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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Crosslinked structurally-tuned polymeric ionic liquids as stationary phases for the analysis of hydrocarbons in kerosene and diesel fuels by comprehensive two-dimensional gas chromatography
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Crosslinked structurally-tuned polymeric ionic liquids as stationary phases for the analysis of hydrocarbons in kerosene and diesel fuels by comprehensive two-dimensional gas chromatography

机译:交联的结构调谐聚合物离子液体作为固定相,通过全面的二维气相色谱分析煤油和柴油中的烃

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摘要

Structurally-tuned ionic liquids (ILs) have been previously applied as the second dimension column in comprehensive two-dimensional gas chromatography (GC x GC) and have demonstrated high selectivity in the separation of individual aliphatic hydrocarbons from other aliphatic hydrocarbons. However, the maximum operating temperatures of these stationary phases limit the separation of analytes with high boiling points. In order to address this issue, a series of polymeric ionic liquid (PIL)-based stationary phases were prepared in this study using imidazolium-based IL monomers via in-column free radical polymerization. The IL monomers were functionalized with long alkyl chain substituents to provide the needed selectivity for the separation of aliphatic hydrocarbons. Columns were prepared with different film thicknesses to identify the best performing stationary phase for the separation of kerosene. The bis[(trifluoromethyl)sulfonyl]imide ([NTf2](-))-based PIL stationary phase with larger film thickness (0.28 mu m) exhibited higher selectivity for aliphatic hydrocarbons and showed a maximum allowable operating temperature of 300 degrees C. PIL-based stationary phases containing varied amount of IL -based crosslinker were prepared to study the effect of the crosslinker on the selectivity and thermal stability of the resulting stationary phase. The optimal resolution of aliphatic hydrocarbons was achieved when 50% (w/w) of crosslinker was incorporated into the PIL-based stationary phase. The resulting stationary phase exhibited good selectivity for different groups of aliphatic hydrocarbons even after being conditioned at 325 degrees C. Finally, the crosslinked PIL-based stationary phase was compared with SUPELCOWAX 10 and DB-17 columns for the separation of aliphatic hydrocarbons in diesel fuel. Better resolution of aliphatic hydrocarbons was obtained when employing the crosslinked PIL-based stationary phase as the second dimension column. (C) 2016 Elsevier B.V. All rights reserved.
机译:结构调整的离子液体(ILs)先前已被用作全面二维气相色谱(GC x GC)中的第二维色谱柱,并且在分离单个脂肪族烃与其他脂肪族烃方面表现出很高的选择性。但是,这些固定相的最高工作温度限制了高沸点分析物的分离。为了解决这个问题,在本研究中,使用了基于咪唑鎓的IL单体通过柱内自由基聚合制备了一系列基于聚合物离子液体(PIL)的固定相。用长烷基链取代基将IL单体官能化,以提供分离脂肪烃所需的选择性。制备了具有不同膜厚的色谱柱,以鉴定用于分离煤油的最佳性能固定相。具有较大膜厚(0.28μm)的双[(三氟甲基)磺酰基]酰亚胺([NTf2](-))基PIL固定相对脂肪烃的选择性更高,最高允许工作温度为300摄氏度。制备了包含不同量的基于IL的交联剂的C基固定相,以研究交联剂对所得固定相的选择性和热稳定性的影响。当将50%(w / w)的交联剂掺入到基于PIL的固定相中时,可以实现脂族烃的最佳分离度。所得的固定相即使在325℃条件下调节后,仍对不同组的脂肪烃表现出良好的选择性。最后,将交联的PIL基固定相与SUPELCOWAX 10和DB-17色谱柱进行了比较,以分离柴油中的脂肪烃。当使用交联的基于PIL的固定相作为第二维色谱柱时,脂族烃的分离度更高。 (C)2016 Elsevier B.V.保留所有权利。

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