• Title/Summary/Keyword: 제두부

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Shelf-life and Quality Characteristics of Tofu Coagulated by Calcium Lactate (젖산칼슘을 응고제로 한 두부의 품질특성과 저장성)

  • 이명예;김순동
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.33 no.2
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    • pp.412-419
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    • 2004
  • To investigate the utilization of calcium lactates (CaL) as coagulants for tofu manufacture, the quality characteristics and shelf-life of tofu made by CaL-P (black snail powder) and CaL-A (black snail ash) were investigated and compared to calcium chloride (CC), magnesium chloride (MC), calcium sulfate (CS ) and standard calcium lactate (CaL-S). And also, total microbe and turbidity of the tofu were determined during storage at 1$0^{\circ}C$. Coagulation ability of CaL-A was the highest, and the ability of CaL-P was higher than that of CaL-S. Yield of CaL-A tofu was similar to those of CS and CC tofu, while the yield of CaL-P tofu was 50% compared to that of CC. L* value of CaL-P tofu was lower, but a* and b* values were higher than those of other tofus. The hardness of tofu showed in the order of CaL-S>CS>CC>CaL-P>MC>CaL-A, while the cohesiveness showed in the order of MC>CaL-S>CC>CS>CaL-P>CaL-A. Calcium contents were 57 mg% in MC tofu, 174 mg% in CS tofu, 116 mg% in CaL-S tofu, 95 mg% in CaL-A tofu and 172 mg% in CaL-P tofu. From the results of microscopic observations, the lower hardness showed the more soft and the smaller particle. The particle of CaL-A tofu was small and uniformity but the size of CaL-P and CC tofu showed coarse. Sensory quality of CaL-P and -A tofu were better than the other tofu evaluated by texture, springiness, flavor and overall taste. The shelf-life estimated by total microbe was 4∼6 days in CC, MC, CS, CaL-S and CaL-A tofu, but 8 days in CaL-P tofu at 1$0^{\circ}C$. From the above results, the CaL-P and -A may believe to use as coagulant for tofu manufacture due to its softened taste and enhanced shelf-life, and higher calcium content which has higher absorbability in human body.

Preparation and Characteristics of Soybean Curd Using Cuttle Bone Powder Treated with Acetic Acid (유기산처리 갑오징어갑 분말을 이용한 두부의 제조 및 특성)

  • Kim, Jin-Soo;Cho, Moon-Lae;Heu, Min-Soo
    • Applied Biological Chemistry
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    • v.46 no.2
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    • pp.101-106
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    • 2003
  • Soybean curd was prepared using cuttlebone powder treated with acetic acid (ATC), and its characteristics were determined. Soybean protein was coagulated by adding calcium chloride, magnesium chloride, and ATC at 0.7, 1.2, and 0.9%, respectively, or higher. Yield, white index, texture, and sensory evaluations revealed the optimal concentration of ATC for preparation of soybean curd was 2.0% of total soybean weight. The proximate compositions of soybean curd prepared by adding 2.O% ATC were 75.9%, 12.6%, 1.9%, 5.3%, 6.60, and $1.0×10^4$ CFU/g in for moisture, crude protein, crude ash, crude lipid, pH, and viable cell count, respectively. Although white index and mineral content of both soybean curds were similar, texture of ATC-prepared soybean curd was superior to that of soybean curd prepared with 1.5% calcium chloride.

Transport and Distribution of Calcium Salts in Tofu Manufacturing Process -Part II. Mass Balances of Calcium Salt during Tofu Manufacturing Processes by Conductometric Method- (두부 제조(製造) 공정중(工程中) Calcium염(鹽)의 행동(行動)과 분포(分布) -제2보(第二報). 전기 전도도법을 이용한 두부제조 공정중 Ca염의 수지-)

  • Lee, Chon-Ki;Yim, Sang-Bin;Chun, Jae-Kun
    • Applied Biological Chemistry
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    • v.28 no.2
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    • pp.56-61
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    • 1985
  • The mass balances of calcium salts during the manufacturing processes of Tofu were established by conductometric method and chemical analysis method. During the manufacturing processes of soy milk and Tofu, 66% of solid and 63% of calcium was transfered from soy-bean to the soy milk, and 47.8% of total solid from soybean was transfered to the Tofu, respectively. When the $CaCl_2$ was used as coagulant, calcium contents in Tofu $(Y_{Tofu},\;mg{\cdot}Ca/g{\cdot}Tofu,\;wet\;basis)$ and drained solution $(Y_{drained\;soln},\;mg{\cdot}Ca/ml{\cdot}drained\;soln.)$ were linearly increased with the amounts of $CaCl_2(C,g{\cdot}CaCl_2/ml{\cdot}soy\;milk)$ added in soy milk, and correlative equations between them were obtained as $Y_{Tofu}=0.3369\;C+1.2689$ for Tofu$(moisture\;content:\;81.5{\pm}0.5%)$ with r=0.9898, and $Y_{drained\;soln}= 0.2899C+0.0399$ for drained solution with r= 0.9991. It was proved that conductometric method was reasonably applicable to the measurement of calcium contents of the products from every processes of Tofu manufacture except soy-bean. However the conductometric method was not recomendable in the case of $CaSO_4$ as coagulant due to its low solubility ana uneven distribution in soy milk and Tofu tissue.

