AN ATTEMPT TO EVALUATE THE RISKS ASSOCIATED WITH RADIOLOGICAL TERROR

Authors

  • Anselmo Salles Paschoa Universidade Estadual do Rio de janeiro - UERJ
  • Bernardo Maranhão Dantas Instituto de Radioproteção e Dosimetria

DOI:

https://doi.org/10.15392/bjrs.v2i1.13

Keywords:

Radionuclides, Radiological Risk, Terrorism

Abstract

The evaluation of the risk of a terrorist attack has been made frequently by multiplying the probability of occurrence of a terrorist attempt by the probability of its success and a quantity which represents the consequences of a successful attack. In the case of a radiological attack the consequences will vary in case the action will be active or passive. Thirteen radionuclides were examined for their potential uses in credible threats or terrorist attacks based on their availability from laboratories and hospitals. Taking into account the dose conversion coefficients published by the International Atomic Energy Agency, those radionuclides with higher dose effectiveness for ingestion are the following: 210Po; 226Ra and 241Am. Other radionuclides which can be used in threats and terror attacks, like 137Cs for example have also been examined. The risks associated with the selected radionuclides have been tentatively ranked as high, medium, or low. The probability used to evaluate risks depends on the motivation of the terrorist and the capacity, which implies availability or the actual possibility of obtaining a particular radionuclide. On the other hand, whenever a list of radionuclides to be used in a malevolent action is available to a terrorist, the choice of the most adequate will depend also on the action to be undertaken. This work ranks risks associated with radiological terror based on physical, chemical, radio-toxicological and other relevant data on radionuclides, which were either already used in terror attacks, or were pointed out as adequate to be used in such malevolent actions.

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Author Biography

  • Bernardo Maranhão Dantas, Instituto de Radioproteção e Dosimetria
    Divisão de Dosimetria

References

Beasley TM, Eagle RJ, and Jokela TA, 1973. Polonium-210, Lead-210 and stable lead in marine organisms. Q. Summ. Rep. Hlth Saf. Lab., New York Fallout Programme, HASL-273, p. 2-36.

Cherry RD and Shannon LV, 1974. The alpha radioactivity of marine organisms. Atom, Energy Res., 12, 1-45.

Framework for Assessment of Environmental Impact (FASSET), 2003 Contract No. FIGE-CT-2000-00102. App.1., 1-111.

Folsom TR, and Beasley TM, 1973. Contributions from the alpha emitter Po-210 to the natural radiation environment of the marine organisms. Proceedings of International Symposium on Radioactive Contamination of the Marine Environment, Seattle, IAEA, Vienna, p. 625-632.

Hameed PS, Shaheed K, Somasundaram SSN, and Iyengar M.A.R, 1997 A study on the radioactivity profile of Polonium –210 in different fresh water habitats. Radiation Protection and Environment. Vol.20 No.2

Hill CR, 1965. Polonium-210 in man. Nature. Oct 30;208 (9):423-8.

Holtzman RB, I966. Natural levels of Lead-210, Polonium-210 and Radium-226 in humans and biota of the Arctic. Nature, 210 : 1094-1097.

Iyengar MAR, 1983 Studies on the distribution of natural radioactivity in marine organisms. Ph.D. Thesis, University of Bombay, Bombay.

Paschoa AS, Baptista GB, Wrenn ME, and Eisenbud M., 1981. Dosimetry of natural and man-made alpha emitters in plankton. International Symposium on the Impacts of Radionuclide Releases into the Marine Environment, International Atomic Energy Agency, IAEA –SM-248/140, Vienna, 695-718.

Shannon, L.V.; Cherry, R.D. and Orren. M.J. Polonium-210 and Lead-210 in the marine environment. Geochim. Cosmochim. Acta 1970, 34, 701-711.

Stannard JN, Casarett GW, 1964. Concluding comments on biological effects of alpha-particle emitters in soft tissue as exemplified by experiments with polonium-210. Radiat Res.;51:SUPPL 5:398+.

Steinhäusler F, Rydell S, and Zaytseva L, 2008. Risk due to radiological terror attacks with natural radionuclides. AIP Conference Proceedings of the 8th International Symposium on the Natural Radiation Environment, 7-12 October 2007, Búzios, Rio de Janeiro, Brazil.

Woodhead DS, 1973. Levels of radioactivity in the marine environment and the dose commitment to marine organisms, International Symposium on the Radioactive Contamination of the Marine Environment, International Atomic Energy Agency, IAEA –SM-158/1, Vienna, 499-525.

International Commission on Radiological Protection (ICRP), 1983. Radionuclide Transformations - Energy and Intensity of Emissions. ICRP Publication 38. Ann. ICRP 11-13.

International Atomic Energy Agency (IAEA). Assessment of Occupational Exposure Due to Intakes of Radionuclides - Safety Standards Series, no. RS-G-1.2, IAEA, 1999

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Published

2014-01-30

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Section

Articles

How to Cite

AN ATTEMPT TO EVALUATE THE RISKS ASSOCIATED WITH RADIOLOGICAL TERROR. Brazilian Journal of Radiation Sciences, Rio de Janeiro, Brazil, v. 2, n. 1, 2014. DOI: 10.15392/bjrs.v2i1.13. Disponível em: https://www.bjrs.org.br/revista/index.php/REVISTA/article/view/13.. Acesso em: 26 apr. 2024.

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