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Combining thermal hydrolysis and methylation-gas chromatography/mass spectrometry with X-ray photoelectron spectroscopy to characterise complex organic assemblages in geological material

机译:将热水解和甲基化气相色谱/质谱与X射线光电子能谱相结合以表征地质材料中的复杂有机组合

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摘要

What follows is a method applicable generically to the analysis of low levels of organic matter that is embedded in either loose fine-grained or solid geological material. Initially, the range of organic compounds that could be detected in a geological sample using conventional pyrolysis chromatography/mass spectrometry was compared to the range that was detected using thermally assisted hydrolysis and methylation-gas chromatography/mass spectrometry (THM-GC/MS). This method was used to validate the synthetic components fitted to X-ray photoelectron spectroscopy (XPS) carbon spectra of the sample. Reciprocally, XPS analysis was able to identify the constituent carbon-carbon, carbon-oxygen and carbon-nitrogen bonds of the functional groups in the compounds identified by THM-GC/MS. The two independently derived outputs from the THM-GC/MS and the XPS techniques mutually validated the identification of organic compounds in our geological samples.
机译:接下来是一种普遍适用于分析松散细颗粒或固体地质材料中低含量有机物的方法。最初,将使用常规热解色谱/质谱法可在地质样品中检测到的有机化合物的范围与使用热辅助水解和甲基化气相色谱/质谱法(THM-GC / MS)检测到的范围进行了比较。该方法用于验证适合样品的X射线光电子能谱(XPS)碳谱的合成组分。相应地,XPS分析能够鉴定通过THM-GC / MS鉴定的化合物中官能团的组成碳-碳,碳-氧和碳-氮键。 THM-GC / MS和XPS技术的两个独立获得的输出相互验证了我们地质样品中有机化合物的鉴定。

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