• Title/Summary/Keyword: takju fermentation

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Application of the Lees of Domestic Traditional Wine and its Useful Biological Activity (국내 전통주 주박의 이용과 유용생리활성)

  • Kim, Mi-Sun;Shin, Woo-Chang;Sohn, Ho-Yong
    • Journal of Life Science
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    • v.25 no.9
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    • pp.1072-1079
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    • 2015
  • The lees of Korean traditional wine called as Jubak or Sul-jigemi in Korea is byproduct from alcohol fermentation industry, which is remnant of fermentation broth after filtration, centrifugation, distillation, or sedimentation during aging. Since, Korean traditional wines are produced from edible plant sources such as rice, foxtail millet, fruits and medicinal herbs with nuruk (a traditional fermentation starter and starch degrader), the Jubak from rice wine (takju), medicinal herb wine (yakju) and fruits wine are considered as safe byproduct and have various useful bioactivity. Considering the recent rapid increased production of Jubak from takju industry, and the reinforcement of dispose of Jubak as waste material in worldwide, the development of efficient reuse process for Jubak is necessary in traditional wine industry. In this review, the status of current industry, research and patent trends in relation with Jubak production, treatment, utilization and renewal was analyzed and different bioactive compounds including phenolic acids from Jubak were provided. Jubak is not any more waste material, and is the source of bioactive functional materials for food, cosmetics and medicinal industry. To develop the efficient and economic renewal technology including recovery process for bioactive substances from Jubak, systematic collaboration and research among the industry, academy and government is necessary.

Studies on Kokja of High Quality(Part 1) Preparation of new type Kokja and its activity (국자(麴子)의 개량(改良)에 관(關)한 연구(硏究)(제(第) 1 보(報)) 개량국자(改良麴子)의 제조(製造) 및 그 능력(能力))

  • Chung, Ho-Kwon
    • Korean Journal of Food Science and Technology
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    • v.2 no.1
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    • pp.88-92
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    • 1970
  • 1. Aflatoxin free and highly active new type kokja was made with strong two strains of yeast (Y-16, Y-21) and two strains of highly saccharifying active Aspergillus (A-32, A-11). And they were isolated from many kinds of kokja (over hundred) collected from all over Korea. 2. Activities of new type kokja was compared with old type kokja, and results were as following. (i) Saccharifying activity; New type kokja B, C and D were excellent (over 8. 0%), and home made old type kokja were poor quality. (ii) Alcohol fermentation; New type kokja C and D were over 12% and the old type K-12 and K-161 were low activity (less than 10%). (iii) Acid fermentation; Old type kokja K-2o and K-156 (industrial use) were better than the new type C and D. (iv) Fusel oil fermentation; Old type kokja K-23, K-26 (industrial use) and K-12 (home made) fermented high fusel oil (0.07%) and new type kokja C, D and B were the lowest (0.04%). 3. Adding food preservatives (AF-2, D.E.P.C.) and heat sterilizing of wheat bran for kokja had little concerning with the activity of new type kokja. 4. In brewing test, takju made from kokja C and D were more excellent in alcohol and fusel oil concentration than those from old type kokja K-1 and K-23. Taste and odour of takju from new type kokja was good enough to drink.

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Quality characteristics and preparing of solid starter using fungal strains for Takju (탁주용 곰팡이 고체종국 제조 및 품질 특성)

  • Baek, Chang-Ho;Baek, Seong Yeol;Mun, Ji-Young;Choi, Han-Seok;Kang, Ji-Eun;Jung, Seok-Tae;Yeo, Soo-Hwan
    • Food Science and Preservation
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    • v.23 no.6
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    • pp.797-803
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    • 2016
  • In this study, we investigated the effect of fermentation conditions on the amylolytic and proteolytic activities of Aspergillus luchuensis strain 74-5 and Aspergillus oryzae strain 75-2, which are used in the preparation of the starter culture, for Takju (Korean traditional rice wine). The starter culture was optimized using different conditions, such as inoculum size, inoculation temperature, and incubation time. The enzyme activities under each condition were measured. In the A. luchuensis strain 74-5 starter culture, the ${\alpha}-amylase$ and glucoamylase activities increased, however the activity of acidic protease decreased as the diluent to starter culture ratio increased. In the A. oryzae 75-2 starter culture, all enzyme activities were maintained at a higher level even at 5% inoculation ratio. Higher enzyme activities were observed in the middle range of inoculation temperature (35, $40^{\circ}C$), than in the lower range (20, $30^{\circ}C$). Enzyme activity in the starter culture varied with incubation time, however it was the highest at 144 and 120 hr, respectively, for A. luchuensis strain 74-5 and A. oryzae strain 75-2. The spore count of the starter culture was approximately $2{\times}10^7$ during fermentation, out of which contamination by aerobic bacteria was about $3{\times}10^3$. The results suggested that the starter culture of each strain could be used as an inoculum for fermentation. However, we needs to conduct further research for the selection of suitable diluting agents as well as drying methods to reduce the contamination by aerobic bacteria, while retaining the enzyme activity.

