Bangou Christian, Otoo Francis, Darko Emmanuel Ofori
School of Nuclear and Allied Sciences, University of Ghana, P.O. Box AE1, Atomic Campus, Accra, Ghana.
Autorité nationale de Radioprotection et de Sûreté Nucléaire (ARSN), P.O. Box 7044, Ouagadougou, Burkina Faso.
MethodsX. 2021 May 25;8:101397. doi: 10.1016/j.mex.2021.101397. eCollection 2021.
High Purity germanium (HPGe) detectors are found to be suitable for nuclear techniques for measuring radionuclides with very good energy resolution. Inter-comparison exercise is an important tool for external quality control that enables determination of the accuracy and uncertainty of detector measurement system. In this work, a comparative study of natural radioactivity in soil samples was conducted between the laboratory of Autorité nationale de Radioprotection et de Sûreté Nucléaire (ARSN), Burkina Faso and the laboratory of Radiation Protection Institute of Ghana Atomic Energy Commission (RPI-GAEC),Ghana to ascertain the reliability and accuracy of measurements made in Burkina Faso. For this purpose:•Some replicate soil samples, assumed as proficiency test samples, were analyzed on both the High Purity Germanium detector of ARSN and RPI.•The statistical performance indicators of z-score, precision, trueness and relative bias were used for the evaluation. The limit for acceptable precision and the maximum acceptable bias for all the radionuclides were set to 20% and 15% respectively.
高纯度锗(HPGe)探测器被发现适用于核技术,用于测量具有非常好的能量分辨率的放射性核素。比对试验是外部质量控制的重要工具,能够确定探测器测量系统的准确性和不确定性。在这项工作中,布基纳法索国家辐射防护与核安全局(ARSN)实验室与加纳原子能委员会辐射防护研究所(RPI-GAEC)实验室对土壤样品中的天然放射性进行了对比研究,以确定布基纳法索测量结果的可靠性和准确性。为此:
• 一些重复的土壤样品,被假定为能力验证测试样品,在ARSN和RPI的高纯度锗探测器上进行了分析。
• 使用z分数、精密度、真实性和相对偏差等统计性能指标进行评估。所有放射性核素的可接受精密度限值和最大可接受偏差分别设定为20%和15%。