• Title/Summary/Keyword: 정유 함량

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Composition of Essential Oils from the Leaves and the Fruits of Chamaecyparis obtusa and Chamaecyparis pisifera (편백과 화백의 잎과 열매에서 분리한 정유성분의 조성)

  • Hong, Chul-Un;Kim, Cheol-Sang;Kim, Nam-Gyun;Kim, Young-Hoi
    • Applied Biological Chemistry
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    • v.44 no.2
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    • pp.116-121
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    • 2001
  • The compositions of essential oils isolated from the leaves and fruits of Chamaecyparis obtusa (Sieb. et Zucc). Endl. and Chamaecyparis pisifera (Sieb. et Zucc.) Endl. were analyzed through GC and GC-MS. The oil yields were 0.83% (as fresh weight) and 1.36% in the leaves and the fruits of C. obtusa, and were 0.92% and 1.28% in those of C. pisifera, respectively. More than 90 components were identified, including high contents of monoterpenoids and sesquiterpenoids. Contents of monoteipenoids in the leaf and fruit oils of C. pisifera were higher than in those of C. obutsa. The major constituents in the leaf oil of C. obtusa were sabinene (11.81% as determined through GC peak area), limonene (7.73%), bornyl acetate (6.92%), $borneol+{\alpha}-teirineol$ (15.67%), and elemol (12.82%), and those in the fruit oil were myrcene (8.12%), ${\gamma}-terpinene$(5.91%), p-cymene(7.62%), $borneol+{\alpha}-terpineol$(6.53%) and ${\beta}-caryophyllene$ (23.74%). The major constituents in the leaf oil of C. pisifera were ${\alpha}-pinene$(32.34%), ${\delta}-3-carene$(25.28%), myrcene(11.72%), and bornyl acetate (8.77%), and those in the fruit oil were ${\alpha}-pinene$ (29.38%), ${\delta}-3-carene$(30.27%), myrcene(15.05%), and limonene(8.10%).

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Composition of Free Amino Acids and Essential Oils in Root of Anthriscus sylvestylis (전조 뿌리의 유리 아미노산과 정유 성분 조성)

  • 김상국;권태용;민기군;이승필;최부술;이상철
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.41 no.5
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    • pp.521-525
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    • 1996
  • The study was carried out to find compositions of proximate components, free amino acid, and essential oils from root of Anthriscus sylvestylis. Proximate component contents were 7.69% for protein, 1.74% for fat, 2.44% for fiber, and 3.76% for ash. Extract content was 27.68% in fresh root. The compositions of free amino acids consisted 16 kinds. Phenylalanine content was the highest in composition of free amino acids. The essential oils of the root of Anthriscus sylvestylis was examined. $\alpha$-pinene, campreol, ,$\beta$-pinene, sabinene, myrcene, phellandrene, $\alpha$-terpinolene, d-limone, ${\gamma}$-terpinene, p-cymene, $\alpha$-terpinolene, carboxaldehyde, 3-cyc1ohexen-l-carboxaldehyde, 2-nonenal, isobornyl acetate, 4-terpineol, $\beta$-bisabolene, cis-piperitol, p-cymen-8-ol, BHT, methyl eugenol and 2-methoxy-4-vinyl-phenol were identified from the diethylether layers. Recovery yield of essential oils of Anthriscus sylvestylis of root was 0.58%. As a result, it was considered that the plant is worthy of cultivating as spice and medicinal crops.

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Current Status and Prospects of Quality Evaluation in Perilla (들깨 품질평가 현황과 전망)

  • 이봉호;류수노;곽태순
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.47
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    • pp.150-162
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    • 2002
  • Perilla, Perilla frutescens. (L.) Britton, is a traditional oil seed crops grown in Korea. The seeds and seed oil is used for edible and some industrial sectors. The seeds of perilla contains 35-54% of a drying oil which is similar to the linseed oil. The fatty acids of seed oil is composed with linolenic acid, linoleic acid, and oleic acid. The majority of fatty acids of the oil is $\alpha$-linolenic acid proportioned 51-71% of the oil. This high linolenic acid makes it unstable of the oil and owing to the fast oxidation. Therefore, the plant breeders are challenges to develope a new varieties with low linolenic acid for edlible oil and high linolenic acid for industrial uses. Perilla foliage is also used as a potherb. The green leaves contains a special flavor, perilla aldehyde, and some abundant minerals and vitamins. The vitamin C and $\beta$-carotene is more available than lettuce and crown-daisy of which used for similar potherb and vegetables in traditional Korean food table. The authors are reviewed and discussed on the current status and prospects of the quality evaluations and researches in perilla seeds and leaves to provide and refers the condensed informations on their quality.

