• Title/Summary/Keyword: dough properties

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Development of Yeast Leavened Pan Bread Using Commercial Doenjangs (Korean Soybean Pastes): 1. Physicochemical Properties of Doenjang and Physical Properties of Bread Added with Doenjang (시판 된장을 이용한 식빵 제조: 1. 된장의 이화학적 특성 및 된장을 첨가한 식빵의 물리적 특성)

  • 오현주;문혜경;김창순
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.32 no.7
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    • pp.1002-1010
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    • 2003
  • This study was carried out to develope yeast leavened pan bread using the commercial Doenjangs (Korean soybean pastes). Physicochemical properties of the Doenjang products were measured such as aminonitrogen, pH, titratable acidity and salinity, reducing sugar, total free sugar, total organic acid, PDI (protein dispersibility index) and color. Seven products of Doenjang were freeze-dried and powdered to be used in bread formula at the levels of 2.5, 5.0, 7.5 and 10.0%. When the Doenjang powder was added up to 5.0%, the ovenspring during baking remarkably increased resulting in increased loaf volume. However, with Doenjang powder more than 7.5%, the loaf volume became smaller than the control as the dough expansion and ovenspring decreased. Thus when Doenjang was added to bread dough, the loaf volume was highly correlated with ovenspring (r=0.92) but it was not with dough expansion during 1st fermentation (r=0.56). The browning color of bread crust and crumb became deeper with decrease in L value as the addition of Doenjang powder increased. From the mechanical texture measurements of bread crumb, hardness, gumminess and chewiness decreased with addition of Doenjang powders. Regardless of the kinds of Doenjang, the Doenjang powders could be added into the bread dough up to 5.0%, improving the loaf volume and texture of yeast leavened pan bread and demonstrating the possibility of producing a functional bread using the Doenjang powders.

The Effect of Lipoxygenase Action on the Mechanical Development of Wheat Flour Doughs (Lipoxygenase가 제빵시 반죽의 물성에 미치는 영향)

  • Yoon, Sun;Park, Hee-Ok;Oh, Hae-Sook
    • Korean Journal of Food Science and Technology
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    • v.15 no.1
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    • pp.62-65
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    • 1983
  • This study was to investigate the effect of lipoxygenase on the mechanical development of wheat flour doughs. The flour mixtures used for experiments were 100% wheat flour $(S_1)$, 90% wheat flour and 10% raw soy flour $(S_2)$, 90% wheat flour and 10% toasted soy flour $(S_3)$, and 90% wheat flour and 10% toasted soy flour with the addition of lipoxygenase preparation $(S_4)$. When flour mixtures were compared with control $(S_1)$, $S_2$ demonstrated lower water absorption, lower mixing talerance index (MTI) and lower dough weakening and increased dough development time, whereas $S_3$ showed higher water absorption, lower MTI, lower dough weakening and the same dough development time. The addition of lipoxygenase to $S_3$ $(S_4)$ resulted in the same water absorption, longer dough development time, lower MTI and love dough weakening than those of $S_3$, which were comparable with $S_2$. Percent water absorption of flours, obtained from extensograph, was highest in $S_3$ and lowest in $S_2$. Addition of both raw and toasted soy flour to wheat flour resulted in an increased energy, $S_4$ demonstrated higher extensibility and lower resistance to extension than $S_3$, and those values of $S_4$ were comparable with $S_2$. The experimental data obtained from this study suggested that soy flour mixtures containing lipoxygenase had better mechanical dough properties than toasted soy flour mixture without lipoxygenase.

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Baking Qualities of Bread Dough Substituted with High Amount of ${\beta}-Glucan$ from Agrobacterium spp. R259 KCTC 10197Bp (Agrobacterium spp. R259 KCTC 10197BP로부터 생산된 ${\beta}-glucan$ 고함유 식빵 반죽의 특성)

  • Kang, Eun-Young;Yang, Yun-Hyoung;Oh, Sang-Hee;Lee, Jeung-Hee;Kim, Hye-Yooung;Kim, Mi-Kyoung;Cho, Han-Young;Kim, Mee-Ree
    • Korean Journal of Food Science and Technology
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    • v.38 no.3
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    • pp.348-354
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    • 2006
  • Baking quality of dough made of flour substituted with insoluble ${\beta}-glucan$ (10, 20, and 30%), functional food material produced from Agrobacterium spp. R259 KCTC 10197BP, was evaluated. Optimum time to reach 1st stage of dough fermentation decreased with increasing ${\beta}-glucan$ content, whereas mixing time increased. Addition of ${\beta}-glucan$ did not affect pH of dough. Hunter color L, a, and b values of dough added with up to 20% ${\beta}-glucan$ were not significantly different from those of control. Rheology properties such as cohesiveness and springiness of ${\beta}-glucan$ added dough increased, while hardness and gumminess decreased. Amylogram showed addition of ${\beta}-glucan$ to flour lowered setback and consistency, which are suggested to delay retrogradation.

