• Title/Summary/Keyword: ${\beta}$-cubebene

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Volatile Flavor compounds of Pinus densiflora Sieb and Zucc according to extracting solvents and steam distillation method (솔잎(Pinus densiflora Sieb & Zucc)의 용매분획별 향기성분의 조성)

  • Kang, Seong-Koo;Kang, Seong-Hoon;Choi, Ok-Ja;Kim, Young-Whan;Kim, Yong-Doo
    • Journal of the Korean Society of Food Culture
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    • v.11 no.3
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    • pp.403-408
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    • 1996
  • This study was carried out to investigate the volatile flavor compounds of Pinus densiflora Sieb & Zucc according to extraction solvents and steam distillation method. The research results are as follows: 29 kinds of components were extracted by extraction solvents. Hydrocarbon was the major flavor components of the Pinus densiflora Sieb & Zucc. When the flavor components were extracted by solvents and analyzed by GC-Mass, in the hexane, ${\alpha}$-pinene was the highest and the contents ${\beta}$-thujene, trans-caryophyllene, ${\beta}$-mercene, ${\beta}$-cubebene were higher; in the ethyl acetate, the ${\alpha}$-cubebene content was the highest and the contents ${\alpha}$-cubebene, 3,6,9,12,15-pentaoxanonadecan-1-ol, camphene were higher; in the ethanol, the ${\beta}$-D4-tetrahydropyran was the highest and the contents ${\gamma}$-cadinene, 3-ethyl-1,4-hexadiene, ${\alpha}$-cubebene were higher. When the volatile constituents were extracted by steam distillation method, 44 kinds of components were extracted. Hydrocarbon was the major flavor components of the Pinus densiflora Sieb & Zucc. The ${\beta}$-cubebene content was the highest and the contents trans-caryophyllene, 2-hexenal, T-muurolol, ${\delta}$-cadinene were higher. This fact indicated that volatile constituents differ depending upon the extracting solvents and method.

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Comparison of Volatile Aroma Compounds between Synurus deltoides and Aster scaber Leaves (수리취와 참취 엽의 휘발성 향기성분 비교)

  • Lee, Kyeong-Cheol;Sa, Jou-Young;Wang, Myeong-Hyeon;Han, Sang-Sup
    • Korean Journal of Medicinal Crop Science
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    • v.20 no.1
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    • pp.54-62
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    • 2012
  • This study was investigated to compare the volatile aroma compounds of Synurus deltoides and Aster scaber. The volatile aroma compounds from Synurus deltoides and Aster scaber were extracted by soild-phase microextraction (SPME) methods. S. deltoides had 97 volatile aroma compounds such as including 5-acetyl-1,2-dihydro acenaphtylene (14.63%), ${\beta}$-cubebene (9.31%), caryophyllene (8.97%), ${\beta}$-chamigrene (7.14%), ${\beta}$-selinene (2.71), ${\alpha}$-farnesene (2.47%), ${\alpha}$-bergamotene (2.26%), ${\beta}$-elemene (1.94%), etc. A. scaber had 84 volatile aroma compounds such as (+)-epi-bicyclosesquiphellandrene (10.38%), terpinolen (10.09%), caryophyllene (6.04%), 8-isopropenyl-1,5-dimethyl-1,5-cyclodeca diene (5.42%), ${\alpha}$-himachalene (5.04%), ${\beta}$-thujene (4.37%), ${\beta}$-pinene (4.28%), ${\beta}$-cubebene (3.99%), etc. Conclusively, the main common volatile aroma compounds in S. deltoides and A. scaber leaves were 19 volatile aroma compounds such as caryophyllene, terpinolen, ${\beta}$-cubebene. But the composition and amount of volatile aroma compounds were very different between the two species.

