• Title/Summary/Keyword: aroma components

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Studies on the aroma components of commercial instant coffee (시판 Instant coffee 중의 향기성분에 관한 연구)

  • 고영수
    • Journal of the Korean Home Economics Association
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    • v.25 no.1
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    • pp.59-67
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    • 1987
  • It these experiments, five kinds of Korean made coffee and three kind of foreign made coffee were analysed using gas chromatography after steam distillation. The results were as following: 1. In general the sample contained light aroma(carbohydrate derivatives), medium aroma(purin derivatives) and heavy aroma(furan dervatives). 2. More light aroma and medium aroma were found in freezing dried coffee than in spraying dried coffee. 3. Korean sample contained lignter aroma than that of foreign ones.

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Comparison of Volatile Aroma Components and Non-volatile Organic Acids in Tobacco Lamina and Stems. (잎담배 엽육과 주맥의 휘발성 정유성분 및 비휘발성 유기산의 비교)

  • 김영회;박준영;양광규;김옥찬
    • Journal of the Korean Society of Tobacco Science
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    • v.8 no.2
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    • pp.51-66
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    • 1986
  • Volatile aroma components, non-volatile organic acids in lamina and stems of flue-cured(NC 2326) and burley ( Burley 21) were analyzed by gas chromatography and mass spectrometry, respectively. Then compositional differences of these components between lamina and stems were discussed. The contents of volatile components were higher in flue-cured than in burley tobacco, and it was also higher in lamina then in stem. The major aroma components in lamina were neophytadiene , nicotine, solanone and benzyl alcohol but those in stems were palmitic acid, neophytadiene, nicotine, solanone and phenyl ethyl acetate. On the other hand, the contents of non-volatile organic acids were higher in burley than in flue-cured tobacco, and these values of burley tobacco were higher in lamina than in stem but flue-cured tobacco were higher in stem than in lamina. The major acids in all the above four tabacco samples were malic, citric, oxalic and linolenic acid.

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Volatile Flavor Components and Sensory Evaluation of Mold Fermented Sausages (곰팡이 발효소시지의 향기성분 분석 및 관능검사)

  • 김창한;고명수;이광형;박상진;김정환;임대석;박우문;유익종;이치호
    • Food Science of Animal Resources
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    • v.18 no.3
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    • pp.255-260
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    • 1998
  • The aroma concentrates from mold fermented sausages were isolated by steam distillation and simultaneous steam-distillation-extraction(SDE). methods. Quantitative estimation of the aroma concentrates in mold fermented sausages was carried out by using GC-MC. Mold fermented sausages were manufactured into two types. The first was manufactured with starter culture containing Lactobacillus plantarum and Staphylococcus carnosus(LP). The second was manufactured with starter culture containing L. curvatus and S. carnosus(LC). The aroma concentrates containing hexanoic acid and 2-butyl-2-octenal were identified in mold fermented sausages immediately after manufacture. After 28 days, the volatile flavor components from LP and LC were determined to be 14 (trimethylsilylester of hexadecanoic acid and 2-methyl-3-octanol, etc.) and 16 substances(hexadecanoic acid and 1-hexadecanol, etc.), respectively. The distribution of aroma concentrates in LP and LC was different, but their panel test placed them in similarity.

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An Implementation of the Olfactory Recognition Contents for Ubiquitous (유비쿼터스를 위한 후각 인식 컨텐츠 구현)

  • Lee, Hyeon Gu;Rho, Yong Wan
    • Journal of Korea Society of Digital Industry and Information Management
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    • v.4 no.3
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    • pp.85-90
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    • 2008
  • Recently, with the sensor technology, research about the electronic nose system which imitated the olfactory organ are being pushed actively. But, in case of general electronic nose system, an aroma is measured at the laboratory space where blocked external environment and is analyzed a part of measured data. In this paper, we propose the system which can measure and recognize an aroma in natural environment. We propose the Entropy algorithm which can detect the sensor reaction section among the continuous detection processing about an aroma. And we implement the aroma recognition system using the PCA(Principal Components Analysis) and K-NN(K-Nearest Neighbor) about the detected aroma. In order to evaluate the performance, we measured the aroma pattern, about 9 aroma oil, 50 times respectively. And we experimented the aroma detection and recognition using this. There was an error of 0.2s in the aroma detection and we get 84.3% recognition rate of the aroma recognition.

