• Title/Summary/Keyword: sugar-alcohol

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Physicochemical Properties of Traditional Liquor with Different Brewing Method of Mit-sool (밑술 담금 방법을 달리한 전통주의 이화학적 특성)

  • Chung, Rak-Won
    • Journal of the Korean Society of Food Culture
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    • v.30 no.3
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    • pp.377-386
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    • 2015
  • The purpose of this research was to appraise physicochemical properties by utilizing different Mit-sool, Juk, Seolgi-tteok, and Godubap, to produce traditional liquor. In all experimental plots, pH and amino acidity tended to increase with duration of fermentation. Titratable acidity displayed a very high number on the second day but then tended to decrease as fermentation progressed. Sugar contents were highest on the fourth day and tended to decrease with time. Alcohol content increased sharply at the initial stage of fermentation and increased gradually. On the 15th day, traditional liquor made with Godubap recorded the highest alcohol content. Common free sugar components were glucose and sorbitol. Common free organic acid components were lactic, succinic, citric, tartaric, malic, and acetic acids. Volatile flavor compounds were six alcohols, five esters, three aldehydes, and two ketones. Regarding overall acceptability in the sensory evaluation, traditional liquor using Seolgi-tteok as Mit-sool scored the highest. Overall, even though different types of Mit-sool had different physicochemical properties, there were no significant differences in volatile flavor compounds or sensory evaluation scores.

Manufacturing Characteristics of Solid-State Fermentation Distilled Spirits Using Rice Nuruk (Fermented Starter) and Sorghum (쌀누룩과 수수를 사용한 고체발효 증류주의 제조 특성)

  • Shin, J.Y.;Jeong, D.S.;Kang, C.S.;Choi, H.S.
    • Journal of Practical Agriculture & Fisheries Research
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    • v.23 no.1
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    • pp.39-48
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    • 2021
  • In this study, characteristics of solid-state fermentation distilled spirits with nuruk (fermentation starter) and sorghum were investigated. The starch digestion activity was highest in black koji (A. usamii) at 359.15 U/g dry base, white koji (A. luchuensis) at 306.98 and yellow koji (A. oryzae) at 15.31 was followed. The pH of the solid-state fermented mash in yellow, white and black koji showed 5.09, 4.46 and 4.50 respectively with significant differences (p<0.001). The total acid content of white and black koji was 0.73% as citric acid. The alcohol content of mash prepared with yellow, white and black koji was 4.34, 4.24, 3.89% respectively. The contents of reducing sugar showed 3.28, 3.23 and 2.64%. Total sugar were 14.88, 17.84 and 17.60% respectively. The alcohol content of each distillate ranged from 44.3 to 39.9%, and the furfural content in yellow koji was 1.25 times lower than the others.

Physicochemical Properties of Bokbunja Jelly Containing Fermented Sea Tangle Saccharina japonica Powder (유산균 발효다시마(Saccharina japonica)를 첨가한 복분자 젤리의 이화학적 품질특성)

  • Choi, Ji-Won;Lee, Yeon-Ji;Moon, Soo-Kyung;Kim, Yong-Tae
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.55 no.4
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    • pp.408-416
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    • 2022
  • This study investigated the physicochemical properties and physiological activities of jelly prepared from gelatin, sugar, bokbunja extract, and different amounts (0, 0.5, 1, 2 and 3%) of fermented sea tangle Saccharina japonica powder (FSP). The jelly moisture, pH, and sugar content slightly increased with increasing the FSP content. Hardness, springiness, gumminess, chewiness, and cohesiveness also increased with increasing FSP concentration. Jelly antioxidant activity did not change significantly with increasing FSP. In contrast, alcohol dehydrogenase and aldehyde dehydrogenase activities in the jellies increased significantly with increasing FSP concentration. β-secretase inhibitory activity in jellies also increased with increasing FSP concentration. Jellies containing 0.5 or 1% FSP achieved the highest overall sensory acceptance scores. Taken together, these data indicate that addition of FSP to jelly appears to improve its quality and physiological activities.

Studies on the Alcohol Fermentation with Extruded Tapioca Starch (고온.고압하에서 압출시킨 Tapioca 전분을 이용한 알코올 발효법에 관한 연구)

  • 문항식;권호정;오평수
    • Microbiology and Biotechnology Letters
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    • v.16 no.3
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    • pp.231-237
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    • 1988
  • Several methods to produce ethanol from tapioca starch were examined. Among four methods tested, alcohol fermentation with extruded tapioca starch was the most effective, which alcohol yield was 460.5 f/ton. After 69hours reaction with Rhizopus sp. glucoamylase, 108.7mg/$m\ell$ of reducing sugar were produced from extruded tapioca and 43.8mg/$m\ell$ from raw tapioca starch. In alcohol fermentation with extruded tapioca, the high concentration of alcohol at early stage prevented bacterial contamination and the fermentation rate was increased due to the high saccharifying power of glucoamylase on the extruded starch, but extrusion temperature had no influence on the fermentability, Scanning electron microscopy showed that the extrusion process changed the structure of tapioca starch granule to more susceptible form to glucoamylase attack than the raw starch. And glucoamylase of Rhizopus sp. had stronger digestion activity on both extruded tapioca and raw tapioca starch than that of Aspergillus usamii.

