• 제목/요약/키워드: hard wheat

검색결과 65건 처리시간 0.036초

Effect of Inclusion of Hard Versus Soft Wheat Bran with Different Particle Size on Diet Digestibility, Growth Performance and Carcass Traits of Fattening Rabbits

  • Laudadio, V.;Dario, M.;Addonizio, F.;Tufarelli, Vincenzo
    • Asian-Australasian Journal of Animal Sciences
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    • 제22권10호
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    • pp.1377-1385
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    • 2009
  • Effect of inclusion of hard vs. soft wheat bran with different particle size on diet digestibility, growth performance and some slaughter traits was evaluated in fattening rabbits. Four isonitrogenous and isocaloric diets were used according to the origin of wheat bran (hard (HWB) - Triticum durum - and soft (SWB) - Triticum aestivum) combined with wheat bran particle size sieved by 2 mm (fine: 2) or by 8 mm (coarse: 8) in a bifactorial (2${\times}$2) study. A growth trial was conducted to measure the effect of treatments on performance in one hundred and twenty New Zealand White${\times}$Californian rabbits fed experimental diets from 50 to 87 days of age. Faecal apparent digestibility was determined within the last week in twenty animals per diet. Digestibility of nutrients was higher (p<0.05) in the diet containing HWB2, except for crude protein, ether extract and ash, than fine and coarse soft wheat bran diets. Final live weight, feed intake and feed consumption of rabbits on the diet with fine hard wheat bran were higher and resulted in greater daily weight gains (p<0.01) than for animals on the other diets. The slaughter yield and percentage value of organs were not significantly (p>0.05) affected by the diets fed; however, the diet containing fine hard wheat bran led to lower (p<0.05) percentages of skin, abdominal fat and carcass drip loss than the other dietary treatments. It is concluded that fine hard wheat bran can be better included in the diet than soft wheat bran to maximize growth performance without affecting carcass traits of fattening rabbits.

경질(硬質) 및 연질(軟質) 밀가루의 이화학적(理化學的) 성질(性質) 연구(硏究) (Physicochemical Studies on the Hard and Soft Wheats Flours)

  • 김성기
    • 한국식품과학회지
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    • 제11권1호
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    • pp.13-17
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    • 1979
  • 경질(硬質) 밀 Bara, Kameriya품종(品種), 준경질(準硬質) 밀 Suisen 품종(品種) 및 연질(軟質) 밀 Ume 품종(品種)에서 얻은 밀가루를 공시재료(供試材料)로 하여 그들의 2차가공적성(次加工適性)을 보기 위하여 이화학적(理化學約) 특성(特性)을 조사(調査)하였든 바 그 결과(結果)는 다음과 같이 요약(要約)된다. 1. 공시(供試)된 4가지 밀가루의 수분(水分)은 14%정도이고, 회분(灰分)은 모두 0.4%이하였다. 조단백질(粗蛋白質)은 Bara 및 Kameriya 밀가루가 $12.18{\sim}11.12%$, Ume가 6.81%정도였고. gluten량(量)은 전자(前者)가 $11.77{\sim}8.38%$, 후자(後者)가 5.33%이었다. 2. 밀가루의 백도(白度)는 연질(軟質) 밀가루가 경질(硬質)밀가루 보다 훨씬 높았으나 흡수성(吸收性)과 손상전분(損傷澱粉)은 반대로 경질(硬質) 밀가루가 연질(軟質) 밀가루보다 현저하게 많았다. 3. Farinograph의 반죽의 development time은 Kamcriya 밀가루가 8.0분으로 가장 길었으며 Ume는 0.75분으로 극히 짧았다. 반죽의 안정성(安定性)과 valorimeter가(價)는 Suisen 등 경질류(硬質類) 밀가루가 높았다. 4. 공시(供試)된 밀가루의 extensigraph의 특성(特性)은 밀가루의 종류(種類)에 따라 차이(差異)가 있었고 신장저항성(伸張抵抗性)은 시간(時間)이 경과(經過)할수록 증가(增加)하였고, 신장성(伸張性)은 감소(減少)하였다. 밀가루의 amylograph 성적(成績)중 최고점도(最高粘度)는 Bara 및 Kameriya 밀가루가 $540{\sim}640BU$, Suisen 및 Ume 밀가루가 $780{\sim}896BU$로 시료(試料)의 종류(種類)에 따라 차이(差異)가 현저하였다.

