• Title/Summary/Keyword: Flavor compounds

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Organic Acids, Free Sugars, and Volatile Flavor Compounds by Type of Jerusalem Artichoke (돼지감자의 품종별 유기산, 유리당 및 휘발성 향기성분)

  • Jung, Bok-Mi;Shin, Tai-Sun
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.46 no.7
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    • pp.822-832
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    • 2017
  • This study analyzed contents of organic acids, free sugars, and volatile flavor compounds by type of Jerusalem artichoke (Helianthus tuberosus L.). Organic acids in dried Jerusalem artichoke were mainly composed of malic acid, citric acid, and succinic acid. Sucrose, fructose, and glucose were the major sugar components of dried Jerusalem artichoke. Free sugars were more abundant in the white colored sample than in the purple colored sample. In contrast, purple colored sample contained more organic acids than the white colored one. Volatile compounds in Jerusalem artichoke were investigated using the solid-phase micro-extraction method of gas chromatography/mass spectrometry. A total of 117 volatile compounds were identified in Jerusalem artichoke, and chemical classification was as follows: 5 acids, 13 alcohols, 19 aldehydes, 12 hydrocarbons, 15 ketones, 8 miscellaneous, 27 pyrazines, and 18 terpenes in all samples. Terpene was the most abundant in Jerusalem artichoke, and ${\beta}$-bisabolene was the main component in terpenes. The second most common compound was aldehyde, and hexanal was the highest. Pyrazines were the most abundant in the roasted samples, and 2,5-dimethyl-3-ethylpyrazine was present at the highest level, followed by 2,5-dimethylpyrazine. Compared with purple samples, main compounds contained in white samples were aldehydes and hydrocarbons, whereas the major compounds in purple samples were terpenes and alcohols.

Volatile Hazardous Compounds in Alcoholic Beverages (주류 중 휘발성 유해성분)

  • Chung, Hyun;Yoon, Mi Kyung;Kim, Meehye;Park, Sung-Kug;Lee, Joongoo;Kim, Young-Suk
    • Journal of Applied Biological Chemistry
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    • v.55 no.3
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    • pp.141-148
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    • 2012
  • Recently, concerns about the volatile hazardous compounds including acetaldehyde, methanol, and fusel oils in alcoholic beverages, which cause hangover such as headache and dizziness after consumption, have been raised. The volatile hazardous compounds might also lead to an increased incidence of liver diseases and even cancers with a high consumption of alcoholic beverages. Acetaldehyde is a volatile compound naturally found in alcoholic beverages and used as flavor in many foods. However this is also regarded as possibly being carcinogenic to humans. Furthermore, acetaldehyde with alcoholic consumption is recently classified as Group 1, carcinogenic to humans. On the other hand, methanol is generated from demethoxylation of pectin by pectinolytic enzyme during alcoholic fermentation. Higher alcohols occur naturally in alcoholic beverages as by-products of alcoholic fermentation and are generally regarded as important flavor compounds. In the current study, we reviewed on the health concern, maximum levels, analytical methods, and current levels of hazardous volatile compounds in alcoholic beverages.

Analysis of the Volatile Flavor Compounds Produced during the Growth Stages of the Shiitake Mushrooms (Lentinus edodes)

  • Cho, Duk-Bong;Seo, Hye-Young;Kim, Kyong-Su
    • Preventive Nutrition and Food Science
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    • v.8 no.4
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    • pp.306-314
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    • 2003
  • Volatile flavor components, produced during the young (P-1), immature (P-2), mature (P-3) and old (P-4) growth stages, of shiitake mushrooms (Lentinus edodes), were extracted by simultaneous steam distillation and extraction (SDE), using a mixture of n-pentane and diethyl ether (1:1, v/v) as the extraction solvent. Analyses of the concentrates, by capillary gas chromatography (GC) and gas chromatography-mass spectrometry (GC/MS), led to the identification of 129, 129, 111 and 120 components in the P-1, 2, 3 and 4 stages, respectively. The major volatile compounds were l-octen-3-o1, 3-octanol, 3-octanone and 4-octen-3-one. Ethanol and ethyl acetate were also detected in large amounts. The characteristic volatile compounds found in shiitake mushrooms, such as dimethyl disulfide, dimethyl trisulfide and 1, 2, 4-thiolane, were at low concentrations in all samples. The amount of l-octen-3-o1 decreased as growth progressed, but concentrations of 3-octanone increased. The amount of 4-octen-3-ol decreased from P-1 to P-3, but was at a high concentrations in P-4. The concentration of 3-octanol gradually increased and reached its highest concentration in P-3, but decreased in P-4. The C8-compounds comprised 70.91, 64.09, 64.29 and 60.01 % in the P-1, 2, 3 and 4 stages, respectively, so decreased gradually with growth. The S-compounds were found in the highest concentrations in P-3.

