• Title/Summary/Keyword: volatile oils

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Antifungal Activity and Inhibitory Modes of Volatile Vapours of Essential Oils

  • Chee, Hee-Youn;Lee, Eun-Hee
    • Mycobiology
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    • v.32 no.2
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    • pp.102-104
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    • 2004
  • Antifungal activities of volatile vapours of essential oils were investigated. Volatile vapours of test essential oils except Cedar-wood and Pachouri showed inhibitory activity against test fungi. Volatile vapours of Birch essential oils exhibited fungistatic activity against dermatophytic filamentous fungi while others did fungicidal activity. Spores of dermatophytic filamentous fungi are more susceptible to volatile vapours of essential oils than mycelia.

Effects of Storage Conditions on Essential Oil of Artemisia princeps Pampan. cv. ssajuari (ssajuarissuk) (저장조건에 따른 싸주아리쑥 정유의 휘발성 성분 변화)

  • Chung, Mi-Sook
    • Korean journal of food and cookery science
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    • v.26 no.6
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    • pp.840-847
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    • 2010
  • In this study, we identified the volatile compounds of Artemisia princeps Pampan. cv. ssajuari (ssajuarissuk) essential oils and analyzed changes in the contents of volatile compounds under four different storage conditions, such as exposure to air at $20^{\circ}C$ and $40^{\circ}C$. Sixty-five volatile compounds consisting of 6 monoterpene hydrocarbons, 23 oxygenated monoterpenes, 16 sesquiterpene hydrocarbons, 6 oxygenated sesquiterpenes, 1 diterpene, 6 benzene derivatives, and 7 non-isoprenoid compounds were identified on the basis of their mass spectra characteristics and retention indices from original ssajuarissuk essential oils. Identified compounds constituted 90.56% of the total peak area. Borneol (10.29%) was the most abundant compound in the original ssajuarissuk essential oils, followed by 1,8-cineole (9.06%), viridiflorol (8.99%), spathulenol (8.73%), $\alpha$-thujone (5.28%), and camphor (4.39%). After six months storage at $40^{\circ}C$ with the cap opened for 3 min everyday, the total amount of volatile compounds in essential oil as determined by the percentage peak area decreased by 84.93%. The total levels of cis-sabinene hydrate, camphor, 4-terpineol, humulene oxide, $\beta$-caryophyllene oxide, and caryophyllene alcohol increased significantly. For ssajuarissuk essential oils stored under experimental conditions, changes in the contents of volatile compounds in essential oils were accelerated by temperature and contact with the atmosphere.

Changes in the Volatile Compounds of Artemisia princeps var. orientalis Essential Oils During Storage

  • Chung, Mi-Sook
    • Food Science and Biotechnology
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    • v.18 no.2
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    • pp.481-487
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    • 2009
  • The compositional changes of wormwood (Artemisia princeps var. orientalis) essential oils were studied under 4 different storage conditions i.e., being exposed to air at 20 and $40^{\circ}C$. Sixty-four volatile compounds consisting of 24 terpene hydrocarbons, 18 alcohols, 11 ketones, 6 esters, 1 aldehyde, 2 hydrocarbons, and 2 oxides were identified on the basis of their mass spectra characteristics and retention indices in original wormwood essential oils. Identified compounds constituted 80.53% of the total peak area. Borneol (12.13%) was the most abundant compound, followed by $\alpha$-thujone (8.66%), T-cadinol (6.67%), and 1,8-cineole (6.21%) in original wormwood essential oils. Under the condition of $40^{\circ}C$ of temperature with the cap being opened for 3 min everyday respectively during 6 months of storage, the total amount of functional groups in essential oil determined by peak area percent were decreased by 79.45%, at most. The total level of monoterpene hydrocarbons decreased markedly in the aerobic condition and high temperatures. Whereas the total level of esters increased significantly. Wormwood essential oils were stored in experimental conditions, with the changes in the volatile compounds of essential oils being accelerated by high temperatures and contact with the atmosphere.

Comparison on Volatile Flavor Compounds in Cultivated and Wild Pimpinella brachycarpa

  • Choi, Nam-Soon
    • Food Quality and Culture
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    • v.2 no.2
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    • pp.67-72
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    • 2008
  • The volatile flavor compounds of wild and cultivated chamnamul (Pimpinella brachycarpa), an aromatic medicinal plant, were isolated via the simultaneous distillation extraction method and analyzed by GC and GC-MSD. From the oils of the wild chamnamul, 56 volatile flavor compounds were identified, and the major constituents were found to be sabinene (58.37 ppm) and germacrene-D (45.73 ppm). From the oils of cultivated chamnamul, 36 volatile flavor compounds were identified--the major constituents were identified as $\beta$-selinene (38.41 ppm) and myrcene (12.76 ppm).