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떡의 노화 억제에 대한 밀가루 첨가의 효과 (The Effects of Wheat Flour Addition on Retarding Retrogradation in Korean Rice Cakes(Karedduk))

  • 김상숙;정혜영
    • 한국식품영양학회지
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    • 제22권2호
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    • pp.185-191
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    • 2009
  • This study investigated the effects of adding hard and soft wheat flour to Korean rice cakes(Karedduk) to retard retrogradation, by examining texture properties and descriptive sensory qualities after 2 and 24 hrs of storage at $5^{\circ}C$. The hard and soft wheat flour were combined with dry rice flour at levels of 0, 5, 10, and 20%. The texture properties, as analyzed by a Texture Analyzer, revealed that the springiness, cohesiveness, and adhesiveness of the rice cakes containing wheat flour were similar to those of the control, while chewiness, gumminess, and hardness were lower compared to the control. Also, in sensory analyses, hardness was significantly different in the rice cakes containing wheat flour compared to the control after 24 hrs of storage at $5^{\circ}C$. Overall, the instrumental texture properties were highly correlated with the sensory characteristics. These results suggest that adding hard and soft wheat flour to Korean rice cakes(Karedduk) is effective at retarding retrogradation.

밀의 경도가 밀가루 제품에 미치는 영향 (Effects of Flour Products on Wheat Hardness)

  • 김혁일;하영득
    • 한국식품영양과학회지
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    • 제20권6호
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    • pp.653-662
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    • 1991
  • aThe terms of hard and soft as applied to wheats are descriptions of the texture of the kernel. A hard wheat kernel required greater force to cause it to disintegrate than those a soft wheat kernel. Factors than can affect the measurement of hardness outnumber those that affect hardness itself. Kernel texture is the most important single characteristic that affects the functionality of a common wheat. It affect the way in which must be tempered for milling ; the yield and the particle size, and density of flour particles ; and the end use properties in milling, breadmaking, production of soft wheat products, and noodle-making. Papers are reviewed from various sources not only hardness but flour functionality.

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Flour Characteristics and End-Use Quality of Korean Wheats with 1Dx2.2+1Dy12 Subunits in High Molecular Weight Glutenin

  • Park, Chul-Soo;Baik, Byung-Kee;Kang, Moon-Seok;Park, Jong-Chul;Park, Jae-Gun;Yu, Chang-Yeon;Choung, Myoung-Gun;Lim, Jung-Dae
    • Preventive Nutrition and Food Science
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    • 제11권3호
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    • pp.243-252
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    • 2006
  • White salted noodles and pan bread were prepared from Korean wheats with 1Dx2.2+1Dy12 subunits in high molecular weight glutenin subunits (HMW-GS) to evaluate the suitability for end-use products through the comparison with US wheats with various classes and commercial wheat flours. Korean wheat flours with 1Dx2.2+1Dy12 subunits showed higher SDS sedimentation volume than US wheat flours with similar protein content. Compared to wheat flours with similar protein content and SDS sedimentation volume, water absorption percent of Korean wheat flours using a mixograph was higher than that of US wheat flours, but similar to commercial wheat flours. Mixograph mixing time was similar to hard wheat flours and commercial noodle flours. Optimum water absorption percent of noodle dough from Korean wheat flours was higher than that of US wheat flours. Noodle sheets from Korean wheat flours with 1Dx2.2+ 1Dy12 subunits showed lower L values, higher a values and similar b values compared to commercial noodle flours. Hardness of cooked noodles from Korean wheat flours 1Dx2.2+1Dy12 subunits correlated positively with protein content, NIRS hardness, mixograph water absorption and gluten yield of flours. Korean wheat flours with 1Dx2.2+1Dy12 subunits showed lower loaf volume and harder crumb firmness than hard wheat flours and commercial bread wheat flours in spite of similar protein quantity and quality to hard wheat flours.