Identification of Character-impact Aroma Compounds and Comparisons of Sensory Attributes of Traditional Korean Medicinal Rice Wines Brewed with Functional Herbal Powders or Extracts

  • Lee, Gyu-Hee;Shin, Young;Chang, Yeong-Il;Jeong, Jae-Hong;Chang, Kyu-Seob;O, Man-Jin
    • Preventive Nutrition and Food Science
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    • v.7 no.4
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    • pp.405-410
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    • 2002
  • Rice wine was prepared with medicinal plants or plant extracts to obtain a value added nutritious alcoholic tonics. Powders of ten medicinal plants (PTM) or aqueous extracts prepared from them (ATM) were added during the initial stage of fermentation. Aroma compounds of rice wine (control) and wines containing PTM or ATM were isolated by liquid-liquid continuous solvent extraction (LLCSE) and analyzed by gas chromatography-olfactometry and aroma extract dilution analysis (AEDA). Desirable aroma compounds: acetaldehyde (sweet, ethereal), benzaldehyde (sweet, fragrant), ethyl acetate (sweet) and ethyl octanoate (sweet, ethanolic) had the highest log$_3$-flavor dilution (FD) factors in ATM. Results of sensory evaluation demonstrated that intensities of undesirable aroma attributes, such as koji and yeasty notes in control, and raw medicinal herb notes in PTM, were lowest in wine with ATM. Wines made with ATM had the most attractive aroma attributes among the three different traditional Korean medicinal wines.

Development and Metabolite Profiling of Elephant Garlic Vinegar

  • Kim, Jeong-Won;Jeong, Deokyeol;Lee, Youngsuk;Hahn, Dongyup;Nam, Ju-Ock;Lee, Won-Young;Hong, Dong-Hyuck;Kim, Soo Rin;Ha, Yu Shin
    • Journal of Microbiology and Biotechnology
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    • v.28 no.1
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    • pp.50-58
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    • 2018
  • Elephant garlic (Allium ampeloprasum var. ampeloprasum), which belongs to the Alliaceae family along with onion and garlic, has a flavor and shape similar to those of normal garlic but is not true garlic. Additionally, its properties are largely unknown, and its processing and product development have not been reported. In this study, we focused on using elephant garlic to produce a new type of vinegar, for which the market is rapidly growing because of its health benefits. First, we evaluated the effects of elephant garlic addition on acetic acid fermentation of rice wine by Acetobacter pasteurianus. In contrast to normal garlic, for which 2% (w/v) addition completely halted fermentation, addition of elephant garlic enabled slow but successful fermentation of ethanol to acetic acid. Metabolite analysis suggested that sulfur-containing volatile compounds were less abundant in elephant garlic than in normal garlic; these volatile compounds may be responsible for inhibiting acetic acid fermentation. After acetic acid fermentation, vinegar with elephant garlic did not have any sulfur-containing volatile compounds, which could positively contribute to the vinegar flavor. Moreover, the amino acid profile of the vinegar suggested that nutritional and sensory properties were more enhanced following addition of elephant garlic. Thus, elephant garlic may have applications in the development of a new vinegar product with improved flavor and quality and potential health benefits.

