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Separation Of Volatile Metabolites From The Leaf-Derived Essential Oil Of Piper Mollicomum Kunth (Piperaceae) By High-Speed Countercurrent Chromatography

Andre M. Marques, Ana Clarissa C. Peixoto, D. William Provance, Maria Auxiliadora C. Kaplan

MOLECULES(2018)

Cited 8|Views15
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Abstract
The technique of high-speed countercurrent chromatography was applied to the isolation of compounds in essential oil derived from the leaves of Piper mollicomum species. Plant leaves (200.0 g) were submitted to hydrodistillation in a modified Clevenger apparatus. The resulting crude leaf essential oil was analyzed by gas chromatography with flame ionization detector (GC-FID) and gas chromatography-mass spectrometry (GC-MS) to determine the profile of the components. The purified fractions were composed of monoterpenes and sesquiterpenes such as camphor (85.0 mg at 98.5% purity), (E)-nerolidol (100.0 mg at 92.8% purity), and camphene (150.0 mg at 82.0% purity). A minor component of the essential oil, bornyl acetate (16.2 mg at 91.2% purity) was also isolated in the one-step separation protocol in 2 h. The countercurrent chromatography technique proved to be a fast and efficient method for the separation of volatile metabolites that conserved the solvent while delivering various fractions of high purity.
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Key words
camphor,nerolidol,separation process,CCC,essential oil
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