Ji Young-Yong, Kim Chang-Jong, Lim Kyo-Sun, Lee Wanno, Chang Hyon-Sock, Chung Kun Ho
*Environmental Radioactivity Assessment Team, Korea Atomic Energy Research Institute, Daejeon 34057, Republic of Korea; † SI Detection Co. Ltd., Daejeon 34051, Republic of Korea.
Health Phys. 2017 Oct;113(4):304-314. doi: 10.1097/HP.0000000000000706.
To expand the application of dose rate spectroscopy to the environment, the method using an environmental radiation monitor (ERM) based on a 3' × 3' NaI(Tl) detector was used to perform real-time monitoring of the dose rate and radioactivity for detected gamma nuclides in the ground around an ERM. Full-energy absorption peaks in the energy spectrum for dose rate were first identified to calculate the individual dose rates of Bi, Ac, Tl, and K distributed in the ground through interference correction because of the finite energy resolution of the NaI(Tl) detector used in an ERM. The radioactivity of the four natural radionuclides was then calculated from the in situ calibration factor-that is, the dose rate per unit curie-of the used ERM for the geometry of the ground in infinite half-space, which was theoretically estimated by Monte Carlo simulation. By an intercomparison using a portable HPGe and samples taken from the ground around an ERM, this method to calculate the dose rate and radioactivity of four nuclides using an ERM was experimentally verified and finally applied to remotely monitor them in real-time in the area in which the ERM had been installed.
为了将剂量率能谱学的应用扩展到环境领域,采用基于3'×3'碘化钠(铊)探测器的环境辐射监测器(ERM)对ERM周围地面上检测到的伽马核素的剂量率和放射性进行实时监测。首先在剂量率能谱中识别出全能吸收峰,由于ERM中使用的碘化钠(铊)探测器能量分辨率有限,通过干扰校正计算地面中分布的铋、锕、铊和钾的个体剂量率。然后根据原位校准因子(即无限半空间地面几何形状下所用ERM的每居里剂量率)计算这四种天然放射性核素的放射性,该校准因子通过蒙特卡罗模拟进行理论估算。通过使用便携式高纯锗探测器以及从ERM周围地面采集的样本进行比对,对这种使用ERM计算四种核素剂量率和放射性的方法进行了实验验证,并最终应用于在安装ERM的区域对它们进行实时远程监测。