• Title/Summary/Keyword: wheat flour dough

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Effects of Transglutaminase on the Physical Properties of Resistant Starch-added Wheat Flour Doughs and Baguettes

  • An, Young-Hyun;Gang, Dong-Oh;Shin, Mal-Shick
    • Food Science and Biotechnology
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    • v.14 no.5
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    • pp.608-613
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    • 2005
  • Effects of transglutaminase (TG) on physicochemical properties of dough prepared with 20% resistant starch (RS)-added wheat flour were investigated. RS levels of wheat flours added with native wheat starch (NS), Hi-maize (RS2), retrograded (RS3), and cross-linked (RS4) wheat starches were 2.97, 11.88, 5.79, and 9.09%, respectively. Peak viscosity of NS-added flour was higher, whereas setback was lower, than those added with other resistant starches. TG had no effect on pasting behaviors of RS-added flours. Water absorption ranged from 66.5 to 79.0%, and development time increased with RS addition. TG increased tensile strength of dough after fermentation and bread volume, due to well-developed gluten network resulting from cross-linking facilitated by TG Addition of TG decreased hardness of baguettes, with RS2-added baguette showing lowest value. These results indicate addition of TG enhanced eating quality of RS-added breads.

The Effects of Dough with Added Silkpeptide Powder on the Physicochemical Characteristics of Bread during Breadmaking (실크펩티드 첨가가 제빵과정 중 이화적 성분 변화에 미치는 영향)

  • Yoon, Seong-Jun;Kim, Young-Ho
    • The Korean Journal of Food And Nutrition
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    • v.20 no.3
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    • pp.265-275
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    • 2007
  • The aim of this study was to investigate the effects of dough with added silkpeptide powder on the physicochemical characteristics of bread during breadmaking, where the physicochemical properties of the bread dough containing silkpeptide were investigated. The protein content of the silkpeptide was 90.83%. In the amino acid analysis of the silkpeptide flour, glycine content was highest at 18,760.04 mg%. Alanine, serine, and tyrosine were much higher in the silkpeptide flour than in wheat flour. In the amino acid analysis of the wheat flour, glutamic acid was determined to be 4,046.16 mg%, which was the highest content, followed by aspartic acid, glycine, leucine, and tryrosine respectively. The pH of the control dough sample was 5.94 and in the dough with added silkpeptide powder it was 5.94~5.96 after mixing. The pH of the test dough, in which 0.2% lactic acid was added, was lower than the control at 5.88. There was no difference in pH between the control and the other samples after fermentation for 30 minutes. The pH of the control was 5.68 and that of the dough with 1.0% silkpeptide was 5.73 after fermentation for 60 minutes. The sucrose content of both the control sample and the sample with added silkpeptide was 3,080 mg% after mixing, while that of the control sample was 550 mg% and that with silkpeptide was 780 mg% after prooping. Sucrose content tented to decrease greatly as it was consumed during the fermentation process and the dough with added silkpeptide had a slower sucrose consumption speed than the control dough.

Substitution of Rice Flour on Bread-Making Properties (쌀가루 첨가 식빵의 제빵 특성)

  • Choi, In-Duck
    • Food Science and Preservation
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    • v.17 no.5
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    • pp.667-673
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    • 2010
  • Effects of substituting wheat flour with rice flour on bread-making properties were investigated. Rice(Oryza sativa L.) cultivars were 'Goami2(G2)', a functional rice containing higher non-digestible carbohydrates, and 'Chucheongbyeo (CC)', an ordinary Japonica rice. Rice flour was substituted at 10, 20 and 30% in wheat bread formulation, and the composite flour was used for yeast-leavened bread making. Peak and final viscosity of G2 rice flour was significantly lower than that of CC rice flour. Mixograph analysis indicated that replacement of G2 rice flour increased dough water absorption and mixing time compared to wheat flour. But, typical mixograph pattern was not found in the dough from composite flour with CC rice flour. As increasing the amount of rice flour, the G2 rice breads showed a significant decrease in loaf volume, but an increase in bread crumb firmness(g). For the CC rice breads, no significant difference(p<0.05) was observed in loaf volume and crumb firmness, ranging 1012~1050 cc and 433~482g, respectively. The results revealed that Chucheongbyeo is more suitable for bread-making with the composite flour of rice(10~30%) and wheat flour.

A Study of Rheological Properties of Dough with Waxy Black Rice Flour (찰흑미분을 첨가한 밀가루 반죽의 물리적 특성에 관한 연구)

  • Kim, Woen-Mo;Kim, Tae-Hyung;Lee, Yoon-Shin
    • Culinary science and hospitality research
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    • v.12 no.4 s.31
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    • pp.236-246
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    • 2006
  • The different rheological properties of wheat flour and waxy black rice flour dough were investigated in dough with 10, 20, 30 and 40% of waxy black rice flour(WBRF). Water absorption and weakness of dough was increased, but stability of dough, high initial pasting temperature, viscosity at peak point and the volume were decreased after 2nd fermentation as the addition of WBRF was increased. In the 10% addition of WBRF, the dough showed similar rheological properties with those of control group.

