• Title/Summary/Keyword: terpineol

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Essential Oils of Thymus quinquecostatus Celakov. and Thymus magnus Nakai (백리향(百里香)과 섬백리향(百里香)의 정유성분(精油成分) 조성(組成))

  • Kim, Young-Hoi;Lee, Jong-Chul;Choi, Young-Hyun
    • Korean Journal of Medicinal Crop Science
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    • v.2 no.3
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    • pp.234-240
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    • 1994
  • The essential oils of Thymus quinquecostatus Celakov. and T. magnus Nakai, respectively, were isolated by using a modified Likens-Nickerson type steam distillation and extraction apparatus and analyzed by gas chromatography and gas chromatography-mass spectrometry. The oil content of T. quinquecostatus was 1.94%, and that of T. magnus was 1.91% in mixed leaves and stems and 0.68% in flowers. Among 38 components identified in either mixed leaves and stems or flowers the major components in essential oil isolated from T. quinquecostatus were thymol(39.8%), ${\gamma}-terpinene(10.0%)$ ${\rho}cymene(9.2%)$ and camphor(5.9%) while those from mixed leaves and stems of T. magnus were thymoI(54.7%), ${\gamma}-terpinene(15.8%)$, ${\rho}cymene(6.7%)$ and carvacroI(3.2%). The contents of ${\alpha}-pinene$, camphene, camphor, bornyl acetate and ${\alpha}-terpinene+borneol$ were higher in T. quinquecostatus than in T. maglnus but ${\gamma}-terpinene$ and thymol were higher in T. magnus than in T. quinquecostatus. Comparing leaves and stems with flowers in T. magnus, peak area percentage(%) of ${\gamma}-terpinene$, ${\alpha}-terpinene$ were higher in mixed leaves and stems than in flowers, whereas ${\rho}cymene$ was predominantly higher in flowers than in leaves and stems.

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Optimization of Corrosion Properties of Ti/TiO2/IrO2-RuO2 Electrodes via Taguchi Method (Taguchi법을 이용한 Ti/TiO2/IrO2-RuO2전극의 부식특성 최적화)

  • 이득용;채경선;최형기;예경환;안중홍;송요승
    • Journal of the Korean Ceramic Society
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    • v.39 no.6
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    • pp.582-588
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    • 2002
  • IrO$_2$-RuO$_2$ films were deposited on plasma sprayed TiO$_2$ buffer layer above Ti metal by sol-gel and dip-coating method. Organic vehicle (ethyl cellulose and $\alpha$-terpineol) and glass frit were added to improve adherence of the coatings. Taguchi method and L$_{18}$ (2$^1$$\times$3$^{7}$ ) orthogonal arrays were evalvated in terms of current density to determine the optimal combination of levels of factors that best satisfy the bigger is better quality characteristic. The observed conditions were as fellows: ethyl cellulose (100 cp), drying temperature and time (17$0^{\circ}C$,20 min), heat treatment temperature and time (75$0^{\circ}C$,10 min), the weight ratio of IrO$_2$-RuO/powders to glass frit (99:5), final heat treatment time (120 min) and flow rate of air (5 sccm), respectively. ANOVA analysis suggested that the influence of the factors within $\alpha$= 0.1 was significant with a 90% confidence level.

Analyses of Lipid and Volatile Components in Juniper Seed(Juniperus rigida Sieb. et Zucc.) (노간주나무(Juniperus rigida Sieb. et Zucc.) 열매의 지질 및 향기성분 분석)

  • 신원선;하재호
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.32 no.6
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    • pp.795-800
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    • 2003
  • Juniper seed oil extracted by steam distillation has been a useful material as a medicine, insect repellant, and flavorant for alcoholic beverages. As the result of juniper seed oil analysis, the acid value, saponification value, unsaponification value phosphorus contents, and refractive index were 91.04, 85.15, 15.52, 11.04 ppm, 1.47, respectively The content of neutral lipids, glycolipids and phospholipids were 85.4%, 12.2% and 2.4%, respectively. From the fatty acids analysis, the major fatty acids from the juniperseed harvested in August were lauric acid (31.9% ), palmitic acid (28.0% ), stearic acid (9.9%), and oleic acid (8.5%) . However, maturated seed oil harvested in October mainly consists of linoleic acid (47.6%), linolenic acid (17.6%), oleic acid (16.1%), and palmitic acid (11.9%). Upon these analyses, fatty acids composition of juniper seed oil depends on the seed maturation. According to volatile compounds analyses of essential oil extracted using steam distillation method and SPME, the major compounds were $\beta$-myrcene, $\alpha$-pinene, $\beta$-farnescene, $\beta$-cubebene, limonene, trans-caryo-phyllene, $\alpha$-terpinolene, camphene, sabinene, and $\beta$-pinene.

