• Title/Summary/Keyword: wheat flour noodle

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Effect of Soybean Protein Isolate on the Properties of Noodle (분리대두단백질의 첨가가 제면적성에 미치는 영향)

  • Bae, Song-Hwan;Rhee, Chul
    • Korean Journal of Food Science and Technology
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    • v.30 no.6
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    • pp.1301-1306
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    • 1998
  • This study was conducted to investigate the effect of soybean protein isolate (SPI) on the properties of noodle which was made of composite flour blended with SPI extracted at acidic (pH 2.0, 3.0), neutral (pH 7.0) and alkaline (pH 10.0, 12.0) conditions. L-value of dry and cooked-moodle which were made of composite flour was lower than that of 100% wheat flour, but a and b-value wete higher than those of 100% wheat flour, Optimal cooking time of dry-noodle which was made of composite flour was longer than that of 100% wheat flour, but the weight, volume and water absorption of the cooked-noodle were lower than those of cooked-noodle of 100% wheat flour. Breaking force of dry-noodle which was made of composite flour blended with $SPI-2,\;SPI_3,\;SPI_{7}$, and $SPI-{10}$ was lower than that of 100% wheat flour, but the breaking force of dry-noodle which was made of composite flour blended with $SPI-{12}$ at level of 5% and 10% was same as that of 100% wheat flour. Springiness and cohesiveness of the cooked-noodle which was made of composite flour were same as those of 100% wheat flour, but chewiness and hardness were higher than those of 100% wheat flour.

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Noodle Making Characteristics of Buckwheat Composite Flours (메밀복합분을 이용한 제면 특성)

  • 김복란;최용순;김종대;이상영
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.28 no.2
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    • pp.383-389
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    • 1999
  • To determine the optimum condition for buckwheat noodle making, we prepared noodle from com posite flours of buckwheat, wheat and corn starch, and those physical properties and sensory evalua tion were investigated. The weights of cooked noodle became lower with increasing buckwheat content level indicating that elution of its components to soup was high. Wheat flour in the composite flours probably caused to drop gelatinization temperature and maximum viscosity compared to buck wheat flours. Corn starch in the composite flours increase gelatinization temperature and maximum viscosity compared to buckwheat flours. From the result of farinogram, buckwheat flour lower water absorption ability, and increased dough development time compared to composite flours. Adhesiveness of the cooked noodle with wheat flour was decreased. Cohesiveness of the cooked noodle was decrea sed with increasing buckwheat flour level. In sensory evaluation, chewing and softness of noodle with 100% buckwheat flour was evaluated the best. In taste, BW1 and BSW1 noodles showed slightly higher preference although there was no significant differences.

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Preparation and Evaluation of Dried Noodle Products Made from Composite Flours Utilizing Rice and Wheat Flours (쌀가루와 밀가루 복합분(複合粉)의 제면성(製麵性)시험)

  • Lee, Kyung-Hea;Kim, Hyong-Soo
    • Korean Journal of Food Science and Technology
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    • v.13 no.1
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    • pp.6-14
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    • 1981
  • In an attempt to make dried noodles with composite flours utilizing rice and wheat flours, noodle-making characteristics were improved by the addition of popped rice and wheat flours to rice flour. Their quality was studied in terms of physical properties, noodle-making characteristics, cooking quality test and sensory evaluation. Dried noodle of the composite flour was produced by the conventional method. The results are summerized as follows; 1. In comparing the composite flours, the rice flour containing 30% popped rice flour had a lower maximum viscosity than that with 40% popped rice flour by method of amylograph. The composite flour(20% rice+30% popped rice+50% wheat flour) with added 2% xanthan gum showed the viscosity characteristics which was similar to that of wheat flour. 2. Addition of $1.5{\sim}2.0%$ xanthan gum and $40{\sim}50%$ wheat flour to rice and popped rice flour mixture helped to improve the noodle making properties and the cooking quality, and the noodle making properties and the cooking quality of the mixed flour were almost the same as those of wheat flour alone. 3. The composite flour (rice+popped rice+wheat flour) with xanthan gum showed a higher score in sensory evaluation than that without xanthan gum. The general acceptability scores obtained with the noodle products made of the composite flours with 30% popped rice flour was not significantly different from that of noodle products made of wheat flour alone. However, the noodle products made of the composite flours showed rather higher scores in odor and palatability than the products made of wheat flour alone.