The studies on improvement of manufacturing technology of Korean native Jung-pyun (fermented and steamed rice bread) -Improvization of manufacturing technology by dry-yeast- (재래식 증편 제조법의 개량화에 관한 연구)

  • 김천호
    • Journal of the Korean Home Economics Association
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    • v.8 no.1
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    • pp.100-119
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    • 1970
  • In finding an improved and generalized method of making Jung-pyun, a type of scientific experimental cookey has been attempted with the use of yeast in place of Korean native rice wine named "Takju" The result is shown as follows; 1. Starta prepared with yeast and rice powder was mixed again with fresh rice powder as fermenting and aging agents in Jung-pyum making. 2. Recommendable methods of starta making are shown as follows; a. Recipe Rice powder--Certain amount Yeast--1% Sugar--10% Water--65%(by volume) b. Temperature and Time of Fermentation Temperature--30$^{\circ}C$ Time--20 hrs. 3. Recommendable method of dough making are shown as follows; a. Recipe Starta--Certain amount Rice powder--Two times the starta(2-3 times) Sugar--10% Water--50%(by volume) b. Temperature and Time of Aging Temperature--35$^{\circ}C$ Time--3 hrs. (3-4 hrs) 4. Steaming Time 25-30 min.

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Quality Characteristics of Brown Rice Vinegar by Different Yeasts and Fermentation Condition (알코올 발효조건 및 효모를 달리한 현미식초의 품질 특성)

  • Lee, Su-Wone;Kwon, Joong-Ho;Yoon, Sung-Ran;Woo, Seung-Mi;Jang, Se-Young;Yeo, Soo-Hwan;Choi, Ji-Ho;Jeong, Yong-Jin
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.39 no.9
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    • pp.1366-1372
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    • 2010
  • This study investigated the quality characteristics of brown rice vinegar (agitated culture and static culture) derived from brown rice Takju with different types of yeasts. The alcohol content by yeast was the highest in B (brown rice Takju produced by S. cerevisiae GRJ) at 14.3% and the titratable acidity was less than 0.6% in all ranges. When quality characteristics of agitated and static culture brown rice vinegar using them were compared, acidity of agitated culture vinegar recorded the highest level or 6.05% at 7 day of fermentation DV (brown rice vinegar produced by S. kluyveri DJ97) with the initial acidity of 1.0% and the initial pH of 3.9~4.0, and AV (brown rice vinegar produced by S. cerevisiae JK99), CV (brown rice vinegar produced by S. cerevisiae H9) and BV (brown rice vinegar produced by S. cerevisiae GRJ) recorded as 5.64, 5.55 and 5.32%, respectively. In addition, acidity of static culture vinegar increased continuously to 5.01~5.31% until the 14 day of fermentation and then tended to decrease slightly from the 16 day of fermentation. Difference in acidity and pH of brown rice vinegar according to types of yeast was not significant. Comparison of free amino acid of brown rice vinegar showed that for agitated culture brown rice vinegar, the content of total free amino acid was higher in the order of BV, DV, AV and CV and the content of essential amino acid was the highest in BV by recording over 1,000 ppm. The content of total free amino acid of static culture brown rice vinegar was higher than that of agitated culture vinegar in all ranges and especially static culture brown rice vinegar contained more serine, alanine, valine, isoleucine, leucine and $\gamma$-aminobutyric acid than agitated culture vinegar. In particular, $\gamma$-aminobutyric acid recorded over ten times higher level or 456.91~522.66 ppm. From these results, quality characteristics of brown rice vinegar was affected by acetic acid fermentation methods rather than types of yeast. However, as future aging process is expected to change flavor components and sensory characteristics, studies on various quality factors of vinegar are needed.

