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三重同位素校准方法:一种通用且无标样的校准方法,用于获得多同位素元素的绝对同位素比值。

The triple-isotope calibration approach: a universal and standard-free calibration approach for obtaining absolute isotope ratios of multi-isotopic elements.

机构信息

Bundesanstalt für Materialforschung und -prüfung (BAM), Richard-Willstätter-Straße 11, 12489, Berlin, Germany.

出版信息

Anal Bioanal Chem. 2021 Jan;413(3):821-826. doi: 10.1007/s00216-020-03050-4. Epub 2020 Nov 17.

Abstract

The theory of a new calibration approach for obtaining absolute isotope ratios of multi-isotopic elements without the use of any standard has been developed. The calibration approach basically uses the difference in the instrumental isotope fractionation of two different types of mass spectrometers, leading to two different fractionation lines in a three-isotope diagram. When measuring the same sample with both mass spectrometers, the different fractionation lines have one point in common: this is the 'true' logarithmized isotope ratio pair of the sample. Thus, the intersection of both fractionation lines provides us with the absolute isotope ratios of the sample. This theory has been tested in practice by measuring Cd and of Pb isotope ratios in the certified reference materials BAM-I012 and NIST SRM 981 by thermal ionization mass spectrometry and by inductively coupled plasma mass spectrometry while varying the ionization conditions for both mass spectrometers. With this experiment, the theory could be verified, and absolute isotope ratios were obtained, which were metrologically compatible with the certified isotope ratios. The so-obtained absolute isotope ratios are biased by - 0.5 % in average, which should be improved with further developments of the method. This calibration approach is universal, as it can be applied to all elements with three or more isotopes and it is not limited to the type of mass spectrometers applied; it can be applied as well to secondary ion mass spectrometry or others. Additionally, this approach provides information on the fractionation process itself via the triple-isotope fractionation exponent θ. Graphical abstract The triple-isotope calibration approach: the intersection of the triple isotope fractionation lines of an element recorded by two individual mass spectometers yields the absolute isotope ratios of this element.

摘要

已经提出了一种新的校准方法理论,用于在不使用任何标准的情况下获得多同位素元素的绝对同位素比值。该校准方法基本上利用了两种不同类型质谱仪的仪器同位素分馏差异,从而在三同位素图中产生两条不同的分馏线。当用两种质谱仪测量同一样品时,两条分馏线有一个共同点:这是样品的“真实”对数化同位素对。因此,两条分馏线的交点为我们提供了样品的绝对同位素比值。该理论通过在热电离质谱和电感耦合等离子体质谱中测量 BAM-I012 和 NIST SRM 981 认证参考物质中的 Cd 和 Pb 同位素比值,同时改变两种质谱仪的电离条件,在实践中进行了检验。通过这个实验,可以验证该理论,并获得绝对同位素比值,这些比值与认证的同位素比值在计量学上是兼容的。所获得的绝对同位素比值平均存在 -0.5%的偏差,随着方法的进一步发展,该偏差应该会得到改善。这种校准方法具有普遍性,因为它可以应用于具有三个或更多同位素的所有元素,并且不受所应用的质谱仪类型的限制;它也可以应用于二次离子质谱或其他质谱。此外,该方法通过三同位素分馏指数θ提供了有关分馏过程本身的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/969a/7808992/4e520339d9e8/216_2020_3050_Figa_HTML.jpg

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