• Title/Summary/Keyword: Korean wheat flours

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Quality Characteristics of Muffins Added with Whole Waxy Sorghum Flour (통곡 찰수수가루 첨가 머핀의 품질 특성)

  • Bae, Hyo-Je;Ryu, Bog-Mi;Woo, Koan-Sik;Seo, Myung-Chul;Kim, Chang-Soon
    • Korean journal of food and cookery science
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    • v.28 no.4
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    • pp.473-478
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    • 2012
  • This study was investigated the quality characteristics of muffins which were prepared with whole waxy sorghum flours. Muffins were made with different sorghum flour contents of 10, 30, 50 and 100% substitution for wheat flour. The crude protein and fat contents of muffins were not different among samples, but the crude ash content was determined to increase with increasing content of sorghum flour. The specific gravity of the sorghum muffin batter as well as the weight and uniformity index of the sorghum muffins, were not significantly different from those of the control. The volume of muffins was found to decrease significantly when 100% sorghum flour was substituted for wheat flour. In terms of color, the L and b values of muffins were decreased with increasing contents of sorghum flour, and the a value was increased. The sensory test revealed that the hardness and adhesiveness of muffins was increased with the addition of sorghum flour, but springiness and chewiness decreased. According to the results of a sensory evaluation test, the flavor, taste and texture of muffins were reduced with the addition of 50 and 100% sorghum flour. The appearance and overall acceptability of sorghum muffins were not found to be different significantly from those of the control, up to 30% level substitution with sorghum flour.

The Physical Properties of -uffed Snacks (ppeongtuigi) Added with Sweet Potato Flours (일반 고구마 분말을 첨가한 팽화과자(뻥튀기)의 이화학적 특성)

  • Cheon, Seon-Hwa;Eun, Jong-Bang
    • Journal of Applied Biological Chemistry
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    • v.54 no.3
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    • pp.147-152
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    • 2011
  • The physical properties of puffed snack by pellet with sweet potato flour, brown rice flour and wheat flour were evaluated at different moisture content, puffing temperature, and puffing time. The sweet potato pellets were tempered to 14, 16, and 18% moisture content and were puffed at 233, 238, and $243^{\circ}C$ for 4, 5 and 6 s. The whitness ($L^*$) value decreased as the heating temperature and time increased. The redness ($a^*$) and yellowness ($b^*$) values increased with increasing heating temperature and time. The specific volume of sweet potato puffed snacks showed an increasing trend with higher puffing conditions. The hardness of sweet potato puffed snacks increased as heating time and heating temperature increased. The sweet potato puffed snacks prepared with increasing moisture content (18%), heating times (6 s), and heating temperatures ($243^{\circ}C$) were awarded the highest scores for most of the sensory attributes and hence declared as best sweet potato puffed snacks.

Studies on the Extending of Plywood Adhesives used Foliage Powder (낙엽분말(落葉粉末)을 이용(利用)한 합판용(合板用) 접착제(接着劑)의 증량(增量)에 관(關)한 연구(硏究))

