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逐步热解和一步热解 GC/MS 法比较用于天然复杂高分子有机质。

Comparison of stepwise and single-step pyrolysis GC/MS for natural complex macromolecular organic matter.

机构信息

Department of Chemistry and Life Science, Yokohama National University, 79-5 Tokiwadai, Hodogaya, Yokohama, 240-8501, Japan.

出版信息

Anal Sci. 2022 Jan;38(1):113-121. doi: 10.2116/analsci.21P188. Epub 2022 Feb 28.

Abstract

Pyrolysis gas chromatography-mass spectrometry is a useful technique for the analysis of complex organic matter. However, the pyrolysis temperatures must be carefully chosen to maximize the information obtained and, in parallel, minimize byproducts. One solution to accomplish this is the stepwise pyrolysis method, which has been employed to analyze complex mixtures of natural samples. Here, we compared the stepwise pyrolysis method to a suite of single-step pyrolysis runs using the same temperatures by employing a humic acid standard sample, to evaluate the advantage of the stepwise pyrolysis method. In addition, we conducted in-situ heating experiments of the humic acid under infrared microspectroscopy to observe changes in the functional groups during the stepwise pyrolysis process. Results showed that O-bearing components were released at relatively low temperatures, whereas aromatic components were released at higher temperatures, indicating that the stepwise method effectively separates labile and refractory fractions. As such, the stepwise method would be useful for analyzing limited amounts of samples, such as for extraterrestrial materials as well as for payload instruments onboard space missions.

摘要

热解气相色谱-质谱联用是分析复杂有机物的有用技术。然而,为了最大限度地获取信息,同时最小化副产物,必须仔细选择热解温度。实现这一目标的一种解决方案是逐步热解方法,该方法已被用于分析天然样品的复杂混合物。在这里,我们使用相同的温度,通过使用腐殖酸标准样品,将逐步热解方法与一系列单步热解运行进行了比较,以评估逐步热解方法的优势。此外,我们在红外微光谱下对腐殖酸进行了原位加热实验,以观察在逐步热解过程中官能团的变化。结果表明,含氧成分在相对较低的温度下释放,而芳香族成分在较高的温度下释放,表明逐步方法有效地分离了不稳定和难挥发的馏分。因此,逐步方法对于分析有限量的样品非常有用,例如用于分析外星材料以及用于太空任务的有效载荷仪器。

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