Essential Oils in Aerial Parts of Agastache rugosa O. Kuntze. (배초향의 정유성분조성)

  • Lee, Jong-Chul;Choi, Young-Hyun;Kim, Young-Hoi
    • Korean Journal of Medicinal Crop Science
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    • v.2 no.2
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    • pp.168-173
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    • 1994
  • Contents of essential oil and its composition in aerial part of Agastache rugosa were investigated. Essential oil was obtained from the dried stems, leaves and flowers by steam distillation and fractionated into hydrocarbon and oxygenated hydrocarbon by silica gel column chromatography. Each isolate or fraction was identified by GC and GC-MS. The contents of essential oil were 0.29% in leaves of Agastache rugosa on dry basis, 0.38% in flowers. Major components were ${\beta}-caryophyllene(59.3%)$, limonene(13.1%), ${\delta}-cadinene(10.7%)$ among 13 kinds of components confirmed in hydrocarbon fraction of essential oil isolated from leaves. Also, major components in oxygenated hydrocarbon fraction were methyl chavicol (79.1%) and cis-3(1-propenyl) phenol(4.5%) among 44 kinds components confirmed. The highest content among the components identified was methyl chavicol in both leaves and flowers. On the other hand, limonene, trans-2-hexenal, 1-octen-3-one, 6, 10, 14- trimethyl pentadecane- 2-one and phytol were detected typically in leaves, but jasmone and ${\rho}-methoxyacetophenone$ were detected mainly in flowers with small quantity.

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Changes of Crude Components and Essential Oil Content by Shading Treatment in Codonopsis lanceolata Trautv (차광처리에 따른 더덕의 조성분과 정유성분 변화)

  • Lee, Seong-Phil;Kim, Sang-Kuk;Chung, Sang-Hwan;Choi, Boo-Sull;Lee, Sang-Chul
    • Korean Journal of Medicinal Crop Science
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    • v.6 no.2
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    • pp.149-153
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    • 1998
  • This experiment was conducted to increase essential oil and aromatic contents on roots of Codonopsis lanceolata Trautv with different shading treatments. Vine length was prolonged by shading treatment compared with non-shading. Fresh root weight in 75% shading treatment was highest with 13g per plant. Crude components such as crude protein, fat and fiber contents decreased, while crude ash increased as shading degree increased. Forty-eight volatile aromatic compounds in the root were identified by GC/MS. Major aromatic compounds were 1-hexanol, cis-3-hexanol, and trans-2-hexanol. In particular, trans-2-hexanol was highest in the 75% shading treatment attaining the 160.32 % area. Conclusively, it was suggested that the 75% shading treatment was to some extent effective to improve the content of essential oil and aromatics in the roots of Codonopsis lanceolata Trautv.

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Changes of Essential Oils from Mentha piperita L. Influenced by Various Cultivation Conditions and Harvesting Time (박하의 재배조건 및 수확시기에 따른 정유성분의 변화)

  • Shin, Kyung-Eun;Park, Hong-Ku
    • Korean Journal of Food Science and Technology
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    • v.26 no.5
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    • pp.512-519
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    • 1994
  • To investigate the effects of cultivation on the aroma characteristics of essential oil of peppermint (Mentha piperita L.), experimental peppermints were cultivated with different treatments of field mulching, soil fertilization, and harvesting time. Aroma characteristics of the different mint oils were analyzed by gas chromatography (GC) and GC/mass spectrometry (MS)/infrared spectroscopy (IR). Growth of peppermint with vinyl muching was faster in the early stage of cultivation, but became almost same in the harvest date. The higher amounts of rainfall and sunshine hour resulted in the better growth of stem and leaf of the peppermint. Contents of menthone in the essential oils from the peppermint cultivated in 1990 increased as harvest date delayed from late June 25 to late July 26 the same period. In 1991 menthone decreased from June 25 to August 5, but l-menthol increased from June 25 to august 5. The results indicated that the sunshing hour affected biosynthesis of the components. Contents of menthofuran increased significantly from early June to late July. The optimum cutting date resulting best oil production was late July 7 in 1991.

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A study on the Qualitative and Quantitative Analysis of Essential oil in Angelicae tenuissimae Radix or Ligustici rhizoma (한국산과 중국산 고본(藁本)중 정유성분의 정성.정량에 관한 연구)

  • Park, Ho-Koon;Lee, Sang-In;Lee, Sun-Hyun;Park, Hyun-Mee;Lee, Jae-Seong
    • Korean Journal of Food Science and Technology
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    • v.29 no.2
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    • pp.189-193
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    • 1997
  • Major separation for the active ingredients and structural identification were performed in order for qualitative and quantitative analysis on Ligustici rhizoma or Angelicae tenuissimae Radix as an oriental herbal medicine for anodyne. The structure, composition and contents of ingredients for essential oil were determined by means of GC/MS. Several Angelicae tenuissimae Radix harvested in Korea were extracted, which has shown the higher crude content compared to that from China. The major component in Angelcae tenuissimae Radix extract was found to be Z-ligustilide (70-80%), which is very different from that in Ligustici rhizoma of which major component is proven to be senkyunolide (39%) with GC/MS.

