• Title/Summary/Keyword: sugar soaking

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Change of quality properties of Doenjang according to soaking method in brine (장 담금법에 따른 된장의 품질 특성 변화)

  • Choi, Bo-Young;Gil, Na-Young;Park, Shin-Young;Cho, Yong-Sik;Kim, So-Young
    • Food Science and Preservation
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    • v.24 no.7
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    • pp.923-933
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    • 2017
  • This study was carried out to examine the quality characteristics of Doenjang manufactured with or without soaking Meju in brine according to salt concentrations (8 and 12%) during fermentation for 6 months. The moisture content and salinity of Doenjang fermented for 6 months were 54.9-60.3% and 7.8-12.5%, respectively. Doenjang using soaking Meju in brine had higher pH and lower titratable acidity than that using non-soaking Meju. The reducing sugar content in all samples was increased until 2 months and then decreased regardless of soaking Meju, especially that of non-soaking 8% Doenjang was the highest. The 8% low-salt Doenjang was shown the highest amino-type nitrogen content, especially the soaking Doenjang was higher than the non-soaking Doenjang. ${\alpha}$-amylase activity of all samples during fermentation were continuously decreased from 0.91-0.94 Unit/g to 0.01-0.06 Unit/g, especially the 8% soaking Doenjang was shown the highest activity after 2 months. Total bacterial count of the soaking Doenjang at the 6 months was in range of 7.8-8.0 log CFU/g and that of the non-soaking Doenjang was in range of 7.2-7.5 log CFU/g. By taste analysis, the 8% soaking Doenjang was shown the similar taste pattern with commercial Doenjang. In conclusion, the 8% low-salt Doenjang manufactured with soaking Meju in brine was a suitable concentration in order to reduce salt intake.

Quality characteristics of semi-dried persimmons soaked in different concentration of sugar solution (당액침지에 따른 반건시 가공품의 품질특성)

  • Kwon, Gi-Man;Kim, Jae-Won;Youn, Kwang-Sup
    • Food Science and Preservation
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    • v.22 no.3
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    • pp.314-321
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    • 2015
  • This study was conducted to investigate the quality and characteristics of semi-dried persimmons soaked in different concentrations of sugar solution and stored at $7^{\circ}C$ for 20 days. The L value and chroma value were significantly higher in S5 and S10 compared to the other concentrations of sugar solution. The ${\Delta}E$ and browning degree were increased according to the increase in concentration of sugar solution. Total sugar, reducing sugar, and sugar free contents were higher in the control (semi-dried persimmon) than those in S0, but they increased according to the increase in concentration of sugar solution. Polyphenol oxidase and peroxidase activities were decreased according to the increase in sugar solution concentration, which were highest in S0 among other semi-dried persimmons soaked in sugar solutions. Total ascorbic acid content was highest in S10 (12.29 mg/g), followed by S0 (2.54 mg/g), S5 (7.76 mg/g), S15 (6.05 mg/g), and S20 (5.05 mg/g). Total polyphenols, flavonoids and proanthocyanidins contents were the highest in S10 compared to other semi-dried persimmons soaked in sugar solutions. Furthermore, the same tendency was observed with DPPH radical scavenging ability. These results showed that 10% sugar solution could be applied to semi-dried persimmons in order to achieve high quality, nutritional value, and browning inhibition.

