• Title/Summary/Keyword: Flavor compounds

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Volatile Flavor Compounds and Sensory Properties of Yakju Fermented with Different Contents of Meoru (Vitis coignetiae) (머루 첨가량을 달리한 약주의 향기성분과 관능적 특성)

  • Choi, Sung-Hee;Kwak, Eun-Jung
    • Journal of the East Asian Society of Dietary Life
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    • v.22 no.5
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    • pp.642-648
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    • 2012
  • In the present study, yakju was developed added with 100~400 g of meoru (Vitis coignetiae). We analyzed the volatile flavor compounds and investigated the sensory properties of meoru yakju. The volatile flavor compounds were isolated from in fusions by Porapak Q column adsorption. The concentrated flavor extract was analyzed and identified by GC (gas chromatography) and GC-MS (gas chromatography-mass spectrometry) analyses. Thirty-five compounds, including five alcohols, nine esters, seven acids, four hydrocarbons, three ketones, and seven other compounds, were identified. The total number and content of volatile flavor compounds in control yakju were the highest, but they decreased as the amount of added meoru increased. On the other hand, yakju containing 200 g of meoru was characterized by the highest content of ester compounds, and it was the most preferred in terms of flavor, color, taste, and over all acceptability. Based on these results, addition of 200 g of meoru to 1,715 g of control yakju was determined to be the optimal condition for making meoru yakju.

Changes in Volatile Flavor Compounds in Red Snow Crab Chionoecetes japonicus Cooker Effluent during Concentration (붉은 대게 가공부산물 농축중의 휘발성 향기성분 변화)

  • Ahn, Jun-Suck;Cho, Woo-Jin;Jeong, Eun-Jeong;Cha, Yong-Jun
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.39 no.6
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    • pp.437-440
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    • 2006
  • To develop natural crab-like flavorants from red snow crab Chionoecetes japonicus cooker effluent (RSCCE), the flavor was analyzed during the concentration of RSCCE up to $40^{\circ}Brix$. Using solid phase microextraction (SPME)/gas chromatography (GC)/mass selective detection (MSD), 30 volatile flavor compounds were detected in four RSCCE samples (10, 20, 30, and $40^{\circ}Brix$). These comprised 12 aromatic compounds, 5 N-containing compounds, 2 5-containing compounds, 2 alcohols, 2 aldehydes, and 7 miscellaneous compounds. The amounts of all volatiles except alcohols and aldehydes increased significantly with the concentration (p<0.05). Of the volatiles detected, the most abundant was a dimethyl trisulfide with an odor like onion/cooked cabbage. Of the N-containing compounds (nutty, roasted peanut-like odor), 2-ethyl-5-methylpyrazine was the most abundant, followed by 2,5-dimethylpyrazine and 2-methyl-5-isopropylpyrazine in that order (p<0.05). The N- and S-containing compounds with characteristic odors detected in this experiment are thought to play a positive role in RSCCE during concentration.

Comparison of Analytical Methods for Volatile Flavor Compounds in Leaf of Perilla frutescens

  • Kim, Kwan-Su;Ryu, Su-Noh;Song, Ji-Sook;Bang, Jin-Ki;Lee, Bong-Ho
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.44 no.2
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    • pp.154-158
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    • 1999
  • Volatile flavor compounds from perilla leaves were extracted and analyzed with different methods, head-space analysis (HS), simultaneous steam distillation and extraction (SDE) , and solvent extraction (SE), and to compare their efficiencies for quick analysis. Over 30 volatile compounds were isolated and 28 compounds were identified by GC/MSD. Major compound was perillaketone showing the compositions of which were 92% in SDE method, 86% in headspace analysis, and 62% in solvent extraction method. For quick evaluation of leaf flavor in perilla, it was desirable because the headspace analysis method had a shorter analyzing time and smaller sample amount than the other methods.

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Yogurt Flavor Compounds and Analytical Techniques (Yogurt의 향미성분과 분석기술)

  • Chang, Eun-Jung;Kwak, Hae-Soo
    • Journal of Dairy Science and Biotechnology
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    • v.18 no.1
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    • pp.61-72
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    • 2000
  • Consumers primarily consider flavor when they take yogurt. Recent researches on yogurt flavor productron its analytical technique have been extensively developed. These studies have provided a better understanding on the role of starter culture microorganisms on flavor formation and degradation. Yogurt volatile flavor compounds produced by the lactic cultures include acetaldehyde, diacetyl, ethanol and organic acid. Among them, acetaldehyde is recognized as a principal flavor component. since yogurt contains a delicate and low intense flavor, mild sample isolation techniques and sensitive identification means might be used. This paper attempts to discuss recent findings in yogurt flavor and to describe the application of yogurt flavor separation techniques. The section on practical aspects of culture selection based on flavor compound production and flavor analysis is also included.