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THE COMPARISONS OF VOLATILE OILS OF FLUE-CURED TOBACCO PRODUCED IN KOREA AND IN THE UNITED STATES (한미산 황색종 잎담배의 휘발성 정유성분 비교연구)

  • 장기운
    • Journal of the Korean Society of Tobacco Science
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    • v.7 no.2
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    • pp.151-167
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    • 1985
  • Generally, the same quality tobacco may give similar concentration of each chemical component. This research investigation was studied to obtain the differences in concentrations of volatile oil compounds in physically similar tobacco produced in different environment and managements-in Korea and in the United States. The flue-cured leaf tobacco produced in Korea and America was regraded to B3L and P3L by American grading system and analyzed for volatile oils relating to tobacco flavor and aroma. Sixty compounds of the more than 100 peaks distinguishable on the total neutral volatile oils were identified by G5-MS and quantified. Their concentrations are compared between B3 L and P3L produced in Korea and in the United States. The most volatile oil concentrations of B3 L and P3L grade tobacco arc higher in American than in Korean. Only a few components such as benzaldehyde, pulegonc, 4, 6, 9 - megastigmatriene - 3 - one, and coumaran are less in American.

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Chemical Composition of the Essential Oils from Solidago virga-aurea var. asiatica Nakai with Different Harvesting Area (채취지역에 따른 미역취 정유의 화학적 성분)

  • Choi, Hyang-Sook
    • The Korean Journal of Food And Nutrition
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    • v.33 no.3
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    • pp.257-265
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    • 2020
  • This study investigated the volatile flavor composition of essential oils from Solidago virga-aurea var. asiatica Nakai with different harvesting area. The essential oils obtained by the hydrodistillation extraction method from the aerial parts of the plants were analyzed by gas chromatography (GC) and GC-mass spectrometry (GC-MS). Ninety-five (91.61%) volatile flavor compounds were identified in the essential oils from the S. virga-aurea var. asiatica Nakai harvested in Koheung, Jeolanamdo. The major compounds were hexadecanoic acid (29.22%), 7-hexyl eicosane (9.12%), spathulenol (7.701%), 3,8-dimethyl decane (6.48%), caryophyllene oxide (4.52%) and α-copaene (4.23%). Fifty-seven (97.43%) volatile flavor compounds were identified in the essential oils from the S. virga-aurea var. asiatica Nakai harvested in Seoguipo, Jejudo. The major compounds were 2-carene (40.95%), α-copaene (10.77%), α-muurolene (5.81%), and spathulenol (3.11%). The chemical composition of the essential oils was significantly different in quality and quantity with the different harvesting area. The quantitative variations of hexadecanoic acid, 7-hexyl eicosane, spathulenol, 3,8-dimethyl decane, caryophyllene oxide, 2-carene, and α-copaene according to different harvesting area can serve as a quality index of the S. virga-aurea var. asiatica Nakai essential oils in food industries.

Sensory Characterization of Roasted Sesame Seed Oils Using Gas Chromatographic Data (휘발성 성분을 이용한 참기름의 관능적 특성 평가)

  • Yoon, Hee-Nam
    • Korean Journal of Food Science and Technology
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    • v.28 no.2
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    • pp.298-304
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    • 1996
  • Thirty-nine samples of roasted sesame seed oils were sensorially evaluated in terms of nutty odor, burnt odor and overall desirability, and their volatile compounds quantitatively analysed using direct sampling capillary GLC. Five volatile compounds were appeared to be significant for the sensory Properties of sesame oils through the multivariate analytical techniques such as stepwise discriminant analysis. canonical discriminant analysis, discriminant analysis and principal component analysis. The most important compounds were 2,5-dimethylpyrazine and 2-methylpyrazine which could be effectively used as chemical indicators related to nutty and burnt odor of sesame oils, respectively. The sesame oils which have represented a good grade of overall desirability have been always kept $35.82{\sim}4.43$ ppm of 2,5-dimethylpyrazine and also $28.90{\sim}6.35$ ppm of 2-methylpyrazine.

