• Title/Summary/Keyword: starch-fermentation

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Some Chemical Physical Characteristics and Acceptability of Kochoojang from Various starch Sources (전분질 원료를 달리한 고추장의 화학적.물리적 성질과 기호성)

  • Moon, Tae-Wha;Kim, Ze-Uook
    • Applied Biological Chemistry
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    • v.31 no.4
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    • pp.387-393
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    • 1988
  • Changes in chemical composition, viscosity and color during fermentation of improved Kochoojang from four starch sources (wheat, barley, rice and glutinous rice) were examined. Analyses included measurements of moisture, reducing sugars, amino nitrogen, pH, total acidity, viscosity, color and sensory panel scores for viscosity, color, odor and taste. Changes in chemical composition were similar for all Kochoojang products. Decrease in viscosity was greatest during the first 10 days of fermentation. Hunter tristimulus values decreased gradually during fermentation, and total color difference after 60 days was greatest for rice flour Kochoojang. Sensory evaluation showed that the viscosity of rice flour Kochoojang was less desirable than that of the others. However, no significant differences were found in color, odor and taste of all Kochoojang products. A high negative correlation was observed between Hunter a value and visual preference.

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Production of protein-bound polysaccharides by solid-state fermentation of Coriolus versicolor (구름버섯의 고체발효에 의한 단백다당류 생산)

  • Park, Kyung-Sook;Park, Shin;Jung, In-Chang;Ha, Hyo-Cheol;Kim, Seon-Hee;Lee, Jae-Sung
    • The Korean Journal of Mycology
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    • v.22 no.2
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    • pp.184-189
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    • 1994
  • The possibility of solid-substrate fermentation of Coriolus versicolor for the production of protein-bound polysaccharides(PBP) was studied. Zeolite and orchid-pot soil were used as solid materials for the culture because of the desirable physical properties. Glucose, sucrose and starch showed to be good carbon sources for the production of PBP by the solid-substrate fermantation of C. versicolor. Among the nitrogen sources, bactosoyton and peptone were very effective for the PBP production. The optimum pH for solid-substrate culture for the production of PBP was at the range of 5-6. The yields of PBP reached to 5-6 mg per 100 g solid-substrate.

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Effect of Rice Protein on the Network Structure of Jeung-Pyun (증편 구조에 미치는 쌀 단백질의 영향)

  • 이해은;이아영;박주연;우경자;한영숙
    • Korean journal of food and cookery science
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    • v.20 no.4
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    • pp.396-402
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    • 2004
  • The aim of this study was to examine the effect of rice protein on the network structure of the Jeung-Pyun. The major component of Jeung-Pyun rice protein was extracted, the change of rice protein during the Jeung-Pyun fermentation was assessed, and the effect on the viscosity and volume of adding protease to Jeung-Pyun was investigated. In addition, the result of adding protein to rice starch on the viscosity and volume of Jeung-Pyun was that the rice protein mediated the volume and expansion ability. The results were as follows. In rice and dough of Jeung-Pyun, the SDS soluble protein content was higher than that of wheat flour and no change was detected in the amount of extracted protein with the fermentation time. However, in the FPLC pattern, low molecular weight peaks were decreased with the fermentation time, which indicates the increase in the ratio of high molecular weight substances. In contrast, the addition of protease substantially decreased, the viscosity and volume of Jeung-Pyun, whereas the viscosity and volume were increased by adding protein to rice starch in order to reconstitute Jeung-Pyun. This suggested that rice protein in Jeung-Pyun had a mediating effect on both the volume and the formation of the texture.