Volatile Flavor Components of Korean Ginger(Zingiber officinale Roscoe) (한국산 생강의 휘발성 향기성분)

  • Kim, Jeong-Sook;Koh, Moo-Seok;Kim, Young-Hoi;Kim, Myung-Kon;Hong, Jai-Sik
    • Korean Journal of Food Science and Technology
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    • v.23 no.2
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    • pp.141-149
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    • 1991
  • The essential oils of the two cultivars of Korean ginger were isolated by simultaneous steam distillation and extraction method. Then the essential oils were fractionated into one hydrocarbon fraction and two oxygented hydrocarbon fractions by using silica gel column chromatography. The composition of the resulting oils were investigated by GC-MS spectrometry. The volatile oil contents of the two fresh cultivars were 0.32%(wb) and consisted of 68.1% hydrocarbon and 31.9% oxygenated hydrocarbons. Out of 101 characterized compounds, 54 were identified by comparing GC retentions and mass spectral data with authentic samples and 47 were tentatively identified according to mass spectral data only. The major compounds of hydrocarbon fraction were camphene, ${\beta}-phellandrene$, zingiberene, ${\gamma}-bisabolene,\;{\bate}-sesquiphellandrene$, and of oxygenated hydrocarbon fractions were 1,8-cineol, neral, geranial, geranyl acetate, citronellol, geraniol and ${\alpha}-terpeneol+borneol$. Comparing the yield and composition of Korean ginger oil with those from other origins reported, Korean ginger oils showed good yields of oil, whilst those contained higher amounts of sesquiterpene hydrocarbons.

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Volatile Aroma Compounds and Their Characteristics of Labiatae by Solid-Phase Microextraction (SPME) (Solid-Phase Microextraction (SPME)에 의한 꿀풀과 약초의 향기성분과 그 특성)

  • Song, Yong-Eun;Ku, Chang-Sub;Mun, Sung-Phil;Ryu, Ji-Sung;Kim, Dae-Hyang;Choi, Joung-Sik;Choi, Yeong-Geun
    • Korean Journal of Medicinal Crop Science
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    • v.10 no.2
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    • pp.120-125
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    • 2002
  • This study was carried out to find the possibility of use of Solid Phase Microextraction (SPME) for extracting the volatile aroma compounds in the five aromatic plants (Agastache rugosa O. Kuntze, Mentha arvensis Linne, Thymus quinquecostatus Celakovsky, Elsholtzia splendens Nakai, Schizonepta tenuifolia Briquet) belongs to the Labiatae. In the result of the analysis, the volatile aroma compounds were mainly composed monoterpene alcohol (linanol, menthol, ${\alpha}-terpineol$, borneol), monoterpene ketone (limonene, menthone) and sesquiterpene (trans-caryophyllene,${\delta}-cadinene)$. The volatile aroma compounds of Agastache rugosa O. Kuntze and Mentha arvensis Linne were extracted by SPME more identified than the SDE. However, Schizonepta tenuifolia Briquet more identified by the SDE and in Elsholtzia splendens Nakai similar to the SDE. Especially, the SPME showed the sesquiterpene contents was more than the SDE. The major volatile aroma compounds were difference but the composition of those between the SPME and the SDE showed no difference. Within the results, the SPME showed the most convenient and a rapid extraction method to analysis of the volatile aroma compounds.

Volatile Flavor Components of Angelica gigas Nakai by the Storage Conditions (저장조건에 따른 당귀의 정유성분 변화)

  • Choi, Sung-Hee;Kim, Hye-Jung
    • Korean Journal of Food Science and Technology
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    • v.32 no.3
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    • pp.513-518
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    • 2000
  • Volatile flavor components of Angelica gigas Nakai affected by different storage time and temperature were investigated. The aroma compounds was extracted by a simultaneous distillation and extraction method using a Likens and Nickerson's apparatus. The concentrated extract was analyzed and identified by GC and GC-MS equipped polar and nonpolar column. The yields of volatile concentrates of Angelica gigas Nakai by low temperature storage were larger than those by room temperature storage. The GC patterns of the flavor components of both resembled but the peak area of each flavor compounds was little different. Main volatile flavor components of Angelica gigas Nakai by using polar column were ${\alpha}-pinene$, ${\beta}-pinene$, terpineol, farnesol, cadinene, guaiol, isolongifolene and eudesmol etc. Main volatile flavor components of Angelica gigas Nakai by using nonpolar column were camphene, ${\beta}-pinene$, elemol, eudesmol etc.

