• 제목/요약/키워드: $\alpha$-Limonene

검색결과 155건 처리시간 0.025초

한국특산 섬오갈피나무 및 지리산오갈피나무의 정유성분 GC/MS 분석 (GC/MS Analysis of Volatile Constituents from Endemic Acanthopanax koreanum and A. chiisanensis in Korea)

  • 임순성;이연실;정상훈;박준언;조선행;신국현;이상현
    • 한국약용작물학회지
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    • 제16권2호
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    • pp.86-93
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    • 2008
  • 한국특산 섬오갈피나무 및 지리산오갈피나무의 잎과 줄기에서 추출한 주요 정유성분으로, 섬오갈피나무의 경우에는 ${\delta}-3-carene$ (31.34%), l-limonene (17.01%), ${\beta}-elemene$ (4.53%), trans-p-menth-2-ene-1,8-diol (3.13%), 1,8-cineole (4.73%), 1-dodecen-3-yne (2.64%), (Z)-3,7-dimethyl-1,3,6-octatriene (3.21%), 지리산오갈피나무의 경우에는 ${delta}-3-carene$ (14.78%), limonene (7.24%), t-ocimene (7.22%), ${\alpha}-terpinolene$ (8.76%), ${gamma}-elemene$ (4.32%), ${\beta}-selinene$ (7.72%), veridifloral (3.25%), dodecane (2.44%) 등의 성분함량이 높음을 알 수 있었다. 특히 ${\delta}-3-carene$는 섬오갈피나무 및 지리산오갈피나무에서 가장 높은 함량을 나타내었다.

흡착튜브 - 열탈착 정량분석 기법에 기반한 과일시료로부터 자연적 휘발성유기화합물의 배출특성 연구 (Biogenic Volatile Organic Compounds (BVOC) Emissions from Fruit Samples Based on Sorbent Tube Sampling and Thermal Desorption (ST-TD) Analysis)

  • 안정현;김기현
    • 한국대기환경학회지
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    • 제29권6호
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    • pp.757-772
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    • 2013
  • In this study, a combination of sorbent tube (ST)-thermal desorption (TD)-gas chromatography (GC)-mass spectrometry (MS) was used for quantitative analysis of liquid phase standards of 10 BVOC ((1) (+)-${\alpha}$-pinene, (2) (+)-${\beta}$-pinene, (3) ${\alpha}$-phellandrene, (4) (+)-3-carene, (5) ${\alpha}$-terpinene, (6) p-cymene, (7) (R)-(+)-limonene, (8) ${\gamma}$- terpinene, (9) myrcene, and (10) camphene). The results of BVOC calibration yielded comparatively stable pattern with response factor (RF) of 23,560~50,363 and coefficient of determination ($R^2$) of 0.9911~0.9973. The method detection limit (MDL) of BVOC was estimated at 0.03~0.06 ng with the reproducibility of 1.30~5.13% (in terms of relative standard error (RSE)). Emissions of BVOC were measured from four types of fruit samples ((1) tangerine (TO), (2) tangerine peel (TX), (3) strawberry (SO), and (4) sepals of strawberry (SX)). The sum of BVOC flux (${\sum}flux$ (BVOC) in ng/hr/g) for each sample was seen on the descending order of (1) TX=291,614, (2) TO=2,190, (3) SO=1,414, and (4) SX=2,093. If the results are compared between the individual components, the highest flux was seen from (R)-(+)-limonene (265,395 ng/hr/g) from TX sample.

한국산 감귤쥬스의 향기성분 (Analysis of the Aroma Constituents of Korean mandarin (Citrus reticula) and Orange Juices by Capillary GC and GC/MS)

  • 이현유;허우덕;신동화;정동효
    • 한국식품과학회지
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    • 제19권4호
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    • pp.346-354
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    • 1987
  • 국내 mandarin감귤중 만생종으로 대표적인 임온주 및 청도품종과 valencia sweet orange의 향기성분을 capillary GC와 GC/MS에 의해 분석하여 mandarin으로부터 탄화수소류 11종, 알코올류 10종, 알데하이드류 4종, 에스테르 1종, 기타 5종등 31종을 확인 하였으며, sweet orange에서는 탄화수소류 12종, 알코올류 11종, 알데하이드류 8종, 에스테르 1종, 기타 5종등 37종을 확인 하였다. 이들 중 limonene이 62.63, 88.56%로 대부분을 차지하고 있으며 sweet orange에 23.93%나 많이 함유하고 있다. 이외 mandarin에는 octanal, terpineol, styrene, d-citronellol, farnesol, ${\alpha}-pinene$, ${\alpha}-terpinene$, e-cadiene, citronellal, cis-carveol등이 있고 sweet orange에는 myrcene, elemene, decanol, terpineol, terpinolene, linalool, d-citronell등이 있음을 확인하였다.

