• Title/Summary/Keyword: soymilk residues

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Effect of Soybean Milk Residues Powder on the Quality of Dough (두유박 분말 첨가가 식빵 반죽에 미치는 영향)

  • Shin, Doo-Ho;Lee, Yeon-Wha
    • The Korean Journal of Food And Nutrition
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    • v.19 no.4
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    • pp.381-391
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    • 2006
  • The rheological properties of dough made the substitution of wheat flour(composite flour) at the levels of 0%, 5%, 10% and 15% soymilk residue flour, with addition of vital wheat gluten at the levels of 3, 6 and 9% were investigated. And nutrition contents of soymilk residue flour were analyzed. The results were as follows; Principal components of soymilk residue flour were 22.0% crude protein, 13.2% crude lipid, 54.3% carbohydrate, 27.2% dietary fiber and $220{\mu}g/g$ isoflavones. Free amino acid component of soymilk residue were L-glutamic acid, L-leucine, L-lysine, L-valine, L-phenylalanine, L-isoleucine, L-threonine, L-methionine and L-cystine. Total dietary fiber content of bread with soymilk residue and wheat flour were 5% soymilk residue; 3.50%, 10% soymilk residues; 4.65%, 15% soymilk residues; 5.96%, and wheat flour bread: 2.1% respectively Mixing water absorption capacity was increased by increasing amounts of added soymilk residue and vital wheat gluten. Dough development time was increased by increasing amounts of added soymilk residues, while decreased by increasing amounts of vital wheat gluten. The dough volume of composite flour with 5%, 10% and 15% soymilk residue flour were the smaller than wheat flour dough. But the dough volume was increased by added vital wheat gluten, and the composite flour with 5% soymilk residue flour and 9% vital wheat gluten was better than the others. This study proved that the dough volume of composite flour with 5% soymilk residue flour and 9% vital wheat gluten was better than the others. On the other hand, the soymilk residue flour contains dietary fiber, isoflavone, protein, lipid and carbohydrate. Therefore the soymilk residue flour will be very useful as food material.

Production of a Protein Supplement from Soymilk Residues by Combined Use of Enzymes and Microorganisms (효소와 미생물의 복합 처리에 의한 두유박 단백질소재의 제조)

  • Chae, Hee-Jeong;Lee, Man-Jin;Lee, Jong-Dae
    • Applied Biological Chemistry
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    • v.41 no.1
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    • pp.73-77
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    • 1998
  • The effects of soymilk residues solubilization by cellulase, protease, koji and yeast were investigated on dry matter and protein yields, amino acid and organic acid contents. Co-treatment of soymilk residues by cellulase and protease gave high dry matter yield and protein yield. Koji treatment followed by yeast fermentation was effective for increasing organic acid content and producing soy sauce-like taste and odor. Organic acid content of fermented hydrolysates was improved by cellulase treatment. Protease treatment rather than koji treatment gave high amino acid content, and cellulase treatment seemed to have little effect on increasing free amino acid content. In sensory evaluation, koji-treated hydrolysate showed higher overall acceptance than other hydrolysates, however it showed lower overall acceptance than commercial fermented soy sauce.

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Nutritional Evaluation of Tofu Containing Dried Soymilk Residue(DSR) 2. Evaluation of Carbohydrate Quality (건조비지 첨가 두부의 영양적 품질평가 2. 탄수화물의 품질)

  • Kweon, Mi-Na;Ryu, Hong-Soo;Mun, Sook-Im
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.22 no.3
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    • pp.262-265
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    • 1993
  • Dietary fiber content and carbohydrate digestibility of dried soymilk residue (DSR) and tofu containing DSR were evaluated. Insoluble dietary fiber (IDF) content was 37.4 and 49.8% (%, moisture free basis) for common soymilk residue and DSR, respectively. Both soymilk residues contained 12.5% of soluble dietary fiber (SDF, dry basis). Tofu containing DSR, which is partially substituted with DSR corresponding to 10% weight of soybean used, had higher dietary fiber content (30% more for RDF and 45% more for SDF) than tofu manufactured in traditional manner. Carbohydrate digestibility was much lower in all tofu products ranging from 11% to 21%, and there was a negative correlation( r = -0.9243) between carbohydrate digestibility and total dietary fiber content.