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Alcohol Fermentation Characteristics of Tapioca Using Raw Starch Enzyme (생전분 분해효소를 이용한 타피오카의 알콜발효 특성)

  • Jeong, Yong-Jin;Baek, Chang-Ho;Woo, Kyoung-Jin;Woo, Seung-Mi;Lee, Oh-Seuk;Ha, Young-Duck
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.31 no.3
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    • pp.405-410
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    • 2002
  • The optimum conditions of the alcohol fermentation with raw tapioca by simultaneous saccharification and alcohol fermentation (SSAF) were studied using raw starch enzyme. The optimum conditions for maximum alcohol production were 0.5% (w/w) of enzyme content, 250% (v/w) of added water content and 96 hr of fermentation time. The alcohol and reducing sugar contents were 11.7% and 306 mg% after 96 hr fermentation, respectively. During the fermentation pH decreased from 6.2 to 4.2 and total acidity increased from 0.11 to 0.43. Alcohol components were detected such as ethanol, methanol, iso-propanol, n-propylalcohol and iso-butylalcohol, besides acetaldehyde. We could construct raw starch fermentation conditions which was 250% (v/w) of added water content and 0.5% (w/w) of enzyme content. However, yield of raw starch alcohol fermentation was lower than that of steaming alcohol fermentation.

Fermentation Characteristics of Some Medicinal Herb Rice Wine (몇가지 약용주의 발효특성)

  • Min, Young-Kyoo;Cho, Jung-Gun
    • Applied Biological Chemistry
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    • v.37 no.3
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    • pp.175-181
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    • 1994
  • Six Korean medicinal herbs, Codonopsis lanceolata Traut (sasam), Platycodon grandiflorium A. De Candolle (gilkyung), Paeonia lactiflora var. trichocarpa Bunge (peony), Angelica gigas Nakai (danggwi), Astragalus membranaceus Bunge (hwangki) and Cnidium officinale Makino (chunkung) were added in brewing Korean traditional rice wine. Fermentation characteristics such as contents of total acid, reducing sugar, total sugar, pH, temperature, and alcohol concentration were investigated every 24 hr during fermentation periods. Changes of fermentation characteristics were remarkable in the initial period $(1{\sim}4\;days)$, slow in the middle $(5{\sim}7\;days)$, and almost unchangeable in the final $(8{\sim}10\;days)$. Total acid content was remarkably increased during the initial period but slowly afterwards. Reducing sugar content, total sugar content, and pH were remarkably decreased during the initial period but slowly afterwards. Alcohol concentrations of medicinal herb rice wines were $0.3{\sim}1.5%$ lower than the traditional wine throughout the fermentation periods. After the final period of 10 days of fermentation, alcohol concentration was observed as 12.6% in wine from sasam, 12.9% from gilkyung, 12.3% from peony, 12.4% from danggwi, 13.4% from hwangki, 12.6% in wine from chunkung, 13.6% in raditional wine respectively. Those differences were expected as the results of differences in various herbs. From the sensory evaluation, the highest score of overall quality was observed in the wine from hwangki, the next from chunkung, sasam, the traditewional wine, gilkyung, danggwi and the last from peony.

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Quality Characteristics of Takju added with Seokim (석임을 첨가한 탁주의 품질 특성)

  • Cho, Jae-Chul;Lee, Sang-Jung;Kang, Bung-Nam
    • Culinary science and hospitality research
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    • v.19 no.1
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    • pp.244-251
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    • 2013
  • The objective of this study was to determine the quality and sensory characteristics of Takju using different levels of seokim (0, 2, 4 and 6%(w/w)) at each fermentation step. The pH of Takju was dramatically reduced according to fermentation period after 1 day and total acidity was shown dramatically increased. The sugar content was increased sharply immediately after fermentation, and showed a tendency to decrease for 2-7 days. Reduced sugar content was increased by up to 2 days of fermentation, and then it was decreased to 2-7 days of fermentation. The alcohol content of all samples were increased until the end of fermentation period. After 7 days of Takju fermentation within Seokim, the addition of 0, 2, 4 and 6% seokim resulted in alcohol content of 10.3, 10.9, 12.1 and 12.2%, respectively. In the present study for the production of Takju, however, 4%(w/w) of seokim and the increase of alcohol content was low (maximum 12.2%, v/v). In Takju fermentation, the best content of seokim was 4%.

