• Title/Summary/Keyword: noodle dough

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Quality of Wet Noodle Prepared with Wheat Flour and Mushroom Powder (버섯분말을 첨가한 생면의 품질특성)

  • Kim, Young-Soo
    • Korean Journal of Food Science and Technology
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    • v.30 no.6
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    • pp.1373-1380
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    • 1998
  • Wet noodles were prepared with wheat flour and mushroom powder (oyster and oak mushrooms), and effects of added mushroom powders on dough rheology and wet noodle quality were examined. Particle size distribution of mushroom powder ranged from 0.04 to $500\;{\mu}m$, which was different from that of wheat flour. The initial pasting temperature in amylograph, and the water absorption and the dough development time in farinograph increased with the increase of mushroom powder. The peak and final viscosities in amylograph, and dough stability in farinograph decreased with the increase of mushroom powder. Decrease of L value and increase of a and b values were shown with the increase of mushroom powder in wheat flour-mushroom powder composite as well as wet noodles. The cooked weight and volume of cooked noodles were decreased, but the turbidity of soup were increased with the addition of mushroom powder. Most of texture parameters (hardness, cohesiveness, chewiness and cutting force) of cooked noodles decreased with the addition of oyster mushroom powder, but increased with the addition of oak mushroom powder. From the result of sensory evaluation, wet noodles containing 3% oyster mushroom powder and 5% oak mushroom powder were rated as high quality wet noodles.

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Comparison of Noodle-Related Characteristics of Domestic and Imported Wheat (국산밀과 수입밀의 국수품질에 관한 연구)

  • Lee, Sang-Yang;Hur, Han-Sun;Song, Jung-Choon;Park, Nam-Kyu;Chung, Woo-Kyung;Nam, Jung-Hyun;Chang, Hak-Gil
    • Korean Journal of Food Science and Technology
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    • v.29 no.1
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    • pp.44-50
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    • 1997
  • Comparative study was performed on noodle characteristics among three domestic wheat varieties (Geurumil, Eunpamil and Alchanmil) and imported one (ASW: Australian Standard White). For the noodle-related characteristics, crude protein, ash and gluten contents were measured, and rheological properties of dough, flour color difference, particle size distribution, cooking properties and sensory properties were evaluated. Crude protein content of Geurumil, Eunpamil and Alchanmil flour were 12.8%, 14.2% and 11.2%, respectively, whereas that of ASW flours was 9.1%. Ash content was the highest in Geurumil (0.56%). The yield of patent flour was the highest in Eunpamil (53.4%) among all the varieties. Higher dough stability with farinogram and maximum viscosity with amylogram were shown in Eunpamil and Alchanmil than those of ASW. The cutting force of cooked noodle from ASW was the lowest maximum, that was measured by texture analyzer. Fairly good color and sensory scores were obtained in cooked noodle of Alchanmil. Studies of noodle-related characteristics indicated that domestic Eunpamil was higher in protein content and flour yield, and Alchanmil was higher dough stability and color, when compared to those of imported ASW. Alchanmil and ASW had good scores in sensory evaluation, especially appearance and color.

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Effects of Germinated Whole Soy flour on the Properties of Dough and Noodle (발아콩분말 첨가가 반죽 및 면류 특성에 미치는 영향)

  • Chung Hai-Jung;Choi, Min-Hee;Chang Hak-Gil;Kim Joo-Sook;Kim Woo-Jung
    • Korean journal of food and cookery science
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    • v.21 no.6 s.90
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    • pp.919-926
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    • 2005
  • The effects of the addition of germinated whole soy flour on dough and noodle characteristics were investigated in this study. The soybeans were germinated for 12 hours at $20^{\circ}C$ and ground to 60 mesh. With increasing soybean flour addition up to $16\%$, the RVA viscograph and mixograph properties were significantly decreased both with and without the addition of $3\%$ salt(p<0.05). The width and length extensibility were increased with increasing whole soy flour addition up to $8\%$ after which they decreased. The addition of the whole soy flour turned the color of the wet and cooked noodle a little darkish and greenish yellow. The hardness and gumminess of wet noodle increased with increasing whole soy flour amount, while those of cooked noodle gradually decreased. Sensory evaluation showed that addition of tile whole soy flour significantly increased the savory flavor and yellowish color of cooked noodle.

A study on the characteristics and noodle structure made from pea starch-wheat composite flour using a scanning electron microscopy (Scanning Electron Microscopy을 이용한 완두 전분 복합면의 반죽구조 및 특성연구)

  • 김은주;윤재영;김희섭
    • Korean journal of food and cookery science
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    • v.15 no.5
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    • pp.500-506
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    • 1999
  • Scanning electron microscopy was used to study changes in granule shape, dough and cooked noodle structure of pea starch-wheat composite flour with 20% and 30% pea starch substitution. The granule shape of pea starch with low swelling power and solubility was oval, irregular and smooth, which had more a deep groove than corn starch and wheat flour. During gelatinization, pea starch after swelling was partially collapsed but it still held its main shape. The dough microstructure of 20% pea starch substitution showed compact structure distributed with more small starch granules than wheat dough and was held in discontinuous network. When cooked, more open filamentous network where starch gelatinization was complete were noticed. Swollen but partially collapsed large starch granules maintaining their shape were appeared in noodle structure after 30 min soaking in soup. In farinograph studies, 20% pea starch substitution to wheat flour showed that MTI value was as same as wheat flour even though stability was slightly decreased so that it was considered that it has proper property of noodle making.

