首页> 外文期刊>Journal of separation science. >Enantiomeric separation of chiral polychlorinated biphenyls on beta-cyclodextrin capillary columns by means of heart-cut multidimensional gas chromatography and comprehensive two-dimensional gas chromatography. Application to food samples
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Enantiomeric separation of chiral polychlorinated biphenyls on beta-cyclodextrin capillary columns by means of heart-cut multidimensional gas chromatography and comprehensive two-dimensional gas chromatography. Application to food samples

机译:借助心切多维气相色谱和全面二维气相色谱,在β-环糊精毛细管柱上手性多氯联苯的对映体分离。适用于食品样品

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Three commercially available chiral capillary columns, Chirasil-Dex, BGB-176SE. and BGB-172, have been evaluated for the separation into enantiomers of the 19 chiral polychlorinated biphenyls (PCB) congeners stable at room temperature. The enantiomers of 15 chiral PCBs were, at least to some extent, separated using these beta-cycloclextrin based columns. Multidimensional techniques, such as heart-cut multidimensional gas chromatography (heart-cut MDGC) and comprehensive two-dimensional gas chromatography (GC x GC), were investigated for their ability to solve coelution problems with other PCBs present in commercial mixtures and real-life samples. Heart-cut MDGC improved the separation as compared to one-dimensional GC, and enantiomeric fractions of the investigated chiral PCBs could be determined free from interferences. However, limitations on the number of target compounds that can be transferred to the second column in a single run and, therefore, the time consumption, have led to the evaluation of GC x GC as an alternative for this type of analysis. With GC x GC, two column set-ups were tested, both having a chiral column as first-dimension column, and two different polar stationary phase columns in the second dimension. On using both column combinations, congeners 84, 91, 95, 132, 135, 136, 149, 174, and 176 could be determined free from coelutions with other PCBs. Results on the application of heart-cut MDGC to food samples such as milk and cheese are given, as well as the first results on the application of GC x GC to this type of samples.
机译:三个市售手性毛细管柱,Chirasil-Dex,BGB-176SE。对BGB-172和BGB-172的分离可评估为在室温下稳定的19种手性多氯联苯(PCB)同系物的对映异构体。使用这些基于β-环糊精的色谱柱至少分离了15种手性PCB的对映异构体。研究了多维技术,例如心切多维气相色谱法(心切MDGC)和综合二维气相色谱法(GC x GC),它们具有解决与商业混合物中存在的其他PCB和实际生活中的多氯联苯共洗脱问题的能力。样品。与一维气相色谱相比,心切式MDGC改善了分离,并且可以确定所研究的手性PCB的对映体部分不受干扰。但是,由于在一次运行中可以转移至第二个色谱柱的目标化合物的数量有限,因此耗时有限,因此需要对GC x GC进行评估,以作为此类分析的替代方法。使用GC x GC,测试了两个色谱柱设置,两个色谱柱均具有手性色谱柱作为第一维色谱柱,第二维色谱柱具有两个不同的极性固定相色谱柱。在使用两种色谱柱组合时,可以确定同系物84、91、95、132、135、136、149、174和176,而不会与其他PCB共洗脱。给出了将心脏切割MDGC应用于牛奶和奶酪等食品样品的结果,以及将GC x GC应用于此类样品的第一个结果。

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