• Title/Summary/Keyword: vegetable soybeans

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Development of Vegetable Soybeans Thresher (I) - Physical properties and threshing characteristics of vegetable soybeans - (풋콩 탈협기 개발을 위한 기초 연구 (I) - 풋콩의 물성 및 탈협 특성 -)

  • 김태한;임학규;오대건
    • Journal of Biosystems Engineering
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    • v.27 no.2
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    • pp.89-96
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    • 2002
  • The trend of consumption of vegetable soybeans is increasing because they are recognized as the clean vegetable. The works requiring the most intensive labor are threshing and seperation ones, and they form about 80% of total labour for vegetable soybeans production. It is necessary to develop the vegetable soybeans-thresher for the sake of cost down of vegetable soybeans production. The purpose of this study is to acquire the basic informations to design of the vegetable soybeans-thresher. We make the experimental system which control the speed of threshing cylinder and the teeth gap and investigate the detachment forces. The result are as follows ; The ratio of un-threshed soybeans-pod to stem after threshing work is decreasing as the threshing cylinder speed increases: 0.0% and 2.8% at 55m/s and 18m/s of threshing cylinder speed respectively. Also the ratio of un-threshed soybeans-pod to stem is shown as 2.0% below in the condition of 64~160mm of teeth gap and over 28m/s of threshing cylinder speed. The damaged pod ratio of detached soybeans after threshing work is decreasing as the threshing cylinder speed increases: 4.8% and 1.3% at 55m/s and 18m/s of threshing cylinder speed respectively. The minimum damaged pod ratio of detached soybeans are shown as 1.0%, 1.5% and 1.9% at 18m/s, 28m/s and 37m/s of threshing cylinder speed respectively. The average detachment forces of pods are shown as 1.5kg$_{f}$ for 3 grains, 1.2kg$_{f}$ for 2 grains and 0.8kg$_{f}$ for 1 grain respectively. The maximum detachment force of pod is shown as 2.7kg$_{f}$ for 3 grains. grains.

Quality Evaluation for Vegetable Use in Local Soybean Cultivars with Various Seed Coat Color

  • Lee, J. D.;Hwang, Y. H.
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.43 no.2
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    • pp.83-88
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    • 1998
  • From the evaluation of physical properties such as springiness, gumminess, adhesiveness, chewiness and hardness by the texture analyzer, vegetable soybean lines with green seed-coat were best as compared with those with black, brown, mixed, and yellow seed-coats. A panel test evaluated on the basis of taste, sweetness, chewiness, and total scores also indicated that soybean lines with green seed-coat were the best. The total scores of panel test was decreased in the order of green > yellow> black> brown seed-coat colored soybean. The mean value of sucrose content obtained by HPLC analysis was highest in black seed-coat colored soybean, and followed by green, yellow, and brown soybeans. The highest sucrose content (8.22%) was observed in 180362, a soybean line with green seed-coat. The full-season type soybeans showed much higher sucrose content than summer types which are mainly cultivated on farmer's fields for vegetable purposes. The final 13 lines selected from 300 colored soybeans showed nearly the same panel scores as Miwongreen. However, these lines had a great deal of variation in sucrose content, and much higher readings in texture analysis than Miwongreen, especially in chewiness and hardness which were the most important properties in vegetable soybeans.

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Variation of 7S and 11S Seed Protein Concentrations in Different Food Types of Soybean Seed

  • So, Eun-Heui;Chae, Young-am;Kim, Yong-Ho;Yang, Moo-Hee
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.44 no.4
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    • pp.350-354
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    • 1999
  • Soybean varieties derived from Korea are classified into four groups on the basis of their food types such as soybeans for vegetable, sprout, sauce and paste and soybeans with colored seed coat. This study was carried out to know the differences in storage protein concentrations among these four groups. There were differences in storage protein concentrations among four groups. In 7S protein, the $\alpha$'-and $\alpha$-subunit concentrations did not vary among four groups, while a $\beta$-subunit concentration greatly varied. 7S protein concentration was the highest(40.6%) in soybean for sauce and paste and the lowest(37.7%) in soybean for vegetable, while 11S protein concentration was the highest (62.3%) in soybean for vegetable and the lowest (59.4%) in soybean for sauce and paste. In view of the fact that 11S protein has much higher sulfur containing amino acids than 7S protein, it was shown the soybeans for vegetable may have higher nutrition value than other groups.