Comparison of Milling and Flour Quality Characteristics of Foreign Wheat and Korean Wheat

  • Jinhee Park;Kyeong-Hoon Kim;Chon-Sik Kang;Go Eun Lee;Kyeong-Min Kim;Mina Kim;Han-yong Jeong;Yurim Kim;Jiyoung Shon;Jong-Min Ko
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2022년도 추계학술대회
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    • pp.296-296
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    • 2022
  • This study was investigated to compare the milling and physicochemical characteristics of six Korean wheat cultivars (Keumkang, KK; Jokyung, JK; Goso, GS; Joongmo2008, JM; Baekkang, BK; Saekeumkang, SKK) and five foreign wheat classes (Australian standard white wheat, ASW; Australian hard, AH; US northern spring, NS; US hard red winter, HRW; Soft wheat, SW). Korea and foreign wheat grains were milled using a Buhler MLU-202. Flour moisture, ash, protein, gluten, sedimentation, particle size, solvent retention capacity (SRC) and dough properties of flour were analyzed. Results showed that the hard wheats had a greater total flour yield and reduction fraction yield than the soft wheats regardless of the country. However, there were in the milling characteristics between the US and Korean soft wheats. GS, a soft wheat in Korea, had the lowest flour yield (59.6%) and the highest bran fraction yield (21.4%). The particle sizes of flour by milling fraction were B1>B2>B3 for the largest, and the R1〈R2〈R3 for the smallest. Particle size, ash, protein contents and the values of lactic acid SRC showed highly correlated with flour yield. The gluten-performance-index (GPI) is the ratio of the lactic acid SRC value to the sum of sodium carbonate and sucrose SRC values, and it has been used as a quality indicator for overall performance potential of flour. GPI values differed depending on the wheat variety or class, JM (0.82) was the highest value, and SKK (0.56) and SW (0.59) were low. The curve pattern of the Mixolab result also gives a quality indication of the flour sample. JM and NS flour had similar pattern at water absorption and gluten strength parameters and BK and HRW had similar viscosity patterns. These results will enable further study for blending Korean wheat cultivar to improve the flour quality.

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밀 품질평가 현황과 검사제도 (Current Wheat Quality Criteria and Inspection Systems of Major Wheat Producing Countries)

