• Title/Summary/Keyword: rice Sikhye

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A Definition and Historical Study of Traditional and Commercial Sikhye (전통식혜 및 시판식혜의 역사적 고찰 및 정의)

  • 안용근;이석건
    • The Korean Journal of Food And Nutrition
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    • v.9 no.1
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    • pp.37-44
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    • 1996
  • Korean traditional Sikhye is made from rice and malt. Since 1740, there have been many records about the method of making traditional Sikhye, generally used in the folks. And the first records of sugar addition Sikhye were found In 1924. Therefore commercial sugar Sikhye is not traditional. Traditional Sikhye uses 30% of rice and malt (dry weight) as raw material, and main content is maltose. However commercial Sikhye uses only 3% of cooked rice, and adds 10% of sugar, .Even though some domestic Sikhye used sugar, the amount of added sugar does not exceed 115 of raw materials. Therefore, commercial Sikhye differs from not only traditional Sikhye but also domestic sugar Sikhye.

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Studies on Sikhye Wine -1. Rice Sikhye Wine- (식혜주에 관한 연구 -1보. 멥쌀식혜 올리고당주-)

  • 안용근;김승겸;신철승
    • The Korean Journal of Food And Nutrition
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    • v.10 no.3
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    • pp.360-364
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    • 1997
  • Rice Sikhye was fermented by Saccharomyces cerevisiae for 10 day at 29$^{\circ}C$. Fermentable sugars such as glucose, maltose and maltotriose in rice Sikhye were converted into ethanol by the yeast, but limit dextrin was remained after the fermentation. Rice Sikhye wine was found to contain 5.3% of limit dextrin, 6.5% of ethanol, 2.9 $\mu$mol/ml of amino acid, 457$\mu\textrm{g}$/ml of protein, and the acidity of the Sikhye showed 3.1, respectively, and its pH was 3.67. Limit dextrin in rice Sikhye wine showed both signal of $\alpha$-1,4- and $\alpha$-1,6-glucosidic linkage wit its estimation ratio of 5.6:1 by 1H-NMR analysis. The taste of rice Sikhye wine was similar that of wine.

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Studies on Sikhye Wine -2. Glutinous Rice Sikhye Wine- (식혜주에 관한 연구 -2보. 찹쌀식혜 올리고당주-)

  • 안용근;김승겸;신철승
    • The Korean Journal of Food And Nutrition
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    • v.10 no.3
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    • pp.365-369
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    • 1997
  • Glutinous rice Sikhye was fermented by Saccharomyces cerevisiae for 10 day at 29$^{\circ}C$. Fermentable sugars such as maltose and maltotriose in glutinous rice Sikhye were converted into ethanol by the yeast, but limit dextrin was remained after the fermentation. fermentation rate of sugars in glutinous rice Sikhye was lower than that in rice Sikhye. Glutinous rice Sikhye wine was found to contain 7.3% of limit dextrin, 3.6% of ethanol, 0.35$\mu$mol/ml of amino acid, 100$\mu\textrm{g}$/ml of protein, and the acidity of the Sikhye showed 3.2, respectively, and its pH was 3.23. Limit dextrin in glutinous rice Sikhye wine showed both signal of $\alpha$-1, 4- and $\alpha$-1,6- glucisidic linkage with its estimation ratio of 5.6:1 by 1H-NMR analysis. The taste of rice Sikhye wine was similar that of wine.

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The Establishment of Optimum Conditions for Saccharification in Manufacturing Red Ginseng Sikhye

  • Hur, Sang-Sun;Choi, Suk-Won
    • Journal of Ginseng Research
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    • v.31 no.4
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    • pp.191-195
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    • 2007
  • Red ginseng sikhye is one of Korean unique beverages with the addition of effective ingredients of ginseng. Considering economical and mechanical efficiency and quality of sikhye, the optimum conditions for saccharification is to saccharify at 90 degree celsius for 3 hours in the composition of 4% of malt, 20% of steamed rice, and 6% of red ginseng power. The red ginseng sikhye has high soluble solid content over 33% compared with conventional commercial sikhye. On the other hand, ginseng sikhye, which shows low pH, has more or less higher acidity than conventional commercial one. Especially the turbidity of the red ginseng sikhye is much higher than that of commercial sikhye, due to as high amount of rice as 20% compared with 3% in the commercial one. The use of high quantity of rice affected the level of turbidity in red ginseng sikhye. In this study, we wanted to establish optimum conditions for saccharification in manufacturing red ginseng sikhye which contains effective herbal medicinal ingredients maintaining the original taste of traditional sikhye.

