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首页> 外文期刊>Journal of Analytical Methods in Chemistry >Method for Analyzing the Molecular and Carbon Isotope Composition of Volatile Hydrocarbons (C1–C9) in Natural Gas
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Method for Analyzing the Molecular and Carbon Isotope Composition of Volatile Hydrocarbons (C1–C9) in Natural Gas

机译:分析天然气中挥发性烃(C1-C9)的分子和碳同位素组成的方法

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摘要

Solid-phase microextraction (SPME) coupled with gas chromatography-isotope ratio mass spectrometry (GC-IRMS) has already been applied to collect and identify volatile light hydrocarbons in oil and source rocks. However, this technology has not yet been used to analyze volatile light hydrocarbons in dry gas (natural gas with C1/C2+ > 95%). In this study, we developed a method to measure the molecular and carbon isotope composition of natural gas using divinylbenzene/carboxen/polydimethylsiloxane (DVB/CAR/PDMS) fiber. This fiber proved to be suitable for extracting C1–C9 hydrocarbons from natural gas without inducing carbon isotopic fractionation. Notably, the extraction coefficients of the analytes were not the same but rather increased with the increasing carbon number of the hydrocarbons. Nevertheless, we successfully identified 24 hydrocarbons from the in-lab standard natural gas, while also obtaining the carbon isotope composition of C1 to C9 hydrocarbons with satisfying repeatability. The relative standard deviation (RSD) of the molecular composition data was in the range of 0.06–0.74%, with the RSDs of the carbon isotope composition data not exceeding 1‰. Finally, seven natural gas samples, collected from different sedimentary basins, were successfully analyzed and the stable carbon isotope compositions of C1–C9 hydrocarbons present in these were determined through this method. Overall, the new approach provides a simple but useful technique to obtain more geochemical information about the source and evolution of natural gas.
机译:固相微萃取(SPME)与气相色谱-同位素比质谱(GC-IRMS)结合已用于收集和鉴定石油和烃源岩中的挥发性轻烃。但是,该技术尚未用于分析干燥气体(C1 / C2 +> 95%的天然气)中的挥发性轻烃。在这项研究中,我们开发了一种使用二乙烯基苯/羧基/聚二甲基硅氧烷(DVB / CAR / PDMS)纤维测量天然气的分子和碳同位素组成的方法。事实证明,这种纤维适用于从天然气中提取C1-C9碳氢化合物,而不会引起碳同位素分馏。值得注意的是,分析物的提取系数并不相同,而是随着碳氢化合物碳原子数的增加而增加。然而,我们成功地从实验室标准天然气中鉴定出24种碳氢化合物,同时还获得了具有令人满意的重复性的C1至C9碳氢化合物的碳同位素组成。分子组成数据的相对标准偏差(RSD)在0.06-0.74%的范围内,碳同位素组成数据的RSD不超过1‰。最后,成功分析了从不同沉积盆地收集的七个天然气样品,并通过此方法确定了其中存在的C1-C9烃的稳定碳同位素组成。总体而言,新方法提供了一种简单但有用的技术,可获取有关天然气来源和演化的更多地球化学信息。

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