  • 이춘기;남중현;강문석;구본철;김재철;박광근;박문웅;김용호
    • 한국작물학회지
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    • 제47권
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    • pp.63-94
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    • 2002
  • On the purpose to suggest an advanced scheme in assessing the domestic wheat quality, this paper reviewed the inspection systems of wheat in major wheat producing countries as well as the quality criteria which are being used in wheat grading and classification. Most wheat producing countries are adopting both classifications of class and grade to provide an objective evaluation and an official certification to their wheat. There are two main purposes in the wheat classification. The first objectives of classification is to match the wheat with market requirements to maximize market opportunities and returns to growers. The second is to ensure that payments to glowers aye made on the basis of the quality and condition of the grain delivered. Wheat classes has been assigned based on the combination of cultivation area, seed-coat color, kernel and varietal characteristics that are distinctive. Most reputable wheat marketers also employ a similar approach, whereby varieties of a particular type are grouped together, designed by seed coat colour, grain hardness, physical dough properties, and sometimes more precise specification such as starch quality, all of which are genetically inherited characteristics. This classification in simplistic terms is the categorization of a wheat variety into a commercial type or style of wheat that is recognizable for its end use capabilities. All varieties registered in a class are required to have a similar end-use performance that the shipment be consistent in processing quality, cargo to cargo and year to year, Grain inspectors have historically determined wheat classes according to visual kernel characteristics associated with traditional wheat varieties. As well, any new wheat variety must not conflict with the visual distinguishability rule that is used to separate wheats of different classes. Some varieties may possess characteristics of two or more classes. Therefore, knowledge of distinct varietal characteristics is necessary in making class determinations. The grading system sets maximum tolerance levels for a range of characteristics that ensure functionality and freedom from deleterious factors. Tests for the grading of wheat include such factors as plumpness, soundness, cleanliness, purity of type and general condition. Plumpness is measured by test weight. Soundness is indicated by the absence or presence of musty, sour or commercially objectionable foreign odors and by the percentage of damaged kernels that ave present in the wheat. Cleanliness is measured by determining the presence of foreign material after dockage has been removed. Purity of class is measured by classification of wheats in the test sample and by limitation for admixtures of different classes of wheat. Moisture does not influence the numerical grade. However, it is determined on all shipments and reported on the official certificate. U.S. wheat is divided into eight classes based on color, kernel Hardness and varietal characteristics. The classes are Durum, Hard Red Spring, Hard Red Winter, Soft Red Winter, Hard White, soft White, Unclassed and Mixed. Among them, Hard Red Spring wheat, Durum wheat, and Soft White wheat are further divided into three subclasses, respectively. Each class or subclass is divided into five U.S. numerical grades and U.S. Sample grade. Special grades are provided to emphasize special qualities or conditions affecting the value of wheat and are added to and made a part of the grade designation. Canadian wheat is also divided into fourteen classes based on cultivation area, color, kernel hardness and varietal characteristics. The classes have 2-5 numerical grades, a feed grade and sample grades depending on class and grading tolerance. The Canadian grading system is based mainly on visual evaluation, and it works based on the kernel visual distinguishability concept. The Australian wheat is classified based on geographical and quality differentiation. The wheat grown in Australia is predominantly white grained. There are commonly up to 20 different segregations of wheat in a given season. Each variety grown is assigned a category and a growing areas. The state governments in Australia, in cooperation with the Australian Wheat Board(AWB), issue receival standards and dockage schedules annually that list grade specifications and tolerances for Australian wheat. AWB is managing "Golden Rewards" which is designed to provide pricing accuracy and market signals for Australia's grain growers. Continuous payment scales for protein content from 6 to 16% and screenings levels from 0 to 10% based on varietal classification are presented by the Golden Rewards, and the active payment scales and prices can change with market movements.movements.

호주산(産) 밀의 제분(製粉) 특성(特性)과 밀가루의 물리화학적(物理化學的) 성질(性質)에 관(關)한 연구 (Milling Property of Australian Wheats and Physicochemical Properties of the Flours)

  • 이철호;이현덕;권오훈;장학길
    • Applied Biological Chemistry
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    • 제27권1호
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    • pp.21-28
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    • 1984
  • 호주산(産) 밀 6종류(種類)에 대(對)한 제분특성(製粉特性)을 $B{\ddot{u}}hler$ test mill로 조사(調査)하고 우리나라 재래종(在來種) 수원 219호와 비교(比較)하였다. 또한 이들로부터 얻어진 밀가루(patent flour)에 대한 반죽형성능력 및 전분(澱粉)호화성질을 Farinograph, Mixograph, Amylograph, 침강시험(沈降試驗) 및 Pelshenke 시험(試驗)등을 통하여 조사(調査)하였다. 호주산(産) 밀의 제분율(製粉率)은 $59{\sim}66%$ 범위(範圍)에 속하였다. 제분율(製粉率)은 천립중(千粒重)과 밀접(密接)한 관계(關係)를 나타내었으며 liter 중(重)과는 유의적 상관관계(相關關係)를 나타내지 않았다. 이들 밀로부터 얻어진 밀가루의 단백질 함량(含量)은 밀의 종류(種類)에 따라 14.47%에서부터 6.59%로 크게 상이(相異)하였으며 반죽의 물성(物性)도 밀의 종류(種類)에 따라 큰 차이(差異)를 보였다. Australian Prime Hard와 Australian Hard는 강력한 gluten 형성능력을 가진 반면 Australian Standard White와 Australian Soft Wheat는 매우 약(弱)한 gluten 형성능력(形成能力)을 보였다. 한편 Australian Standard White와 Western Australian Wheat는 대단히 높은 호화점도를 가지는 반면 South Australian Wheat는 이례적으로 낮은 호화점도를 보였다.

