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Modeling the inhalation enhancement factor in prospective radiological risk assessment

Published online by Cambridge University Press:  06 June 2009

M. A. Wasiolek*
Affiliation:
Sandia National Laboratories, 1180 N. Town Center Dr. Las Vegas, NV 89144, USA
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Abstract

Inhalation of suspended particulates originating from contaminated soil is an important exposure pathway that may result from disposal of long-lived solid radioactive waste. A hypothetical scenario was evaluated involving long-term irrigation of agricultural land with contaminated water and ensuing accumulation of radionuclides in surface soil. One of the factors affecting the dose from inhalation of suspended soil particulates is the radionuclide enhancement (enrichment) in airborne soil particles relative to that of the underlying soil. The enhancement factor (enrichment factor) is defined as a ratio of airborne particle activity concentration (Bq kg-1) to surface soil activity concentration (Bq kg-1). The values of this parameter and its effect on inhalation dose were evaluated for different soil types and inhalation exposure conditions.

Type
Research Article
Copyright
© EDP Sciences, 2009

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References

Sheppard S.C. and Evenden W.G. Environ. Geochem. Health 14 (1992) 121-131.
Sheppard S.C. and Evenden W.G. J. Environ. Qual. 23 (1994) 604-613.
U.S. Environmental Protection Agency. Understanding Variation in Partition Coefficient, Kd, Values (U.S. Environmental Protection Agency, Washington, D.C., 1999).
Skaggs T.H., Arya L.M., Shouse P.J. and Mohanty B.P. Soil Sci. Soc. Am. J. 65 (2001) 1038-1044.
National Council on Radiation Protection and Measurements. Recommended Screening Limits for Contaminated Surface Soil and Review of Factors Relevant to Site-Specific Studies, NCRP Report No. 129 (National Council on Radiation Protection and Measurements, Bethesda, Maryland, 1999).
Patterson E.M. and Gillette D.A. J. Geophys. Res. 82 (1977) 2074-2082.
Dorrian M.-D. Radiat. Prot. Dosimet. 69 (1997) 117-132. CrossRef
Pinnick R.G., Fernandez G., Martinez-Andazola E., Hinds B.D., Hansen A.D.A. and Fuller K. J. Geophys. Res. 98 (1993), 2651-2666.
U.S. Environmental Protection Agency. Air Quality Criteria for Particulate Matter (U.S. Environmental Protection Agency, Washington, D.C., 1996).
Johnston P.N., Lokan K.H. and Williams G.A. Health Phys. 63 (1992) 631-640.
Pinnick R.G., Fernandez G., Hinds B.D., Bruce C.W., Schaefer R.W. and Pendleton J.D. Aerosol Sci. Tech. 4 (1985) 99-121.
Degrange J.-P. and Witschger O. “Aerosol Sampling for Radiological Protection: Which Particle Size Aerosol Sampler to Select?” Naturally Occurring Radioactive Materials (NORM IV), Proceedings of an International Conference held in Szczyrk, Poland, 17–21 May 2004. (International Atomic Energy Agency, Vienna, Austria 2005) pp. 389-407.