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Gas chromatographic profiles of rose essential oils: a round-robin test on oil of rose, Chinese Kushui type (Rosa sertata × Rosa rugosa) (장미 정유의 기체 크로마토그래피 분석표: 중국산 쿠스이형 장미유에 대한 재현정밀도 시험)

  • Son, Hyun-Hwa;Lee, Dong-Sun
    • Analytical Science and Technology
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    • v.25 no.4
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    • pp.207-213
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    • 2012
  • Analysis of the aroma constituents present in the rose essential oil of Chinese Kushui type (Rosa sertata ${\times}$ Rosa rugosa) by GC-FID and GC-MS was performed independently as an expert for the inter-laboratory round-robin test to verify reproducibility according to the decision of the preliminary meeting of ISO/TC-54 (Shanghai, Sep. 14-15, 2010). Total 179 peaks (using SPB-1 apolar column), 165 peaks (using DB-624 intermediate polar column), and 162 peaks (using Supelcowax-10 polar column) were separated by GC-FID, respectively. Major constituents (over 5%) by GC-FID were ${\beta}$-citronellol (41.6~46.7%), geraniol (9.7~11.0%), and nerol (3.4~4.5%). ${\beta}$-Citronellol peak was overlapped with nerol peak on SPB-1 and DB-624 columns, whereas the two peaks were separated each other on Supelcowax-10 column. Our results were generally consistent with Chinese data (ISO/DIS 25175); however, a peak of phenethyl alcohol separated by using PEG (Supelco wax) column was found at the quite different retention time. Comparative analysis was conducted using Bulgarian rose (Rosa damascena Miller) oil and perfume. Bulgarian rose oil showed rich amounts of characteristic aroma constituents than the essential oil of Chinese Kushui type.

Separation of Limonen from Waste Citrus Peels by Venturi Vacuum Drying and Production of Bioethanol (벤튜리 진공건조에 의한 폐 감귤박으로부터 리모넨 분리 및 바이오 에탄올 생산)

  • Seung-Geon Kim;Ho-Won Lee
    • Applied Chemistry for Engineering
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    • v.35 no.1
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    • pp.42-47
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    • 2024
  • Limonene was separated from waste citrus peels by a vacuum drying process with a venturi, and bioethanol was produced from dried citrus peels. Vacuum drying using venturi was very effective in removing moisture and limonene compared to hot air drying and natural drying. Citrus peels prepared by venturi vacuum drying were the most suitable for ethanol fermentation. The moisture and limonene content of the citrus peels dried for 15 hours were 17.0% and 3.2%, respectively. By venturi vacuum drying, essential oil containing limonene and floral water were obtained, respectively. The amount of essential oil separated by venturi vacuum drying was 4.21 mL essential oil/kg citrus peel, 79.9% of the separated essential oil was limonene.

Effect of Selenium on Internal Quality of Basil (Ocimum basilicum L.) During Storage (Basil 양액재배 시 Selenium 첨가가 저장 중 품질에 미치는 영향)

  • 박권우;김민순;강호민;이문정
    • Journal of Bio-Environment Control
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    • v.9 no.4
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    • pp.193-200
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    • 2000
  • The object of this study is to investigate the quality change of sweet basil grown with selenium(Se) in hydroponic culture. Sweet basil was cultured with 1 fold herb nutrient solution as suggested by European vegetable R & D Center in Belgium. Before three weeks harvest, sodium selenate(N $a_2$Se $O_4$) was supplied to 2 and 4 mg. $L^{-1}$ in the nutrient solution. Sweet basil was stored at 1$0^{\circ}C$ using 40um ceramic film and PET (polyethylene terephalate) for 15 days in modified atmosphere(MA) storage condition. The weight loss of sweet basil was higher in non-treatment compared to Se treatments in both of two films but it was decreased over 5% in PET treatment. Se concentrations in leaf tissues increased in the response to the treated levels of N $a_2$Se $O_4$concentrations, and this tendency was appeared similar results after storage. There was no significant effect of packing materials on volatilization of Se in sweet basil. The total chlorophyll and essential oil content was increased with increasing N $a_2$Se $O_4$concentration in nutrient solution. The amount of volatilization flavor was not higher at N $a_2$Se $O_4$4mg. $L^{-1}$ treatment compare to others during storage. Se content was 112.73 ug. $g^{-1}$ dry mass at 2 mg. $L^{-1}$ treatment before storage and the decrease of Se content was observed by 50% at 15 days after storage. The condition, which N $a_2$Se $O_4$2mg. $L^{-1}$$^{plement}$ in nutrient solution during growth stage and stored with 40um ceramic film on 1$0^{\circ}C$are acceptable for maintaining of sweet basil quality. Moreover it can be a proper Se concentration for human health. Overall, Se treatment in nutrient solution has effect on promoting and maintaining quality of herb during storage life. Also, there was not significant change of essential oil compounds by volatilization of Se.mpounds by volatilization of Se.

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