Quality Characteristics of Fresh Noodles With Hot-air-dried Perilla Leaf powder (열풍 건조 들깻잎 분말을 첨가한 생면의 품질특성)

  • Kim, Jung-Soo;Ahn, Jong-Sung;Ahn, Kwang-Yeol
    • Culinary science and hospitality research
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    • v.19 no.3
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    • pp.73-86
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    • 2013
  • This study produced hot-air-dried perilla leaf to add Korea's popular perilla leaf to fresh noodles to examine their value as food and get the best fresh noodle recipe by adding 0%, 3%. 6%, 9%, and 12% of perilla leaf to flour. The moisture content of the dough was highest at 34.41% for the control group with 0% perilla leaf, whereas the pH was lowest at 5.59 for the dough with 12% perilla leaf. As a result of WRC analysis of the dough, moisture absorption increased with greater perilla leaf content. The moisture content of fresh noodles was lowest for the control group with 0% perilla leaf, whereas the pH was highest for the control group. The L, a, and b values of the dough were highest for the group with 0% perilla leaf powder. Hardness and cohesiveness were lowest for the 0% group and springiness tended to decrease with increased amounts of hot air-dried perilla leaf. The number of microorganisms decreased significantly with greater perilla leaf content on the third and fourth days. As a result of the sensory test, the 6% dough showed the highest scores for all items including appearance, flavor, color, taste, and texture. Overall acceptability was also highest at 7.20 for the 6% dough and lowest at 3.27 for the 12% dough. Based on the above results, when producing fresh noodles by adding hot-air-dried perilla leaf powder, inhibition of microorganisms improved with greater perilla leaf content for longer storage, but the sensory properties were best when 6% perilla leaf content was added.

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Effect of Steam-Dried Hizikia fusiformis Powder on the Rheological and Sensory Profile of Bread (자건(煮乾) 톳 분말 첨가가 제빵의 물성 및 관능품질에 미치는 영향)

  • Choi, Kwang-Soo;Oh, Young-Ju
    • Culinary science and hospitality research
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    • v.14 no.1
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    • pp.11-20
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    • 2008
  • To establish the optimum formular for processing bread with steam-dried Hizikia fusiformis flour(SHF), it was incorporated into wheat flour by the ratio of 0, 1, 3, 5 and 7% based on a flour weight. Evaluation was performed on the rheological and sensory profile of bread, such as specific loaf volume, water holding capacity(WHC) and height, appearance and Hunter's color value, mechanical texture properties, and sensory value. Increase in the addition of SHF led to the tendency that the expansive force of dough fermentation reduced, and an increase in the textural properties of bread. And cohesiveness, gumminess, and chewiness indicated the tendency of a little reduction as influenced by adding more dried Hizikia fusiformis powder. As for sensory properties and flavor components of the white bread, in case of color and flavor, more than 3% of increase in the addition of the dried Hizikia fusiformis powder led to a drop in preference, and more addition led to a fall in taste and softness. Overall, it was found that adding less than 3% of dried Hizikia fusiformis powder is proper for dough in breadmaking.

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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).

Effect of Broccoli Powder Incorporation on Physicochemical Properties of Cookies

  • Lee, Jun Ho;Lee, Hye Young;Sung, Chang Yong
    • Food Engineering Progress
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    • v.14 no.1
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    • pp.60-64
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    • 2010
  • Freeze-dried broccoli powder was incorporated into cookie dough at 5 levels (0, 1, 2, 3, and 4%, w/w) by replacing equivalent amount of wheat flour of the cookie dough. After aging and sheeting, cookies were baked at 170${^{\circ}C}$ for 8 min in an oven. The baked cookies were cooled to room temperature for 1 hr and packed in airtight bags prior to all measurements. The pH and moisture content were ranged 6.74-6.90 and 2.67-4.12% (wet basis) depending on the broccoli powder level, respectively. Lightness (L$^{\ast}$-value), redness (a$^{\ast}$-value), and hardness decreased while yellowness (b$^{\ast}$-value) increased significantly as the broccoli powder content increased (p<0.05). Spread factor of the control was significantly lower than that of samples containing broccoli powder regardless of the concentration (p<0.05) and increased significantly with increase in broccoli powder content (p<0.05). The broccoli concentration correlated significantly with most of properties except for pH and spread factor (p<0.05 or p<0.01). Hardness correlated negatively with moisture content (p<0.05) but correlated positively with spread factor (p<0.01).

