Markovic V M, Krstic D, Nikezic D, Stevanovic N
Department of Physics, Faculty of Science, University of Kragujevac, R. Domanovic 12, 34000, Kragujevac, Serbia.
Radiat Environ Biophys. 2012 Nov;51(4):391-7. doi: 10.1007/s00411-012-0413-1. Epub 2012 Jul 13.
Great deal of work has been devoted to determine doses from alpha particles emitted by (222)Rn and its progeny. In contrast, contribution of beta particles and following gamma radiation to total dose has mostly been neglected so far. The present work describes a study of the detriment of (222)Rn progeny for humans due to external exposure. Doses and dose conversion factors (DCFs) were determined for beta and gamma radiation in main organs and remainder tissue of the Oak Ridge National Laboratory phantom, taking into account (222)Rn progeny (214)Pb and (214)Bi distributed in the middle of a standard or typical room with dimensions 4 m × 5 m × 2.8 m. The DCF was found to be 7.37 μSv/WLM. Skin and muscle tissue from remainder tissue receives largest dose. Beta and gamma radiation doses from external exposure were compared with alpha, beta, and gamma doses from internal exposure where the source of radioactivity was the lungs. Total doses received in all main organs and remainder tissues were obtained by summing up the doses from external and internal exposure and the corresponding DCF was found to be 20.67 μSv/WLM.
大量工作致力于确定由(222)Rn及其子体发射的α粒子的剂量。相比之下,到目前为止,β粒子及其后续γ辐射对总剂量的贡献大多被忽视。本工作描述了一项关于(222)Rn子体因外部照射对人类造成危害的研究。考虑到(222)Rn子体(214)Pb和(214)Bi分布在尺寸为4米×5米×2.8米的标准或典型房间中部,确定了橡树岭国家实验室模型主要器官和剩余组织中β和γ辐射的剂量及剂量转换系数(DCF)。发现DCF为7.37 μSv/WLM。剩余组织中的皮肤和肌肉组织接受的剂量最大。将外部照射的β和γ辐射剂量与放射性源为肺部的内部照射的α、β和γ剂量进行了比较。通过将外部和内部照射的剂量相加,得到了所有主要器官和剩余组织接受的总剂量,相应的DCF为20.67 μSv/WLM。