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Year 2017, Volume: 13 Issue: 4, 829 - 831, 29.12.2017
https://doi.org/10.18466/cbayarfbe.370356

Abstract

References

  • 1. Demir, B.; Okutan, M. Radyoaktif sigara: Tütün+Polonyum-210+Kurşun-210. Türk Onkoloji Dergisi 2014; 29 (1), 27-31.
  • 2. IAEA-International Atomic Energy Agency. Quantification of Radionuclide Transfer in Terrestrial and Freshwater Environ-ments for Radiological Assessments. 2009;IAEA-TEC-DOC 1616, Vienna.
  • 3. IAEA-International Atomic Energy Agency. Naturally occur-ring radioactive materials (NORM IV), 2005;IAEA-TECDOC-1472, Vienna.
  • 4. Ahmad, F. Impact of fertilizers on background radioactivity level in two newly developed desert areas. Radiation Effects & Defects in Solids. 2007;162, 1,31–42.
  • 5. Mandic, L. J.; Ðolic, M.; Markovic D.; Todorovic, D; Onjia, A.; Dragovic,S. Natural Radionuclides In Cigarette Tobacco From Serbian Market and Effective Dose Estimate From Smoke Inha-lation. Radiation Protection Dosimetry. 2016; Vol. 168 (1), 111–115,2016.
  • 6. World Health Organization (WHO). Tobacco free initiative. In Workshop on Advancing Knowledge on Regulating Tobacco Product, 2000;WHO.
  • 7. Türkiye Halk Sağlığı Kurumu, Küresel Yetişkin Tütün Araştır-ması Türkiye 2012, Ankara, 2014
  • 8. IAEA- International Atomic Energy Agency, Guide Quantif-ying Uncertainty in Nuclear Analytical Measurements, 2004;IAEA-TECDOC-1401, Vienna, 103-126.
  • 9. Dogru, M.; Kumral, H. M.; Kulahci, F.; Canbazoglu, C. ; Baykara. O. Determination of low level 210Pb activity in tobac-co by using 61 keV beta-energy line. Journal of Radioanalyti-cal and Nuclear Chemistry. 2001; 249 (3), 663–664.
  • 10. Yaprak, G.; Uysal B. Determination of low level 210Pb in tobac-co. Journal of Radioanalytical and Nuclear Chemistry.1998; 229 (1-2), 153 155.
  • 11. Godoy, J. M.;Gouevea, M. D. R.; Azeredo, A. M. G. 226Ra/210Po/210Pb equilibrium in tobacco leaves. Radiation Pro-tection Dosimetry. 1992; 45, 299–300.
  • 12. ICRP. Compendium of Dose Coefficients based on ICRP Publi-cation 60. 2012. ICRP Publication 119 Annals of ICRP, 41(Suppl.).
  • 13. Iwaoka, K.; Yonehara, H. Natural radioactive nuclides in ciga-rettes and dose estimation for smokers, Journal of Radioanaly-tical Nuclear Chemistry. 2012; 293:973–977.
  • 14. Karaöz, M.; Albeni, M.; Büyüktatlı F. Yasal Düzenlemelerin Sigara Tüketimi Üzerindeki Etkileri, Alanya İşletme Fakültesi Dergisi. 2010; 2/2, 19-36.
  • 15. Khater, A. E. M. Polonium-210 budget in cigarettes. Journal of Environmental Radioactivity. 2004; 71, 33–41.
  • 16. Skwarzec, B.; Ulatowski, J.; Struminska, D.I.; Boryło A. Inhala-tion of 210Po and 210Pb from cigarette smoking in Poland. Jo-urnal of Environmental Radioactivity. 2001; 57, 221–230.
  • 17. Peres, A.C.; Hiromoto, G. Evaluation of 210Pb and 210Po in cigarette tobacco produced in Brazil. Journal of Environmental Radioactivity. 2002; 62, 115–119.

210Po Radioactivity in Tobacco and Smoke Inhalation Effective Dose Estimation

Year 2017, Volume: 13 Issue: 4, 829 - 831, 29.12.2017
https://doi.org/10.18466/cbayarfbe.370356

Abstract

In this study, 210Po
radioactivity in tobacco and effective dose estimation from smoke inhalation
were investigated. 14 most frequently used cigarette brands in Turkey were used
for this purpose. 210Po average radioactivity in tobacco was found
to be 25.4 ± 2.0 Bq/kg. 210Po mean annual effective dose was found
to be
181.8 µSv/y.

