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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Mass spectrometry of long-lived radionuclides
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Mass spectrometry of long-lived radionuclides

机译:长寿命放射性核素的质谱

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The capability of determining element concentrations at the trace and ultratrace level and isotope ratios is a main feature of inorganic mass spectrometry.The precise and accurate determiantionof isotope ratios of long-lived natural and artificial radionuclides is required,e.g.for their environmental monitoring and health control,for studying radionuclide migration,for age dating,for determining isotope ratios of radiogenic elements in the nuclear industry,for quality assurance and determination ofthe burn-up of fuel material ina nuclear power plant,for reprocessing plants,nuclear material accounting and radioactive waste control.Inorganic mass spectrometry,especially inductively coupled plasma mass spectrometry (ICP-MS)as the most important inorganic mass spectrometric technique today,possesses excellent sensitivity,precision and good accuracy for isotope ratio measurmenets and practically no restriction with respect to the ionization potential of the element investigated-therefore,thermal ionization mass spectrometry (TIMS),which has been used as the dominant analytical techique for precise isotope ratio measurments of long-lived radionuclides for many decades,is being replaced increasingly by ICP-MS.In the last few years instrumental progress in improving figures of merit for the determination of isotope ratio measurements of long-lived radionuclides in ICP-MS has been achieved by the application of a multiple ion collector device (MC-ICP-MS)and the introduction of the collision cell interface in order to dissociate disturbing argon-based molecular ions,to reduce the kinetic energy of ions and neutralize the disturbing noble gas ions (e.g. of ~(129)Xe~+ for the determination of ~(129)I).The review describes the state of the art and the progress of different inorganic mass spectrometric techniques such as ICP-MS,laser ablation ICP-MS vs.TIMS,glow discharge mass spectrometry,secondary ion mass spectrometry,resonance ionization mass spectrometry and accelerator mass spectrometry for th determination of long-lived radionuclides in quite different materials.
机译:能够测定痕量和超痕量水平以及同位素比的元素浓度是无机质谱的主要特征。需要对长寿天然和人工放射性核素的同位素比进行精确,准确的测定,例如环境监测和健康控制,用于研究放射性核素迁移,用于年龄测定,用于确定核工业中放射性元素的同位素比,用于质量保证和确定核电厂中燃料材料的燃烧,用于后处理厂,核材料核算和放射性废物控制无机质谱法,特别是电感耦合等离子体质谱法(ICP-MS)是当今最重要的无机质谱技术,其同位素比测量具有出色的灵敏度,精密度和良好的精度,并且实际上对离子电离势没有任何限制。因此,第数十年来,离子电离质谱(TIMS)一直被用作长寿命放射性核素精确同位素比测量的主要分析技术,如今已被ICP-MS所取代。在过去的几年中,改善数字的仪器化进展ICP-MS中长寿命放射性核素同位素比测定的优点已通过使用多离子收集器设备(MC-ICP-MS)并引入碰撞池界面以消除干扰而实现氩基分子离子,以降低离子的动能并中和干扰性稀有气体离子(例如, (129)Xe〜+用于测定〜(129)I)的综述。该综述描述了最新技术以及各种无机质谱技术(例如ICP-MS,激光烧蚀ICP-MS与TIMS)的进展。 ,辉光放电质谱法,二次离子质谱法,共振电离质谱法和加速器质谱法测定完全不同材料中的长寿命放射性核素。

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