Literature DB >> 23535305

Distillation time effect on lavender essential oil yield and composition.

Valtcho D Zheljazkov1, Charles L Cantrell, Tess Astatkie, Ekaterina Jeliazkova.   

Abstract

Lavender (Lavandula angustifolia Mill.) is one of the most widely grown essential oil crops in the world. Commercial extraction of lavender oil is done using steam distillation. The objective of this study was to evaluate the effect of the length of the distillation time (DT) on lavender essential oil yield and composition when extracted from dried flowers. Therefore, the following distillation times (DT) were tested in this experiment: 1.5 min, 3 min, 3.75 min, 7.5 min, 15 min, 30 min, 60 min, 90 min, 120 min, 150 min, 180 min, and 240 min. The essential oil yield (range 0.5-6.8%) reached a maximum at 60 min DT. The concentrations of cineole (range 6.4-35%) and fenchol (range 1.7-2.9%) were highest at the 1.5 min DT and decreased with increasing length of the DT. The concentration of camphor (range 6.6-9.2%) reached a maximum at 7.5-15 min DT, while the concentration of linalool acetate (range 15-38%) reached a maximum at 30 min DT. Results suggest that lavender essential oil yield may not increase after 60 min DT. The change in essential oil yield, and the concentrations of cineole, fenchol and linalool acetate as DT changes were modeled very well by the asymptotic nonlinear regression model. DT may be used to modify the chemical profile of lavender oil and to obtain oils with differential chemical profiles from the same lavender flowers. DT must be taken into consideration when citing or comparing reports on lavender essential oil yield and composition.

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Year:  2013        PMID: 23535305     DOI: 10.5650/jos.62.195

Source DB:  PubMed          Journal:  J Oleo Sci        ISSN: 1345-8957            Impact factor:   1.601


  7 in total

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2.  Essential Oil Content and Compositional Variability of Lavandula Species Cultivated in the Mid Hill Conditions of the Western Himalaya.

Authors:  Shalika Rathore; Rakesh Kumar
Journal:  Molecules       Date:  2022-05-25       Impact factor: 4.927

3.  Essential oil from Lavandula angustifolia elicits expression of three SbWRKY transcription factors and defense-related genes against sorghum damping-off.

Authors:  Younes M Rashad; Elsayed S Abdel Razik; Doaa B Darwish
Journal:  Sci Rep       Date:  2022-01-17       Impact factor: 4.379

4.  Distillation Time as Tool for Improved Antimalarial Activity and Differential Oil Composition of Cumin Seed Oil.

Authors:  Valtcho D Zheljazkov; Archana Gawde; Charles L Cantrell; Tess Astatkie; Vicki Schlegel
Journal:  PLoS One       Date:  2015-12-07       Impact factor: 3.240

5.  Essential oils of Citrus aurantifolia, Anthemis nobile and Lavandula officinalis: in vitro anthelmintic activities against Haemonchus contortus.

Authors:  Luis Eduardo Ferreira; Bruno Iglesias Benincasa; Ana Lúcia Fachin; Silvia Helena Taleb Contini; Suzelei Castro França; Ana Carolina Souza Chagas; Rene Oliveira Beleboni
Journal:  Parasit Vectors       Date:  2018-04-25       Impact factor: 3.876

6.  Lavender- and lavandin-distilled straws: an untapped feedstock with great potential for the production of high-added value compounds and fungal enzymes.

Authors:  Laurence Lesage-Meessen; Marine Bou; Christian Ginies; Didier Chevret; David Navarro; Elodie Drula; Estelle Bonnin; José C Del Río; Elise Odinot; Alexandra Bisotto; Jean-Guy Berrin; Jean-Claude Sigoillot; Craig B Faulds; Anne Lomascolo
Journal:  Biotechnol Biofuels       Date:  2018-08-02       Impact factor: 6.040

7.  Supercritical Carbon Dioxide (scCO2) Extraction of Phenolic Compounds from Lavender (Lavandula angustifolia) Flowers: A Box-Behnken Experimental Optimization.

Authors:  Katarzyna Tyśkiewicz; Marcin Konkol; Edward Rój
Journal:  Molecules       Date:  2019-09-15       Impact factor: 4.411

  7 in total

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