• Title/Summary/Keyword: gluten-free rice bread

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Quality Analyses and Consumer Acceptability of Gluten-Free Rice Bread and Other Commercially Marketed Bread in Korea (Gluten-Free 쌀빵, 시판 중인 쌀빵 및 밀빵의 품질과 소비자 검사 분석)

  • Kim, Sang Sook;Chung, Hae Young
    • The Korean Journal of Food And Nutrition
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    • v.30 no.2
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    • pp.336-344
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    • 2017
  • The physical characteristics of gluten-free rice bread, commercial rice as well as wheat bread marketed in Korea were delineated, a sensory descriptive analysis performed, and a consumer acceptability study conducted. Both the specific gravity and color of gluten-free rice bread were higher than those of commercial rice and wheat bread. The sensory descriptive analysis revealed that the adhesiveness, fracturability, fermentation odor, and the powdery mouthfeel of gluten-free rice bread were higher than those of commercial rice and wheat bread. In contrast, the sweet odor, sweetness, egg taste, butter taste, and milk taste of gluten-free rice bread were lower than those of commercial rice and wheat bread. The consumer acceptability results revealed differences regarding odor, appearance, taste, texture, and overall acceptance between a blind test and an informed test of gluten-free rice bread, commercial rice, and wheat bread. The consumer acceptability findings were associated with those of the sensory descriptive analysis. In overall, the results indicated that the quality of gluten-free rice bread can be improved by controlling the decrease of adhesiveness, fracturability, and powdery mouthfeel.

Effects of Mixing Speed and Time on the Dynamic Viscoelasticity of Dough and the Baking Properties of Gluten-Free Rice Bread (교반 조건에 따른 Gluten-Free 쌀빵 반죽의 동적점탄성과 제빵 특성)

  • Kim, Sang Sook;Chung, Hae Young
    • The Korean Journal of Food And Nutrition
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    • v.28 no.6
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    • pp.1011-1018
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    • 2015
  • The effects of mixing speed (3, 6 and 10 speed) and time (2, 5 and 10 min) on the dynamic viscoelasticity of dough and the baking properties of gluten-free rice bread were investigated. The specific gravity of the dough was not affected by the mixing speed and time before and after fermentation. The elasticity (G') and viscosity (G") of the dough increased and the tan ${\delta}$ (G"/G') decreased with higher mixing speeds and longer mixing times. The specific volume of the gluten-free rice bread was affected by the mixing time in response surface methodology (RSM). The hardness of the gluten-free rice bread showed a decreasing trend as the specific volume for the gluten-free rice bread increased. The appearance of the gluten-free rice bread was symmetrical at high mixing speeds and long mixing times. Overall results indicated that the quality of gluten-free rice bread could be improved by controlling the mixing speeds and mixing times for the dough.

Quality Characteristics of Gluten-Free Rice Bread Formulated with Soft-Type Rice Flour Mixed with Black-Rice Flour (흑미 쌀가루를 연질미와 배합한 Gluten-Free 쌀 식빵의 품질특성)

  • Choi, Ok Ja;Jung, Hee Nam;Shin, Seo-Ho;Kim, Young Doo;Shim, Jae-Han;Shim, Ki Hoon
    • The Korean Journal of Community Living Science
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    • v.26 no.3
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    • pp.447-456
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    • 2015
  • To develop functional bread and improve the quality of gluten-free bread, this study investigates the quality characteristics of gluten-free rice bread made from soft-type rice (Bodeurami) flour mixed with black rice at different levels (0%, 10%, 20%, 30%, and 40%, w/w). An increase in the mix level of black-rice flour increased the weight of rice bread but reduced its volume, baking loss, volume expansion, and specific volume. The results for Hunter's color value and texture measurements indicate that an increase in the content of black-rice flour reduced the L-value, the b-value, hardness, gumminess, and chewiness but increased the a-value, adhesiveness, and springiness. According to the sensory analysis, rice bread formulated with a mixture of soft-type rice flour (80%) and black-rice flour (20%) showed the highest scores in color, taste, texture, and overall preferences. With respect to flavor and appearance, bread samples with 20% and 30% black-rice flour were preferred to those with 0%, 10%, and 40% black-rice flour. These results suggest that gluten-free rice bread mixed with wet-milling rice flour and black-rice flour can be used to develop functional and gluten-free bread.

