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Alkyl carbon number limits the ring-number separation of polycyclic aromatic compounds in petroleum analysis

机译:烷基碳数限制了石油分析中多环芳烃的环数分离

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摘要

There have been many attempts to achieve a clear-cut separation of alkylated aromatic compounds based on the number of aromatic rings employing normal-phase liquid chromatography. However, each method has its own limitations to address this issue. Therefore, we aimed to elucidate the involved mechanisms for this limitation. For this purpose, stationary phases viz. amino- and cyano-bonded silica gel were considered. The phases were evaluated with the distilled cuts of a crude oil based on resolution and selectivity, and the optimum phase was selected for the separation of a crude oil. It was observed that there was a significant overlap of compounds with the same ring-number in different peaks. The cause of overlap was linked to the number of alkyl carbon atoms attached to the aromatic rings. Aromatic compounds substituted with higher number of alkyl carbon atoms (total) elute earlier than those with lower number of alkyl carbon atoms. This trend was maintained for hydrocarbons, sulfur-containing compounds (S1), and di-sulfur containing compounds (S2). It was further corroborated using molecular modeling calculations that (i) the increase in the number of alkyl carbon atoms increases the molecular volume, and (ii) the volume of the molecules remains similar irrespective of the number and position of alkyl substituents provided that the total number of alkyl carbon atoms remains the same. Finally, it was revealed that the counteractive role of the size exclusion mechanism limits the application of normal-phase chromatography for a clear-cut separation of alkylated aromatic compounds according to the number of aromatic rings.
机译:基于采用正常相液相色谱的芳环的数量,已经有许多尝试实现烷基化芳族化合物的清晰分离。但是,每个方法都有自己的限制来解决这个问题。因此,我们旨在阐明涉及这种限制的涉及机制。为此目的,静止阶段viz。考虑了氨基和氰基键合硅胶。通过基于分辨率和选择性的粗油的蒸馏切割评估各阶段,选择最佳相对于分离原油。观察到,在不同峰值中具有相同环数的化合物存在显着重叠。重叠的原因与连接到芳环附着的烷基碳原子的数量。芳族化合物比具有较少数量的烷基碳原子的烷基碳原子(总)洗脱均取代。将这种趋势保持碳氢化合物,含硫化合物(S1)和含二硫化合物(S2)。使用分子建模计算进一步证实,(i)烷基碳原子数的增加增加了分子量,并且(ii)分子的体积仍然相似,而且烷基取代基的数量和位置还提供总体烷基碳原子的数量保持不变。最后,揭示了尺寸排阻机构的抵抗作用限制了正常相色谱法根据芳环的数量来施加烷基化芳族化合物的清除分离。

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