Identification of Aroma-Active Compounds in Korean Salt-Fermentaed Fishes by Aroma Extract Dilution Analysis 1. Aroma-Active Components in Salt-Fermented Anchovy on the Market (AEDA법에 의한 한국산 젓갈류의 Aroma-Active 성분의 구명 1. 시판 멸치젓의 Aroma-Active 성분)

  • Cha, Yong-Jun;Kim, Hun;Jang, Sung-Min;Park, Jee-Young
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.28 no.2
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    • pp.312-318
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    • 1999
  • Volatile compounds in salt fermented anchovy on the market were analyzed by vacuum simulta neous distillation solvent extraction/gas chromatography/mass spectrometry/olfactometry(V SDE/ GC/MS/O) and aroma extract dilution anlaysis(AEDA). Predominant odorants(Log3FD$\geq$8) in sample were ethyl methylbutanoate(candy like/sweet) and 2 ethyl 3,5 dimethylpyrazine(nutty/baked potato like). Besides these compounds, 6 odorants such as ethyl 3 methylbutanoate(sweet/floral/ candy like), 3 methylbutanal(dark chocolate like), (Z) 4 heptenal(rancid/fish like), (methylthio) propanal(soy sauce /baked potato like), (E,Z) 2,6 nonadienal(melon /cucumber like) and (E,E) 2,4 decadienal(fatty/cooked soybean like) were potent in odor value of salt fermented anchovy. Seven amino acids having high taste value in sample were glutamic acid, aspartic acid(sour and umami taste), lysine, alanine(sweet), histidine, valine, and methionine(bitter).

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Volatile Aroma Components and Fatty acid in Fruit of Broussonetia Kazinoki Siebold (닥나무 열매( 저실자)의 휘발성 향기성분과 지방산조성에 관한 연구)

  • 윤숙자;변명우;장명숙
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.23 no.1
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    • pp.130-136
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    • 1994
  • Voltaile aroma components and fatty acid in fruit of Broussonetia kazinoki siebold were investigated . The experimental results revealed the presence of 41 volatile components . Forty one compounds , including 4 hydrocarbons(2.45), 7 aldehydes (20%), 3 ketones(1.0%), 7 terpenes(18.05), 8 acids (42%), 4 alcohols (4.2%) and 5 phenols (9.85) were identified. The content of crude lipid was 28.5% . Fatty acid composition were mainly consisted of linoleic (91.61%) and followed by oleic(3.525) , palmitic (3.40%), stearic (0.855) and linolenic acid(0.39%)

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The Effects of Herb Aroma Components on the Reduction of Depression - Focused on University Students -

  • Lee, Min-Hee;Koh, Jae-Won;ChoJo, Tae-Dong
    • Journal of Environmental Science International
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    • v.20 no.4
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    • pp.435-442
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    • 2011
  • In this study, to investigate the effects of herb aroma components, the BDI test was performed with the 124 students of the Youngdong University and the subjects whose score was 16 or higher were selected and allocated to the herb-extracted aroma-treated group and the non-treated group, 27 and 10 students for each group. The BDI and SDS tests were carried out at each stage (before and after the treatment, 10 days later and 30 days later). The result showed that the pre-treatment BDI test result was significantly different from all those of the post-treatment test, and the tests after 10 days and 30 days in the aroma-treated group. In the SDS test, the pre-treatment test result was significantly different from the results of the post-treatment test and the test after 10 days, while it was not significantly different from the result of the test after 30 days. Additionally, to verify whether the change within the group is larger than that by natural recovery or not, ANCOVA was performed with respect to the difference in the pre-treatment test score between the groups depending on whether the treatment was given or not, having the SDS pre-treatment score as the covariate, and the result showed that the post-treatment test scores were significantly different. Thus, it was verified that, if the SDS test score is considered as the depression indicator, the effect of aromatherapy was greater than the change by natural recovery. The difference in the post-treatment test score was analyzed depending on whether the treatment was given or not, having the BDI pre-treatment test score as the control variable, and the result showed that the post-treatment test scores were not significantly different. Based on such a theoretical verification, it is assumed that the nature-friendly treatment method using herb aroma components can be a great help in suppressing depression. Therefore, it is expected that herb aroma components can provide systematic therapeutic effect on the suppression of depression.