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소맥(小麥)의 성숙(成熟)에 따른 단백질(蛋白質), 리올로지 및 제(製)빵특성(特性)의 변화(變化) (Changes in Protein, Rheology and Bread-Making Properties of Wheat during Kernel Maturation)

  • 장학길;변광의
    • Applied Biological Chemistry
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    • 제28권4호
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    • pp.278-283
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    • 1985
  • 본(本) 연구(硏究)는 경(硬), 연질(軟質) 소맥(小麥)의 성숙과정(成熟過程)에 따른 단백질(蛋白質), 리올로지 및 제(製)빵특성(特性)의 변화(變化)와 상호관계(相互關係)에 대하여 검토하였다. 단백질함량(蛋白質含量), 침전가(沈澱價) 및 Pelshenke값은 경(硬), 연질(軟質) 품종간(品種間)에 차이가 심하였으며, 출수후(出穗後) $35{\sim}40$일에 각 품종(品種)의 안정성(安定性)을 유지하였다. 소맥분(小麥紛)의 Mixogram흡수율(吸水率)을 보면, 연질품종(軟質品種)은 성숙과정(成熟過程)에 따른 차이는 작았으나, 중간질(中間質)과 경질품종(硬質品種)은 종실(種實)이 성숙(成熟)됨에 따라 급격히 증가되었다. 전체적인 Mixogram pattern은 출수후(出穗後) 35일에 각 품종(品種)의 안정성(安定性)을 유지하였다. Farinogram특성과 빵용적(容積)은 성숙초기(成熟初期)부터 품종간(品種間)의 차이가 현저하였으며, 이들 특성은 출수후(出穗後) 40일에 각 품종(品種)의 평균안정성(平均安定性)에 도달하였다. 소맥(小麥)의 성숙(成熟)에 따른 단백질(蛋白質), 리올로지 및 제(製)빵특성(特性)의 상호간(相互間)에는 모두 고도(高度)의 정(正) 또는 부(負)의 상관(相關)이 있었다.

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제빵용 밀가루를 이용한 스파게티 제조 적성의 향상 (The Improvement of Spaghetti Quality Made from Bread Wheat Flour)

  • Kim, Hyuk-Il;Key Hwang;P. A. Seib
    • 한국식품영양과학회지
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    • 제21권3호
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    • pp.270-278
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    • 1992
  • 4종의 제빵용 밀가루를 사용하여 스파게티를 통상의 제조법에 따른 경우는 제품의 질적 저하를 막을 수가 없다. 본 연구에서는 건조직전 즉 압출 직후에 스팀증기 처리를 함으로써 스파게티의 질적 향상을 도모하였다. 스팀처리의 시간은 3분이 가장 적절 하였으며, 이를 제조후 건조된 상태에서의 경도 (breaking stress). 삶은 이후의 질적 관찰에서 적정 조리 시간(optimum cooking time). 조리이후의 손실(cooking loss). 견고성(cutting stress) 점착성(stickiness), 전 유기물 정량(total organic matter) 등에서 거의 대부분의 질적 향상이 뚜렷하였다. 그러나 건조후 면의 굵기 (thickness), 조리후의 무게(cooked weight)는 스팀 처리 이후에 감소함을 알 수 있었다. 또 HWW(Hard White Winter) 밀과 듀럼 (Durum) 밀을 주사현미경 (scanning electro microscope)으로 관찰한 결과 전분이 스파게티 표면에서 단백질과 더욱 단단한 결합을 이루고 있음을 보여 주었으며 이는 아마도 전분이 스파게티 표면에 스팀처리에 의한 소수성 막을 형성하며. 높은 노화 작용에 의하여 조리 후 더 낮은 팽윤을 하는 것으로 보여진다.

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