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한국산(韓국産) 유자의 향기성분(香氣成分) (Aroma Components in Korean Citron (Citrus medica))

  • 이현유;김영명;신동화;선봉규
    • 한국식품과학회지
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    • 제19권4호
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    • pp.361-365
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    • 1987
  • 유자의 이용성 확대를 위하여 유자원료와 유자차의 이화학적 특성, 향기성분 및 유자씨의 지방산조성을 분석하였다. 유자의 평균충량은 196g으로 이중 과즙이 18.8%, 씨 16.3%, 껍질 46.6%이고 과육이 28.3%였다. 유자원료의 당도는 $8.8^{\circ}\;Bx$, 산도 2.1%로 당산비율은 4.2이었고 유자차는 당도 $45^{\circ}\;Bx$, 산도 0.9%였다. 유자에는 fructose, glucose, sucrose가 각각 1.17%, 1.01%, 0.93% 함유되어 있으며 유자차에는 4.46%, 5.53%, 3.27%였다. 유자씨의 성분은 조지방 34.2%, 조단백 15.5% 함유되어 있고, 지방산은 palmitic acid 21.6%, stearic 3.1%, oleic 35.2%, linoleic 37.6%, linolenic이 2.6%였다. 유자의 향기성분은 limonene이 72.4%로 가장 많았으며 탄화수소류 17종, 알코올류 4종, 알데하이드 1종, 기타 6종을 포함 28종을 확인하였다.

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곰취와 한대리곰취 정유의 화학적 성분 (Chemical Composition of the Essential Oils from Ligularia fischeri and Ligularia fischeri var. spiciformis)

  • 최향숙
    • 한국식품영양학회지
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    • 제32권4호
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    • pp.284-293
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    • 2019
  • This study investigated the volatile flavor composition of essential oils from Ligularia fischeri and Ligularia fischeri var. spiciformis. The essential oils obtained from the plants were analyzed by gas chromatography (GC) and GC-mass spectrometry (GC-MS). 99.63% volatile flavor compounds were identified in the essential oil from the L. fischeri. The major compounds were (E)-3-hexenol (30.73%), longiverbenone (13.23%), viridiflorol (12.39%), ${\gamma}$-muurolene (7.32%), limonene (6.12%), and caryophyllene (${\beta}-4.24%$). 99.76% volatile flavor compounds were identified in the essential oil from the L. fischeri var. spiciformis. The major compounds were ledol (42.81%), (E)-15-heptadecenoic acid (33.91%), ${\beta}$-bisabolol (3.23%), viridiflorol (3.08%), and cis-${\alpha}$-farnesene (2.60%). Although the two plants are very similar, the chemical composition of the essential oils was significantly different in quality and quantity. In the case of L. fischeri., it has high contents of monoterpene and sesquiterpene. (E)-3-hexenol, longiverbenone, ${\alpha}$-phellandrene, and ${\alpha}$-myrcene were regarded as the characteristic odorants of L. fischeri, but they were not identified in L. fischeri var. spiciformis. Ledo, (E)-15-heptadecenoic acid, and ${\beta}$-bisabolol were regarded as the characteristic odorants of L. fischeri var. spiciformis, but they were not identified in L. fischeri. The ratio of limonene, ${\gamma}$-muurolene and viridiflorol can be used as an indicator to distinguish between these two plants.