  • Kim, Jong-Man;Bark, Jong-Yeol;Lee, Phil-Woo
    • Journal of Korean Society of Forest Science
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    • v.42 no.1
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    • pp.83-100
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    • 1979
  • It was planned and performed to study the possibility on the use of inexpensive and easily acquirable foliage powder, which processed by pulverizing after dried, instead of imported expensive wheat flour for the extending of plywood adhesives. Pine leaves of softwood trees, Poplar, Oak and Sycamore leaves of broad leaved species were selected and harvested to pulverize into the minute foliage powder. The harvested foliages from each selected species were pulverized into 40 mesh particles after dried at $100{\sim}105^{\circ}C$ condition during 24 hours in drying oven. To compare the extending effect of plywood adhesives with these foliage powders 100 mesh wheat flour using at current plywood industry was also prepared. Foliage powder and wheat flour were extended into 10, 20, 30, 50 and 100% to the urea and phenol formaldehyde resin. After plywoods were processed by the above extending method shear strength of extended plywoods were analyzed and discussed. The results obtained at this study are as follows: 1) Among 10% extensions of urea formaldehyde resin plywood, dry shear strength of plywood extended by wheat flours was the highest and that of non-extended plywood the next. Plywood extended with foliage powder showed the lowest dry shear strength. The order of dry shear strength of plywoods extended by foliage powder was that of Oak foliage powder extension, the best, that of Sycamore, that of Pine, and that of Poplar. 2) Among 20% extensions of urea formaldehyde resin plywood, plywood extended by wheat flour showed the highest dry shear strength, and the next was plywood by Poplar foliage powder. All these two showed higher dry shear strength than non-extension plywoods. Except Poplar, dry shear strength of foliage powder extension plywoods was bad, but the order of dry shear strength of plywoods extended by foliage powder was Pine, Poplar and Oak. 3) In the case of 30% extensions of urea formaldehyde resin plywood, dry shear strength of wheat flour extension was the highest and non-extension the next. Dry shear strength of foliage powder extension plywoods was poor with a rapid falling-off in strength. 4) Among 50% and 100% extensions of urea formaldehyde resin plywood, only wheat flour showed excellent dry shear strength. In the case of foliage powder extension, low dry shear strength showed at the 50% extension of Pine and Poplar, and plywoods of 50% extension of Oak foliage powder delaminated without measured strength. All plywoods of 100% foliage powder extension delaminated, and then shear strength were not measured. 5) Among wet shear strength of 10% extensions of urea formaldehyde resin plywood, wheat flour extension was the highest as in the case of dry shear strength, and non-extension plywood the next. Except Poplar foliage extension, all foliage powder extension plywoods showed low shear strength. 6) Wet shear strength of plywoods of 20% extension lowered in order of non-extension plywood, plywood of wheat flour extension and plywood of foliage powder extension, but other plywoods of foliage powder extension except plywoods of Poplar and Oak foliage powder extension delaminated. 7) Wet shear strength of 30% or more extension of urea formadehyde resin plywood were weakly measured only at 30% and 50% extension of wheat flour, and wet shear strength of plywoods extended by foliage powder were not measured because of delaminating. 8) Dry shear strength of phenol formaldehyde plywoods extended by 10% wheat flour was the best, and shear strength of plywoods extended by foliage powder were low, but the order was Oak, Poplar, and Pine. Plywood of Sycamore foliage powder extension delaminated. 9) In the case of 20% extensions of phenol formaldehyde resin, dry shear strength of plywood extended by wheat flour was the best, but plywood of Pine foliage powder extension the next, and the next order was Oak and Poplar foliage powder. Plywood of Sycamore foliage powder extension delaminated. 10) Among dry shear strength of 30% extensions of phenol formaldehyde plywood, that of Pine foliage powder extension was on the rise and more excellent than plywood of wheat flour extension, but Poplar and Oak showed the tendency of decreasing than the case of 20% extension. Plywood of Sycamore foliage powder extension delaminated. 11) While dry shear strength of 50% and 100% extension plywoods were excellent in the case of Pine foliage powder and wheat flour extension, that of hardwood such as Poplar, Oak, and Sycamore foliage powder extension were not measured because of delaminating. 12) As a filler the foliage powder extension of urea formaldehyde resin is possible up to 20% with Poplar foliage powder. And also as an extender for phenol formaldehyde resin, Pine foliage powder can be added up to the same amount as that in the case of wheat flour.

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Physical Properties of Yellow Alkaline Noodle Sheet Added with Sodium Chloride and Sodium Carbonate (Sodium chloride와 sodium carbonate를 첨가한 yellow alkaline noodle sheet의 물리적 특성)

  • Kim, Soon-Tae;Chang, Hak-Gil;Park, Young-Seo
    • Korean Journal of Food Science and Technology
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    • v.39 no.1
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    • pp.33-38
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    • 2007
  • The peak time, peak height, width at peak, and the width at 8 min of Mixograph increased as the amount of sodium chloride in yellow alkaline noodle sheet was increased. The peak time of the Mixograph duration increased almost twice when 0.5% sodium carbonate was added to yellow alkaline noodle sheet, but decreased when the amount of sodium carbonate was above 0.5%. The peak height decreased as the amount of sodium carbonate increased. Protein content and sedimentation values showed positive correlations with the Mixograph peak height, width at peak, and width at 8min. The pasting temperature, peak viscosity, minimum viscosity, and final viscosity increased as the amount of sodium chloride in yellow alkaline noodle sheets was increased for all wheat flours. The peak viscosity, minimum viscosity, and final viscosity also increased as the amount of sodium carbonate increased. The pasting temperature showed a positive correlation with the water retention capacity and the alkaline water retention capacity.