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Characteristics of Noodle Made with Composite Flours of Perilla and Wheat (들께가루를 혼합한 밀가루 복합분의 제면특성)

  • 하귀현;신두호
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.28 no.6
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    • pp.1256-1259
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    • 1999
  • The rheological properties and sensory evaluation were investigated in the noodle from composite flours added with 0%, 10%, 20%, 30%, 40% of perilla flour. The maximum viscosity measured by amy lograph decreased gradually with the adding amount of perilla flour, while the gelatinization temperature increased with perilla flour. The weight and volume of the cooked noodle decreased with increasing perilla flour content. In the color of the noodle, lightness and yellowness decreased, but redness increased with increasing perilla flour content. Hardness and cohesiveness of the cooked noodle reduced, but adhesiveness increased with increasing perilla flour content. In sensory evaluation, the noodle with 20% perilla flour was evaluated the best in taste, texture and overall acceptability. Based on the cooking and sensory evaluation test, addition of 20% perilla flour to wheat flour is considered suitable for the noodle of perilla flour.

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Effect of Synnemata of Beauveria bassiana on the Properties of Noodle (백강균 자실체의 첨가가 제면적성에 미치는 영향)

  • Bae, Song-Hwan;Lee, Chan;Lee, Seok-Won;Yoon, Chul-Sik;Jung, Soo-Hyun
    • The Korean Journal of Food And Nutrition
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    • v.16 no.2
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    • pp.158-164
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    • 2003
  • This study was conducted to investigate the properties of noodle which was made of composite flour blended with the powder of synnemata of Beauveria bassiana. The characteristics of cooked-noodle including color, cooking properties, mechanical texture properties were measured, and sensory evaluation was performed. The L-value of dry and wet-noodle which made of composite flour was similar to that of 100% wheat flour, but a and b-value were higher than those of 100% wheat flour. There were no differences in the weight, volume and water absorption of the cooked-noodle made of composite flour and that of 100% wheat flour, but the turbidity of the cooked-noodle made of composite flour was higher than that of 100% wheat flour. The breaking force of dry-noodle which was made of composite flour was same as that of 100% wheat flour. Hardness and Gumminess of the cooked-noodle which was made of composite flour blended with synnemata powder at level of 1∼5% were same as those of 100% wheat flour. Springiness, chewiness, cohesiveness and adhesiveness of the cooked-noodle which was made of composite flour blended with synnemata powder at level of 1% were similar to those 100% wheat flour. The results of sensory evaluation showed that the cooked-noodles containing 1% and 3% synnemata powder were acceptable as much as those of 100% wheat flour in terms of color, taste, flavor, texture and overall acceptance.

Textural and sensory properties of rice noodle blended with of hydrocolloids (Hydrocolloids혼합첨가 쌀면의 물리적, 관능적 특성연구)

  • Lee, Hanna;Jang, Eun-Hee;Lee, Jin-Sil;Hong, Wan-Soo;Kim, Young-Shik;Han, Jung-Ah
    • Korean journal of food and cookery science
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    • v.28 no.6
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    • pp.703-709
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    • 2012
  • Using market-selling rice flour, four rice wet noodles were prepared with three hydrocolloids: wheat flour, hydroxypropyl methyl cellulose (HPMC), and potato starch at different levels based on pre-test, and the physical and sensory properties of the noodles were measured and compared. The rice noodle with hydrocolloids showed much higher peak and final viscosity than wheat flour noodle (control). Rice noodle also showed higher hardness, cohesiveness and springiness than control in textural properties, however, the noodle with the highest hydrocolloids (wheat flour 15%, HPMC 12.5%, potato starch 17,5%) showed lowest cohesiveness and springiness values among samples. By sensory evaluation, the rice noodle with 15% wheat flour, 8.5% HPMC, 17.5% potato starch showed the highest scores in appearance, taste, texture and acceptability. HPMC in noodles seemed to influence on the noodle quality than potato starch or wheat flour. For making rice noodle, adequate level of hydrocolloids could improve noodle quality such as viscoelasticity, however, excess addition made the noodle coarse.

