用于放射性核素计量标准源制备的称重方法的原位验证方法学

F. Cacais, J. U. Delgado, V. Loayza, J. Rangel
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引用次数: 0

摘要

在放射性核素计量中,高精度源标准品的制备是基于一个适当描述和可靠的称量程序,能够实现低于0.1%的相对标准不确定度。然而,不确定预算比较CCRI(II)-S7的结果检查了以前的重量计和替代称重方法实现这一目标的能力。因此,当需要适当的不确定度时,产生了一个关于从消除称重法进行的质量测量的验证的问题。为了解决这一问题,本文提出了一种综合的原位验证方法,对测温法、取代法、消去法和修正消去法(MEM)的结果进行验证。质量比较用于评价称重方法结果之间的相容性。这是可能的,由于一个开发的称重顺序,它允许执行所有的方法,只有一个滴沉积在质量范围从10mg到200mg。因此,MEM与消除法在0.1%以下的不确定度之间实现了高度的相容性,对于比表面积计和替代法的不确定度也实现了较高的相容性。数值仿真结果表明,对后两种方法进行改进技术实现后,验证结果仍然有效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
In Situ Validation Methodology for Weighing Methods Used in Preparing of Standardized Sources for Radionuclide Metrology
High-accuracy source standards preparation in radionuclide metrology is based on a properly described and reliable weighing procedure able to achieve relative standard uncertainties below 0.1%. However, the results of uncertainty budget comparison CCRI(II)-S7 put in check the ability of the former pycnometer and substitution weighing methods to attain this goal. As a result, a question arises about the validation of mass measurements performed from the elimination weighing method when appropriate uncertainties are required. In order to address this problem, a comprehensive in situ validation methodology is proposed for the results of the pycnometer, substitution, elimination and modified elimination (MEM) methods. Mass comparisons are applied to evaluate the compatibility between weighing methods’ results. It is possible due to a developed weighing sequence, which allows for the performing of all methods by only one drop deposition in the range of mass from 10 mg to 200 mg. As a result, the high degree of compatibility between the MEM and elimination method for uncertainties below 0.1% has been achieved, as well as for higher uncertainties to pycnometer and substitution methods. Numerical simulations indicate that the validation results remain valid on improved technical implementations for these last two methods.
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