首页> 外文期刊>Analytical and Bioanalytical Chemistry >Relative characterization of rosemary samples according to their geographical origins using microwave-accelerated distillation, solid-phase microextraction and Kohonen self-organizing maps
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Relative characterization of rosemary samples according to their geographical origins using microwave-accelerated distillation, solid-phase microextraction and Kohonen self-organizing maps

机译:使用微波加速蒸馏,固相微萃取和Kohonen自组织图根据迷迭香样品的地理来源进行相对表征

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摘要

For centuries, rosemary (Rosmarinus officinalis L.) has been used to prepare essential oils which, even now, are highly valued due to their various biological activities. Nevertheless, it has been noted that these activities often depend on the origin of the rosemary plant and the method of extraction. Since both of these quality parameters can greatly influence the chemical composition of rosemary oil, an original analytical method was developed where “dry distillation” was coupled to headspace solid-phase microextraction (HS-SPME) and then a data mining technique using the Kohonen self-organizing map algorithm was applied to the data obtained. This original approach uses the newly described microwave-accelerated distillation technique (MAD) and HS-SPME; neither of these techniques require external solvent and so this approach provides a novel “green” chemistry sampling method in the field of biological matrix analysis. The large data set obtained was then treated with a rarely used chemometric technique based on nonclassical statistics. Applied to 32 rosemary samples collected at the same time from 12 different sites in the north of Algeria, this method highlighted a strong correlation between the volatile chemical compositions of the samples and their origins, and it therefore allowed the samples to be grouped according to geographical distribution. Moreover, the method allowed us to identify the constituents that exerted the most influence during classification.
机译:迷迭香(Rosmarinus officinalis L.)已经被用于制备香精油,由于它们的各种生物活性,即使在现在,香精油仍被高度评价。然而,已经注意到,这些活性通常取决于迷迭香植物的来源和提取方法。由于这两个质量参数都可以极大地影响迷迭香油的化学组成,因此开发了一种原始分析方法,其中将“干馏”与顶空固相微萃取(HS-SPME)结合,然后使用Kohonen自检技术进行数据挖掘。 -组织图算法应用于获得的数据。这种原始方法使用了最新描述的微波加速蒸馏技术(MAD)和HS-SPME;这些技术均不需要外部溶剂,因此该方法在生物基质分析领域提供了一种新颖的“绿色”化学采样方法。然后,基于非经典统计,使用很少使用的化学计量技术处理获得的大量数据。该方法应用于从阿尔及利亚北部12个不同地点同时采集的32个迷迭香样品中,该方法突出了样品的挥发性化学成分与其来源之间的密切相关性,因此可以根据地理区域对样品进行分组。分配。此外,该方法使我们能够识别在分类过程中影响最大的成分。

著录项

  • 来源
    《Analytical and Bioanalytical Chemistry》 |2007年第2期|631-641|共11页
  • 作者单位

    Laboratoire d’Analyse Organique Fonctionnelle Université des Sciences et de la Technologie Houari Boumediene El Alia BP 32 Bab Ezzouar 16111 Alger Algeria;

    Université d’Avignon UMR A 408 INRA Sécurité et Qualité des Produits d’Origine Végétale 33 rue Louis Pasteur 84029 Avignon Cedex 1 France;

    Laboratoire d’Analyse Organique Fonctionnelle Université des Sciences et de la Technologie Houari Boumediene El Alia BP 32 Bab Ezzouar 16111 Alger Algeria;

    Université Bordeaux1-CNRS UMR 5255 - ISM Equipe Périgourdine de Chimie Appliquée Site Universitaire 24019 Périgueux France;

    Université Bordeaux1-CNRS UMR 5255 - ISM Equipe Périgourdine de Chimie Appliquée Site Universitaire 24019 Périgueux France;

    Université Bordeaux1-CNRS UMR 5255 - ISM Equipe Périgourdine de Chimie Appliquée Site Universitaire 24019 Périgueux France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Rosemary essential oil; Dry distillation; HS-SPME; KSOMS; Data mining;

    机译:迷迭香精油;干馏;HS-SPME;KSOMS;数据挖掘;

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