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Determination of plutonium-239, thorium-232, and natural uranium isotopic concentrations in biological samples using photofission track analysis.

机译:使用光裂变径迹分析法测定生物样品中的-239,or232和天然铀同位素浓度。

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Fission track analysis (FTA) has many uses in the scientific community including but not limited to geological dating, neutron flux mapping, and dose reconstruction. The common method of fission for FTA is through neutrons from a nuclear reactor. This dissertation investigates the use of bremsstrahlung radiation produced from an electron linear accelerator to induce fission in FTA samples. This provides a means of simultaneously measuring the amount of Pu-239, U-nat, and Th-232 in a single sample. The benefit of measuring the three isotopes simultaneously is the possible elimination of costly and time consuming chemical processing for dose reconstruction samples.; Samples containing the three isotopes were irradiated in two different bremsstrahlung spectra and a neutron spectrum to determine the amount of Pu-239, U-nat, and Th-232 in the samples. The reaction rate from the calibration samples and the counted fission tracks on the samples were used in determining the concentration of each isotope in the samples. The results were accurate to within a factor of two or three, showing that the method can work to predict the concentrations of multiple isotopes in a sample.; The limitations of current accelerators and detectors limits the application of this specific procedure to higher concentrations of isotopes. The method detection limits for Pu-239, U-nat, and Th-232 are 20 pCi, 1 fCi, and 0.4 flCI respectively. Analysis of extremely low concentrations of isotopes would require the use of different detectors such as quartz due to the embrittlement encountered in the Lexan at high exposures. Cracking of the Texan detectors started to appear at a fluence of about 2 x 1018 electrons from the accelerator. This may be partly due to the beam stop not being an adequate thickness. The procedure is likely limited to specialty applications for the near term. However, with the world concerns of exposure to depleted uranium, this procedure may find applications in this area since it would be simple to adapt the procedure to depleted uranium detection.
机译:裂变径迹分析(FTA)在科学界有许多用途,包括但不限于地质定年,中子通量制图和剂量重建。 FTA裂变的常用方法是通过核反应堆中的中子。本文研究了利用电子线性加速器产生的bre致辐射来诱导FTA样品中的裂变。这提供了一种同时测量单个样品中Pu-239,U-nat和Th-232量的方法。同时测量这三种同位素的好处是可以省去用于剂量重建样品的昂贵且费时的化学处理。在两个不同的致辐射光谱和中子光谱中辐照包含三种同位素的样品,以确定样品中Pu-239,U-nat和Th-232的量。来自校准样品的反应速率和样品上计数的裂变径迹用于确定样品中每种同位素的浓度。结果精确到2或3倍以内,表明该方法可以预测样品中多种同位素的浓度。当前的加速器和检测器的局限性限制了该特定程序在更高浓度同位素中的应用。 Pu-239,U-nat和Th-232的方法检测限分别为20 pCi,1 fCi和0.4 flCI。由于Lexan在高暴露下会发生脆化,因此分析极低浓度的同位素将需要使用不同的检测器,例如石英。在来自加速器的大约2 x 1018电子注量下,Texan检测器的破裂开始出现。这可能部分是由于光束挡板的厚度不够。该程序短期内可能仅限于特殊应用。但是,由于全世界都关注贫铀的暴露,该程序可能会在该领域找到应用,因​​为将其修改为贫铀检测很简单。

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