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Volatile Flavor Compounds in Pen Shell By-product Hydrolysate (키조개 부산물 단백질 가수분해물의 휘발성 향기성분에 관한 연구)

  • Cha, Yong-Jun;Kim, Eun-Jeong
    • Korean Journal of Food Science and Technology
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    • v.27 no.6
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    • pp.964-971
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    • 1995
  • Volatile flavor compounds and free amino acids in untreated and hydrolysate pen shell by-product produced with APL 440 protease were compared by vacuum simultaneous steam distillation-solvent extraction/gas chromatography/mass spectrometry. A total of 109 volatile flavor compounds were detected in hydrolysate (65 compounds) or the 109 volatile flavor compounds were detected in untreated pen shell by-product (88). These compounds were composed of aldehydes(16), ketones(17), alcohols(31), nitrogen containing compounds (16), aromatic hydrocarbon compounds(8), esters(3), and miscellaneous compounds (17). Levels of aldehydes and aromatic hydrocarbons decreased after hydrolysis, whereas levels of nitrogen containing compounds increased 3 times than in untreated pen shell by-product. Taurine, known to be having a physiological function, was accounted for 31.25% of total amino acids in hydrolysate.

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Volatile Flavor Compounds in Omandungi (Styela plicata)-Doenjang (Soybean paste) Soups and stew by Cooking (가열조리한 오만둥이된장찌개의 휘발성 향기성분)

  • Jeong, Eun-Jeong;Cho, Woo-Jin;Cha, Yong-Jun
    • Journal of Life Science
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    • v.18 no.11
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    • pp.1570-1577
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    • 2008
  • For useful basic data in developing of Omandungi (Styela plicata) processed products, volatile flavor compounds were analyzed to identify the key reaction flavor compounds induced through heat treatment ($100^{\circ}C$, 10 min) in Omandungi -Doenjang (soybean paste) soups and stew. A total of 128 flavor compounds were identified and composed mainly of esters (16), aromatic compounds (14), N-containing compounds (11), alcohols (34), terpenes (5), carbonyl compounds (23), furans (4), hydrocarbons (13), acids (5) and miscellaneous compounds (3). Three groups including aromatic compounds, alcohols and acids were detected in high amounts in Doenjang. However, the levels of C4-C6 series acids (i.e., pentanoic acid having off-flavor) decreased by cooking ($100^{\circ}C$, 10 min), whereas that of furans (i.e., furfural) as heat induced compounds increased 2 times. Alcohols were detected the major group in Omandungi and followed by hydrocarbons and aromatic compounds in that order. In particular, 3 compounds including decenol, 2,6-dimethylheptanol and octanol were the major alcohols of Omandungi. By cooking, the compounds known heat-induced compound, 2-acetyl-2-thiazoline and benzothiazole, were newly formed in Omandungi-Doenjang stew. The alcohols (i.e., decenol, 2,6-dimethylheptanol), hydrocarbons and aromatic compounds derived from Omandungi were supposed to enhance a seafood-like flavor in Omandungi-Doenjang stew.

Studies on Volatile Compounds in Lipoxygenase Deficient-soybean and Its Products (Lipoxygenase 결핍 콩과 그 가공품의 휘발성 성분 분석)

  • 김수희;이양봉;황인경
    • The Korean Journal of Food And Nutrition
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    • v.13 no.2
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    • pp.118-124
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    • 2000
  • Lipoxygenase(LOX) in soybeans is responsible for beany flavors which limit the wide utilization of soybeans to foods. This study was conducted to analyze beany flavor compounds of the normal Hwagkeumkong and LOX-deficient soybean cultivars, Jinpumkong which lacks L-2, L-3, and Jinpumkong 2 which lacks all L-1, L-2, L-3. Using the combination of dynamic headspace sampling and gas chromatography-mass selective detector(DHS-GC-MSD) for analyzing volatile compounds, hexanal and hexanol were identified in whole soy flour of all three soybena cultivars. Hwangkeumkong had more volatile compounds than Jinpumkong and Jinpumkong 2 in defatted soy flour. Hexanal and acetic acid were identified in soy milk of all three soybean cultivars but Hwangkeumkong had more volatile compounds than Jinpumkong 2. From the analysis with a static headspace sampling(SHS) and GC-MSD the major compounds were hexanal, acetic acid, 1-hexanol, and 1-octen-3-ol. The content of acetic acid was similar among three cultivars. But contents of hexanal and pentanal in Jinpumkong 2 were less than that of Jinpumkong and Hwangkeumkong. Using GC-FID, Jinpumkong 2 had less contents of hexanal and pentanol than Hwangkeumkong in whole soy flour and defatted soy flour. In this study, LOX-deficient soybean cultivars showed less hexanal, pentanol and other compounds than the normal Hwangkeumkong. However quite amount of beany flavor compounds were identified in Jinpumkong and Jinpumkong 2. So further studies are required to characterize LOX isozymes, to understand the mechanisms of beany flavors production, and to develop some other methods for removing beany flavor.