A Study on Sugars in Korean Sweet Rice Drink "Sikhye" -5. Structure Analysis- (식혜의 이소말토올리고당에 관한 연구 -5보 구조해석-)

  • 안용근;이석건
    • The Korean Journal of Food And Nutrition
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    • v.10 no.3
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    • pp.309-313
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    • 1997
  • Bench scale Sikhyes were produced from rice and glutinous rice and limit dextrins in rice Sikhye and glutinous rice Sikhye were purified by ethanol precipitation and Biogel P-2 gel chromatography and FPLC on Superose 12 column and analyzed. The purified limit dextrin in rice Sikhye and glutinous rice Sikhye showed bot signal of $\alpha$-1,4- and $\alpha$-1,6-glucosidic linkage with its estimation ratio of 4.5:1 and 5.9:1, respectively, by 1H-NMR analysis. Limit dextrins were hydrolyzed by pullulanase. The enzyme hydrolysis products contained maltose, maltotriose, maltotetraose, maltopentaose and matohexaose. These results suggest that limit dextrins were composed of these maltoolgosaccharide series with $\alpha$-1,6-glucosidic bond.

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Effect of Sikhye Manufacturing Conditions on the Rice Shape (식혜제조 조건이 식혜밥알의 형태에 미치는 영향)

  • Kim, Su-Kweon;Kim, Joong-Man;Choi, Yong-Bae
    • Journal of the Korean Society of Food Culture
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    • v.15 no.1
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    • pp.1-8
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    • 2000
  • This study was to investigate the effects of concentration of malt extract in Sikhye manufacture on saccharification time, shapes of saccharified rice(the cooked rice) and sensory evaluation score of Sikhye. The optimum concentration of malt extract to reduce saccharification time and to keep desirable shapes of saccharified rice was 4 times (rice 24g, malt 28g and D.W. 240ml) as suitable as base composition formula(rice 6g, malt 7g and D.W. 240ml). The shapes of saccharified rice were influenced by the concentration of malt extract, the saccharification time and the shapes of steamed rice before saccharification. A good taste(softness) of Sikhye rice and the desirable shapes of saccharified rice were more suitable in the case of a small amount of unsaccharified starch than in the case of finishing saccharification. The optimum saccharification time to keep the desirable shapes of saccharified rice was 240min and also was desirable between 210 and 270min. To keep a good taste(softness) and the desirable shapes of saccharified rice, and to reduce the manufacturing time, it is desirable to in mass production of Sikhye add 3 times more water after making Sikhye in the ratio of rice 24g, malt 28g and water 240ml. In this case the whole amount will become 4 times as much as the original one.

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A Study on Sugars in Korean Sweet Rice Drink "Sikhye"(III) -Commercial Sikhye- (식혜의 이소말토올리고당에 관한 연구(III) -시판식혜-)

  • 안용근
    • The Korean Journal of Food And Nutrition
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    • v.10 no.1
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    • pp.92-96
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    • 1997
  • A Korean commercial sweet rice drink "Sikhye" showed sucrose, fructose, glucose, maltose, limit dextrin and various size of maltooligosaccharides in HPLC and TLC analysis. Commercial Sikhye was found to contain 0.09% of limit dextrin and 0.2% of rice residue. Limit dextrin in commercial Sikhye showed both signal of $\alpha$-1,4- and $\alpha$-1,6-glucosidic linkage with its estimation ratio of 15:1 by 1H-NMR analysis. This limit dextrin was hydrolyzed to produce various size of maltooligosaccarides with more longer chain than that of traditional Sikhye by pullulanase. Limit dextrin was digested wit enzymes(30units/ml) of $\alpha$-amylase, $\alpha$-glucosidase and glucoamylase from Aspergillus awamori, sweet potato $\beta$-amylase and human salivary $\alpha$-amylase at 37$^{\circ}C$ for 1 hour, respectively. Hydrolysis rates of these amylases on it were higher than in case of traditional sikhye. $\alpha$-Glucosidase plus human salivary $\alpha$-amylase hydrolyzed it to 61.3%. Hydrolysis rates of these amylases on rice residue were lower than that of traditional Sikye. These results suggest that limit dextrin in commercial Sikhye is less effective than isomaltooligosaccharides in traditional Sikhye as a growth factor for Bifidobacterium while rice residue in commercial Sikhye is more effective than that in traditional Sikhye as dietary fiber.ary fiber.