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Profiles of Compositional Components in Vegetable Soybeans (Glycine max (L.) Merr.)

  • Lee, Jin-Hwan;Baek, In-Youl;Ko, Jong-Min;Kang, Nam-Suk;Kim, Hyun-Tae;Han, Won-Young;Shin, Sang-Ouk;Park, Keum-Yong;Oh, Ki-Won;Ha, Tae-Joung;Park, Ki-Hun
    • Journal of Applied Biological Chemistry
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    • v.50 no.2
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    • pp.63-69
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    • 2007
  • Compositional components such as isoflavone, protein, oil, fatty acid, and free sugar in Korean vegetable soybeans were examined with four cultivars including Hwaeomputkong, Keunolkong, Mirang, and Danmi 2. In the isoflavone, Mirang cultivar showed the highest content ($967.1{\mu}g/g$), whereas Keunolkong was the lowest content ($535.9{\mu}g/g$). The malonylglucosides were the predominant isoflavone type followed by the glucoside, aglycone, and acetyl glucoside forms, respectively. In the protein content, Hwaeomputkong was the lowest (41.7%) and Danmi 2 was the highest (45.9%). The oil contents were 11.5 to 21.2% and Mirang cultivar was the lowest. The fatty acid compositions of the oil extracts exhibited that linoleic acid was the highest (33.6-42.5%), followed by oleic, palmitic, linolenic, and stearic acids. Whereas, oleic acid ($46.7{\pm}2.0%$) was more than linoleic acid ($33.6{\pm}1.3%$) in Mirang cultivar. In the free sugar contents, Hwaeomputkong cultivar showed the highest level and sucrose ($5.52{\pm}0.49%$) appeared to be most prevalent in vegetable soybeans.

Color and Chlorophyll of Blanched Vegetable Soybean by NaCl (열처리 시 소금첨가에 의한 풋콩의 색과 Chlorophyll 함량 변화)

  • Song, Jae-Yeun;Kim, Chul-Jai;An, Gil-Hwan
    • Korean Journal of Agricultural Science
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    • v.30 no.2
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    • pp.148-153
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    • 2003
  • Vegetable soybeans were blanched at 80, 90 and $100^{\circ}C$ for 30, 20 and 10min, respectively. NaCl(3%) was also used to measure the protective effect of soybean color. The color of vegetable soybeans was measured by colorimeter, -a value (greenness) was highest at $100^{\circ}C$-10min. However, the chlorophyll contents was highest at $80^{\circ}C$-30min. NaCl (3%) decreased the loss of chlorophyll in blanched vegetable soybeans. The reaction rate constant for the thermal degradation of chlorophyll and greenness doubled per $10^{\circ}C$. The activation energy chlorophyll a of pod for thermal degradation of chlorophyll a in pods were 138.02 (unsalted), 146.63 (salted) Kcal/mol, respectively.

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Quality Characteristics of Vegetable Soybeans at Different Harvesting Time (풋콩의 수확시기에 따른 품질관련특성의 변화)

  • 정우경;황인경
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.41 no.1
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    • pp.103-108
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    • 1996
  • The changes in major characteristics of vegetable soybean at different stages were investigated. The 100-seed weight of vegetable soybean had a tendency to increase before 43 days after flowering, but decrease slightly after then. After 37 days after flowering, the sucrose content of Douya had a tendency to decline and in case of Shirofusa, total sugar content was sharply decreased at 40 days after flowering. The total vitamin C content of Douya and Shirofusa was dramatically increased at 37 days after flowering and then got the plateau, otherwise the total vitamin C content of Shirofumi and Hwaeomputkong was the highest level at 43 days after flowering. The hardness changes of vegetable soybeans were tend to increase according days after flowering. In sensory evaluation, preference score was significantly associated with harvesting stages. Correlation coefficient between sweetness and beany taste was significantly negative.