Exposure Assessment of Ethyl Carbamate in Alcoholic Beverages

  • Ha Mi-Sun;Kwon Ki-Sung;Kim Mee-Hye;Park Hee-Ra;Hu Soo-Jung;Lee Hyo-Min;Kim Kyung-Mi;Ko Eun-Jung;Ha Sang-Do;Bae Dong-Ho
    • Journal of Microbiology and Biotechnology
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    • v.16 no.3
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    • pp.480-483
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    • 2006
  • Ethyl carbamate, a by-product produced naturally during fermentation and contained in fermented foods and beverages, is a carcinogen. Thus, due to the high consumption of alcoholic beverages in Korea, the ethyl carbamate concentrations in popular alcoholic beverages were determined, and the daily intake of ethyl carbamate through alcoholic beverages was estimated. The major Korean alcoholic beverages, Soju, beer, and Takju, with the highest market share were sampled and their ethyl carbamate concentrations determined by GC/MS/SIM. The ranges of ethyl carbamate contained in Soju, beer, and Takju was 0.83-10.07, 0.45-0.77, and 0.40-0.93 ppb, respectively. These results and data on the average daily intake of alcoholic beverages were then used to calculate the average and maximum estimated daily intakes (EDI) of ethyl carbamate through alcoholic beverages. As a result, a relatively high EDI of ethyl carbamate through alcoholic beverages was found for Korean males over 30 years old, indicating the need to reduce the ethyl carbamate content in alcoholic beverages.

Changes in Adding Soybean on Quality and surface structure of Korean Rice Cake(Jeung-Pyun) (콩첨가에 따른 증편의 품질과 표면구조 변화)

  • 신광숙;우경자
    • Korean journal of food and cookery science
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    • v.15 no.3
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    • pp.249-257
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    • 1999
  • Jeung-Pyun is a traditional fermented Korean food with rice flour, water, sugar, salt and unrefined rice wine(Takju). In order to investigate how the addition of soybean has an influence on Jeung-Pyun fermentation, changing to adding amount of soybean 0%, 5%, l0%. 15%, 20% based on rice weight, we carried out sensory evaluation and measured the physicochemical properties, instrumental characteristics and degree of gelatinization. The specific volume of Jeung-Pyun was increased as the more soybean was added. The pH of Jeung-Pyun batter was decreased as the fermentation time was longer, but it was increased as more soybean was added. The degree of gelatinization of Jeung-Pyun was decreased as storage day was longer, but it was high as more soybean was added compared to control(0%). In sensory evaluation, Jeung-Pyun added 5∼10% of soybean was good generally. Correlation coefficient between hardness and degree of gelatinization was high. In instrumental characteristics, hardness was increased only in control for room temperature storage(20$^{\circ}C$), but at 4$^{\circ}C$ it was less increased than control(0%) as more soybean was added. Cohesiveness was decreased generally as storage day was longer at 4$^{\circ}C$, but it was less decreased as more soybean was added. In brittleness at 4$^{\circ}C$, Jeung-Pyun of adding soybean was higher compared to control. In surface structure of Jeung-Pyun observerd by SEM. air pore size was small and distributed regularly as more soybean added. In conclusion. it can be suggested that the addition of soybean improve the quality of Jeung-Pyun.

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Characterization of Yakju Brewed from Glutinous Rice and Wild-Type Yeast Strains Isolated from Nuruks

  • Kim, Hye-Ryun;Kim, Jae-Ho;Bae, Dong-Hoon;Ahn, Byung-Hak
    • Journal of Microbiology and Biotechnology
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    • v.20 no.12
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    • pp.1702-1710
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    • 2010
  • Korean traditional rice wines yakju and takju are generally brewed with nuruk as the source of the saccharogenic enzymes by natural fermentation. To improve the quality of Korean rice wine, the microorganisms in the nuruk need to be studied. The objective of this research was to improve the quality of Korean wine with the wild-type yeast strains isolated from the fermentation starter, nuruk. Only strain YA-6 showed high activity in 20% ethanol. Precipitation of Y89-5-3 was similar to that of very flocculent yeast (>80%) at 75.95%. Using 18S rRNA sequencing, all 10 strains were identified as Saccharomyces cerevisiae. Volatile compounds present in yakju were analyzed by gas chromatography-mass selective detector. The principal component analysis (PCA) of the volatile compounds grouped long-chain esters on the right side of the first principal component, PC1; these compounds were found in yakju that was made with strains YA-6, Y89-5-3, Y89-5-2, Y90-9, and Y89-1-1. On the other side of PC1 were short-chain esters; these compounds were found in wines that were brewed with strains Y183-2, Y268-3, Y54-3, Y98-4, and Y88-4. Overall, the results indicated that using different wild-type yeast strains in the fermentation process significantly affects the chemical characteristics of the glutinous rice wine.