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Effect of Number of Washings with Solvents on Quality of Dried Soymilk Residue (용매의 세척회수(洗滌回數)가 건조비지의 품질에 미치는 영향)

  • Kim, Woo-Jung;Sohn, Jung-Woo;Chung, Sung-Soo
    • Korean Journal of Food Science and Technology
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    • v.17 no.2
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    • pp.95-100
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    • 1985
  • Effects of number of washings with solvents on drying rates and physicochemical properties of dried soymilk residues(SMR) were investigated. The dried soymilk residue was prepared by washing the residue with acetone or ethanol, followed by drying at $60^{\circ}C$. Increase of number of washings with a residue/solvent ratio of 1/1.5 resulted in an increase in drying rate and in protein content of the residue while the lipid content decreased. The brightness of the dried residue and the properties of water and oil absorption were also improved by washing with acetone which was advantageous to ethanol for all of the properties measured. Washings more than 3 times with acetone or 2 times with ethanol were found to be less effective in terms of quality improvement. The more addition of dried residue into the mixture of SMR-wheat flour resulted in a linear increase of water and oil absorption characteristics.

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Screening of Quinone Reductase Inducers from Agricultural Byproducts Using Mouse Hepatoma Cell Line (Mouse hepatoma 세포를 이용한 농산부산물로부터 quinone reductase활성물질의 탐색)

  • Kim, Jong-Sang;Nam, Young-Jung;Kim, Joo-Won
    • Korean Journal of Food Science and Technology
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    • v.27 no.6
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    • pp.972-977
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    • 1995
  • The induction of phase II enzymes including quinone reductase [NAD(P)H dehydrogenase(quinone): NAD(P)H : (quinone acceptor) oxidoreductase, EC 1.6.99.2] is a major mechanism of whereby a large group of heterogeneous compounds prevent the toxic, mutagenic, and neoplastic effects of carcinogen. Using murine hepatoma cells(Hepalclc7 cells), quinone reductase(QR) inducers as the possible chemopreventive agents were screened from rice bran, wheat bran, soymilk residue, defatted soybean cake, defatted sesame and perilla residues. The 80% methanol extracts of defatted sesame and perilla residues induced quinone reductase significantly while the others did have little effect on the enzyme induction. Thin layer chromatography of the extracts showed that the fastest moving band(Rf=0.70) in the developing solvent of n-butanol : n-propanol : 2N ammonia(10 : 60 : 30) was responsible for the enzyme induction by the 80% methanol extracts of defatted sesame and perilla residues. Further identification of active component(s) is in progress.

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Effect of Solvents Washing on Chemical and Physical Properties of Dried Soymilk Residue (용매처리에 의해 건조(乾燥)된 두유(豆乳)비지의 이화학적 성질(性質)에 관한 연구(硏究))

  • Kim, W.J.;Kim, D.H.;Oh, H.I.
    • Korean Journal of Food Science and Technology
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    • v.16 no.3
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    • pp.261-266
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    • 1984
  • Soymilk residue was washed separately with acetone, ethanol, isopropyl alcohol and n-hexane, and then dried at $45^{\circ}C$. The dried residues were evaluated for drying rate, color and chemical and functional properties. Washing with acetone resulted in the shortest drying time (1hr) and the highest in protein content (48.8%) and in Hunter 'L' value. The dried residues after treatment with acetone and alcohols showed relatively high values of 4.3-4.7g/g and 8.5-8.7g/g in oil and water absorption, respectively. Addition of the acetone treated residue to wheat flour at a level of 10% affected little in Amylograph viscosity while those treated with other solvents caused a significant decrease in the viscosity.

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Production of Protein Hydrolyzate, that can be used as Food Additives, from Okara (산업폐기물인 비지로부터 식품첨가물로 이용할 수 있는 단백질 가수분해물의 생산)

  • Woo, Eun-Yeol;Kim, Min-Jung;Shin, Weon-Sun;Lee, Kyung-Ae;Kim, Kang-Sung
    • Korean Journal of Food Science and Technology
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    • v.33 no.6
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    • pp.769-773
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    • 2001
  • Protein content of okara and soybean were found to be 37.3% and 42.5%, respectively by micro-Kjeldahl analysis. Solubility of okara protein in phosphate buffer (pH 8) was 10% versus soy protein of 68.4%. Insolubilization of okara protein was mostly due to disulfide bonding between cysteine residues caused by excessive heat treatment during soymilk processing: hydrophobic interactions and hydrogen bondings were involved to lesser extent. Optimum extraction temperature and time were $60^{\circ}C$ and 40 min. Typical solubility profile of soy protein disappeared for okara protein though minimum solubility of the protein was around pH 3.0. Treating okara with protease was effective in solubilizing okara protein and solubility increased to 19.2%. Optimum reaction temperature and time were $80^{\circ}C$ and 50 min, respectively. Cell wall degrading enzyme did not increase solubility of the protein, however. Through enzymatic reaction okara protein could be effectively solubilized for uses as food ingredient.

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