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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Measurement of trace element concentration in a metal matrix using total reflection X-ray fluorescence spectrometry
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Measurement of trace element concentration in a metal matrix using total reflection X-ray fluorescence spectrometry

机译:使用全反射X射线荧光光谱法测量金属基质中的痕量元素浓度

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Total reflection X-ray fluorescence spectroscopy (TXRF) has been used in combination with synchrotron radiation in order to determine detection limits and lowest limits of concentration of trace elements in metal matrices. Two applications on irradiated material are described, where the TXPF method has some advantages, as compared to other detection methods, because only a few micrograms of material is needed for the measurements. The first application is devoted to radiation damage studies on first wall material of future fusion reactors. Therefore, metal foils were irradiated with 590 MeV protons at PSI and the transmutational elements produced in the foils were measured. The second application is the assessment of radiation damage of core components in a nuclear power plant, e.g. the reactor pressure vessel. This is performed by the determination of the fast neutron fluence on the components using an activation reaction of ~(93)Nb which is a trace element in most reactor steels. Detection limits of a few picograms have been found in the experiments.
机译:全反射X射线荧光光谱法(TXRF)已与同步加速器辐射结合使用,以确定金属基质中痕量元素浓度的检测限和最低限度。描述了在辐照材料上的两种应用,与其他检测方法相比,TXPF方法具有一些优势,因为测量仅需要几微克的材料。第一个应用致力于未来聚变反应堆第一壁材料的辐射损伤研究。因此,在PSI处用590MeV质子辐照金属箔,并测量在箔中产生的trans变元素。第二个应用是评估核电厂(例如核电厂)中核心组件的辐射损伤。反应堆压力容器。这是通过使用〜(93)Nb的活化反应确定组分上的快速中子注量来进行的,该反应是大多数反应堆钢中的痕量元素。实验中发现了几皮克的检出限。

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