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Some Problems of Sikhye Production and An Improvement Method of Sikhye Quality (식혜산업의 문제점과 품질 향상방안)

  • 안용근;이석건
    • The Korean Journal of Food And Nutrition
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    • v.9 no.1
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    • pp.45-51
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    • 1996
  • Korean traditional Sikhye is made from rice and malt, and It's main product Is maltose. However commercial Sikhye differs from traditional Sikhye because it's main component is sucrose. Sikhye industry faces many problems such as contamination of malt with microorganisms, low amylase activity of malt and technical difficulties. There is no commercial Sikhye which is only using rice and malt by these reasons. To produce the traditional Sikhye free from these problems, it is necessary to restrict the microorganisms of malt and to standardize the amylase activity of malt. In addition, the Introduction of effective control and sanitaric process is required. In Sikhye production. if $\beta$-amylase and isoamylase or pullulanase were added, starch could be saccharified 100% as maltose. Accordingly, this method brings us the low cost of Sikhye.

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Development of Squash Sikhye Added with Retrograded Rice Flour Containing Resistant Starch Using Response Surface Methodology and Quality Comparison with Commercial Beverages (반응표면검사를 이용한 RS함유 노화쌀가루를 첨가한 단호박식혜 개발 및 시판음료와 품질비교)

  • Ha, Kyungae;Park, Boseock;Chang, Hyeja
    • Korean journal of food and cookery science
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    • v.30 no.2
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    • pp.129-138
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    • 2014
  • This research aimed to develope squash sikhye containing retrograded rice flour using response surface methodology. For this, nonlinear regression equation was calculated with the setting of independent variables as retrograded rice flour containing resistant starch and squash, and dependent variables as viscosity, sugar content, pH, color, and sensory attributes. Under the experimental condition, the quality characteristics of squash sikhye were found as 6.20~6.25 for pH, $14.00{\sim}17.33^{\circ}Brix$ for sweetness, 2.64~4.45 cP for viscosity, 57.51~60.18 for lightness, 4.94~7.52 for redness, and 50.98~60.29 for yellowness. It also was revealed overall acceptability in sensory evaluation rated as 9.67~10.83 out of 15 point. These results showed statistically significant differences in quality attributes with the increase of retrograded rice flour and squash(p<0.05). Thus, optimal mixing quantity of squash and retrograded rice flour for squash sikhye was identified as 114 g and 65 g, respectively. Comparison of sensory qualities of four samples, namely squash sikhye with and without retrograded rice, and two commercial products, showed that squash sikhye including retrograded rice flour had the best quality in terms of color, taste, mouth feeling, flavor and overall acceptability (p<0.05). Thus the squash sikhye with retrograded rice flour can be the potential products as a health benefit beverage for the old adult and the young generation.

A Study of Sikhye (한국 시판 식혜에 관한 연구)

  • 안용근;이석건
    • The Korean Journal of Food And Nutrition
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    • v.8 no.3
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    • pp.165-171
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    • 1995
  • Sikhye is a traditional sweet rice drink in Korea by $\beta$-amylase's saccharifing action. Sikhye has great potentiality for commercial beverage because of It's characteristic taste and flavors. But, the chemical compositions and production methods of Sikhye are little known. The total amount of carbohydrate of sixteen Sikhye selected in Korean market was 11~15%. The reducing sugar by the Somogyi-Nelson's method was measured 0.4~2% as maltose, which has little influence on the sweetness of Sikhye. While sucrose content was about 10% by the TLC and Seliwanoff analysis. It means that carbohydrate in Sikhye was almost sucrose. Furthermore the most of Sikhye has brown color and turbidity. To improve the quality of Korean Sikhye, it is necessary to increase the production of maltose and to reduce brown color and turbidity, without adding sucrose.

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