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首页> 外文期刊>ACS Omega >Pyrolysis Temperature Effect on Compositions of Neutral Nitrogen and Acidic Species in Shale Oil Using Negative-Ion ESI FT-ICR MS
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Pyrolysis Temperature Effect on Compositions of Neutral Nitrogen and Acidic Species in Shale Oil Using Negative-Ion ESI FT-ICR MS

机译:使用负离子ESI FT-ICR MS对页岩油中中性氮和酸性物质组成的热解温效应

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Negative-ion electrospray ionization (ESI) Fourier-transform ion cyclotron resonance mass spectrometry (FT-ICR MS) was used to study the effect of the pyrolysis temperature (400, 430, 460, 490, and 520 °C) on acidic and neutral nitrogen species in Huadian shale oil. To more accurately analyze the influence, shale oils produced during the heat-up stage were abandoned. The results show that because of the influence of polymerization and cracking reactions, the increase in temperature increases the content of pyrrole, thiophene, furan, phenol, and aromatic ring cores and decreases the content of carboxylic acid, respectively. Among all the heteroatom compounds identified from negative-ion ESI FT-ICR MS, the relative abundance of N_(1)O_(1), N_(1)O_(2), N_(1)O_(3), N_(2), N_(2)O_(1), O_(1), O_(3), O_(1)S_(1), and N_(1)S_(1) species increases, whereas that of O_(2) and O_(4) species decreases as the pyrolysis temperature increases. The decrease in the O_(2) species can be attributed to carboxylic acid with a double-bond equivalence (DBE) value of 1, whereas the increase in the O_(2) species with DBE values of 7 and 9 can be attributed to the formation of furan, phenol, and aromatic ring by the polymerization reaction at higher pyrolysis temperatures. Although the effect of the reaction temperature on the molecular composition of acidic and neutral nitrogen species is complex, still characteristic rules are found in this study.
机译:负离子电喷雾电离(ESI)傅立叶变换离子回旋谐振质谱(FT-ICR MS)用于研究热解温(400,430,460,490和520℃)对酸性和中性的影响华亚利石油氮物质。为了更准确地分析影响,在加热阶段产生的页岩油被遗弃。结果表明,由于聚合和裂化反应的影响,温度的增加增加了吡咯,噻吩,呋喃,苯酚和芳环核的含量,并分别降低羧酸的含量。在从负离子ESI FT-ICR MS鉴定的所有杂原子化合物中,N_(1)O_(1),N_(1)O_(2),N_(1)O_(3),N_(2)的相对丰度),n_(2)o_(1),o_(1),o_(3),o_(1)s_(1),n_(1)s_(1)种类增加,而O_(2)和随着热解温度的增加,O_(4)物种降低。 O_(2)种的减少可归因于具有双键当量(DBE)值的羧酸1,而具有7和9的DBE值的O_(2)种的增加可以归因于通过聚合反应在较高的热解温度下形成呋喃,苯酚和芳环。尽管反应温度对酸性和中性氮物质的分子组成的影响是复杂的,但本研究发现仍然存在特征规则。

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