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Characteristics of Preparation of Rice Manju and Rice Flour with Soaking and Different Particle Sizes (수침과 입자크기를 달리한 쌀가루와 쌀 만주제조 특성)

  • Lee, Seung-Hyun;Shin, Mal-Shick
    • Korean journal of food and cookery science
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    • v.25 no.4
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    • pp.427-434
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    • 2009
  • To increase rice consumption and substitute rice flour for wheat flour to make gluten-free bakery products, the physicochemical and pasting properties of rice flours prepared from raw and soaked rices passed through different size screens were investigated. The quality properties of manju dough and preparation of rice manju were also measured. Dry milled flour with soaked rice (DMFSR) were decreased in ash and crude lipid contents compared to dry milled flour with raw rice (DMFRR). Water binding capacity, damaged starch content, and L value of rice flour increased with decreasing particle size, but the b value decreased. Peak, cold, and breakdown viscosities of DMFSR were higher than those of DMFRR by RVA. Hardness of manju dough with DMFSR was lower than that with DMFRR, but that of manju shell exhibited a reverse trend. Sensory difference testing revealed the smoothness of surface, hardness, roughness, and overall quality were significantly different (p<0.05). The smoothness of the surface of manju with DMFRR-200 and all DMFSR were better than that of manju prepared with wheat flour. Hardness showed lower values in DMFRR-200, and all DMFSR as well as wheat flour and roughness decreased with decreasing particle size. Rice manju with wheat flour, DMFRR-200, DMFSR-120, and DMFSR-170 ranked above 5 points and were not significantly different (p<0.05).

Effects of Pine Pollen Powder on the Quality of White Bread Prepared with Korean Domestic Wheat Flour (송화가루 첨가가 우리밀 식빵의 품질특성에 미치는 영향)

  • 이혜숙;박정로;전순실
    • The Korean Journal of Food And Nutrition
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    • v.14 no.4
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    • pp.339-345
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    • 2001
  • Baking properties of Korean domestic wheat flour supplemented with pine pollen powder were investigated. Farinographic characteristics showed that the addition of pine pollen increased water absorption without any changes in dough development time and stability of dough in comparison with control. A higher gelatinization temperature and a lower maximum viscosity of dough on amylogram were observed with pine pollen powder addition. The addition of pine pollen powder showed decrease in redness and increases in lightness and yellowness of bread crumb. A significant increase in bread volume was observed as the pine pollen powder added more. Springiness. cohesiveness and resilience of bread were increased by pine pollen powder. Sensory evaluation of bread showed that the addition of pine pollen powder, especially at the level of 1%, enhanced color, mouth feeling, bleak and appearance without significant reduction of overall acceptability.

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Physicochemical Properties of Onion Powder Added Wheat Flour Dough (양파분말을 첨가한 빵반죽의 물리화학적 특성)

  • Bae, Jong-Ho;Woo, Hi-Seob;Choi, Hee-Jin;Choi, Cheong
    • Korean Journal of Food Science and Technology
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    • v.35 no.3
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    • pp.436-441
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    • 2003
  • The physiochemical properties of wheat flour dough added with onion powder were investigated. The color value of mixed onion powder was added and had low values of lightness and redness, as well as high value of yellowness. Water absorption of the wheat flour dough decreased with the increase in the onion powder. Both development time and stability of the wheat flour dough with onion powder added were less than those of the control. An increase in the added amount of onion powder resulted in an increase of weakness. The maximum viscosity gradually decreased with the increase the amount of onion powder, while the temperature of gelatination did not change. The wheat flour dough extensibility decreased, and the resistance of extension and area under the curve increased in the onion powder. It is of considerable note that the pH of the wheat flour dough decreased in the process of fermentation with an increase in the amount of onion powder.

