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首页> 外文期刊>Organic Geochemistry: A Publication of the International Association of Geochemistry and Cosmochemistry >Rapid offline isotopic characterisation of hydrocarbon gases generated by micro-scale sealed vessel pyrolysis
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Rapid offline isotopic characterisation of hydrocarbon gases generated by micro-scale sealed vessel pyrolysis

机译:微型密封容器热解产生的烃类气体的快速离线同位素表征

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The method of offline coupling of micro-scale sealed vessel pyrolysis (MSSV-Py) and gas chromatography-isotopic ratio mass spectrometry (GC-IRMS) was developed using a purpose built gas sampling device. The sampling device allows multiple GC and GC-IRMS injections to quantify the molecular composition and isotopic evolution of hydrocarbon gases (n-C_1 to n-C_5) generated by artificial maturation of sedimentary organic matter. Individual MSSV tubes were introduced into the gas sampling device, which was then evacuated to remove air and filled with helium at atmospheric pressure. The tube was crushed using a plunger after which the device was heated at 120°C for 1min to thermally mobilise and equilibrate the generated gas products. Aliquots of the gas phase were sampled using a gas tight syringe and analysed via GC-FID and GC-IRMS. Hydrocarbon gas yields using this technique have been calculated and compared with those obtained previously by online MSSV pyrolysis of the same samples under the same conditions. The major objective of this study was to investigate the potential isotopic fractionation of generated gaseous hydrocarbons within the gas sampling device as a function of time and temperature. For this purpose several tests using a standard gas mixture have been performed on the GC-IRMS. The analyses showed no isotopic fractionation of C_(1-5) hydrocarbons within 1h, minor δ~(13)C enrichment after 5h, and significant enrichment after 22h for all the compounds at a temperature of 120°C.
机译:利用专用的气体采样装置,开发了微型密封容器热解(MSSV-Py)和气相色谱-同位素比质谱(GC-IRMS)的离线耦合方法。该采样设备允许多次GC和GC-IRMS进样,以量化由沉积有机物的人工成熟产生的烃类气体(n-C_1至n-C_5)的分子组成和同位素演化。将各个MSSV管引入气体采样设备,然后将其抽真空以去除空气并在大气压下充满氦气。使用柱塞将试管压碎,然后将装置在120°C加热1分钟,以热转移并平衡生成的气体产物。使用气密注射器采样气相的等分试样,并通过GC-FID和GC-IRMS进行分析。已经计算出使用该技术的烃气收率,并将其与先前通过在相同条件下对相同样品进行在线MSSV热解获得的烃气收率进行比较。这项研究的主要目的是研究随时间和温度变化的气体采样装置中生成的气态烃的潜在同位素分馏。为此,已在GC-IRMS上使用标准气体混合物进行了几次测试。分析表明,在120°C的温度下,所有化合物在1h内都没有C_(1-5)烃的同位素分馏,5h后δ〜(13)C富集较小,而22h后则显着富集。

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