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GC-MS Analyses of the Essential Oils from Ixeris dentate(Thunb.) Nakai and I. stolonifera A. Gray (GC-MS를 이용한 씀바귀 및 좀씀바귀의 정유 성분 분석)

  • Choi, Hyang-Sook
    • The Korean Journal of Food And Nutrition
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    • v.25 no.2
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    • pp.274-283
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    • 2012
  • The volatile flavor compounds of the essential oils from Ixeris dentate (Thunb.) Nakai and I. stolonifera A. Gray were investigated. The essential oils were extracted by hydro distillation extraction method. Ninety-three volatile flavor components were identified from I. dentate (Thunb.) Nakai essential oil. Hexadecanoic acid(33.73%) was the most abundant compound, followed by (Z,Z,Z,)-9,12,15-octadecatrienoic acid(18.59%), 6,10,14-trimethyl-2-pentadecanonel(10.39%) and phytol(5.21%). Ninety-seven volatile flavor components were identified from the essential oil of I. stolonifera A. Gray. Hexadecanoic acid was the most abundant component(39.7%), followed by (Z,Z,Z)-9,12,15-octadecatrienoic acid(12.63%), 9,12-octadecadienoic acid, ethyl ester(12.36%), pentacosane(5.2%) and 6,10,14-trimethyl-2-pentadecanone(3.18%). The volatile composition of I. dentate (Thunb.) Nakai was characterized by higher contents of phytol and phthalides than those of I. stolonifera A. Gray. The volatile flavor composition of I. stolonifera A. Gray can easily be distinguished by the percentage of sesquiterpene compounds against I. dentate (Thunb.) Nakai essential oil.

Studies on the Constitutents of Korean Valerians(I) -Screening Tests on the Volatile Oils from Korean Valeriana fauriei Species- (국산 쥐오줌풀속 식물의 성분 연구(I) -Valeriana fauriei $B_{RIQUET}$ 변품종의 정유 성분 검색-)

  • Kim, Chang-Min;Ryu, Kyung-Soo
    • Korean Journal of Pharmacognosy
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    • v.7 no.4
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    • pp.237-240
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    • 1976
  • To investigate the constituents of following plants, Valeriana fauriei species, which are V. fauriei var. fauriei $H_{ARA}$, V. fauriei form. coreana $H_{ARA}$ and V. fauriei var. dasycarpa $H_{ARA}$, we carried out gas-liquid chromatographical analysis of the volatile oils of these plants and found that camphene, l-bornylacetate, ${\alpha}-pinene,\;{\beta}-pinene$, d,l-limonene, l-borneol and ${\alpha}-kessylacetate$ were common components in their volatile oils. However, their terpenoidal composition was considerably different from ${\alpha}-kessylacetate$ in V. faurie var. fauriei, from kessanol, ledol, kessoglycol and nardol in V. fauriei var. dasycarpa, and from kessoglycoldiacetate, ${\alpha}-kessylalcohol$, faurinone and terpineol in V. faurie form. coreana. It was found by gas-liquid chromatography that the terpenoidal patterns of these Korean valerians were similar to those of Japanish valerians.

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Comparison of Volatile Aroma Components from Saussurea lappa C.B. Clarke Root Oils

  • Chang, Kyung-Mi;Kim, Gun-Hee
    • Preventive Nutrition and Food Science
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    • v.13 no.2
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    • pp.128-133
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    • 2008
  • The volatile flavor components were isolated from the roots of Saussurea lappa C.B. Clarke produced in Korea and China by the hydro distillation, and were analyzed by gas chromatography-mass spectrometry (GC/MS). 63 aroma compounds representing 87.47% of the total peak area were tentatively identified, including 13 alcohols (22.56%), 26 hydrocarbons (21.78%), 4 aldehydes (21.24%), 11 ketones (18.04%), 1 oxide (0.52%), 3 esters (0.16%), 1 carboxylic acid (0.02%) and 4 miscellaneous components (3.15%). 46 volatile flavor components of imported S. lappa C.B. Clarke constituted 65.69% of the total volatile composition were tentatively characterized, consisting of 1 aldehyde (23.32%), 24 hydrocarbons (16.69%), 10 ketones (15.84%), 7 alcohols (8.92%), 1 oxide (0.83%), 2 esters (0.07%) and 1 acid (0.02%). The predominant components of both essential oils were (7Z,10Z,13Z)-7,10,13-hexadecatrienal and dehydrocostuslactone.