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Pattern Recognition of the Herbal Drug, Magnoliae Flos According to their Essential Oil Components

  • Jeong, Eun-Sook;Choi, Kyu-Yeol;Kim, Sun-Chun;Son, In-Seop;Cho, Hwang-Eui;Ahn, Su-Youn;Woo, Mi-Hee;Hong, Jin-Tae;Moon, Dong-Cheul
    • Bulletin of the Korean Chemical Society
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    • v.30 no.5
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    • pp.1121-1126
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    • 2009
  • This paper describes a pattern recognition method of Magnoliae flos based on a gas chromatographic/mass spectrometric (GC/MS) analysis of the essential oil components. The botanical drug is mainly comprised of the four magnolia species (M. denudata, M. biondii, M. kobus, and M. liliflora) in Korea, although some other species are also being dealt with the drug. The GC/MS separation of the volatile components, which was extracted by the simultaneous distillation and extraction (SDE), was performed on a carbowax column (supelcowax 10; 30 m{\time}0.25 mm{\time}0.25{\mu}m$) using temperature programming. Variance in the retention times for all peaks of interests was within RSD 2% for repeated analyses (n = 9). Of the 74 essential oil components identified from the magnolia species, approximately 10 major components, which is $\alpha$-pinene, $\beta$-pinene, sabinene, myrcene, d-limonene, eucarlyptol (1,8-cineol), $\gamma$-terpinene, p-cymene, linalool, $\alpha$-terpineol, were commonly present in the four species. For statistical analysis, the original dataset was reduced to the 13 variables by Fisher criterion and factor analysis (FA). The essential oil patterns were processed by means of the multivariate statistical analysis including hierarchical cluster analysis (HCA), principal component analysis (PCA) and discriminant analysis (DA). All samples were divided into four groups with three principal components by PCA and according to the plant origins by HCA. Thirty-three samples (23 training sets and 10 test samples to be assessed) were correctly classified into the four groups predicted by PCA. This method would provide a practical strategy for assessing the authenticity or quality of the well-known herbal drug, Magnoliae flos.

Quality Characteristics of Ogapiju Prepared by Different Raw Materials (원료 첨가를 달리한 오가피주의 품질 특성)

  • Choi, Hyang-Sook;Min, Kyung-Chan
    • Korean Journal of Food Science and Technology
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    • v.37 no.4
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    • pp.525-531
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    • 2005
  • Quality characteristics of ogapiju prepared by adding different raw materials such as Acanthopanax(0, 0.1, 0.25, 0.5%), Ganoderma lucidum(0, 0.05%), pine needle (0, 0.05%), and red ginseng(0, 0.05%) were evaluated by chemical analyses and sensory evaluation. Total organic acid contents of samples containing ogapi and other medicinal herbs were higher than that of control group. Major free amino acid was histidine. Contents of total amino acid and free sugar were highest in sample C (Acanthopanax 0.1, G. lucidum 0.05, pine needle 0.50, red ginseng 0.05%). In each sample 31-49 volatile components were identified by solid-phase microextraction method, and 42 components were detected by sniff-test using GC-olfactometry. Ogapiju showed higher content of ${\alpha}-copaene$ than control group ${\alpha}-Pinene$, camphene, ${\beta}-pinene$, sabinene, ${\alpha}-terpinene,\;{\gamma}-terpinene$, p-cymene, terpinolene, ${\alpha}-thujone,\;{\beta}-thujone,\;{\alpha}-terpineol$, carvone, and ${\beta}-ionone$ were not identified in control group. Volatile composition of ogapiju was characterized by higher amount of terpenoids. Green and herbaceous note was stronger in ogapiju than control group. Sensory evaluation indicated that good taste and palatability were highest in sample C.

Development of Optimal Culture Media for the Stable Production of Mushroom (버섯의 안정적 생산을 위한 최적배지의 개발)

  • Gal, Sang-Wan;Lee, Sang-Won
    • Applied Biological Chemistry
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    • v.45 no.2
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    • pp.71-76
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    • 2002
  • Several antagonistic bacteria, SD-1, 4, 10, 11, 14, 15, and 16, which have strong CMCase and amylase activities, were isolated from the fermented mushroom media. Among them, SD-1, 10, 11, and 15 have strong antibacterial activities against the mushroom pathogenic bacteria Pseudomonas sp., and SD-1, 10, 11, 14, and 16 have strong antifungal activities against the mushroom pathogenic fungi, Trichoderma sp. SD-14, 15, and 16 did not inhibit the growth of mushroom Pleurotus eryngii ASI-2302, and Pleurotus ostreatus ASI-2042 and ASI-2180. When the culture broth mixture of the seven bacterial strains was applied to the mushroom media, the growths of pathogens, Pseudomonas sp. and Trichoderma sp., were inhibited.