A Comparison the Volatile Aroma Compounds between Ligularia fischeri and Ligularia fischeri var. spiciformis Leaves (곰취와 한대리곰취의 휘발성 향기성분 분석)

  • Han, Sang-Sup;Sa, Jou-Young;Lee, Kyeong-Cheol
    • Journal of Forest and Environmental Science
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    • v.26 no.3
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    • pp.209-217
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    • 2010
  • The volatile aroma of fresh leaves is one of main factor in taste of all the edible green plants. The volatile aroma in almost edible green leaves are suggested as essential oil compounds. Ligularia fischeri, Synurus deltoides, Ligularia fischeri var. spiciformis and Aster scaber are one of the favourable edible green plants in Korea. In this study, volatile aroma compounds from Ligularia fischeri and Ligularia fischeri var. spiciformis species were analyzed by the SPME/GC/MSD method. Ligularia fischeri had 78 volatile aroma compounds such as D-limonene(20.28%), ${\alpha}$-pinene(dextro, 14.15%), L-${\beta}$-pinene(12.85%), 3-carene, ${\beta}$-cubebene(10.39%), etc. Ligularia fischeri var. spiciformis had 83 volatile aroma compounds such as D-limonene(36.97%), ${\beta}$-cubebene(13.95%), L-${\beta}$-pinene(13.38%), ${\alpha}$-pinene(dextro, 4.76%), caryophylle-ne(3.33%) etc. Conclusively, the commom volatile aroma compounds in Ligularia fischeri and Ligularia fischeri var. spiciformis leaves were D-limonene, ${\alpha}$-pinene, L-${\beta}$-pinene, ${\beta}$-cubebene, Caryophyllene, ${\alpha}$-farnesene, terpinolen. However, the composition and amount of volatile aroma compounds were very different between the two species.

Studies on the Technical Development of Traditional Korean Golden Varnish (Hwangchil)(II) - Chemical Composition and Coatings-oil Characteristics of the Exudates and Bark-extractives of Hwangchil-namu(Dendrogapax morbifera Lev.) - (전통 황칠 도료 개발에 관한 연구 (II) - 황칠나무 수피 추출물 및 삼출액의 화학적 조성과 도료용 오일특성 -)

  • Lim, Kie-Pye;Jung, Woo-Yang
    • Journal of the Korean Wood Science and Technology
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    • v.26 no.1
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    • pp.7-13
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    • 1998
  • In order to reconstruct the traditional technology of Korean golden varnish(Hwangchil) made from the exudates of D. morbifera, this study in the second step was carried out to analyze the chemical composition and oil properties of the exudates for coatings and bark extractives made from the trees of D. morbifera more than 20 years old grown in Wando and Jejudo islands in the southwestern part of Korean peninsula according to the physiological seasons. The results obtained are as follows: 1. The exudates appeared to be a phytoalexin because it exudated after several days in tapping only in summer season. 2. Both the exudates and bark-extracts with acetone contained 50~60% unsaponifiables and 30~50% saponifiables 3. A major component of essential oil in bark-extractives was ${\beta}$-cubebene and reached to 60~80%, while that of exudates included only 34% ${\beta}$-cubebene and some other compounds such as ${\beta}$-cadinene of 12%, aromadendrene of 9%, ${\beta}$-selinene of 9%, CAS030021-74-0 of 10%, etc. in GC-MS spectrometer. 4. A mjor component of fatty oil fraction in bark-extractives was linoleic acid and reached to more than 60%, while the exudates had mostly other components such as terpenes and phenolics instead of fatty acids accordint to GC-MS spectrometer. 5. Iodine value of samples after oil refining had 214mg/g in the exudates and more than than 150mg/g in bark-extractives, so the latter belonged to a drying oil.. 6. Therefore, the exudates from D. morbifera for traditional Korean golden varnish seems to have beeen used to a good varnish because it has some specific compounds different from its bark-extractives or general varnishes.