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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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Barley Noodle Making by Vacuum Press (진공 탈기 압출법에 의한 보리 국수 제조)

  • Chang, Chang-Moon;Oh, Young-Taeg;Yoon, In-Hwa
    • Korean Journal of Food Science and Technology
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    • v.18 no.2
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    • pp.93-97
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    • 1986
  • Dried barley moodle was made with the addition of gelatinized corn flour as binder by using piston type noodle piston press, in which the temperature was kept below the temperature of protein denaturation. The evacuation of air bubble from the dough strengthened the wet noodle strands and improved the cooking quality of the dry noodle. Although the binder was indispensable, the addition should be less than 20%, because the gelatinized corn flour increased the turbidity of the cooking water. Kneading with 3% solution of soy protein resulted in improvement of the noodle's cooking quality.

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Effect of Starter of Flour Ferment by Lactobacillus acidophilus on Physical Properties of Noodle Dough (Lactobacillus acidophilus로 발효시킨 밀가루 발효물의 첨가가 면 반죽의 물성에 미치는 영향)

  • Cha, Wook-Jin;Lee, Si-Kyung
    • Korean Journal of Food Science and Technology
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    • v.37 no.5
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    • pp.801-805
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    • 2005
  • Practical use of wheat flour ferment with L. acidophilus during noodlemanufacturing was investigated. Water absorption decreased and overall mechanical tolerance index increased with ferment addition up to 20%. Amylograph of flour with ferment showed initial gelatinization temperatures of control, and 5% ferment-and ferment-added groups were equal. Maximum viscosity decreased by ferment addition. L, b and a values of dough increased proportionally with added ferment. Color of doughs with ferment was generally ligher. Total color difference of doughs added with ferment was higher than that of control group.

Physicochemical Properties of Korean Raw Noodle Flours (우리나라 생면용 밀가루의 성질)

  • Shin, Soong-Nyong;Kim, Sung-Kon
    • Korean Journal of Food Science and Technology
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    • v.37 no.3
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    • pp.418-424
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    • 2005
  • The physicochemical properties of raw noodle flours (n = 11) commercially produced from Australian Standard White (ASW) (Group 1, n = 8) and blonds (Group 2, n = 3) of ASW and Australian hard, western white or hard red winter were investigated. Protein and ash contents were lower in Group 1. The tristimulus color values, mean particle size, flour swelling volume (FSV) and rheological parameters of farinograph and extensigraph were not different between two flour groups. Peak viscosity measured with Rapid Visco Analyzer was higher in Group 1. The protein content was positively correlated with mean particle size, dough stability and dough extensibility, and negatively correlated with FSV and peak viscosity. The FSV wag positively correlated with the peak viscosity. The rheological parameters of dough did not show any correlations with FSV and peak viscosity.

Quality Characteristics of Korean Wheat Noodle by Formulation of Foreign Wheat Flour and Starch (수입밀과 전분의 혼합 비율을 달리하여 제조한 우리밀국수의 품질특성)

  • 박동준;구경형;김철진;이수정;양정례;김양하;김종태
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.32 no.1
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    • pp.67-74
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    • 2003
  • Quality characteristics of dough and noodles prepared from Korean wheat flours (Gru and Tapdong) were evaluated by substituting foreign wheat flours and starch in the formula. Korean wheat flours showed greater water absorption and weakness as well as protein and ash contents, but lower stability than the foreign wheat (control) By increasing substituted foreign wheat flours, water absorption of domestic Gru and Tapdong decreased. Dough development time decreased for Tapdong by substituting up to 30% with foreign wheat flours. When imported wheat flours added in Gru and Tapdong, weakness of dough was decreased. Adhesiveness of dough was increased in all samples according to water adding, and Gru particulary showed the most high adhesiveness at 65% water and 10~20% replacement. From the mechanical texture test, Tapdong noodles were increased in cutting force by increasing amounts of imported wheat but decreased in extension distance. However, Cru noodles showed the opposite tendency. Hardness, adhesiveness, and chewiness of noodles were increased in all samples by increasing amounts of substitution with imported starch. As a result of cooked noodles test, Korean wheat noodles showed relatively lower values in cutting force and extension distance than in those of the control Studies of noodle-related characteristics of Korean wheat flours indicated that domestic soft wheat such as Gru might have high quality above the foreign wheat in noodle preparation by adding flours containing high amylose or low gluten.

Effects of Poria cocos Powder on Wet Noodle Qualities (복령분말이 생국수의 품질에 미치는 영향)

  • Kim, Young-Soo
    • Applied Biological Chemistry
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    • v.41 no.7
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    • pp.539-544
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    • 1998
  • A study was conducted to investigate the effects of Poria cocos powder on dough rheology and wet noodle quality. Poria cocos powder had considerably lower content of crude protein, crude fat and crude ash than those of wheat flour. Poria cocos powder had also much bigger particle size $(74.62\;{\mu}m)$ and larger surface area $(3884.13\;cm^2/g)$ than those of wheat flour. The peak, final viscosities and setback in amylograph increased with the increase of Poria cocos powder concentration. The water absorption and dough stability in farinograph increased with the increase of Poria cocos powder concentration. With the increase of Poria cocos powder, the L values decreased in wheat flour-Poria cocos powder blend and dough, but increased in wet noodles. The cooked weight and volume of cooked noodles decreased, but the turbidity of soup increased with the increase of Poria cocos powder concentration. The hardness, cohesiveness, chewiness and springiness of cooked noodles had the biggest values at 3% addition of Poria cocos powder, but the values decreased above that concentration. The sensory evaluation of cooked noodles showed that the wet noodles with high quality could be produced by $5{\sim}7%$ addition of Poria cocos powder.

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