveys. J Radiat Res 47:A209–A217

    Article  Google Scholar 

  • Larionova NV, Panin MS, Ptickaya LD (2006) Migration of Cs-137 and Sr-90 radionuclides in light chestnut soil on the Balapan test site. Vestnik Semipalatinskogo Gosudarstvennogo Universiteta Imeni Shakarima 2:26–31 (In Russian)

    Google Scholar 

  • Lukashenko SN (2011) Radioecological state of the “northern” part of the territory of the Semipalatinsk Test Site. Topical issues of Kazakhstan radioecology issue 1. Edition 2. Printing House, Pavlodar

    Google Scholar 

  • McFarland DF (1998) “Watering dairy cattle.” Dairy feeding systems management, components and nutrients (NRAES-116). Natural Resources, Agriculture and Engineering Services, Ithaca

    Google Scholar 

  • Michailov VN (1996) USSR nuclear weapon tests and peaceful nuclear explosions 1949 through 1990. Russian Federation Nuclear Center VNIEF, Sarov

    Google Scholar 

  • Muller LD (2004) Managing to get more milk and profit from pasture http://extension.psu.edu/animals/dairy/nutrition/forages/pasture/articles-on-pasture-and-grazing/managing-to-get-more-milk-and-profit-from-pasture/extension_publication_file

  • Priest N, Burkitbayev M, Artemyev O, Lukashenko S, Mitchell PI (2003) Investigation of the radiological situation in the Sarzhal region of the Semipalatinsk Nuclear Test Site. NATO SEMIRAD Project Final Report, Contract SfP-976046(99), February 2003

  • Rafferty B, Brennan M, Dawson D, Dowding D (2000) Mechanisms of 137Cs migration in coniferous forest soil. J Environ Radioact 48:131–143

    Article  CAS  Google Scholar 

  • Sakaguchi A, Yamamoto M, Hoshi M, Imanaka T, Apsalikov KN, Gusev BI (2006) Radiological situation in she vicinity of Semipalatinsk Nuclear Test Site: Dolon, Mostik, Cheremushka, and Budene settlements. J Radiat Res 2(47):А101–А116

    Article  Google Scholar 

  • Semiochkina NA, Voigt GB, Mukusheva MC, Bruk GD, Travnikova ID, Strand PE (2004) Assessment of the current internal dose due to 137Cs and 90Sr for people living within the Semipalatinsk Test Site, Kazakhstan. Health Phys 86(2):187–192

    Article  CAS  Google Scholar 

  • Steinhäusler F, Gastberger M, Hubmer AK, Spano M, Ranaldi R, Stronati L, Testa A (2000) Assessment of the radiation dose due to nuclear tests for residents in areas adjacent to the Semipalatinsk Test Site ‘Polygon’ (Kazakhstan). Proc. Int. Conf. IRPA-10, Hiroshima, Japan: P-4b-222.)

  • Val’kov VF, Kazeev KS, Kolesnikov SI (2004) Ecology of soils. Rostov-na-Donu (In Russian)

  • Yamamoto M, Hoshi M, Takada J, Sakaguchi A, Apsalikov KN, Gusev BI (2004) Distribution of Pu isotopes and 137Cs in soil from Semipalatinsk Nuclear Test Site detonations throughout southern districts. J Radioanal Nucl Chem 261(1):19–36

    Article  CAS  Google Scholar 

  • Zhiyanski M, Bech J, Sokolovska M, Lucot E, Bech J, Badot P-M (2008) Cs-137 distribution in forest floor and surface soil layers from two mountainous regions in Bulgaria. J Geochem Explor 96:256–266

    Article  CAS  Google Scholar 

Download references

Acknowledgments

This article was prepared as part of the scientific project No. 1810/GF and No. 1064/GF4 of the Ministry of Education and Science of the Republic of Kazakhstan. The authors would like to thank the staff of the engineering laboratory “Scientific Center of Radioecological Research” of Shakarim State University of Semey for conducting the analysis.

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Correspondence to Zhanibek Yessimbekov.

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Kakimov, A., Yessimbekov, Z., Kakimova, Z. et al. Cs-137 in milk, vegetation, soil, and water near the former Soviet Union’s Semipalatinsk Nuclear Test Site. Environ Sci Pollut Res 23, 4931–4937 (2016). https://doi.org/10.1007/s11356-015-5741-7

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