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Essential Oil Content and Composition of Aromatic Constituents in Leaf of Saururus chinensis, Angelica dahurica and Cnidium officinale (삼백초, 구릿대, 천궁의 잎 향기성분 조성과 정유함량)

  • Kim, Sang-Kuk;Kim, Young-Hyo;Kang, Dong-Kyoon;Chung, Sang-Hwan;Lee, Seong-Phil;Lee, Sang-Chul
    • Korean Journal of Medicinal Crop Science
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    • v.6 no.4
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    • pp.299-304
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    • 1998
  • This experiment was conducted to determine the essential oil content and the aromatic constituents in the leaves of Saururus chinensis Baill, Angelica dahurica Fischer and Cnidium officinale Makino. Volatile aromatic compounds in three aromatic medicinal plants were extracted with steam distillation extraction method and identified by GC/MS. Major aromatic compounds in Saururus chinensis Baill were 1,6-octadien-3-ol, 1, 3-benzodioxole, myristicin, ${\alpha}-cadinol$ and patchouene. Major aromatic compounds in Angelica dahurica Fischer were terpinolene, 3-carene, ${\beta}-caryophyllene$, ${\beta}-cubebene$, butylated hydroxy toluene, caryophyllene oxide, piperonal, and in Cnidium officinale Makino were aristolene, benzocycloheptene, ylangene, valencene, ${\beta}-cedrene$, satene, and menthofuran. Essential oil content was highest in Saururus chinensis plant.

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Chemical Compositions of Schizandra nigra Maxim. (흑오미자의 성분분석)

  • 현규환;김학진;신수철
    • Korean Journal of Plant Resources
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    • v.13 no.1
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    • pp.35-40
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    • 2000
  • The results from the determination of contents of components in Schizandra nigra are as follows. The contents of malic acid and citric acid in Schizandra nigra was 38,691 and 3,330 ppm/dry weight 100g. The contents of total phenolic compounds in Schizandra nigra was 1.560%. The predominating phenolic acid was cinnamic acid, gentisic acid, coumalic acid, chlorogenic acid and ferulic acid. Contents of crude lipids in Schizandra nigra was 160.5mg/g. Most of fatty acid in lipids was oleic acid, linoleic acid and linolenic acid as a unsaturated fatty acid, and palmitic acid as a saturated fatty acid. In case of essential oils, The predominating components in Schizandra nigra was caryophyllene, calarene, cubebene, acoradiene and $\beta$-himachalene.

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A Study on Determining Chemical Compositions of Schizandra chinensis (오미자 성분에 관한 연구)

  • 현규환;김학진;정현채
    • Korean Journal of Plant Resources
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    • v.15 no.1
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    • pp.1-7
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    • 2002
  • The results from the determination of contents of chemical components in Schizandra chinensis are as follows. The contents of malic acid and citric acid in Schizandra chinensis was 38,691 and 3,330 ppm/100g dry weight. The contents of total phenolic compounds in Schizandra chinensis was 1.560%. The predominat phenolic acids were cinnamic acid, gentisic acid, coumalic acid, chlorogenic acid and ferulic acid. Contents of crude lipids in Schizandra chinensis. was 160.5mg/g. Most of fatty acids in lipids were oleic acid, linoleic acid and linolenic acid which are unsaturated fatty acids, and palmitic acid which is saturated fatty acid. In case of essential oils, the predominat components in Schizandra chinensis were caryophyllene, calarene, cubebene, acoradiene and ${\beta}$-himachalene

Identification of volatile flavor compounds in Jeju citrus fruits (제주감귤류의 휘발성 향기성분의 확인)