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Preparation and Shelf-life of Soybean Curd Coagulated by Fruit Juice of Schizandra chinensis RUPRECHT(Omija) and Prunus mume(maesil) (오미자즙과 매실즙을 이용한 두부제조 및 저장)

  • Jung, Gi-Tai;Ju, In-Ok;Choi, Joung-Sik;Hong, Jae-Sik
    • Korean Journal of Food Science and Technology
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    • v.32 no.5
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    • pp.1087-1092
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    • 2000
  • Traditional food soybean curd was prepared using the fresh fruit juice of Schizandra chinensis RUPRECHT(Omija) and Prunus mume(maesil), and investigated the optimal preparative conditions(water addition ratio, heating time of mashed soybean and fresh fruit juice concentration), physical properties, sensory evaluation and shelf-life. Soybean curd coagulated with 0.9% Omija juice showed the highest yield at $85^{\circ}C$, 12.5 times water addition and 5 min heating. For soybean curd coagulated with 1.5% Maesil juice showed the highest yield at $85^{\circ}C$, 10 times water addition and 5 min heating. The physical properties (hardness, adhesiveness, chewiness and gumminess) of soybean curd coagulated with juices of Omija and Maesil showed lower values for hardness, adhesiveness, chewiness and gumminess. However sensory scores of both were evaluated higher than those of coagulated with $CaSO_4$. The shelf-life of soybean curd prepared from Omija and Masil juices and then soaked in 0.1% acetic acid was better than that of coagulated with $CaSO_4$ or soaked in distilled water.

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Effects of Coagulants and Soaking Solutions of Tofu (Soybean Curd) on Extending its Shelf Life (두부의 저장에 미치는 응고제와 침지액의 효과)

  • Lee, Kap-Sang;Kim, Dong-Han;Baek, Seung-Hwa;Choun, Seung-Ho
    • Korean Journal of Food Science and Technology
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    • v.22 no.2
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    • pp.116-122
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    • 1990
  • In order to improve the shelf life of Tofu, the effect of calcium chloride or acetic acid as coagulants were investigated for microbial and physicochemical changes during the storage in different kinds of soaking solution. The soaking water of Tofu prepared from calcium chloride was found to be spoiled after 15-17 hours of storage at $30^{\circ}C$, by reaching the bacteria count to 10million per ml. The shelf life of the Tofu prepared from acetic acid was better than those prepared by calcium chloride. For the effect of soaking solution on storage life, soaking Tofu in 0.1% acetic acid was found to be more effective than soaking in other solutions of 3% NaCl or 0.1% K-sorbate. The optical density of soaking solution of Tofu increased in proportion to spoilage, and in case of soaked Tofu in 3% sodium chloride and 0.1% K-sorbate solution, it greatly increased. Titratable acidity, and amino nitrogen contents in soaking solution increased as spoilage of Tofu progressed, but pH decreased the early period, one or two days, of stored Tofu and then increased.

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Effect of Different Coagulants on Quality of Tofu Incorporated with Persimmon Fruit Powder (응고제 종류가 감 분말 첨가 두부의 품질과 저장성에 미치는 영향)

  • Lee, Yun-Rae;Chung, Hun-Sik;Seong, Jong-Hwan;Moon, Kwang-Deog
    • Food Science and Preservation
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    • v.18 no.5
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    • pp.678-683
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    • 2011
  • The effects of coagulant types (magnesium chloride, calcium chloride, calcium sulfate, glucono-${\delta}$-lactone) on yield, quality properties and storability of astringent persimmon powder added tofu were investigated. Yield, hardness, chewness, crispness, and overall acceptability of tofu coagulated by glucono-${\delta}$-lactone were higher than those coagulated by the others. L value, a value, pH, soaking-solution turbidity, and total aerobic bacteria of glucono-${\delta}$-lactone coagulated tofu were lower than those coagulated by the others. Calcium sulfate and calcium chloride coagulated tofu showed relatively high L and b values. Magnesium chloride coagulated tofu had higher sensory score for firmness, taste, overall acceptability than calcium chloride and calcium sulfate coagulated tofu, but there was no significant difference between magnesium chloride and glucono-${\delta}$-lactone. The results suggested that glucono-${\delta}$-lactone and magnesium chloride were found to be the suitable coagulants for processing of the persimmon powder added tofu.