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Studies on the Utilization of Alcohol Distillers' Waste. Part 1. Production of Saccharomyces cerevisiae Cells from Alcohol Distilled Waste of Wheat-flour. (주정폐액의 이용에 관한 연구(제1보) 소맥분 주정폐액을 이용한 Saccharomyces cerevisiae의 배양)

  • Yoo, Ju-Hyun;Oh, Doo-Hwan;Yang, Yung
    • Microbiology and Biotechnology Letters
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    • v.2 no.2
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    • pp.83-88
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    • 1974
  • The water pollution by waste water is one of the important issue and the short of animal feed is too, in Korea. So, this experiment is accomplished to treat alcohol distillers' waste by micro-organisms and planning to produce yeasts, which can be used as animal feed, pharmacy and condiments. 1. The raw material, alcohol distillers' waste, of this experiment consists of insoluble solids (residue) and filterate (supernatant). The residue contains 33.08% of crude protein, 19.96% of total sugar. and 2.06% of ash, respectively. On the other hand the flterate through the Toyo filter paper No. 5C, contains 2.48% of crude protein, 1.54% of reducing sugar, and 0.43% of ash, respectively. 2. Optimum pH of the basal medium for the growth of Saccharomyces cerevisiae YF-1 is 4.0. Optimum culture condition of this is as follows : when 0.43g of urea, 0.43g of potassium phosphate monobasic, and 0.21g of magnesium sulfate are added to the 100m1 of basal medium. Optimum temperature and optimum incubation time are 30$^{\circ}C$ and 24-28 hrs. 3. Under these conditions, the maximum yield of dry yeast is 1.38% to the medium. 4. The composition of dry yeast, produced under these conditions, is as follows: crude protein, 56.96%, lipid, 1.30%. total sugar, 6.53%, and ash 9.62%.

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Quality Properties of Makgeolli Brewed with Fiber-rich Rice Cultivars (고식이섬유 쌀 품종을 이용한 막걸리의 품질 특성)

  • Kwak, Jieun;Lee, Jeong-Heui;Kim, Hye-Won;Lee, Jeom-Sig;Chun, Areum;Yoon, Mi-Ra;Oh, Sea-Kwan;Chang, Jaeki;Kim, Bo-Kyeong
    • The Korean Journal of Food And Nutrition
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    • v.27 no.5
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    • pp.851-858
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    • 2014
  • Goami2, Goami3 and Goami4 were identified as fiber-rich rice cultivars which were developed by mutation breeding with Ilpum. The purpose of this study was to develop a method for producing Makgeolli with the fiber-rich rice cultivars, Goami2, Goami3, Goami4, and to investigate the characteristics of Makgeolli during the fermentation process. Makgeolli was produced herein by fermentation steamed rice (SR), raw rice flour (RF), and steamed rice flour (SF) from Goami2, Goami3, Goami4, Ilpum and Sealgaeng rice cultivars. The physicochemical characteristics including alcohol and sugar content, pH, total acidity, TDF (total dietary fiber), and color of the Makgeolli samples were analyzed. Makgeolli produced with Ilpum and Sealgaeng showed satisfactory fermention characteristics in alcohol and sugar content when SR, RF and SF were used. In the case of Goami2, Goami3, and Goami4, the use of SF resulted in 17.2~20.1% alcohol content, whereas only 10% alcohol was produced by SR. The sugar contents in the SF-makgeolli samples were also higher ($9{\sim}10^{\circ}Brix$) than in the SR-makgeolli ($5.35{\sim}5.44^{\circ}Brix$) for Goami2 and Goami4 cultivars. The dietary fiber contents of the Makgeolli samples produced using SF from the fiber-rich rice cultivars were higher (1.35~1.52 g/100 mL) than those produced with Ilpum and Sealgaeng (0.74~0.87 g/100 mL). From these results, it may be suggested that SF would be an appropriate material to brew Makgeolli using fiber-rich rice cultivars to obtain better physicochemical and functional qualities.

Effects of Isoamyl Acetate Production in Makgeolli According to Fermentation Conditions (막걸리 발효조건에 따른 isoamyl acetate 생성 비교)

  • Song, Choong Sung;Ju, Hyun-Mok;Kim, Jin Man
    • Journal of Life Science
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    • v.30 no.2
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    • pp.162-168
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    • 2020
  • Because of a continual reduction in its domestic market share, the quality of the Makgeolli, a Korean traditional liquor, needs to be upgraded. Among the several options for quality improvement, sufficient organoleptic expression of flavor is very important. We analyzed production changes of isoamyl acetate, which has a banana smell, based on fermentation temperature and sugar content through the cultivation of S. cerevisiae 98-5 KCCM 11396P using generally polished rice. The banana flavor of that fermentation mash was organoleptically high at 20℃, but a larger amount of isoamyl acetate was obtained with a higher sugar content at 10℃, based on analysis by GC-MS. Consequently, sufficient production of banana flavor from isoamyl acetate was based on the concentration of isoamyl alcohol as a substrate compound of isoamyl acetate, and the production depended highly on the maintenance of heat stability, since it is unstable in temperature and the minimized inhibition of alcohol acetyl transferase by unsaturated fatty acids. We also found that production of the flavor component required the addition of sugar and a slightly higher temperature of 20~25℃ at the beginning stage of fermentation, with additional mash fermentation and a gradual decrease in temperature to 10~15℃.