Optimization of Biopolymer Production from Alkali-Tolerant Bacillus sp. (알칼리 내성 Bacillus sp.의 생물고분자 생산조건의 최적화)

  • Lee, Shin-Young;Lee, Beom-Su;Lee, Keun-Eok
    • Korean Journal of Food Science and Technology
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    • v.23 no.2
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    • pp.167-174
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    • 1991
  • Cultural conditions for the biopolymer production by an alkali tolerant Bacillus sp. isolated from soil were investigated and determination of optimal conditions was carried out by response surface method. The maximal production of biopolymer was obtained after cultivation at $30^{\circ}C$ for 36hrs in the mixture of 8% soluble starch, 0.75% yeast extract, 0.1% $NaNO_3$, 0.05% $MgSO_4\;7H_2O$ and 1% $Na_2CO_3$ adjusted to pH 10. Under these conditions, about 44 g/l of biopolymer were produced. From the results of response surface analysis, optimal condition for the production of biopolymer were obtained at stationary point with 15.16 of C/N ratio, $34.62^{\circ}C$ of temperature and 9.50 of pH. On the basis of these conditions, it was estimated that 66.84 g/l of the biopolymer could be produced.

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Studies on Improved Amylases Developed by Protoplast Fusion of Aspergillus species

  • Adeleye, Tolulope Modupe;Kareem, Sharafadeen Olateju;Olufunmilayo, Bankole Mobolaji;Atanda, Olusegun;Osho, Michael Bamitale;Dairo, Olawale
    • Microbiology and Biotechnology Letters
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    • v.49 no.1
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    • pp.45-56
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    • 2021
  • Improved amylases were developed from protoplast fusants of two amylase-producing Aspergillus species. Twenty regenerated fusants were screened for amylase production using Remazol Brilliant Blue agar. Crude enzyme extracts produced by solid state fermentation of rice bran were assayed for activity. Three variable factors (temperature, pH and enzyme type) were optimized to increase the amylase activity of the parents and selected fusants using rice bran medium and solid state fermentation. Analysis of this optimization was completed using the Central Composite Design (CCD) of the Response Surface Methodology (RSM). Amylase activity assays conducted at room temperature and 80℃ demonstrated that Aspergillus designates, T5 (920.21 U/ml, 966.67 U/ml), T13 (430 U/ml, 1011.11 U/ml) and T14 (500.63 U/ml, 1012.00 U/ml) all exhibited improved function making them the preferred fusants. Amylases produced from these fusants were observed to be active over the entire pH range evaluated in this study. Fusants T5 and T14 demonstrated optimal activity under acidic and alkaline conditions, respectively. Fusants T13 and T14 produced the most amylase at 72 h while parents TA, TC and fusant T5 produced the most amylase after 96 h of incubation. Response surface methodology examinations revealed that the enzyme from fusant T5 was the optimal enzyme demonstrating the highest activity (1055.17 U/ml) at pH 4 and a temperature of 40℃. This enzyme lost activity with further increases in temperature. Starch hydrolysis using fusant T5 gave the highest yield of glucose (1.6158 g/100 ml). The significant activities of the selected fusants at 28 ± 2℃ and 80℃ and the higher sugar yields from cassava starch hydrolysis over their parental strains indicate that it is possible to improve amylase activity using the protoplast fusion technique.

Utilization of Cheese Whey for Alcohol Fermentation Medium (Alcohol Fermentation을 위한 배지로서의 Cheese Whey의 이용)

  • Kim, Sang-Pil;Park, Hee-Kyung;Kim, Do-Hwan;Heo, Tae-Ryeon
    • Korean Journal of Food Science and Technology
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    • v.27 no.6
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    • pp.878-884
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    • 1995
  • In order to use whey lactose in alcohol fermentation, we investigated fermentation conditions of Saccharomyces cerevisiae and Kluyveromyces fragilis in lactose-hydrolyzed whey with ${\beta}-D-galactosidase$. and optimum conditions of the above two yeasts through oxygen regulation by Pasteur effect which is the characteristic of the yeasts were determined. In addition, optimum condition for application of fermented whey in Tak-ju process was also examined. With 0.7% ${\beta}-D-galactosidase$, 93% lactose was hydrolyzed at pH 6.5 in 30 minutes. Because S. cerevisiae is unable to ferment galactose, the production of ethanol by S. cerevisiae was lower than that of K. fragilis in lactose-hydrolyzed whey. But ethanol productivity by S. cerevisiae was higher than that by K. fragilis in glucose added whey. In fermentation with oxygen regulation and addition of 60 g/l glucose, the ethanol productivity of K. fragilis and S. cerevisiae were 18.9 g/l (11.8% increase) and 43.5 g/l (22.1% increase), respectively. It appeared that the ethanol productivity of S. cerevisiae was higher than thst of K. fragilis under the above conditions. In ethanol fermentation added rice starch, Aspegillus oryzae hydrolyzed 80% of starch in 60 hours, and the production of ethanol was 80.2 g/l