Selection of Lactic Starter for the Improvement of Jeungpyun Manufacturing Process (증편 제조공정 개설을 위한 스타터 선발)

  • Moon, Hye-Joon;Chang, Hak-Gil;Mok, Chul-Kyoon
    • Korean Journal of Food Science and Technology
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    • v.31 no.5
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    • pp.1241-1246
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    • 1999
  • Jeungpyun has a unique sponge-like texture and sour taste imparted by the lactic acid and alcohol that are produced by the addition of Takju(turbid rice wine) as a starter. Its consumption, however. has been decreased due to the long preparation time, the difficulties in quality control and the offensive odor derived from the Takju. The present study was carried out in order to shorten the preparation time and to improve the quality of Jeungpyun. To achieve the objectives an appropriate commercial lactic acid starter was selected and a cofermentation system with yeast was developed. A starter containing Lactococcus lactis, Lactococcus cremoris and Lactococcus diacetylactis was selected based on the acid production rate and the quality of the produced sour taste. It took 3 hr for the lactic acid fermentation of rice slurry. The optimum addition levels of the lactic acid starter and yeast were 0.45% and 0.60%, respectively. The lactic acid fermented rice slurry was mixed with the rice slurry separately fermented for 2 hr by yeast, and cofermented for another 1 hr before steaming. Jeungpyun Prepared by the developed method was superior in quality to that Prepared by conventional method using Takju. The developed method reduced the preparation time more than 50% compared with the conventional method.

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Studies on the quantitative changes of Organic acid and Sugars during the fermentation of Takju (탁주(濁酒) 양조중(釀造中) 유기산(有機酸) 및 당류(糖類)의 소장(消長)에 관(關)한 연구(硏究))

  • Kim, Chan-Jo
    • Applied Biological Chemistry
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    • v.4
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    • pp.33-42
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    • 1963
  • 1. Two fermentation methods have been compared for the production of Takju (Korean native Sake). One method (S1) uses 'Nuruk' (Korean mold wheat) and the other method (S2) uses 'Nuruk' and mold rice. The chemical analysis of source material, also, have been made in order the check the quantitative changes during the fermentation. The results are summarized below: a. The rate of fermentation was slower for the S2 method than for the S1 method. However, the residual sugar in the S2 method was smaller and the amount of alcohol produced the same as with the S1 method. This was true in spite of the fact that the total initial sugar content for the S2 method was 10 percent below that of S1. b. With both the S1 and S2 methods, 80 percent of the total alcohol production was obtained with in 3 to 4 days. c. The pH value of the base material at the beginning of fermentation was markedly different between the two methods I.e.6.0 to 6.2 for S1 and 4.8 to 5.2 for S2. However, after one or two day the pH of both materials was about the same 4.0 to 4.2 and remained at this value unit the fermentation was complete. 2. Organic acids and Sugars in the source materials have been detected by the paper partition chromatography(p.p.c.) method and the followings are obtained. a. Important Organic acids are Fumalic, malic Succinic, Citric, Acetic aicds in polished rice and Fumalic, Succinic, Acetic, Citric, Malic and Oxalic acids 'Nuruk'. The same kinds of acids as in the rice are found in mold rice, However, amount of Citrice acid is markedly increased in mold rice. b. The important Sugar, Glucose, Fructose and Raffinose in polished rice, Gulcose, Fructo, se, Xylose and one which supposed to be Kojibjose in 'Nuruk'. Glucose and those supposed to be Isomaltose, Kojibiose and Sakebiose and found in rice mold, however, no Sucrose, which was exist in polished rice, was found. 3. The important Organic acids found in fermenting mash using the p.p.c. method were Lactic, Succinic and Acetic. Citric acid identified early in the fermentation, S2 method. remained throughout. However, with the S1 method Cirtic acid was detected only during the late stage of fermentation. Sugars not found in the original materials were two which supposed to be Isomaltotriose and Pentose. Maltose found at the beginning of the fermentation disappeared within one day, Isomaltose was detected throughout the period of fermentation. 4. The Somogyi method which was employed to determine the quantitative changes of sugars in the orginal meterial and mach, showed that polished rice containes in order and in largest amounts Sucrose, Glucose, Raffinose and Fructose. 'Nuruk' contained almost equal quantities of Glucose and Fructose. However, the Glucose content of the mold rice exceeded that originally in the polished rice by 25 or 30 times. Only a small quantity of free sugars was found in the mash at the end of the fermentation.

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