Department of Natural Radiation Safety, Korea Institute of Nuclear Safety, 62, Gwahak-ro, Yuseong-gu, Daejeon, 34142, Republic of Korea.
Department of Physics, Faculty of Science, Zagazig University, PO Box 44519, Zagazig, Egypt.
Sci Rep. 2018 Sep 20;8(1):14115. doi: 10.1038/s41598-018-32220-9.
In this study, in-situ and laboratory γ-ray spectroscopy techniques were compared to evaluate the activity concentration of natural radionuclides in soil. The activity concentrations of U (Ra), Th, and K in the soil in 11 sites were simultaneously measured with in-situ portable HPGe and the NaI(Tl) detectors. In parallel, 55 soil samples collected from these sites were analyzed with a laboratory γ-ray spectroscopy technique (HPGe). A strong correlation was observed between the in-situ and laboratory HPGe techniques with a linear correlation coefficient (R) of 0.99 for Ra and Th and 0.975 for K, respectively. The in-situ HPGe technique shows a strong correlation with the NaI(Tl) detector. γ-Rays cps of Ra, Th, and K of the NaI (Tl) detector were then converted to specific activities (Bq kg unit) in soil using the empirical formulas obtained in this study. The absorbed dose rate in air at 1 m height above ground due to these radionuclides was calculated using the Beck's formula and the results were compared with measured values obtained with an high pressure ionization chamber. The results of the calculated and measured dose rate show a strong correlation of R = 0.96. The reliability and precision of analytical spectroscopy techniques of radioactivity and radiation dose were confirmed in this work.
在这项研究中,比较了原位和实验室γ射线光谱技术,以评估土壤中天然放射性核素的活度浓度。使用原位便携式 HPGe 和 NaI(Tl) 探测器同时测量了 11 个地点土壤中的 U(Ra)、Th 和 K 的活度浓度。同时,对来自这些地点的 55 个土壤样本进行了实验室γ射线光谱技术(HPGe)分析。原位和实验室 HPGe 技术之间存在很强的相关性,Ra 和 Th 的线性相关系数(R)分别为 0.99 和 0.975,K 的线性相关系数(R)为 0.975。原位 HPGe 技术与 NaI(Tl) 探测器具有很强的相关性。然后,使用本研究中获得的经验公式,将 NaI(Tl) 探测器的 Ra、Th 和 K 的γ射线 cps 转换为土壤中的比活度(Bq kg 单位)。使用 Beck 公式计算了由于这些放射性核素在地面以上 1 米高度处的空气吸收剂量率,并将结果与使用高压电离室获得的实测值进行了比较。计算和测量剂量率的结果具有很强的相关性,R=0.96。本工作证实了放射性和辐射剂量分析光谱技术的可靠性和精度。