239Pu活度绝对测量方法研究OA
Research on the Absolute Activity Measurement Method for 239Pu
为实现239Pu活度的绝对测量,提出一种联用电感耦合等离子体质谱(ICP-MS)与液体闪烁计数(LSC)的方法.利用液体闪烁计数器的三管符合(TDCR)模式测定样品总 α活度,由 ICP-MS给出239Pu与240Pu原子数比,结合衰变常数计算239Pu活度.实验优化了样品稀释条件,确定硝酸浓度为0.6~0.8 mol/L时可有效抑制钚的壁吸附与淬灭.脉冲形状甄别参数(PLI)设为 14以实现 α/β准确区分,对一简单钚溶液进行测定,总 α比活度测量重复性为 0.49%,7 d观测期内保持稳定.239Pu比活度为 184.47 Bq/g,占α总活度的 93.11%,测量相对扩展不确定度为 1.4%(k=2),主要分量来自样品称量、符合分辨时间和同位素原子比.该方法不依赖标准溶液进行效率刻度,属于绝对测量范畴.本研究验证了该方法对简单钚溶液的适用性,可为核材料衡算与核保障监督提供计量技术支持.
To achieve the absolute measurement of 239Pu activity,a method combining inductively coupled plasma mass spectrometry(ICP-MS)with liquid scintillation counting(LSC)was proposed.The total α activity of the sample was measured using the triple-to-double coincidence ratio(TDCR)mode of a liquid scintillation counter,and the atomic ratio of 239Pu to 240Pu was determined by ICP-MS.The activity of 239Pu was then calculated using the decay constants.The nitric acid concentration for sample dilution was optimized to be 0.6-0.8 mol·L-1 to suppress quenching and adsorption.The pulse level index(PLI)was set to 14.A plutonium solution was measured,and the repeatability of the total α specific activity measurement was 0.49%,remaining stable over a seven-day observation period.The specific activity of 239Pu was 184.47 Bq/g,accounting for 93.11%of the total α activity.The relative expanded uncertainty of the measurement was 1.4%(k=2),with major contributions from the sample weighing,coincidence resolving time,and isotopic ratio measurement.This method does not require standard solutions for efficiency calibration and is essentially an absolute measurement.The applicability of this method to simple plutonium solutions has been validated,providing metrological technical support for nuclear material accounting and nuclear safeguards.
胡涵佳;徐利军;罗明杰;夏文;朱保吉;姚顺和;罗瑞
中国原子能科学研究院,北京 102413中国原子能科学研究院,北京 102413中国原子能科学研究院,北京 102413中国原子能科学研究院,北京 102413中国原子能科学研究院,北京 102413中国原子能科学研究院,北京 102413中国原子能科学研究院,北京 102413
能源科技
239Pu活度绝对测量方法液体闪烁计数法脉冲形状甄别
239Puabsolute activity measurementliquid scintillation countingpulse shape discrimination
《同位素》 2026 (4)
315-321,7
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