건생강에 함유된 키랄성 향기성분의 이성질체 조성 분석 (Analysis of Enantiomeric Composition of Chiral Flavor Components from Dried Ginger (Zingiber afficinale Roscoe))

  • 서혜영;노기미;심성례;류근영;한규재;라젠드라 게왈리;김경수
    • 한국식품영양과학회지
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    • 제35권7호
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    • pp.874-880
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    • 2006
  • 건생강 제품의 진위판별을 위한 기초자료를 제공하기 위하여 건조된 생강으로부터 휘발성 향기성분을 추출하여 향기특성을 분석하고, MDGC/MS에 의해 키랄성 휘발성분의 enantiomeric composition을 분석하였다. 건생강에서 총 57종을 동정하였으며 주요 휘발성 향기성분은 zingiberene, ${\beta}-sesquiphellandrene$, ${\beta}-bisabolene$, (E,E)-${\alpha}-farnesene$${\alpha}-curcumene$이었다. 건생강에 함유된 키랄성 향기성분 중에서 enaniomeric composition을 측정하기 위해 선택된 키랄화합물 중 ${\alpha}-pinene$ 및 nerolidol은 높은 enantiomeric purity(>96%)로 검출되었으며, ${\beta}-pinene$은 (R)-enantiomer만이 검출되어 특이적이었다. ${\alpha}-Terpineol$은 (R)-enantiomer가 72%로 높게 나타났으며 linalool과 4-terpineol은 두 이성질체가 혼합된 것으로 나타났다. Limonene의 enantiomeric excess(ee, %)는 17.2%로 (S)-enantiomer가 주요 이성질체이었다. 따라서 이러한 키랄성 향기성분의 enantiomeric composition은 건생강의 진위평가를 위한 변수로 사용될 수 있을 것으로 생각된다.

소나무 잎과 가지의 정유와 그 성분들의 항산화 및 항노화 작용 (Anti-oxidant and Anti-aging Activities of Essential Oils of Pinus densiflora Needles and Twigs)

  • 김연정;조봉재;고명수;정재민;김희래;송호선;이지윤;심상수;김창종
    • 약학회지
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    • 제54권4호
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    • pp.215-225
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    • 2010
  • To investigate effects of pine essential oil isolated by steam distillation from Pinus densiflora needles (PN) and twigs (PT) on anti-oxidant and anti-aging activities, the experiments were carried out to determine anti-oxidant and antiaging activities on DPPH radical scavenging activity, NBT/xanthine oxidase-superoxide scavenging activity, silica-induced intracellular $H_2O_2$ and hydroxyl radical generation in RAW264.7 cells, hyaluronidase and elastase activities in vitro. Essential oil of PN and PT were contained 0.225 and 0.176 (w/v) %, respectively. PN was contained with 30 kinds of essential oil and its major constituent is $\alpha$-pinene (21.5%). Further PT was contained with 40 kinds of essential oil and its major constituent is $\beta$-pinene (22.4%) in GC/MS assay. Other essential oils of PN were $\beta$-pinene, camphene, myrcene, limonene, terpinolene, $\alpha$-terpineol, bornyl acetate, $\alpha$-copaene, caryophellene and humulene and PT were $\alpha$-pinene, camphene, phellandrene, limonene, terpinolene, $\alpha$-terpineol, bornyl acetate, $\alpha$-copaene, caryophellene and humulene. The essential oil of PT have more active than that of PN in anti-oxidant activity which has significant DPPH radical and superoxide scavenging activity, and significant inhibitory activities on silica-induced intracellular $H_2O_2$ and hydroxyl radical generation, as well as, significantly inhibited elastase and hyaluronidase activities. Further, phellandrene, myrcene and $\alpha$-pinene have DPPH radical and superoxide scavenging activities, $\beta$-pinene, terpinolene, myrcene and phellandrene inhibited silica-induced intracellular $H_2O_2$ and hydroxyl radical generations. And also phellandrene and $\beta$-pinene inhibited hyaluronidase and elastase activities. In conclusion, the essential oils isolated from PN and PT have anti-oxidant and anti-aging activities.

한국산인삼성분(韓國産人蔘成分)에 관(關)한 연구(硏究)(II) -인삼정유의 구성성분에 대하여- (Studies on the components of Korean ginseng (II) -On the Composition of Ginseng Essential oils-)

  • 정보섭
    • 생약학회지
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    • 제7권1호
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    • pp.41-45
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    • 1976
  • The ether extract of the dried powdered roots of Korean ginseng was fractionated by column chromatography. Limonene, terpineol, eucalyptol, ${\alpha}$-phellanderene and citral were identified in the essential oil fraction of the ether extract by TLC and GLC.