Dough Properties and Quality Characteristics of Breads added with Barley Flour (보릿가루 첨가 복합분의 반죽 물성 및 빵의 품질 특성)

  • Ha, Dung-Minh;Park, Yang-Kyun;Kang, Jeong-Hwa;Kim, Myung-Hee
    • Food Science and Preservation
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    • v.19 no.3
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    • pp.344-353
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    • 2012
  • This study was carried out to investigate the rheological properties of dough and the quality characteristics of breads with Saesalbori (non-waxy barley) and Saechalbori (waxy barley) flours added at concentrations of 10, 20, and 30% to wheat flour. The maximum viscosity increased in the Saesalbori flour mixtures and decreased in the Saechalbori flour mixtures. The dough stability of the 10% barley flour mixtures was equal to that of the control while that of the 30% barley flour mixtures decreased more. The extensibility of the dough decreased with the increasing level of barley flour in all the blends, but the resistance of the dough increased. As the ratio of barley flour increased, the loaf volume of the breads significantly decreased, but the bread weight increased. The 10% Saesalbori flour mixtures increased the hardness of the breads but did not cause any significant change in the other TPA parameters while the 10% Saechalbori flour mixtures did not cause any change in all the TPA parameters. The sensory evaluation results showed that the 10% barley flour mixtures had no significantly different overall acceptance from the control, and that the 20% substitution still resulted in acceptable sensory qualities. The results of the study also showed that the bread-making properties of Saesalbori were improved by germination, but those of Saechalbori declined.

Quality Characteristics of Korean Domestic Wheat Flours Produced Under Double Cropping System on the Paddy Fields (남부지역의 논에서 이모작 작부체계를 통하여 생산한 국산밀의 품질 특성)

  • Seo Young Oh;Jong Ho Seo;Jisu Choi;TaeHee Kim;Seong Hwan Oh
    • Proceedings of the Plant Resources Society of Korea Conference
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    • 2022.09a
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    • pp.80-80
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    • 2022
  • 본 연구에서는 남부지역 논의 이모작 작부체계로부터 생산한 국산밀의 품질 특성을 살펴보았다. 벼 및 이의 대체작물(검정콩, 참깨, 들깨)과 연계한 작부체계별로 생산된 국산밀의 제분율은 모든 토양에서 70% 이상으로 높았으며, 밀가루의 색상은 전작 작물의 종류에 따라 색도(L*, a*, b*) 값과 백색도 지수가 변화하였다. 특히, 흰색의 정도를 나타내는 L*값과 백색도는 벼 전작 토양에서 수확한 밀에서 높았다. 그러나 다량 및 미량 영양소 함량은 벼 전작물 토양에서 수확된 밀에서 낮았고 대체 작물을 전작한 토양에서 생산한 밀에서 대체로 높았다. 다량 영양소 중 P와 Mg의 함량과 미량 영양소 중 Zn와 Cu의 함량은 검정콩을 전작한 토양에서 수확한 밀에서 특히 높았다. 국산밀의 회분, 단백질, 아밀로스와 손상전분 함량은 각각 0.45-0.59%, 7.7-9.5%, 22.3-24.0%와 5.0-5.9%이다. 국산밀 중에 조경밀은 단백질 함량이 다른 품종에 비해 높고 질이 우수하여 제빵용으로 이용되고 있는데, 본 연구에서는 작부체계에 관계없이 전체적으로 10% 이하로 낮은 특성을 보였다. 그나마 검정콩을 전작한 토양에서 수확한 밀에서 9.45%이며, 벼를 전작한 토양에서는 8.0% 이하로 극히 낮았다. 또한 SDS-침전가도 검정콩 전작 토양에서 수확한 밀에서 높았으며, 회분 함량은 0.6% 이하로 1등급에 해당되었다. 논토양에서 참깨나 콩, 들깨 등의 벼 대체 작물들의 전작은 토양의 물리화학적 특성을 개선하고 제빵공정에 좀 더 유리한 고품질의 밀을 생산하는 데 이바지할 수 있음을 보여준다. 그러나 검정콩-밀 작부체계의 생육일수(344일)가 벼-밀(331일), 들깨-밀(337일), 참깨-밀(310일) 보다 길어 앞뒤 작물의 작기 연결성에 있어서 여유가 없었으며, 기상환경의 변화에 따라 검정콩의 수확시기가 늦어지게 되면 밀 파종 시기와 겹칠 수 있는 우려가 있다. 차후에 시비 기준을 달리한 조건에서 밀의 생산성 증대와 더불어 최고 품질의 밀을 생산할 수 있는 체계를 확립하고자 한다.

