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轻微的压力失衡会影响基于双进样的团簇同位素分析的准确性和精密度。

Slight pressure imbalances can affect accuracy and precision of dual inlet-based clumped isotope analysis.

作者信息

Fiebig Jens, Hofmann Sven, Löffler Niklas, Lüdecke Tina, Methner Katharina, Wacker Ulrike

机构信息

a Institute of Geosciences, Goethe University , Frankfurt am Main , Germany.

b Biodiversity and Climate Research Center , Frankfurt am Main , Germany.

出版信息

Isotopes Environ Health Stud. 2016;52(1-2):12-28. doi: 10.1080/10256016.2015.1010531. Epub 2015 Feb 16.

Abstract

It is well known that a subtle nonlinearity can occur during clumped isotope analysis of CO2 that - if remaining unaddressed - limits accuracy. The nonlinearity is induced by a negative background on the m/z 47 ion Faraday cup, whose magnitude is correlated with the intensity of the m/z 44 ion beam. The origin of the negative background remains unclear, but is possibly due to secondary electrons. Usually, CO2 gases of distinct bulk isotopic compositions are equilibrated at 1000 °C and measured along with the samples in order to be able to correct for this effect. Alternatively, measured m/z 47 beam intensities can be corrected for the contribution of secondary electrons after monitoring how the negative background on m/z 47 evolves with the intensity of the m/z 44 ion beam. The latter correction procedure seems to work well if the m/z 44 cup exhibits a wider slit width than the m/z 47 cup. Here we show that the negative m/z 47 background affects precision of dual inlet-based clumped isotope measurements of CO2 unless raw m/z 47 intensities are directly corrected for the contribution of secondary electrons. Moreover, inaccurate results can be obtained even if the heated gas approach is used to correct for the observed nonlinearity. The impact of the negative background on accuracy and precision arises from small imbalances in m/z 44 ion beam intensities between reference and sample CO2 measurements. It becomes the more significant the larger the relative contribution of secondary electrons to the m/z 47 signal is and the higher the flux rate of CO2 into the ion source is set. These problems can be overcome by correcting the measured m/z 47 ion beam intensities of sample and reference gas for the contributions deriving from secondary electrons after scaling these contributions to the intensities of the corresponding m/z 49 ion beams. Accuracy and precision of this correction are demonstrated by clumped isotope analysis of three internal carbonate standards. The proposed correction scheme can be easily applied if the slit width of the m/z 49 Faraday cup is bigger than that of the m/z 47 cup.

摘要

众所周知,在二氧化碳的团簇同位素分析过程中可能会出现一种微妙的非线性现象,若不加以解决,会限制分析的准确性。这种非线性是由m/z 47离子法拉第杯上的负背景引起的,其大小与m/z 44离子束的强度相关。负背景的起源尚不清楚,但可能是由于二次电子所致。通常,将具有不同整体同位素组成的二氧化碳气体在1000°C下进行平衡,并与样品一起测量,以便能够校正这种影响。或者,在监测m/z 47上的负背景如何随m/z 44离子束的强度变化之后,可以对测量的m/z 47束强度进行二次电子贡献的校正。如果m/z 44杯的狭缝宽度比m/z 47杯宽,后一种校正程序似乎效果良好。在这里我们表明,除非对原始的m/z 47强度直接进行二次电子贡献的校正,否则负的m/z 47背景会影响基于双进样的二氧化碳团簇同位素测量的精度。此外,即使使用加热气体方法来校正观察到的非线性,也可能获得不准确的结果。负背景对准确性和精度的影响源于参考二氧化碳测量和样品二氧化碳测量之间m/z 44离子束强度的微小不平衡。二次电子对m/z 47信号的相对贡献越大,以及进入离子源的二氧化碳通量率设置得越高,这种影响就越显著。通过对样品和参考气体的测量m/z 47离子束强度进行校正,以消除二次电子的贡献,这些问题可以得到克服,校正时需将这些贡献按比例换算到相应的m/z 49离子束强度上。通过对三种内部碳酸盐标准品进行团簇同位素分析,证明了这种校正的准确性和精度。如果m/z 49法拉第杯的狭缝宽度大于m/z 47杯的狭缝宽度,所提出的校正方案可以很容易地应用。

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