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Quality Characteristics of Distilled Soju with Different Pretreatment of Rice (쌀 전처리를 달리한 증류주의 품질특성)

  • Seung Eun, Lee;Ji-Eun, Kang;Bora, Lim;Heui-Yun, Kang
    • Journal of the Korean Society of Food Culture
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    • v.37 no.6
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    • pp.555-563
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    • 2022
  • The purpose of this study was to confirm the quality characteristics of distilled soju with different rice pretreatment processes. The non-steamed fermentation method is a technology that uses starch to produce saccharification and alcohol without going through the steaming of raw materials. It has advantages such as reduction of manpower and cost, prevention of nutrient loss, and minimization of waste water. In this study, rice used were non-steamed and pulverized 'Baromi2', nonsteamed and steamed 'Samgwang', and puffed rice. As the fermenting agent, koji, modified nuruk, N9 yeast, and purified enzyme were used, and lactic acid was added to prevent contamination during fermentation. The amount of water was 300% in total, and after the first watering, 5 days after fermentation, the second watering was carried out. As a result of the study, it was confirmed that the non-steamed fermentation method using 'Baromi' was superior to the existing fermentation method in terms of temperature during fermentation, final alcohol content, soluble solids, and pH. By expanding the stability of the production technology of non-steamed fermentation technology, product quality improvement can be expected.

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.

Alcohol Fermentration of Naked Barley without Cooking (쌀보리의 무증자 Alcoho 효소에 관한 연구)

  • 오평수;차두종;서항원
    • Microbiology and Biotechnology Letters
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    • v.14 no.5
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    • pp.415-420
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    • 1986
  • Alcohol fermentation of uncooked naked barley was carried out by the combined action of the maceration enzyme from black Aspergillus niger and the glucoamylase from Rhizopus sp. The combined enzyme preparation was found to be effective in maceration and saccharification of the raw naked barley starch. The Hydrolysis rate measured by the amount of glucose liberated reached more than 70% at pH 4.5 and 3$0^{\circ}C$ after 76 hrs. For alcohol fermentation without cooking, the naked barley mash of 18% initial total sugar was pretreated with concentrated sulfuric acid (0.15 weight % of the mash volume) at 55$^{\circ}C$ for 2hr, and used for alcohol fermentation. A simultaneous saccharification and fermentation was carried out at pH 4.8 and 3$0^{\circ}C$ for 96 hrs. Under this fermentation condition, 3.5% increase in alcohol yield together with 2.0% increase in alcohol concentration were obtained when compared with the conventional cooking fermentation.

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Monitoring of Alcohol Fermentation Condition with Brown Rice Using Raw Starch-Digesting Enzyme (생전분 분해효소를 이용한 현미 알콜발효조건의 모니터링)

  • Lee, Oh-Seuk;Jeong, Yong-Jin;Ha, Young-Duck;Kim, Kyungeun;Shin, Jin-Suk;Kwon, Hun
    • Food Science and Preservation
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    • v.8 no.4
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    • pp.412-418
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    • 2001
  • This study was carried out to set up alcohol fermentation condition for uncooked brown rice. Response surface methodology(RSM) was applied to optimize and monitor of the alcohol fermentation condition with uncooked brown rice. The optimal yeast strain for fermentation of uncooked brown rice was S. cerevisiae GRJ. The polynomial equation for alcohol contents, brix pH and total acditiy showed 0.8828, 0.8409, 0.9431 and 0.9280 of R$^2$, respectively. Optimum range of uncooked alcohol fermentation for maximum alcohol contents were 0.34%(w/w) of enzyme concentration and 350%(w/w) of added water content, respectively. Predicted values at optimum alcohol fermentation condition agreed with experimental values.

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