References

  • 1. Demir, B.; Okutan, M. Radyoaktif sigara: Tütün+Polonyum-210+Kurşun-210. Türk Onkoloji Dergisi 2014; 29 (1), 27-31.
  • 2. IAEA-International Atomic Energy Agency. Quantification of Radionuclide Transfer in Terrestrial and Freshwater Environ-ments for Radiological Assessments. 2009;IAEA-TEC-DOC 1616, Vienna.
  • 3. IAEA-International Atomic Energy Agency. Naturally occur-ring radioactive materials (NORM IV), 2005;IAEA-TECDOC-1472, Vienna.
  • 4. Ahmad, F. Impact of fertilizers on background radioactivity level in two newly developed desert areas. Radiation Effects & Defects in Solids. 2007;162, 1,31–42.
  • 5. Mandic, L. J.; Ðolic, M.; Markovic D.; Todorovic, D; Onjia, A.; Dragovic,S. Natural Radionuclides In Cigarette Tobacco From Serbian Market and Effective Dose Estimate From Smoke Inha-lation. Radiation Protection Dosimetry. 2016; Vol. 168 (1), 111–115,2016.
  • 6. World Health Organization (WHO). Tobacco free initiative. In Workshop on Advancing Knowledge on Regulating Tobacco Product, 2000;WHO.
  • 7. Türkiye Halk Sağlığı Kurumu, Küresel Yetişkin Tütün Araştır-ması Türkiye 2012, Ankara, 2014
  • 8. IAEA- International Atomic Energy Agency, Guide Quantif-ying Uncertainty in Nuclear Analytical Measurements, 2004;IAEA-TECDOC-1401, Vienna, 103-126.
  • 9. Dogru, M.; Kumral, H. M.; Kulahci, F.; Canbazoglu, C. ; Baykara. O. Determination of low level 210Pb activity in tobac-co by using 61 keV beta-energy line. Journal of Radioanalyti-cal and Nuclear Chemistry. 2001; 249 (3), 663–664.
  • 10. Yaprak, G.; Uysal B. Determination of low level 210Pb in tobac-co. Journal of Radioanalytical and Nuclear Chemistry.1998; 229 (1-2), 153 155.
  • 11. Godoy, J. M.;Gouevea, M. D. R.; Azeredo, A. M. G. 226Ra/210Po/210Pb equilibrium in tobacco leaves. Radiation Pro-tection Dosimetry. 1992; 45, 299–300.
  • 12. ICRP. Compendium of Dose Coefficients based on ICRP Publi-cation 60. 2012. ICRP Publication 119 Annals of ICRP, 41(Suppl.).
  • 13. Iwaoka, K.; Yonehara, H. Natural radioactive nuclides in ciga-rettes and dose estimation for smokers, Journal of Radioanaly-tical Nuclear Chemistry. 2012; 293:973–977.
  • 14. Karaöz, M.; Albeni, M.; Büyüktatlı F. Yasal Düzenlemelerin Sigara Tüketimi Üzerindeki Etkileri, Alanya İşletme Fakültesi Dergisi. 2010; 2/2, 19-36.
  • 15. Khater, A. E. M. Polonium-210 budget in cigarettes. Journal of Environmental Radioactivity. 2004; 71, 33–41.
  • 16. Skwarzec, B.; Ulatowski, J.; Struminska, D.I.; Boryło A. Inhala-tion of 210Po and 210Pb from cigarette smoking in Poland. Jo-urnal of Environmental Radioactivity. 2001; 57, 221–230.
  • 17. Peres, A.C.; Hiromoto, G. Evaluation of 210Pb and 210Po in cigarette tobacco produced in Brazil. Journal of Environmental Radioactivity. 2002; 62, 115–119.
There are 17 citations in total.

Details

Subjects Engineering
Journal Section Articles
Authors

Yusuf Ağuş

Publication Date December 29, 2017
Published in Issue Year 2017 Volume: 13 Issue: 4

Cite

APA Ağuş, Y. (2017). 210Po Radioactivity in Tobacco and Smoke Inhalation Effective Dose Estimation. Celal Bayar University Journal of Science, 13(4), 829-831. https://doi.org/10.18466/cbayarfbe.370356
AMA Ağuş Y. 210Po Radioactivity in Tobacco and Smoke Inhalation Effective Dose Estimation. CBUJOS. December 2017;13(4):829-831. doi:10.18466/cbayarfbe.370356
Chicago Ağuş, Yusuf. “210Po Radioactivity in Tobacco and Smoke Inhalation Effective Dose Estimation”. Celal Bayar University Journal of Science 13, no. 4 (December 2017): 829-31. https://doi.org/10.18466/cbayarfbe.370356.
EndNote Ağuş Y (December 1, 2017) 210Po Radioactivity in Tobacco and Smoke Inhalation Effective Dose Estimation. Celal Bayar University Journal of Science 13 4 829–831.
IEEE Y. Ağuş, “210Po Radioactivity in Tobacco and Smoke Inhalation Effective Dose Estimation”, CBUJOS, vol. 13, no. 4, pp. 829–831, 2017, doi: 10.18466/cbayarfbe.370356.
ISNAD Ağuş, Yusuf. “210Po Radioactivity in Tobacco and Smoke Inhalation Effective Dose Estimation”. Celal Bayar University Journal of Science 13/4 (December 2017), 829-831. https://doi.org/10.18466/cbayarfbe.370356.
JAMA Ağuş Y. 210Po Radioactivity in Tobacco and Smoke Inhalation Effective Dose Estimation. CBUJOS. 2017;13:829–831.
MLA Ağuş, Yusuf. “210Po Radioactivity in Tobacco and Smoke Inhalation Effective Dose Estimation”. Celal Bayar University Journal of Science, vol. 13, no. 4, 2017, pp. 829-31, doi:10.18466/cbayarfbe.370356.
Vancouver Ağuş Y. 210Po Radioactivity in Tobacco and Smoke Inhalation Effective Dose Estimation. CBUJOS. 2017;13(4):829-31.