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Selective ultra trace isotope determination in environmental and bio-medical studies by high-resolution resonance ionization mass spectrometry

机译:通过高分辨率共振电离质谱法测定环境和生物医学研究的选择性超痕量同位素

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The precise determination of relative abundances of ultra trace isotopes in the range below 10~(-9) is of importance for a wide spectrum of applications in fields like environmental protection, cosmo-chemistry, bio-medical tracer studies or geological and geo-chronological investigations. The necessary high isotopic selectivity, rather complete isobaric suppression and good overall efficiency for these investigations is provided by high-resolution resonance ionization mass spectrometry. Multi-step continuous wave laser excitation and ionization using diode lasers at a compact quadrupole mass spectrometer has been optimized to become a powerful and reliable experimental method, which is just becoming competitive to accelerator mass spectrometry. With this technique we have performed measurements with high isotopic selectivity above 10~(10) on the isotopes ~(90)Sr and ~(41)Ca while further studies concern Gd and Pu isotopes. In all cases extensive atomic spectroscopic investigations were required as basis for analytical studies.
机译:超痕量的相对丰度的精确确定在低于10的范围内同位素〜(-9)是重要的用于应用的在像环保,COSMO-化学,生物医学示踪剂研究或地质和地理时间字段广谱调查。所需的高选择性的同位素,而完整的等压压制和整体效益好这些调查是通过高分辨率的共振电离质谱提供。使用二极管激光器在一个紧凑的四极质谱仪多步骤连续波激光激发和电离进行了优化,成为一个强大的和可靠的实验方法,这是刚刚开始到加速器质谱法的竞争力。利用这种技术,我们同时进一步研究关注Gd和浦同位素的同位素〜(90)Sr和〜(41)的Ca进行与上述10〜(10)高的同位素选择性测量。在所有的情况下,大量的原子光谱研究被要求作为分析研究的基础。

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