Review

  • Journal of Nuclear Fuel Cycle and Waste Technology
  • Volume 2(3); 2004
  • Article

Journal of Nuclear Fuel Cycle and Waste Technology 2004;2(3):181-188. Published online: Sep, 30, 2004

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Contaminative Influence of Beef Due to the Inhalation of Air and the Ingestion of Soil of Livestock from an Acute Release of Radioactive Materials

  • Won-Tae Hwang ; Eun-Han Kim ; Kyung-Suk Suh ; Hyo-Jeon Jeong and Moon-Hee Han
Abstract

The contaminative influence of beef due to the inhalation of air and the ingestion of soil of livestock, both of which are dealt with as minor contaminative pathways in most radioecological models but may not be neglected, was comprehensively investigated with the improvement of the Korean food chain model DYNACON. As the results, it was found that both pathways can not be neglected at all in the contamination of beef in the case of an accidental release during the non-grazing period of livestock. The ingestion of soil was more influential in the contamination of beef than the inhalation of air over most time following an release. If precipitation is encountered during an accidental release, contaminative influence due to the ingestion of soil was far greater compared with the cases of no precipitation. This fact was more distinct for a long-lived radionuclide 137Cs than a short-lived radionuclide 131I (elemental iodine). Compared with the results for milk performed prior to this study, the contaminative pathways due to the inhalation of air and the ingestion of soil were more important in beef because of longer biological half-lives. On the other hand, in the case of an accidental release during the grazing period of livestock, radioactive contamination due to the ingestion of pasture was dominant irrespective of the existence of precipitation during an accidental release. It means that contaminative influence due to the inhalation of air and the ingestion of soil is negligible, like the cases of milk.

Keywords

dynamic food chain model,livestock,beef,inhalation of air,ingestion of soil