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Polymer-coated fibrous materials as the stationary phase in packed capillary gas chromatography

机译:填充毛细管气相色谱法中聚合物涂层的纤维材料作为固定相

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Synthetic polymer filaments have been introduced as the support material in packed capillary gas chromatography (GC). The filaments of the heat-resistant polymers, Zylon, Kevlar, Nomex, and Technora, were longitudinally packed into a short fused-silica capillary, followed by the conventional coating process for open-tubular GC columns. The separation of several test mixtures such as n-alkylbenzenes and n-alkanes was carried out with these polymer-coated fiber-packed capillary columns. With the coating by various polymeric materials on the surface of these filaments, the retentivity was significantly improved over the parent fiber-packed column (without polymer coating) as well as a conventional open-tubular capillary of the same length. The results demonstrated a good combination of Zylon as the support and poly(dimethylsiloxane)based materials as the coating liquid-phase for the successful GC separation of n-alkanes and polycyclic aromatic hydrocarbons (PAHs), while successful applications for other separations such as poly(ethylene glycol) coating for the separation of alcohols were also obtained. From the results it has been suggested that the selectivity of the fiber-packed column could be tuned by selecting different coating materials, indicating the promising possibility for a novel usage of fine fibrous polymers as the support material that can be combined with newly synthesized coating materials specially designed for particular separations. Taking advantage of good thermal stability of the fibers, the column temperature could be elevated to higher than 350 degreesC with the combination of a short metallic capillary. [References: 29]
机译:合成聚合物长丝已作为填充毛细管气相色谱法(GC)中的载体材料引入。将耐热聚合物Zylon,Kevlar,Nomex和Technora的长丝纵向填充到短的熔融石英毛细管中,然后采用常规的开放管式GC色谱柱涂覆工艺。用这些涂有聚合物的纤维填充毛细管柱对几种测试混合物(例如正烷基苯和正烷烃)进行了分离。通过在这些长丝的表面上使用各种聚合材料进行涂层,与母纤维填充柱(无聚合物涂层)以及相同长度的常规开管毛细管相比,保留性得到了显着提高。结果表明Zylon作为载体和聚二甲基硅氧烷基材料作为涂料液相的良好组合,可以成功地成功分离正构烷烃和多环芳烃(PAH),同时成功地用于其他分离,如聚苯乙烯还获得了用于分离醇的(乙二醇)涂层。从结果表明,可以通过选择不同的涂料来调节纤维填充柱的选择性,这表明将细纤维聚合物作为载体材料的新用途有希望的可能性,该新材料可以与新合成的涂料结合使用专为特殊分离而设计​​。利用短纤维的良好热稳定性,可以结合使用短的金属毛细管将柱温提高到高于350摄氏度。 [参考:29]

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