Aroma Components of Ookjook Tea (Polygonatum Involucratum Maxim) (옥죽차의 향기성분)

  • Choi, Sung-Hee;Baik, Young-Keun
    • Korean Journal of Food Science and Technology
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    • v.31 no.4
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    • pp.894-898
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    • 1999
  • Aroma components of Ookjook tea made from Polygonatum involucratum Maxim roots were collected and identified. The extraction of aroma compounds was accomplished by a simultaneous distillation and extraction method using a Likens and Nickerson's extraction apparatus. The concentrated extract was analyzed and identified by GC and GC-MS. The most abundant aroma components of this tea were furanic compounds including 2-furfural, 2-methyl-dihydro-3(2H)-furanone, 2-acetylfuran and 5-methylfurfural. These compounds seem to be originated from the thermal degradation of carbohydrates during the roasting process. Alkylpyrazines and acids including propionic acid increased slightly during the period of manufacturing process of Ookjook tea. Furanic compounds originated from the thermal degradation of carbohydrates and alkypyrazines from aminocarbonyl reaction seemed to be the important contributors to the aroma of the Ookjook tea.

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Studies on the Volatile Components of Edible Mushroom (Agaricus Bisporus) of Korea (한국산(韓國産) 식용(食用)버섯의 향기성분(香氣成分)에 관(關)한 연구(硏究)(IV) -양송이버섯의 향기성분(香氣成分)-)

  • Ahn, Jang-Soo;Kim, Sung-Kon;Park, Eun-Sook
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.16 no.4
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    • pp.333-336
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    • 1987
  • The Aroma components analysis of raw and boiled mushroom (Agaricus bisporus) by GC, GC-MS is as follows; 1) The volatile aroma component of raw mushroom was identified as 13 Kinds, ana among them, 4 Kinds of aroma component such as 1-octen-3-ol (73.13%), 2-octenol (7.44%), 3-octanone (3.09%), 3-octanol (1.42%)-consists 85.08% of total aroma component. 2) Meanwhile, the volatile aroma component of toiled one was indentified as 13 Kinds and 5 of them 1-octen-3-ol (68.86%), 2-octenol (8.42%), 3-octanone (3.15%), Benzyl alcohol (3.23%), 3-octanol (1.97%)-consists 86.23% of total aroma component.

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Aroma Components of Chicory (Cichorium intybus L.) Te and Its Model System

  • Park, Sung-Hee
    • Preventive Nutrition and Food Science
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    • v.4 no.2
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    • pp.88-91
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    • 1999
  • Aroma components of tea processed from Korean chicory roots were isolated and identified. The model system of amino-carbonyl reaction was carried out to study the formation mechanism of aroma compounds of chicory tea during manufacturing process. The concentration extracts from chicory tea and model system were analyzed and identified by gas chromatography(GC) and GC-mass spectrometry. Twenty-nine compounds, including pyrazines, furans, acids, alcohols, pyrroles and lactones were isolated and identified in chicory tea. The main compounds were pyrazines including methyl pyrazine, 2,5-dimethyl pyrazine, 2, 6-dimethyl pyrazine, 2-ethyl-6-methyl pyrazine, 2-ethyl-3-methyl pyrazine, thrimethyl pyrazine, 3-ethyl-2-5-dimenthyl pyrazine, 5-ethyl-2-3-dimenthyl pyrazine, and 2-acetyl-3-methy pyrazine and pyrroles including acethl pyrrole and formlyl pyrrole ; and furans including furfural , acetyl furan, 5-methyl furan, 5-methyl furfuralm, and furfuryl alcohol. These pyrazine compounds of a roasted and nutty aroma may be important contributors to the flavor of chicory tea. The aroma concentrate of model system also had a roasted and nutty aroma and the main compounds were methyl pyrazine, 2, 5-dimetyl pyrazine, 2, 6-dimethyl pyrazine and trimethyl pyrazine.

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