Baking Properties of Gluten-free Rice Bread with Different Percentages of Corn Starch and Waxy Corn Starch (옥수수 전분과 찰옥수수 전분 첨가 비율에 따른 Gluten-free 제빵 특성)

  • Kim, Sang Sook;Chung, Hae Young
    • The Korean Journal of Food And Nutrition
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    • v.28 no.4
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    • pp.586-593
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    • 2015
  • The baking properties of gluten-free rice bread with different percentages of corn starch and waxy corn starch were investigated. The specific gravity and color (L, a, b) of the dough as well as the appearance, color (L, a, b) and texture of the rice bread were analyzed. Replacement of rice flour with 1, 2.5, 5, 7.5 and 10% corn starch did not have a significant effect on the specific gravity and color of the dough. The volume and specific volume of the rice bread showed an increasing trend as the amount of added corn starch increased. The chewiness, gumminess and hardness of the rice bread showed a decreasing trend as the amount of added corn starch increased. Replacement of rice flour with 1, 5 and 10% waxy corn starch did not have a significant effect on the specific gravity and color of the dough. The color of the rice bread showed an increasing trend as the amount of added waxy corn starch increased. These results suggest that replacement of rice flour with 7.5% corn starch or 1% waxy corn starch is effective for gluten-free rice bread.

Effect of Added Water Temperature on Baking Characteristics of Gluten-Free Rice Bread (Gluten-Free 쌀빵의 제빵 특성에 대한 첨가 수분 온도 영향)

  • Kim, Sang Sook;Chung, Hae Young
    • The Korean Journal of Food And Nutrition
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    • v.30 no.6
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    • pp.1184-1190
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    • 2017
  • Baking characteristics of gluten-free rice bread were investigated, when 20, 30, 40, 50 and $60^{\circ}C$ water was added during mixing. The temperature of the dough before fermentation was affected by the temperature of the water and the mixing time. When $60^{\circ}C$ water was added, the specific gravity of the dough was the highest before fermentation (p<0.01). The specific gravity of the dough after fermentation was 32~39% of the specific gravity of the dough before fermentation. When $50^{\circ}C$ water was added, the volume and the specific volume of rice bread were higher than those in addition of water at other temperatures (p<0.001). In case of adding water of $50^{\circ}C$, the shape of the rice bread showed the largest volume, high appearance and a round shape. After storage for 2 and 24 hours, the addition of water of $50^{\circ}C$ resulted in the lowest hardness and chewiness values of rice bread. The sensory descriptive analysis revealed that when $50^{\circ}C$ water was added, the air cell size, springiness and hardness values of gluten-free rice bread were lower than those in addition of water at other temperatures. There was a difference in the appearance and texture of gluten-free rice bread, when 20, 30, 40, 50 and $60^{\circ}C$ water was added during mixing.

Effects of Hydrocolloids on the Quality of Protein and Transglutaminase Added Gluten-free Rice Bread (단백질과 트란스글루타미나제 첨가 글루텐 프리 쌀빵의 품질에 대한 친수콜로이드의 효과)

  • Hwang, Sun Ok;Kim, Ji Myoung;Shin, Malshick
    • Korean journal of food and cookery science
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    • v.33 no.2
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    • pp.198-208
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    • 2017
  • Purpose: To improve the quality of basic gluten-free rice bread composed of white rice flour, salt, sugar, yeast, skim milk powder, olive oil, and water, the effects of transglutaminase (TGase), whey protein (WP), propylene glycol alginate (PGA), and hydroxypropylmethylcelluose (HPMC) were investigated. Methods: TGase, WP, PGA, and HPMC were added to rice flour cumulatively. The pasting properties of rice flour blends as well as volume, shape, color value, textural properties and sensory evaluation of basic rice bread (RB1) RB1+TGase (RB2), RB1+TGase+WP (RB3), RB1+TGase+WP+PGA (RB4), and RB1+TGase+WP+PGA+HPMC (RB5) were compared. Results: Consistency of rice batter increased upon addition of TGase, WP and PGA, and RB3 and RB4 had higher specific volumes than others. PGA improved volume, crumb air cell uniformity, and resilience but lowered elasticity and moistness of RB. HPMC increased, hardness, moistness and softness, and slightly reduced volume. Conclusion: Therefore, it is suggested that hydrocolloids, PGA and HPMC may be necessary to improve volume, crumb structure, textural properties and overall eating quality of gluten-free rice bread.

