Zhang Yunlong, Schulz Fabian, Rytting B McKay, Walters Clifford C, Kaiser Katharina, Metz Jordan N, Harper Michael R, Merchant Shamel S, Mennito Anthony S, Qian Kuangnan, Kushnerick J Douglas, Kilpatrick Peter K, Gross Leo
ExxonMobil Research and Engineering Company, Annandale, New Jersey 08801, United States.
IBM Research-Zurich, Säumerstrasse 4, 8803 Rüschlikon, Switzerland.
Energy Fuels. 2019 Jul 18;33(7):6088-6097. doi: 10.1021/acs.energyfuels.9b00816. Epub 2019 Jun 12.
Determination of the molecular structures of petroporphyrins has been crucial to understand the diagenetic pathways and maturation of petroleum. However, these studies have been hampered by their structural complexity and the challenges associated with their isolation. In comparison to the skeletal macrocyclic structures, much less is known about the substitutions, which are more sensitive to the maturation and diagenesis pathways. While these isolated vanadyl petroporphyrins largely consist of etioporphyrin and deoxophylloerythroetioporphyrin as expected, surprisingly, we find evidence that one or a few β hydrogens are present in petroporphyrins of low carbon numbers using a combination of ultraviolet-visible spectroscopy, Fourier transform ion cyclotron resonance mass spectrometry, and non-contact atomic force microscopy. Petroporphyrins with β hydrogens were not anticipated on the basis of their biological precursors. The data support dealkylation under catagenesis but not transalkylation or random alkylation of the β and meso positions, despite the fact that more complex porphyrin structures are formed.
确定石油卟啉的分子结构对于理解石油的成岩途径和成熟过程至关重要。然而,这些研究受到其结构复杂性以及与分离相关的挑战的阻碍。与骨架大环结构相比,人们对取代基的了解要少得多,而取代基对成熟和成岩途径更为敏感。虽然这些分离出的钒基石油卟啉如预期的那样主要由初卟啉和脱氧叶红初卟啉组成,但令人惊讶的是,我们使用紫外可见光谱、傅里叶变换离子回旋共振质谱和非接触原子力显微镜相结合的方法发现,低碳数的石油卟啉中存在一个或几个β氢的证据。基于其生物前体,含有β氢的石油卟啉是无法预料的。尽管形成了更复杂的卟啉结构,但数据支持在成岩作用下进行脱烷基化,而不是β位和中位的烷基转移或随机烷基化。