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Changes in volatile flavor compounds of radish fermented by lactic acid bacteria (유산균 발효에 따른 무 발효물의 휘발성 향기 성분 변화)

  • Kim, Boram;Cho, Youn-Jeung;Kim, Moonseok;Hurh, Byungserk;Baek, Hyung-Hee
    • Korean Journal of Food Science and Technology
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    • v.51 no.4
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    • pp.324-329
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    • 2019
  • Volatile flavor compounds of radish fermented by lactic acid bacteria were extracted using solid-phase microextraction (SPME) and analyzed by gas chromatography-mass spectrometry (GC-MS). A total of 45 volatile flavor compounds were identified. The volatile flavor compounds in unfermented radish mostly consisted of sulfur-containing compounds (95.85%) and aldehydes (2.61%). While the composition ratio of volatile flavor compounds in radish fermented for two days changed to sulfur-containing compounds (75.53%) and acids (11.12%). As the fermentation period was increased, the contents of dimethyl disulfide, dimethyl trisulfide, diallyl sulfide, diallyl disulfide, and diallyl trisulfide, which have unique garlic and scallion flavor, decreased, and acetic acid and 1-hexanol, which have a sour and fruity flavor, increased. These changes in volatile flavor compounds seemed to have affected the flavor characteristics of fermented radish.

Aroma Characterization of Roasted Bulgogi Reaction Flavor Manufactured by a High-temperature Reaction Apparatus (고온반응기로 제조한 구운 불고기 반응향의 향미특성)

  • Seo, Won-Ho;Kim, Young-Kwon;Jang, Seong-Ho;Baek, Hyung Hee
    • Korean Journal of Food Science and Technology
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    • v.47 no.2
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    • pp.176-183
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    • 2015
  • To characterize the aroma properties of roasted bulgogi reaction flavor obtained by using a high-temperature reaction apparatus, the volatile flavor and aroma-active compounds were analyzed using simultaneous steam distillation and solvent extraction (SDE)-gas chromatography-mass spectrometry-olfactometry (GC-MS-O). One hundred five volatile compounds were detected in roasted bulgogi reaction flavor using GC-MS. Out of these compounds, furfural was the most abundant volatile compound, followed in order of abundance by 5-methyl furfural, phenylacetaldehyde, and nonanal. Of the volatile compounds identified in roasted bulgogi reaction flavor, 33 aroma-active compounds were detected using GC-O. 2,3-Butanedione and furfural were the most intense aroma-active compounds detected. Other relatively intense odorants included hexanal, octanal, nonanal, undecanal, phenylacetaldehyde, 5-methyl furfural, 2,6-dimethyl pyrazine, and dimethyl trisulfide. These were important aroma-active compounds that contributed to the aroma of roasted bulgogi reaction flavor because of their potency and aroma properties. The concentrations of the aroma-active compounds increased as the reaction temperature increased, whereas those of the sulfide compounds decreased.

Volatile Flavor Components in Boiled Snow Crab (Chionoecetes japonicus) and Its Concentrated Cooker Effluent

  • Park, Sung-Hee;Kim, Young-Man;Hyun, Sook-Kyung
    • Preventive Nutrition and Food Science
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    • v.6 no.2
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    • pp.87-90
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    • 2001
  • The volatile flavor components of snow crabs from the Young-duk coast of Korea and their concentrated cooker effluent were isolated by a modified method from Likens and Nickerson, using a simultaneous distillation and extraction apparatus. The concentrated extract was analyzed and identified by gas chromatography and GC-MS. The flavor profile of boiled crab demonstrated that the favorable flavor characteristic of crab involved a seafood-like note, and that of concentrated cooker effluent demonstrated that the weak boiled crab flavor involved a fishy note. The main flavor components of boiled crab were heterocyclic compounds including alkylpyrazines, thizoles and thiolanes, aliphatic ketones including 2-heptanone and nonanone. On the other hand, the main flavor components of cooker effluent were aldehydes including 3-methylbutanal, alipatic ketones including 2-heptanone and alkanes including 2,6,10,14-tetramethyl-pentadecane. Almost all of heterocyclic compounds, which seem to be important contributors to the flavor of boiled crab, were not identified in concentrated cooker effluent. As a result, there may be a need to add the crab flavor components formed through model experiments of Maillard reactions to the concentrated cooker effluent for human consumption.

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