Effect of particle size of rice flour on popping rice bread (쌀가루 입도가 쌀 식빵의 팽화에 미치는 영향)

  • Park, Mi-Kyung;Kang, Soon-Ah;Lee, Kyung-Hee
    • Korean journal of food and cookery science
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    • v.22 no.4 s.94
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    • pp.419-427
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    • 2006
  • The purpose of this study is to promote the substitution of rice flour for wheat flour in making bread and thus the consumption of rice by examining the effect of particle size of rice flour on leavening rice bread. For this purpose, several experiments were carried out. With regard to particle size distribution, 59.45% of wheat flour had passed 200 mesh and 3 kinds of rice flour milled to penetrate into 20, 35, and 45 mesh (S1, S2 and S3) had passed 21.88%, 33.1% and 36.38% of those for 200 mesh, respectively. To leaven the rice flour dough to bread, 25% of vital gluten was needed. To determine the optimal water quantity for rice bread dough, the hardness of wheat and rice flour dough was measured by rheometer. The appropriate water quantity for S1, S2 and S3 was set at 285 ml , 295 ml and 335${\sim}$340m1, respectively. The loaf volume index of the wheat flour bread was 6.24, while that of and rice flour bread S1, S2 and S3 was 5.38, 5.50 and 5.75, respectively. These results indicated that the loaf volume index of rice flour bread is lower than that of wheat flour bread, but that the volume of rice flour bread was increased with fuel particle size of rice flour. Scanning electron microscopy (SEM), image of the wheat bread tissue at a magnification of 35 times showed long, large, oval-shaped, air cells and thin cell membrane, as well as small air cells, whereas the images of rice flour showed angular, circular, air cells and rough and thick cell membrane. The size and number of air cells in the rice bread were larger in S2 and S3 with fuel particle flours than in S1. In particular, the bread made with S3 contained many air cells that were as large as those in the wheat bread were. In addition, when the inner cell wall was magnified 1500 times, almost no small air cell was observed in C and S3, whereas many fine air cells were observed in the cell wall of S1 and S2.

The Effect of Vital Gluten and Gum on the Retrogradation of Breads Made with Korean Wheat Flour and Sprouted Brown Rice (활성 글루텐 및 검질 첨가에 따른 발아 현미 첨가 우리밀 식빵의 노화 특성)

  • Kim, Sun-Kyung;Lee, Seung-Joo;Yoon, Jang-Ho;Lee, Seung-Ju
    • Journal of the East Asian Society of Dietary Life
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    • v.18 no.3
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    • pp.384-390
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    • 2008
  • This study examined the effects of sprouted brown rice (SR), gluten (G), and hydroxypropyl-methyl-cellulose (H) on the suppression of retrogradation in breads made with Korean wheat flour. An amylograph was used to determined the pasting properties of dough samples made with Korean wheat flour and additions of SR, SR+G, SR+H, and SR+G+H, respectively. In addition, a texture analyzer was employed to measure the hardness changes of bread samples left at room temperature for 72 hours. Finally, the type of retrogradation was calculated by the Avrami equation. The results showed that the addition of SR significantly decreased dough viscosity. However, the dough samples containing SR, G, and H all displayed reduced cold paste viscosity and setback, indicating a suppression of staling. The bread samples containing SR added to Korean wheat flour had increased hardness, but the addition of gluten (SR+G) reduced hardness. Upon examining the bread samples stored at room temperature for 24 hours, it was shown that the addition of G and H with SR (SR+G+H) suppressed retrogradation. Finally, the Avrami model data indicated that the type of retrogradation varied according to the addition of SR, G, and H. The breads made with hard wheat flour (HWF), WM, and WM+SR+H had similar Avrami exponents ($1.20{\sim}1.28$), while those for WM+SR, WM+SR+G, and WM+SR+G+H ranged from 2.7 to 3.3. Overall, the combined addition of SR and H was considered effective for preventing retrogradation in bread made with Korean wheat flour.

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Extension Properties of Frozen Hard Wheat Flour Doughs Mixed with Ascorbic Acid and Gluten Hydrolysate

  • Koh, Bong-Kyung
    • Food Science and Biotechnology
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    • v.16 no.4
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    • pp.590-593
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    • 2007
  • The textural properties of doughs mixed with L-ascorbic acid (AA), trypsin hydrolyzed gluten peptide (THGP), and a mixture of AA-THGP were investigated using texture analyzer under the fermentation of the full formula and the freezing process. The full formula dough (FFD) required a shorter mixing time than the flour and water formula dough (FWD). The maximum resistance (Rmax) values of both the unfrozen and frozen doughs were lower for the FFD. The effects of AA and THGP additions were not significant (p<0.01) in FFD, however, they were significant in FWD. The freezing effect was significant (p<0.0001) for FFD, indicating that yeast fermented dough was much more sensitive to damage from freezing, which subsequently affected dough strength. Additions of AA (p=0.0026) and THGP (p=0.0097) had a significant effect on the extensibility (E-value) of unfrozen FWD, where THGP increased and AA decreased the E-value. However, freezing did not significantly effect the extensibilities of FWD (p=0.64) or FFD (p=0.21). The area of FFD was lower than the area of FWD for both the unfrozen and frozen doughs. However, the frozen dough mixed with THGP alone had the largest area overall. The addition of additives did not result in significantly different (p<0.01) areas under the curve, except in the frozen FFD. Freezing caused a statistically significant difference in the area of FWD (p=0.0045).