Acharya R N, Nair A G C, Reddy A V R, Manohar S B
Radiochemistry Division, Bhabha Atomic Research Centre, Trombay, Mumbai 400 085, India.
Appl Radiat Isot. 2002 Sep;57(3):391-8. doi: 10.1016/s0969-8043(02)00111-2.
A neutron activation analysis method using k0-standardization has been adopted for multielement analysis using our research reactors. Gold has been used as the comparator. The input parameters, used for calculation of elemental concentration, such as subcadmium to epithermal neutron flux ratio (f), the epithermal neutron flux shape factor (alpha), and the absolute efficiency of the detector (epsilon) have been determined. The values of k0-factors and Q0 (the ratio of resonance integral to thermal neutron cross section) have been taken from the literature. The validity of applying this method in our laboratory is evaluated by analyzing the elemental concentrations with respect to the certified values in eight reference materials of different origin obtained from USGS, IAEA and NIST. The percent deviation of the measured elemental concentrations are found to be within +/- 15% to that of the certified values whereas the percent relative standard deviation ranged from 2% to 10% for most of the elements analyzed.
采用了一种使用k0标准化的中子活化分析方法,利用我们的研究反应堆进行多元素分析。使用金作为比较器。已确定用于计算元素浓度的输入参数,如镉下到超热中子通量比(f)、超热中子通量形状因子(α)和探测器的绝对效率(ε)。k0因子和Q0(共振积分与热中子截面之比)的值取自文献。通过分析从美国地质调查局(USGS)、国际原子能机构(IAEA)和美国国家标准与技术研究院(NIST)获得的八种不同来源的参考物质中相对于认证值的元素浓度,评估了该方法在我们实验室应用的有效性。发现测量的元素浓度与认证值的百分比偏差在±15%以内,而对于大多数分析元素,相对标准偏差百分比范围为2%至10%。