A Study of Dried Noodles Prepared from Composite Flours Utilizing Job's Tears and Wheat Flour (율무가루와 밀가루 복합분의 제면성 시험)

  • 박규동
    • The Korean Journal of Food And Nutrition
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    • v.8 no.4
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    • pp.325-329
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    • 1995
  • To investigate the Possibility of making noodle with Job's tears flour(JTV), it was mixed with wheat flour by the ratio of 60oyo. Making characteristics of noodle was studied in terms of cooking quality test, color measurement and sensory evaluation. The cooking quality of noodles with 10~40% JTF was almost same value as control in weight and volume of cooked noodle. Color difference ($\Delta$E) between noodles with JFT and control was revealed appreciable value. Though noodles with 10~30% JFT was not significantly different from control in color, only noodle with 10% JFT was same as control In texture by sensory evaluation test.

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A Study on the Preparation of Dried Noodle Made of Composite Flours Utilizing Rice, Wheat and Gelatinized Waxy Rice Flours (호화찹쌀가루를 이용한 쌀가루 복합분의 제면성 시험)

  • Park, Wook-Hee;Kim, Hyong-Soo
    • Journal of Nutrition and Health
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    • v.15 no.2
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    • pp.83-90
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    • 1982
  • This study was attempted to investigate the effects of adding gelatinized waxy rice flour, wheat flour, and Xanthan Gum to rice flour on the preparation and (quality) of dried noodles. 1) Rice flour demonstrated higher maximum viscosity value as determined by Amylograph than wheat flour. Among the composite flour mixture (Rice Flour 85+Gelatinized Waxy Rice Flour 15 + Xanthan Gum 2%) showed the highest viscosity value and (RF 35+ GWRF 15 + Wheat Flour 50) had the lowest. (RF 35 + GWRF 15 +WF 50) demonstrated gelatinization characteristics which is quite similar to that of wheat flour. 2) Forty and 50% replacement of rice flour and gelatinized waxy rice flour (15%) mixture by wheat flour improved significantly noodle making characteristics and cooking quality of noodles. 3) The addition of 2% XG to (RF 45 + GWRF 15 + WF 40) was effective on noodle making properties and on binding properties of cooked noodles. 4) The cooked noodle made of composite flour (RF 45 + GWRF 15 + WF 40 + XG 2%) received the highest total sensory evaluation score among the testing samples, and it was not significantly different from that of wheat flour.

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Characteristics of Noodle Added with Chestnuts Flour (밤가루 복합분 국수의 제면 특성)

  • 박규동
    • The Korean Journal of Food And Nutrition
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    • v.10 no.3
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    • pp.339-343
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    • 1997
  • To investigate the possibility of making noodle with Chestnuts flour(C.F), it was mixed with wheat flour by the ratio of 70%. Making characteristics of noodle was studied in terms of the viscosity property, cooking quality test, color measurement and sensory evaluation. The viscosity property of noodles with 10~20% C.F was almost same value as control. In the cooking quality test, noodles with 10~30% C.F was almost same value as control in weight, volume and absorbance of cooked noodle. Color difference($\Delta$E) between noodles with C.F was not significantly different from control in color, only noodle with 10% C.F was same as control in texture by sensory evaluation test. Based on the cooking and sensory evaluation test, addition of 30% C.F to wheat flour may be suitable for making noodle.

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Discoloration of Korean Wheat Flour Noodles with Additives (첨가제를 이용한 한국산 밀가루 국수의 탈색)

  • Kim, Myung-Shin;Koh, Bong-Kyung
    • Korean Journal of Food Science and Technology
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    • v.32 no.4
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    • pp.792-798
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    • 2000
  • The objectives of this study were to reduce the characteristic dark color of Korean wheat flour noodles. Several additives were tested to reduce dark color of wheat flour dough and 2% ascorbic acid and 0.05% cysteine were selected as additives to Korean wheat flour noodle. Comparative study was performed between commercial imported wheat flour noodle and Korean wheat noodle with two additives to investigate the color, mechanical and sensory properties of noodles. Addition of 2% ascorbic acid increased the brightness of raw and dried Korean wheat flour noodles and 0.05% cysteine was the most effective in improving the brightness for cooked wheat flour noodles. Mechanical properties of cooked Korean wheat flour noodles with 2% ascorbic acid and 0.05% cysteine were similar to that of the imported wheat flour noodles. However, sensory evaluation test showed Korean wheat flour noodles with 2% ascorbic acid had the darkest yellowish-red color, the strongest aftertaste and the lowest overall quality. Therefore, the addition of cysteine was the most effective in mechanical and sensory attributes as well as discoloration of cooked wheat flour noodles.

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