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Analytical Methods for Non-Traditional Isotopes

机译:非传统同位素的分析方法

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This chapter is devoted to the analytical methods employed for making high precision isotope ratio measurements that preserve naturally occurring mass-dependent isotopic variations. The biggest challenge in making these types of measurements is deconvolving mass-dependent isotopic fractionation produced in the laboratory and mass spectrometer, from naturally occurring mass-dependent isotopic fractionation, because the patterns of isotope variation produced by these processes are identical. Therefore, the main theme of this chapter is the description and mathematical treatment of mass-dependent isotopic variations and the possible pitfalls in deconvolving instrumental mass bias from naturally occurring mass-dependent isotopic variations. This chapter will not attempt to catalog methods for isotopic analysis of different elements. These details are better discussed in later chapters where 'element specific' analytical issues are covered. Rather, the effort in the chapter will be to focus on those specific items that make mass analysis of non-traditional isotopes challenging and unique, and the methods that can be employed to make precise and accurate isotope ratios.
机译:本章致力于用于制备高精度同位素比率测量的分析方法,其保持自然发生的群体依赖性同位素变异。使这些类型的测量的最大挑战是在实验室和质谱仪中产生的分解依赖性同位素分馏,来自天然存在的质量依赖的同位素分级,因为这些过程产生的同位素变化的模式是相同的。因此,本章的主要主题是对群体依赖同位素变异的描述和数学治疗和解在自然发生的诸如依赖于异常的同位素变异的解吞噬物株群中的可能缺陷。本章不会试图对不同元素同位素分析的目录方法。在稍后的章节中更好地讨论了这些细节,其中涵盖了“元素的分析问题”。相反,本章中的努力将集中在那些使非传统同位素挑战和独特分析的特定项目以及可用于做出精确和准确同位素比的方法。

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