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用于气态混合物在线化合物特定δD和δ¹³C气相色谱-氧化/还原-同位素比率质谱分析的通用进样系统。

Versatile inlet system for on-line compound-specific deltaD and delta13C gas chromatography-oxidation/reduction-isotope ratio mass spectrometry analysis of gaseous mixtures.

作者信息

Henning Mark, Strapoć Dariusz, Lis Grzegorz P, Sauer Peter, Fong Jon, Schimmelmann Arndt, Pratt Lisa M

机构信息

Inertia Oil & Gas, LLC, Evansville, IN 47708, USA.

出版信息

Rapid Commun Mass Spectrom. 2007;21(14):2269-72. doi: 10.1002/rcm.3083.

Abstract

Compound-specific deltaD and delta13C analyses of gas mixtures are useful indicators of geochemical and environmental factors. However, the relative concentrations of individual components in gas mixtures (e.g., H2, CO2, methane, ethane, propane, i-butane, n-butane) may vary over several orders of magnitude. The determination of hydrogen and carbon compound-specific stable isotope ratios requires that the hydrogen and carbon dioxide produced from each separated component has a concentration adjusted to match the dynamic range of the stable isotope mass spectrometer. We present a custom-built gas sampling and injection system (GASIS) linked with a Delta Plus XP mass spectrometer that provides flexibility, ease of operation, and economical use of small gas samples with wide ranges of analyte concentrations. The overall on-line GC-ox/red-IRMS (Gas Chromatography - oxidation/reduction - Isotope Ratio Mass Spectrometry) system consists of (i) a customized GASIS inlet system and (ii) two alternative reactors, namely an oxidative Cu-Ni-Pt reactor at 950 degrees C for production of CO2 and a reductive graphitized Al2O3 reactor at 1420 degrees C for production of H2. In addition, the system is equipped with (iii) a liquid nitrogen spray-cooling unit for cryo-GC-focusing at -20 degrees C, and (iv) a Nafion dryer for removal of water vapor from product CO2. The three injection loops of the GASIS inlet allow flexibility in the volume of injected analyte gas (e.g., from 0.06 to 500 microL) in order to measure reproducible deltaD and delta13C values for gases at concentrations ranging from 100% down to 10 ppm. We calibrate our GC-ox/red-IRMS system with two isotopically distinct methane references gases that are combusted off-line and characterized using dual-inlet IRMS.

摘要

对气体混合物进行化合物特异性的δD和δ¹³C分析是地球化学和环境因素的有用指标。然而,气体混合物中各组分(如H₂、CO₂、甲烷、乙烷、丙烷、异丁烷、正丁烷)的相对浓度可能相差几个数量级。测定氢和碳化合物特异性稳定同位素比值要求从每个分离组分产生的氢气和二氧化碳的浓度进行调整,以匹配稳定同位素质谱仪的动态范围。我们展示了一种与Delta Plus XP质谱仪相连的定制气体采样和进样系统(GASIS),该系统具有灵活性、操作简便性,并且能够经济地使用具有广泛分析物浓度范围的少量气体样品。整个在线气相色谱 - 氧化/还原 - 同位素比值质谱(GC-ox/red-IRMS)系统由(i)定制的GASIS进样系统和(ii)两个替代反应器组成,即950℃的氧化Cu-Ni-Pt反应器用于生成CO₂,以及1420℃的还原石墨化Al₂O₃反应器用于生成H₂。此外,该系统配备有(iii)用于在-20℃进行低温气相色谱聚焦的液氮喷雾冷却单元,以及(iv)用于从产物CO₂中去除水蒸气的纳滤干燥器。GASIS进样口的三个进样环允许灵活调整注入分析物气体的体积(例如,从0.06到500微升),以便测量浓度范围从100%到低至10 ppm的气体的可重复的δD和δ¹³C值。我们使用两种同位素不同的甲烷参比气体对我们的GC-ox/red-IRMS系统进行校准,这两种参比气体离线燃烧并使用双进样口IRMS进行表征。

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