Effect of Caponization on Muscle Composition, Shear Value, ATP Related Compounds and Taste Appraisal in Taiwan Country Chicken Cockerels

  • Lin, Cheng-Yung;Lin, Liang-Chuan;Hsu, Jenn-Chung
    • Asian-Australasian Journal of Animal Sciences
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    • v.24 no.7
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    • pp.1026-1030
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    • 2011
  • An experiment was conducted to determine the effects of caponization on the muscle composition, ATP-related compounds, the shear values, the taste panel scores and the muscle fiber areas of Taiwan country chicken cockerels. At 10 wks of age, cockerels were divided into two groups: caponized and untreated. Birds were fed grower and finisher diets ad libitum in an eighteen-week experimental period. Results showed that capons contained significantly greater muscle fat content, less breast and thigh muscle moisture content, shear value and muscle fiber area (p<0.05) than those of intact birds. However, neither treatment groups differed significantly (p>0.05) in breast and thigh muscle protein content. Compared with the intact birds, the capons contained significantly (p<0.05) less muscle ash content in the breasts, but did not differ significantly (p>0.05) in thigh muscle ash content. The breast muscle IMP and ATP+ADP+AMP+IMP contents in the intact birds were significantly (p<0.05) higher than those in the capons. The intact birds had significantly (p<0.05) higher ATP and AMP contents than did the capons as well as significantly (p<0.05) less ADP and inosine (HxR) contents in the thigh and breast muscles. The Hypoxanthine (Hx) content of the thighs in the intact birds was significantly (p<0.05) higher than that in the capons; however, there was an adverse effect on the breast muscle Hx content. The breast muscle K value in the intact birds was significantly (p<0.05) lower than that in the capons. The capons produced significantly (p<0.05) higher taste panel scores than did the intact birds for both flavor and juiciness of thigh muscle as well as for flavor and tenderness of breast muscle.

Evaluation of vegetable oil rancidity by headspace gas chromatographic analysis (Headspace 가스크로마토그라피를 이용한 식용유의 산패도 측정)

  • Chun, Ho-Nam;Kim, Ze-Uook
    • Applied Biological Chemistry
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    • v.35 no.1
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    • pp.36-41
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    • 1992
  • Several commercial cottonseed, corn and rapeseed oils were stored at $60^{\circ}C\;and\;70^{\circ}C$ with daily exposure of fluorescent light for 12 hours and evaluated their rancidity by headspace gas chromatographic analysis of pentanal and hexanal. The data of gas chromatographic analysis was compared with organoleptic flavor evaluation. For headspace gas chromatographic analysis, the volatile compounds were recovered by porous polymer trap and flushed into a fused silica capillary column at $250^{\circ}C$. Twenty-three GC peaks were identified on the basis of relative retention time of reference compounds and gas chromatography-mass spectrometry. The results showed that the contents of pentanal and hexanal were linearly increased during storage. A very simple linear relationship was found between organoleptic flavor scores and amounts of two volatile compounds with very high correlation coefficient. This results suggested the possible implication of pentanal and hexanal as an quality index for rancidity evaluation of cottonseed, corn and rapeseed oils.

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Flavor Compounds and Storage Stability of Essential Oil from Garlic Distillation (마늘 정유물의 향기성분 및 저장 안정성)

  • Jo, Kil-Suk;Kim, Hyun-Ku;Ha, Jae-Ho;Park, Moo-Hyun;Shin, Hyo-Sun
    • Korean Journal of Food Science and Technology
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    • v.22 no.7
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    • pp.840-845
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    • 1990
  • An attempt was made in this study to analyze flavor compounds and investigate storage stability of essential oil from garlic distillation. Optimum ratio of solvent between pentane and dichloromethane to get essential oil from garlic distillation was 2 to 1. The yield of essential oil was 0.35%(w/w) in ground garlic(${\phi}\;0.8mm$) and 0.07%(w/w) in whole garlic. From garlic essential oil six components : dimethyl sulfide, diallyl sulfide, methyl-1-propenyl disulfide, diallyl disulfide, allyl methyl sulfide and diallyl trisulfide were identified with GC and GC/MS, and diallyl trisulfide, diallyl disulfide and allyl mothyl sulfide were found to be major volatile components. Quality deterioration of garlic essential oil hardly occurred during storage for 60 days, at $5^{\circ}C$ and $25^{\circ}C$.

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