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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Combined application of alpha-track and fission-track techniques for detection of plutonium particles in environmental samples prior to isotopic measurement using thermo-ionization mass spectrometry
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Combined application of alpha-track and fission-track techniques for detection of plutonium particles in environmental samples prior to isotopic measurement using thermo-ionization mass spectrometry

机译:在使用热电离质谱法进行同位素测量之前,结合使用α迹线和裂变迹线技术检测环境样品中的particles颗粒

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摘要

The fission track technique is a sensitive detection method for particles which contain radio-nuclides like ~(235)U or ~(239)Pu. However, when the sample is a mixture of plutonium and uranium, discrimination between uranium particles and plutonium particles is difficult using this technique. In this study, we developed a method for detecting plutonium particles in a sample mixture of plutonium and uranium particles using alpha track and fission track techniques. The specific radioactivity (Bq/g) for alpha decay of plutonium is several orders of magnitude higher than that of uranium, indicating that the formation of the alpha track due to alpha decay of uranium can be disregarded under suitable conditions. While alpha tracks in addition to fission tracks were detected in a plutonium particle, only fission tracks were detected in a uranium particle, thereby making the alpha tracks an indicator for detecting particles containing plutonium. In addition, it was confirmed that there is a linear relationship between the numbers of alpha tracks produced by plutonium particles made of plutonium certified standard material and the ion intensities of the various plutonium isotopes measured by thermo-ionization mass spectrometry. Using this correlation, the accuracy in isotope ratios, signal intensity and measurement errors is presumable from the number of alpha tracks prior to the isotope ratio measurements by thermal ionization mass spectrometry. It is expected that this method will become an effective tool for plutonium particle analysis. The particles used in this study had sizes between 0.3 and 2.0 μm.
机译:裂变径迹技术是对包含放射性核素(如〜(235)U或〜(239)Pu)的粒子的灵敏检测方法。但是,当样品是of和铀的混合物时,使用这种技术很难区分铀颗粒和p颗粒。在这项研究中,我们开发了一种使用alpha跟踪和裂变跟踪技术检测detecting和铀颗粒样品混合物中mixture颗粒的方法。 alpha的α衰变的比放射性(Bq / g)比铀高出几个数量级,表明在适当的条件下可以忽略由于铀的α衰变而形成的α径迹。尽管在fi颗粒中检测到除了裂变径迹之外的α径迹,但在铀颗粒中仅检测到裂变径迹,从而使α迹线成为检测含p颗粒的指示剂。另外,已经证实,由certified认证标准材料制成的p颗粒产生的α径的数目与通过热电离质谱法测量的各种p同位素的离子强度之间存在线性关系。利用这种相关性,可以根据通过热电离质谱法进行同位素比测量之前的α轨道数来推测同位素比,信号强度和测量误差的精度。预期该方法将成为for颗粒分析的有效工具。本研究中使用的颗粒尺寸在0.3到2.0μm之间。

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