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곰취(Ligularia fischeri)와 한대리곰취(Ligularia fischeri var. spicifoprmis) 정유의 향취 및 향기성분 비교 (Comparison of Fragrance and Chemical Composition of Essential Oils in Gom-chewi (Ligularia fischeri) and Handaeri Gom-chewi (Ligularia fischeri var. spicifoprmis))

  • 연보람;조해미;윤미선;주진우;정지욱;박유화;김성문
    • 한국식품영양과학회지
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    • 제41권12호
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    • pp.1758-1763
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    • 2012
  • 본 연구의 목적은 곰취(Ligularia fischeri)와 한대리곰취(Ligularia fischeri var. spicifoprmis) 정유의 향취 및 화학성분을 비교하는데 있다. 곰취와 한대리곰취의 정유 함량은 각각 0.12%와 0.04%였으며, 역치수준은 각각 0.01%와 0.1%였다. 향수개발전문가에 의해 평가된 곰취 정유의 향취는 citrus, coniferous, green, oily, smoky, wet하였던 반면 한대리곰취 정유의 향취는 balsam, earthy, oily, wet하여 매우 상이하였다. 곰취 정유에는 총 19종의 화학성분이 검출되었는데 탄화수소가 14종(75%), 알코올이 4종(20%), 아세테이트가 1종(5%)이었으며, 주된 화학성분은 L-${\beta}$-pinene(36.02%), D-limonene(25.64%), ${\alpha}$-pinene(24.85%), ${\beta}$-phellandrene(5.39%), 3-carene(3.77%), ${\alpha}$-phellandrene(2.05%)이었다. 한대리곰취 정유에는 총 25종의 화학성분이 검출되었는데 탄화수소 17종(68%), 알코올 4종(16%), 아세테이트 3종(12%), 질소화합물 1종(4%)이었으며, 주된 화학성분은 D-limonene(39.80%), L-${\beta}$-pinene(35.43%) ${\alpha}$-pinene(11.94%), 3-carene(3.70%), ${\beta}$-cubebene(3.51%), ${\beta}$-phellandrene(2.38%)이었다. 한대리곰취 정유에서는 ${\rho}$-cymene, ${\gamma}$-muurolene, ${\gamma}$-cadinene, germacrene D, ingol 12-acetate, butyl 9,12,15-octadecatriene과 nimorazole이 미량 검출되었으나, 곰취 정유에서는 이러한 화학성분들이 검출되지 않았다. 본 연구의 결과 각각 독특한 향취를 갖는 곰취와 한대리곰취 정유는 향장산업제품 개발을 위한 소재로 활용될 수 있을 것이라 판단된다.

Induction of PCB degradative pathway by plant terpenoids as growth substrates or inducers

  • 정경자;김응빈;소재성;고성철
    • 한국생물공학회:학술대회논문집
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    • 한국생물공학회 2000년도 추계학술발표대회 및 bio-venture fair
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    • pp.489-492
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    • 2000
  • The eventual goal of this study is to elucidate roles of plant terpenoids (e.g., cymene, limonene and others) as natural substrates in the cometabolic biodegradation of PCBs and to develop an effective PCB bioremediation technology. The aim of this study was to examine how plant terpenoids, as natural substrates or inducers would affect the biodegradation of PCB congeners. Various PCB degraders that could grow on biphenyl and several terpenoids were tested for their PCB degradation capabilities. The PCB congener degradation activities were first monitored through resting cell assay technique that could detect degradation products of the substrate. The congener removal was also confirmed by concommitant GC analysis. The PCB degraders, Pseudononas sp. P166 and Caynebacterium sp. T104 were found to grow on both biphenyl and terpenoids ((S)-(-) limonene, p-cymene and ${\alpha}-terpinene$) whereas Arthrobacter B1B could not grow on the terpenoids as a sole carbon source. The strain B1B grown on biphenyl showed a good degradation activity for 4,4'-dichlorobiphenyl (DCBp) while strains P166 and T104 gave about 25% of B1B activity. Induction of degradation by cymene, limonene and terpine was hardly detected by the resting cell assay technique. This appeared to be due to relatively lower induction effect of these terpenoids compared with biphenyl. However, a subsequent GC analysis showed that the congener could be removed up to 30% by the resting cells of T104 grown on the terpenoids. This indicates that terpenoids, widely distributed in nature, could be utilized as both growth and/or inducer substrate for PCB biodegradation.

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