Effects of Soaking and Particle Sizes on the Properties of Rice Flour and Gluten-free Rice Bread

  • Song, Ji-Young;Shin, Mal-Shick
    • Food Science and Biotechnology
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    • v.16 no.5
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    • pp.759-764
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    • 2007
  • To investigate the effect of soaking and particle sizes on the properties of rice flour and gluten-free rice bread, wet-milled (WRF, dried at $20^{\circ}C$) and dry-milled rice flours (DRF) were passed through sieves (45 or 100 mesh). Soaking of the rice grains affected the particle size distribution of flour passed through the same size screen. The L and b values of WRF were higher than those of DRF and were not changed with decreasing particle sizes, but DRF increased L and decreased b values. The initial pasting temperatures and setback viscosities of both flours decreased with decreasing particle sizes. The swelling powers at $100^{\circ}C$ increased with decreasing particle sizes in DRF, but maintained in WRF. Starch granules were observed on the surface of flour particles in WRF. The apparent viscosity of WRF paste exhibited 3-5 times higher than that of DRF. Thus, wet milled rice flour with smaller particle sizes (${\phi}<150\;{\mu}m$) showed better properties for making gluten-free rice bread.

Effect of kneading and fermentation conditions on the quality of gluten-free rice bread (반죽 및 발효 조건이 글루텐 프리 쌀 빵의 품질에 미치는 영향)

  • Jo, Youngje;Chun, Areum;Sim, Eun-Yeong;Park, Hye-Young;Kwak, Ji-Eun;Kim, Mi-Jung;Lee, Choon-Ki
    • Korean Journal of Food Science and Technology
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    • v.52 no.5
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    • pp.510-515
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    • 2020
  • In recent years, there has been an increasing interest in research on gluten-free bread. Most studies have focused on substituting or imitating the gluten network. However, less attention has been paid to technological approaches to improve the quality of gluten-free rice bread (GFRB). This study analyzed the influence of the temperature of water used for kneading and fermentation time on the quality of GFRB. Water at various amounts and different temperatures was added for kneading, and fermentation was performed for 0, 2, and 4 h. GFRB produced by kneading using water at 95℃ showed the highest specific volume and the lowest hardness among test groups, regardless of other factors. In conclusion, mixing equal volumes of water at 95℃ and rice flour, followed by a 2 h fermentation process, produced the best-quality GFRB in terms of cross-sectional area, hardness, and appearance.

Study of quality characteristics in gluten-free rice batter according to ultra-high speed conditions

  • Ku, Su-Kyung;Park, Jong-Dae;Sung, Jung-Min;Choi, Yun-Sang
    • Korean Journal of Agricultural Science
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    • v.48 no.3
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    • pp.535-544
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    • 2021
  • When baking, the proper blending or mixing of materials will affect the quality of the product. The mixing strength is important when establishing the optimal conditions for batter, and control of the mixing condition is accordingly an important factor. This study investigated the effects of the mixing speed and time on the quality characteristics of a gluten-free type of rice batter. The batter samples manufactured for this purpose are as follows: control (+) (wheat flour), control (-) (rice flour), T1 (1,800 rpm, 1 min), T2 (1,800 rpm, 2 min), T3 (1,800 rpm, 3 min), T4 (3,600 rpm, 1 min), T5 (3,600 rpm, 2 min), T6 (3,600 rpm, 3 min). In this study, rice flour was used in the T1 to T6 samples. The pH of the batter tended to be higher when the mixing speed was slower and the time was shorter depending on the ultra-high mixing conditions. The moisture content of T3 was highest, and there was no difference according to the ultra-high speed conditions. The specific volumes of the ultra-high mixing treatments were higher than those of the control samples. The relationship between the specific volume, hardness and springiness of rice bread according to the mixing speed and time was weak. Therefore, it is considered that the application of ultra-high speeds when manufacturing gluten-free batter can have a positive effect on improving the production efficiency by reducing the processing time.