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Rapid and Sensitive Analysis of Volatile Components of Different Parts of Clausena lansium by Ionic Liquid Based Headspace Gas Chromatography-Mass Spectrometry.


ABSTRACT: A rapid and sensitive ionic liquid (IL) based headspace gas chromatography-mass spectrometry (HS-GC-MS) method was developed for analyzing volatile components in leaf, pericarp, and seed of Clausena lansium from different areas in Hainan Province, China. HS efficiencies were carefully investigated by using three ILs and water as matrix media. Extraction parameters, including equilibrium temperature, equilibrium time, and stirring rate had been evaluated and optimized by using an orthogonal design with OA?(3³) table. Under the optimized condition of IL-based HS-GC-MS, only 100 mg of sample and 2 mL of [Bmim][BF?] were needed to comprehensively and accurately analyze the volatile components in Clausena lansium. By utilizing a cluster analysis, six clusters were obtained for ninety components. This method was simpler, more rapid, and more sensitive when compared with previously reported methods for analyzing and identifying volatile components in Clausena lansium. The results may provide a theoretical basis for further exploitation of Clausena lansium.

SUBMITTER: He X 

PROVIDER: S-EPMC6337593 | biostudies-literature | 2018 Dec

REPOSITORIES: biostudies-literature

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Rapid and Sensitive Analysis of Volatile Components of Different Parts of <i>Clausena lansium</i> by Ionic Liquid Based Headspace Gas Chromatography-Mass Spectrometry.

He Xiaowen X   Ma Yinzheng Y   Yi Guohui G   Wen Yingying Y   Zhang Yunxia Y   Zhang Haiying H   Zhang Lantong L  

Molecules (Basel, Switzerland) 20181227 1


A rapid and sensitive ionic liquid (IL) based headspace gas chromatography-mass spectrometry (HS-GC-MS) method was developed for analyzing volatile components in leaf, pericarp, and seed of <i>Clausena lansium</i> from different areas in Hainan Province, China. HS efficiencies were carefully investigated by using three ILs and water as matrix media. Extraction parameters, including equilibrium temperature, equilibrium time, and stirring rate had been evaluated and optimized by using an orthogona  ...[more]

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