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首页> 外文期刊>Phytochemical Analysis >Headspace-solid-phase microextraction fast GC in combination with principal component analysis as a tool to classify different chemotypes of chamomile flower-heads (Matricaria recutita l.)
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Headspace-solid-phase microextraction fast GC in combination with principal component analysis as a tool to classify different chemotypes of chamomile flower-heads (Matricaria recutita l.)

机译:顶空-固相微萃取快速GC与主成分分析相结合,将洋甘菊头状花序(Matricaria recutita l。)的不同化学型分类

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摘要

Headspace-solid-phase microextraction gas chromatography-principal component analysis (HS-SPME GC-PCA) is proposed as a complementary or alternative method to essential oil (EO) GC-PCA in order to discriminate between flower-heads of chamomile of different chemotypes. Ninety-two EOs and the headspaces sampled by HS-SPME of the corresponding chamomile flower-heads were examined by conventional GC and fast GC (F-GC) and the results submitted to statistical analysis by PCA. HS-SPME F-GC-PCA showed itself to be a rapid technique by which to distinguish chamomile flower-head chemotypes a produced results in agreement with the accepted EO classification. Using this method, the analysis time was reduced from at least 4.5 h with EO conventional GC to less than 1 h with HS-SPME F-GC. This approach can thus successfully be used as an analytical decision maker in order to reduce the number of time-consuming EO conventional GC analyses by limiting them to those samples that cannot unequivocally be classified. The EO conventional GC and HS-SPME F-GC results of PCA were very uniform, but they did not provide quantitative correlations between the components as determined by the two methods. A different statistical approach and a larger number of samples will be needed in order to correlate components in the headspace sampled by SPME and those in the corresponding EO quantitatively through a function.
机译:顶空-固相微萃取气相色谱-主要成分分析(HS-SPME GC-PCA)被提议作为精油(EO)GC-PCA的补充或替代方法,以区分不同化学类型的洋甘菊的花头。通过常规GC和快速GC(F-GC)检查了92个EO和相应洋甘菊花的HS-SPME顶空,并将结果提交PCA进行统计分析。 HS-SPME F-GC-PCA证明了自己是一种快速的技术,通过该技术可以区分甘菊头状花序化学式,其产生的结果与公认的EO分类一致。使用这种方法,分析时间从使用EO传统GC的至少4.5 h减少到使用HS-SPME F-GC的少于1 h。因此,该方法可以成功地用作分析决策者,以通过将EO传统GC分析限制在那些不能明确分类的样品中,从而减少它们的耗时。 PCA的EO常规GC和HS-SPME F-GC结果非常一致,但不能通过两种方法确定组分之间的定量关系。为了通过功能将SPME采样的顶空中的成分和相应的EO中的成分相关联,需要一种不同的统计方法和大量的样本。

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