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Development of Vegetable Soybeans Thresher (II) - Threshing and separating characteristic - (풋콩 탈협기 개발을 위한 기초 연구 (II) - 탈협 및 선별 특성 -)

  • Kim T H.;Lim H. K.;Lee J. T.
    • Journal of Biosystems Engineering
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    • v.29 no.5 s.106
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    • pp.433-440
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    • 2004
  • Worldwide consumption of vegetable soybean has been increasing recently, but in the process of vegetable soybean production, threshing and separation work accounts fur about $80\%$ of overall labor. Therefore, developing of the vegetable soybean thresher is necessary to reduce the cost of labor. The main objective of this study is to acquire the basic in-formations for design of the vegetable soybean thresher which is suitable for domestic circumstances. We made the experimental system to investigate the threshing and separating performance at the several speeds of threshing cylinder and separating blower according to the kinds of threshing tooth. The result are as follows; Threshing performance of vegetable soybean thresher was shown as the best in case the threshing tooth made of rubber which has the 80 of Shore hardness was used at the circumference speed of cylinder of 5.8$\~$8.1m/s. Also separating cleaning performance of vegetable soybean thresher was shown as the best at more than 1,300 rpm of blower speed and $60\~80\%$ of opening ratio of suction port.

Development of Vegetable Soybean Thresher with Tooth Type (급동 급치식 풋콩 탈협기 개발을 위한 기초 연구)

  • Lim, Hack-Kyu;Lee, Jeong-Taeg;Kim, Tae-Han
    • Current Research on Agriculture and Life Sciences
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    • v.21
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    • pp.23-29
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    • 2003
  • Worldwide consumption of vegetable soybean bas been increasing recently, hence it is necessary to produce good quality of soybean in our farms. In the process of vegetable soybean production threshing and seperation work accounts for about 80% of overall labor. Therefore, developing of the vegetable soybean thresher is necessary to reduce the cost of labor. The purpose of this study is to acquire the basic informations to design of the vegetable soybeans-thresher. We make the experimental system which measure the physical properties and investigate the detachment forces. Also, We calculated the minimum speed of threshing cylinder. The result are as follows; 1. The average length of soybean stem is 68.2cm. 2. The length of soybean pods are seen as 61.3mm for 3 grain, 52.6mm fer 2 grains and 41.0mm fer 1 grain 3. The widths of soybean pods are seen as 14.1mm fer 3 grain, 13.8mm fer 2 grains and 13.4mm fer 1 grain. 4. The weights of soybean pods are seen as 4.1grams for 3 grains, 2.7grams for 2 grains and 1.4grams for 1 grain. 5. The average detachment forces of pods are seen as 1.5kgf for 3 grains, 1.2kgf for 2 grains and 0.8kgf for 1 grain respectively For 1 grain, the detachment force of pods ranges from 0.2kgf to 1.4kgf. For 2 grains, the minimum detachment force of pods is seen as 0.6kgf and the maximum one is seen as 2.5kgf. For 3 grains, the minimum detachment force of pods is seen as 0.7kgf and the maximum one is seen as 2.7kgf. 6. The minimum speed of threshing cylinder is shown 6.83m/s.

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두부의 가공과 이용

  • 김철재
    • Journal of the East Asian Society of Dietary Life
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    • v.8 no.4
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    • pp.508-535
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    • 1998
  • 콩(soybean 대두)을 이용한 식품은 동양에서는 콩 전체를, 서양에서는 콩의 영양성분을 분리하여 제품화하고 있다. 콩 전체를 자주 이용하는 동양권에서는 발효식품과 비 발효식품으로 편의상 나누는데, 주요 비 발효식품으로는 풋콩 또는 청콩단(green vegetable soybeans . edamame), 콩가루, 콩나물, 콩국 또는 두유, 두유막(soy protein-lipid film : yuba), 두부 등이 있으며 발효식품으로 우리가 잘 알고 있는 간장, 된장을 비롯해서 청국장, 템폐(tempeh), 낫또(natto), 콩 요구르트, 콩치즈 등이 있다. 아마도 콩 단백질을 식용으로 하는 면에서 두부가 대표적인 식품이라고 말할 수 있다.(중략)

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