首页> 外文会议>Advancements in Nuclear Instrumentation Measurement Methods and their Applications (ANIMMA), 2011 2nd International Conference on >Improvement in Thermal-Ionization Mass Spectrometry (TIMS) using Total Flash Evaporation (TFE) method for lanthanides isotope ratio measurements in transmutation targets
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Improvement in Thermal-Ionization Mass Spectrometry (TIMS) using Total Flash Evaporation (TFE) method for lanthanides isotope ratio measurements in transmutation targets

机译:使用全闪蒸(TFE)方法改进trans目标中镧系元素同位素比的热电离质谱(TIMS)

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The experiments involved in the PHENIX french nuclear reactor to obtain precise and accurate data on the total capture cross sections of the heavy isotopes and fission products require isotopic ratios measurements with uncertainty of a few per mil. These accurate isotopic ratio meaurements are performed with mass spectrometer equipped with multicollector system. The major difficulty for the analyses of these actinides and fission products is the low quantity of the initial powder enclosed in steel container (3 to 5 mg) and the very low quantities of products formed (several μg) after irradiation. Specific analytical developments are performed by Thermal Ionization Mass Spectrometry (TIMS) to be able to analyse several nanograms of elements with this technique. A specific method of acquisition named Total Flash Evaporation was adapted in this study in the case of lanthanide measurements for quantity deposited on the filament in the order of 2ng and applied on irradiated fuel. To validate the analytical approach and discuss about the accuracy of the data, the isotopic ratios obtained by TIMS are compared with other mass spectrometric techniques such as Multiple-Collector Inductively Coupled Plasma Mass Spectrometer (MC-ICPMS).
机译:在PHENIX法国核反应堆中进行的有关获得重同位素和裂变产物总俘获截面的精确数据的实验,需要进行同位素比测量,其不确定度只有几百万分之一密耳。这些准确的同位素比测量是通过配备了多收集器系统的质谱仪进行的。分析这些act系元素和裂变产物的主要困难是,装入钢制容器中的初始粉末含量低(3至5 mg),辐照后形成的产物数量极少(几μg)。通过热电离质谱(TIMS)进行了特定的分析开发,从而能够使用该技术分析几纳克的元素。在这项研究中,针对镧系元素测量了沉积在细丝上的数量为2ng并应用于辐照燃料的量,采用了一种名为“总闪蒸”的特定获取方法。为了验证分析方法并讨论数据的准确性,将通过TIMS获得的同位素比值与其他质谱技术(例如多收集器感应耦合等离子体质谱仪(MC-ICPMS))进行了比较。

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