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Heavy petroleum fractions as possible analogues of carriers of the unidentified infrared bands

机译:重石油馏分可能是未识别的红外波段载波的类似物

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摘要

The Fourier-transform infrared spectra and the electronic spectra of a series of petroleum fractions of different composition and origins have been studied. Furthermore, these fractions have been modified through the Scholl reaction, a reaction that causes an increase in the aromatic content of the fractions by causing the formation of polycyclic aromatic hydrocarbons (PAHs) or larger PAHs if they were already present in the pristine samples. It is shown that some heavily aromatic petroleum fractions are able to match the emission spectra of the protoplanetary nebula IRAS 22272+5435. Additionally, it is shown that the modified petroleum fractions are able to match the infrared spectrum of anthracite, a high-rank type of coal that has been proposed as the material responsible for the emission of the unidentified infrared bands (UIBs), but which can also be thought of as a model of the kerogen found in meteorites or assumed to be present in cometary nuclei. It is shown that the petroleum fractions considered in this work can be considered even better candidates than coal as a model for the matter present in protoplanetary nebulae and the carrier of the UIBs.
机译:研究了不同组成和来源的一系列石油馏分的傅立叶变换红外光谱和电子光谱。此外,这些馏分已通过Scholl反应进行了改性,该反应通过在原始样品中已经存在的情况下,通过形成多环芳烃(PAH)或更大的PAH来增加馏分中的芳香含量。结果表明,一些重度芳香的石油馏分能够与原行星状星云IRAS 22272 + 5435的发射光谱匹配。此外,还表明,改性石油馏分能够与无烟煤的红外光谱相匹配,无烟煤是一种高级煤,已被提出作为负责发射未识别红外波段(UIB)的材料,但可以也被认为是陨石中发现的干酪根的模型,或假定存在于彗核中。结果表明,作为原行星状星云和UIBs携带者的模型,这项工作中考虑的石油馏分被认为比煤炭更适合作为候选物。

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