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Linearity testing and dead-time determination for MC-ICP-MS ion counters using the IRMM-072 series of uranium isotope reference materials

机译:使用IRMM-072系列铀同位素参考材料的MC-ICP-MS离子计数器的线性测试和死区时间确定

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摘要

The Environmental Sample Laboratory (ESU of the International Atomic Energy Agency (IAEA) routinely analyses environmental swipe samples for their bulk U and Pu isotope amounts and ratios using a Neptune Plus™ (Thermo Fisher Scientific) multi collector-inductively coupled plasma mass spectrometer (MC-ICP-MS). The instrument is equipped with the so-called 15 ion counter package", which comprises ten Faraday cups, three classical discrete dynode secondary electron multipliers (SEM), and two compact discrete dynode (CDD) electron multipliers. In contrast to classical SEMs, CDDs only have about twice the width of a Faraday cup and are mounted in-line with the Faraday cups within the multi collector array. The Institute of Reference Materials (IRMM) of the European Commission's Joint Research Centre (JRC) has developed several dedicated uranium isotope reference material series for the investigation of non-linearity and dead time effects of ion counting systems. For instance, a new series of gravimetrically prepared uranium isotope reference materials, the so-called IRMM-074 series, with the ~(235)U/~(238)U isotope ratio held constant at unity and the ~(233)U/~(235)U isotope ratios varying from 1.0 to 10~(-6) has been prepared and certified. This series is suited for calibration of secondary electron multipliers used widely in isotope mass spectrometry, in particular for thermal ionization mass spectrometry (TIMS), ICP-MS and accelerator mass spectrometry (AMS). The new IRMM-074 series was prepared as a replacement for the already exhausted IRMM-072 predecessor series, which is still on stock at the IAEA. In collaboration between the IAEA and the IRMM, dedicated new procedures have been developed for taking advantage of the IRMM reference materials for linearity testing and dead time determination for the various ion counting detectors of two Neptune Plus™ MC-ICP-MS instruments at the IAEA. Only statically measured ratios were used, and dynamic (peak-jumping) ratios were avoided, which makes these procedures independent on plasma instabilities and therefore ideal for MC-ICP-MS instruments. The dead times of the ion counting systems were found to depend not on the detectors themselves but only on the pulse amplifiers, which allowed to easier investigate them by connecting each pulse amplifier to any detector of the same type within the detector configuration. The new procedures might well be applicable for similarly designed MC-ICP-MS instruments which have already been installed at other laboratories working in the nuclear safeguards and environmental fields.
机译:环境样品实验室(International Atomic Energy Agency(IAEA)的ESU)使用Neptune Plus™(Thermo Fisher Scientific)多收集器-电感耦合等离子体质谱仪(MC)常规分析环境擦拭样品的总U和Pu同位素含量和比例。 -ICP-MS)。该仪器配备了所谓的“ 15离子计数器套件”,其中包括十个法拉第杯,三个经典分立倍增极二次电子倍增器(SEM)和两个紧凑型分立倍增极(CDD)电子倍增器。与传统的SEM相比,CDD的宽度只有法拉第杯的两倍左右,并且与法拉第杯成一直线安装在多收集器阵列中欧洲委员会联合研究中心(JRC)的参考材料研究所(IRMM)已经开发了几种专用的铀同位素参考材料系列,用于研究离子计数系统的非线性和空载时间影响,例如,一个新的系列f重量法制备的铀同位素参考物质,即所谓的IRMM-074系列,〜(235)U /〜(238)U同位素比率保持恒定,而〜(233)U /〜(235)U同位素保持恒定已经准备并认证了从1.0到10〜(-6)的比率。该系列适用于校准在同位素质谱中广泛使用的二次电子倍增器,尤其是热电离质谱(TIMS),ICP-MS和加速器质谱(AMS)。新的IRMM-074系列是为替代已经用尽的IRMM-072先前系列而准备的,该系列仍在国际原子能机构备有。在IAEA和IRMM之间的合作下,已经开发出专用的新程序,以利用IRMM参考材料对IAEA的两台Neptune Plus™MC-ICP-MS仪器的各种离子计数检测器进行线性测试和死区时间确定。仅使用静态测量的比率,而避免使用动态(峰值跳跃)比率,这使这些过程不受血浆不稳定的影响,因此非常适合MC-ICP-MS仪器。发现离子计数系统的停滞时间不取决于检测器本身,而仅取决于脉冲放大器,通过将每个脉冲放大器连接到检测器配置内的任何相同类型的检测器,可以更轻松地研究它们。新程序很可能适用于设计相似的MC-ICP-MS仪器,这些仪器已经安装在核保障和环境领域的其他实验室中。

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  • 来源
    《Journal of Analytical Atomic Spectrometry》 |2016年第8期|1647-1657|共11页
  • 作者单位

    Institute for Reference Materials and Measurements (IRMM), Joint Research Centre (JRC), European Commission, 2440 Geel, Belgium;

    Office of Safeguards Analytical Services, Department of Safeguards, International Atomic Energy Agency, PO Box 100, 1400 Vienna, Austria;

    Office of Safeguards Analytical Services, Department of Safeguards, International Atomic Energy Agency, PO Box 100, 1400 Vienna, Austria;

    Office of Safeguards Analytical Services, Department of Safeguards, International Atomic Energy Agency, PO Box 100, 1400 Vienna, Austria;

    Office of Safeguards Analytical Services, Department of Safeguards, International Atomic Energy Agency, PO Box 100, 1400 Vienna, Austria;

    Office of Safeguards Analytical Services, Department of Safeguards, International Atomic Energy Agency, PO Box 100, 1400 Vienna, Austria;

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