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Development of dry milling suitable rice cultivar to invigorate rice processing products

  • Jeung, Ji-Ung
    • Proceedings of the Korean Society of Crop Science Conference
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    • 2017.06a
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    • pp.10-10
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    • 2017
  • Rice consumption has been continuously decreasing as the eating habits of Koreans have become westernized and diversified. The per capita annual rice consumption in Korea has dropped sharply from 136.4 kg in 1970 to 61.9 kg in 2016. The Korean government, therefore, has been trying to promote rice consumption by invigorating the processed food industry using rice flour. To facilitate the market for processed rice foods, it is essential to develop proper milling technology in terms of flour particle size and damaged starch content to produce high quality rice flour at competitive cost. Dry milling and wet milling are the two major processes used to produce rice flour. Although the dry milling process is relatively simple with a lower production cost, damaged starch content increases because of the high grain hardness of rice. In wet milling, the quality of rice flour is improved by reducing flour particle size as well as damaged starch content through soaking procedures. However, the production costs are high because of the additional expenses associated with the disposal of waste water, sterilization and drying of the wet flour. Recently developed technologies such as jet milling and cryogenic milling also require expensive investment and production. Therefore, developing new rice cultivars with dry milling adaptability as well as good processing properties is an important goal of rice breeding in Korea. 'Suweon 542' is a floury endosperm mutant line derived from sodium azide treatment on a high-yield, early maturing, and non-glutinous japonica rice cultivar, 'Namil'. Compared with the wild type, after dry milling process, the grain hardness of 'Suweon 542' was significantly lower because of its round and loosely packed starch granules. Also, the flour of 'Suweon 542' had significantly smaller particles and less damaged starch than 'Namil' and other rice cultivars and its particle size distribution was similar to a commercial wheat cultivar. Recently, through collaborations with nine universities and food companies, a total of 21 kinds of processed prototypes, using the dry milling flour of 'Suweon 542', were evaluated. In the production of major rice processing products, there was no significant quality difference between the flours prepared by wet milling and dry milling. Although the amount of water added to the dough was slightly increased, it was confirmed that the recipe applying the wet flour could be used without significant change. To efficiently transfer the floury endosperm characteristics of 'Suweon 542' to other commercial rice cultivars, it is essential to develop DNA marker tightly linked to the target gene. Association analysis using 70 genome-wide SSR markers and 94 F2 plants derived from 'Suweon 542'/'Milyang 23' showed that markers on chromosome 5 explained a large portion of the variation in floury grains percentage (FGP). Further analysis with an increased number of SSR markers revealed that the floury endosperm of 'Suweon 542' was directed by a major recessive locus, flo7(t), located in the 19.33-19.86 Mbp region of chromosome 5, with RM18639 explaining 92.2% of FGP variation in the F2 population. Through further physical mapping, a co-segregate and co-dominant DNA marker with the locus, flo7(t) was successfully developed, by which, thereby, breeding efficiency of rice cultivars having proper dry milling adaptability with high yield potential or useful functional materials would be improved. 'Suweon 542' maintained the early maturity of the wild type, Namil, which can be used in rice-wheat double cropping systems in Korea not only for improved arable land but also for sharing flour production facilities. In addition to the high susceptibility against major rice diseases, nevertheless, another possible drawback of 'Suweon 542' is the high rate of viviparous under prolonged rainfall during the harvesting season. To overcome susceptibility and vivipary of 'Suweon 542', the progeny lines, derived from the crosses 'Suweon 542' and 'Jopyeong', an early maturing rice cultivar with multiple resistance against rice blast, bacterial blight, and rice strip virus, and 'Heugjinju', a anthocyanin pigment containing black rice cultivar, were intensively evaluated. As the outputs, three dry milling suitable rice elite lines, 'Jeonju614', 'Jeonju615', and 'Jeonju616' were developed.

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