  • Hong, Young Shin;Kim, Kyong Su
    • Food Science and Preservation
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    • v.23 no.7
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    • pp.977-988
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    • 2016
  • The volatile flavor compounds in five Jeju citrus fruit varieties (Cheonhyehyang, Hallabong, Jinjihyang, Hwanggeum hyang and Redhyang) were extracted by simultaneous distillation-extraction (SDE) using solvent mixture of n-pentane and diethyl ether (1:1, v/v) and analyzed by using gas chromatography-mass spectrometry (GC-MS). The number of aroma compounds were identified with : 104 (4,939.77 mg/kg) in Cheonhyehyang, 98 (3,286.38 mg/kg) in Hallabong, 105 (3,317.56 mg/kg) in Jinjihyang, 102 (4,293.39 mg/kg) in Hwanggeumhyang, and 108 (4,049.94 mg/kg) in Redhyang. The detected main volatile compounds were; limonene, sabinene, ${\beta}$-myrcene, ${\alpha}$-pinene, ${\beta}$-pinene, linalool, 4-terpineol, ${\alpha}$-terpineol, (E)-${\beta}$-ocimene and ${\gamma}$-terpinene. Among the identified volatiles compounds, ethyl-benzene, nonanol, 1-p-menthen-9-al, (E)-isocarveol, methyl salicylate, ${\alpha}$-terpinen-7-al, perilla alcohol, and ethyl-dodecanoate were detected in Cheonhyehyang. only Furthermore, ${\beta}$-chamigrene and ${\alpha}$-selinene were in Hallabong only; 3-hydroxybutanal, (E)-2-nonenal, isoborneol, octyl acetate, (E)-2-undecenal, ${\beta}$-ylangene and guaia-6,9-diene in Jinjihyang. ${\rho}$-Cymenene, ${\beta}$-thujone, selina-4,11-diene and (E,E)-2,6-farnesol in Hwanggeumhyang only; and ${\rho}$-cymen-8-ol, bornyl acetate, carvacrol, bicycloelemene, ${\alpha}$-cubebene and 7-epi-${\alpha}$-selinene in Redhyang only. This study confirmed the differences in composition and content of volatile aroma components in five varieties of Jeju citrus fruits.

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.

Determination of the volatile flavor components of orange and grapefruit by simultaneous distillation-extraction (연속수증기증류추출법에 의한 오렌지와 자몽의 휘발성 유기화합물 확인)

  • Hong, Young Shin;Kim, Kyong Su
    • Food Science and Preservation
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    • v.23 no.1
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    • pp.63-73
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    • 2016
  • The volatile flavor components of the fruit pulp and peel of orange (Citrus sinensis) and grapefruit (Citrus paradisi) were extracted by simultaneous distillation-extraction (SDE) using a solvent mixture of n-pentane and diethyl ether (1:1, v/v) and analyzed by gas chromatography-mass spectrometry (GC-MS). The total volatile flavor contents in the pulp and peel of orange were 120.55 and 4,510.81 mg/kg, respectively, while those in the pulp and peel of grapefruit were 195.60 and 4,223.68 mg/kg, respectively. The monoterpene limonene was identified as the major voltile flavor compound in both orange and grapefruit, exhibiting contents of 65.32 and 3,008.10 mg/kg in the pulp and peel of orange, respectively, and 105.00 and 1,870.24 mg/kg in the pulp and peel of grapefruit, respectively. Limonene, sabinene, ${\alpha}$-pinene, ${\beta}$-myrcene, linalool, (Z)-limonene oxide, and (E)-limonene oxide were the main volatile flavor components of both orange and grapefruit. The distinctive component of orange was valencene, while grapefruit contained (E)-caryophyllene and nootkatone. $\delta$-3-Carene, ${\alpha}$-terpinolene, borneol, citronellyl acetate, piperitone, and ${\beta}$-copaene were detected in orange but not in grapefruit. Conversely, grapefruit contained ${\beta}$-pinene, ${\alpha}$-terpinyl acetate, bicyclogermacrene, nootkatol, ${\beta}$-cubebene, and sesquisabinene, while orange did not. Phenylacetaldehyde, camphor, limona ketone and (Z)-caryophyllene were identified in the pulp of both fruits, while ${\alpha}$-thujene, citronellal, citronellol, ${\alpha}$-sinensal, ${\gamma}$-muurolene and germacrene D were detected in the peel of both fresh fruit samples.