Design for Breakwater Head of Soheuksando Harbor by Hydraulic Experiment (수리모형실험에 의한 소흑산도항 방파제 두부 설계)

  • 주재욱;고진석
    • Proceedings of the Korean Society of Coastal and Ocean Engineers Conference
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    • 2002.08a
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    • pp.100-117
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    • 2002
  • 소흑산도항 방파제의 전체 길이 500m가 완공된 것이 1999년 12월 말일경 이었고 2000년 8월 31일 제12호 태풍 프라피룬(PRAPIRON)이 내습(순간최대풍속:58.3m/sec,4시간 지속 최 대풍속 47.4m/sec)하여 완공된 방파제 두부구간 64m가 유실되고 제간부 436m의 부분파손을 입는 피해를 보았다. (중략)

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Quality Attributes of Whole Soybean flour Tofu Affected by Coagulant and Theirs Concentration (응고제 종류와 농도에 따른 전지대두분 두부의 품질)

  • Kim, Ju-Young;Kim, Jun-Han;Kim, Jong-Kuk;Moon, Kwang-Deog
    • Korean Journal of Food Science and Technology
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    • v.32 no.2
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    • pp.402-409
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    • 2000
  • To investigate the textural and physical characteristics of WSF(whole soybean flour) tofu affected by coagulant and its concentration, $CaCl_2$, $CaSO_4$, $GDL(glucono-{\delta}\;lactone)$, $MgCl_2$, and some mixed coagulants were used in this study. Yields of WSF tofu coagulated with $CaSO_4$ and GDL were ranged 4.3-4.5(g/g WSF), but common tofu was 2.2-3.0(g/g soybean). As the water addition ratio increased, L and a value were increased while heating time increased, b value increased. L value of WSF tofu was lower and b value was higher than conventional tofu and 4 commercial tofus. Kinds of coagulant and its concentration significantly affected to textural properties of WSF tofu. As the concentration of coagulant increase, the hardness increased in most all coagulants. WSF tofu coagulated with $CaSO_4$ and GDL recorded low hardness and adhesiveness, and high springiness among the used coagulants at the same concentration. As the hardness increased, the gumminess and chewiness increased in most all coagulants. As coagulation temperature and molding pressure increase, hardness also increased. WSF tofu coagulated with 0.3% $CaSO_4+GDL$ was the most similar in the textural properties with conventional tofu and 4 commercial tofus. WSF tofu coagulated with 0.3% of $CaSO_4+GDL$ at $85^{\circ}C$, 10 times water addition, 5min. heating and $25.0g/cm^2$ molding pressure recorded the highest score in the sensory evaluation.

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Effects of Coagulant Concentration and Phytic Acid Addition on the Contents of Ca and P and Rheological Property of Soybean Curd (응고제 양 및 Phytic acid 첨가가 두부의 칼슘, 인 함량과 물성에 미치는 효과)

  • Park, Chan-Kyeong;Hwang, In-Kyeong
    • Korean Journal of Food Science and Technology
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    • v.26 no.4
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    • pp.355-358
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    • 1994
  • The effect of concentration of coagulant and addition of phytic acid on physico-chemical properties of soybean curd was investigated. The results showed that the maximum protein yield in soybean curds was obtained with 0.029N Ca and the bound calcium per protein molecule significantly increased as the level of calcium increased. The highest precipitation of phytic acid occured at 0.029N Ca. When phytic acid was added to soybean milk during soybean curd preparation, the weight of soybean curd increased. The hardness of soybean curd was remarkably reduced by the increase of phytic acid level.

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Prediction of the Failure Stress of Tofu Texture Using a Delay Time of Ultrasonic Wave (초음파의 지연 시간을 이용한 두부 조직의 물성변화 예측에 관한 연구)

  • Kim, Hak-Jung;Hahm, Young-Tae;Kim, Byung-Yong
    • Applied Biological Chemistry
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    • v.38 no.4
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    • pp.325-329
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    • 1995
  • Changes in the physical properties of soybean curd upon the processing conditions such as coagulant concentration, heating temperature and molding pressure were determined by using a failure stress and residual delay time of ultrasonic wave(5 MHz). Maximum failure stress of Tofu was obtained at the 0.3% $CaCl_2$ coagulant concentration, $95^{\circ}C$ heating temperature and greater molding pressure, respectively, whereas the delay time is inverse proportion to the failure stress value. The results of the multiple regression analysis with factorial design showed that the model equation consisted with delay time and processing conditions gave the good prediction of the Tofu failure stress.

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