The Effects of the Different Percentages of HPMC and Enzymes on Making Rice Bread (쌀빵의 제빵 적성에 대한 HPMC와 복합 효소 첨가 수준 영향)

  • Kim, Sang Sook;Chung, Hae Young
    • Journal of the Korean Society of Food Culture
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    • v.34 no.4
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    • pp.456-462
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    • 2019
  • This study investigated the bread-making properties of rice bread supplemented with HPMC (hydroxypropyl methylcellulose) 1~3% and gluzyme (glucose oxidase), fungamyl (fungal ${\alpha}$-amylase) and pentopan (xylanase+hemicellulases) (0.0015~0.0090%). The viscoelastic properties of the dough with HPMC 1~3% were analyzed. When the rice flour was supplemented with HPMC 1~3%, the viscoelastic properties of the dough tended to increase as the amount of added HPMC was increased. The physicochemical characteristics of the rice bread with HPMC, gluzyme, fungamyl, and pentopan were analyzed. Supplementing the rice flour with HPMC, gluzyme, fungamyl, and pentopan had a significant effect on the volume (p<0.01) and specific volume (p<0.001) of the rice bread. Supplementing the rice flour with 3% HPMC and 0.0045% or 0.0090% pentopan had a significant effect on increasing the volume (p<0.01) and specific volume (p<0.001) of the rice bread. Supplementing the rice flour with 3% HPMC, 0.0023% gluzyme and 0.0015% fungamyl had a significant effect on increasing the volume (p<0.01) and specific volume (p<0.001) of the rice bread. These results suggest that supplementing the rice flour with HPMC, gluzyme, fungamyl and pentopan is effective for the production of rice bread.

Quality and Sensory Characteristics of White Bread added with Various Ginseng Products (인삼제품의 첨가에 따른 제빵적성 및 관능평가)

  • Song, Mi-Ran;Lee, Ka-Soon;Lee, Byeong-Chan;Oh, Man-Jin
    • Food Science and Preservation
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    • v.14 no.4
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    • pp.369-377
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    • 2007
  • This study investigated the effect of ginseng products on the baking properties of white breads. Flour was substituted by ginseng products (ginseng at levels 2, 4, 6, and 8%, all w/w, of flour levels). Both ginseng powder (GP) and red ginseng powder (RGP) were used. Similarly, red ginseng extract (RGE) was substituted at levels of 1, 2, 3, and 4% (all w/w) of flour. The physical properties of each dough were assessed using farinograms, extensograms, and amylograms. Water absorption increased as the proportions of ginseng products rose. The dough surface areas and R/E (resistance/extensibility) values decreased, as did peak viscosities, at the proportions of ginseng products increased. The pH values during fermentation decreased as the proportions of ginseng products increased. The fermentation power of dough with GP was lower than that of control, and higher than that of dough with RGP or RGE, but the addition of ginseng products beyond certain levels weakened the gas retention power: The specific loaf volumes of breads with 2% GP were the highest at 5.41 mL/g. In breads with RGE, the specificloaf volume increased from 5.52 mL/g to 5.82 mL/g as RGE levels rose from 0% to 4%. Hardness increased with rising GP and RGP levels in breads with GP and RGP, but decreased with RGE levels in breads with RGE. The moisture contents of breads during storage tended to be higher than control in breads with ginseng products. Lightness increased with addition of GP and decreased upon addition of RGP or RGE, while redness and yellowness increased after addition of any ginseng products. In sensory evaluation tests, the sensory scores for texture, color, mouth feel, and overall acceptability, were high, when any ginseng product (GP, RGP or RGE) was present at 2%. Of these breads, the bread with 2% RGE attained the highest sensory score.

Physical Properties of Dough with Bamboo Leaf Powder (죽엽 분말을 첨가한 반죽의 물리적 특성)

  • Hwang, Su-Jung
    • Food Science and Preservation
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    • v.18 no.4
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    • pp.517-526
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    • 2011
  • The physical properties of dough with different levels (2, 4, 6, and 8%) of bamboo leaf powder were inverstigated. The bamboo leaf powder had a moisture content of 5.15%, a crude protein content of 10.48%, a crude fat content of 5.21%, a crude fiber content of 22.74%, and a crude ash content of 17.63%. The following parameters showed significant differences with the increase in the amount of bamboo leaf powder added. The gelatinization degree measured by a rapid visco-analyzer increased with the increase in the powder amount added. In the values of the farinogram parameter for dough consistency, the elasticity of the dough increased with the increase in the powder amount added. The alveogram values showed a similar tendency as those of the farinogram in terms of elasticity, absorption rate, absorption time and stability. In the rheofermentometer analysis, the volume decreased with the increase in the powder amount added, but no significant difference was found at up to 4% powder amount addition, suggesting that the about 2% and up to 4% powder amount addition is moderate.