Processing and Pigment Stability of Cooked and Frozen Cockle, Fulvia mutica

  • BAE Tae-Jin;KIM Sung-Woo;CHOI Ok-Soo;KANG Hoon-I;PARK Seong-Min;KIM Kui-Shik
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.29 no.6
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    • pp.849-855
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    • 1996
  • Processing condition and pigment maintenance of cockle, Fulvia mutica were studied. Proximate composition of whole meat was $82.3\%$ moisture, $10.8\%$ crude protein, $0.8\%$ crude lipid, $2.5\%$ carbohydrate and $3.1\%$ crude ash, and that of foot muscle was $80.6\%,\;12.3\%,\;0.3\%,\;2.9\%\;and\;3.3\%$ respectively. When the living cockle was soaked in $2\%$ NaCl solutions, about $90\%$ of silt and mud was removed after 10 hours soaking, and over $92\%$ was removed when the pH was adjusted to 7.5. When the pigment destruction was tested by 40 seconds at $75^{\circ}C,\;80^{\circ}C,\;85^{\circ}C,\;90^{\circ}C\;and\;95^{\circ}C$, retention ratios of pigment in cockle were above $95\%$ at all temperature. Soaking in ethanol for 5 minutes resulted in strong adhesion of pigment to meat. Soaking in seasoning liquid containing $10\%$ soy sauce, $5\%$ wasabi, $5\%$ sugar, $2\%$ vinegar, $2\%$ powdered garlic for 3 minutes was effective for instant processing of cooked and frozen cockle after thawing. After 60 days storage at $-20^{\circ}C$, the contents of moisture, crude lipid, carbohydrate, ash and salinity were not changed so much, and pH and TBA values increased to 6.6 and 0.3 compared with 6.2 and 0.2, respectively, while pigment absorbance at 226 nm was decreased from 2.7 to 2.3. However, in case of 60 days storage at $-45^{\circ}C$, there was no change in these compositions.

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Quality Changes of Immature Green Cherry Tomato Pickles with Different Concentration of Soy Sauce and Soaking Temperature During Storage (푸른 방울토마토로 제조한 저염 장아찌의 저장 중 품질 특성 변화)

  • Kim, Jin-A;Cho, Mi-Sook
    • Journal of the Korean Society of Food Culture
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    • v.24 no.3
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    • pp.295-307
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    • 2009
  • The principal objective of this study was to develop and standardize a preparation method for low-sodium tomato jangachi (traditional Korean pickle) via short-term fermentation with immature green cherry tomatoes. In order to determine the preferred concentrations of soy sauce and soaking temperatures of immature cherry tomato pickles in different stages of storage, we conducted an analysis of physico-chemical characteristics and microbiological properties, and also performed a preference test on samples of immature green cherry tomato pickles. Immature cherry tomatoes were prepared in three different soy sauce concentrations --20, 40, and 60%-- and three different soaking temperatures --60, 80, and 100$^{\circ}C$-- and then stored for 28 days at 5$^{\circ}C$. As a result, the pH increased significantly with increases in the amount of soy in the dipping solution (p<0.05). The saltiness was maintained at levels of approximately $0.17{\sim}0.28%$ (20% group), $0.32{\sim}0.67%$% (40%group), $0.48{\sim}1.00%$ (60% group) during storage periods. These results show that the saltiness of immature cherry tomato pickles was substantially lower than that of commercial pickles. The contents of reducing sugar and lightness decreased significantly with increasing concentrations of soy dipping solution. The redness and yellowness values of the tomatoes decreased significantly with increasing concentrations of soy sauce. Additionally, the lower the concentration of soy sauce used, the more rapidly the hardness of the immature cherry tomato pickles was reduced at 100$^{\circ}C$. PME activity moved within a narrow range, and then stabilized during the storage period. With regard to the results of the consumer preference test, 20%-100$^{\circ}C$ was the most preferred condition overall, 40%-80$^{\circ}C$ was the condition in which the texture was most preferred, and 40%-80$^{\circ}C$ was the condition that yielded the highest color scores.

Effects of Acidification on Physical and Organoleptic Properties of Soybeans (산절임이 콩의 물리적, 관능적 특성에 미치는 영향)

  • 여경은;최희숙;김동원;김주숙;김우정
    • The Korean Journal of Food And Nutrition
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    • v.16 no.4
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    • pp.410-416
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    • 2003
  • Three varieties of soybean were acidified by soaking in two kinds of vinegar which were persimmon vinegar and brewed vinegar. Chemical properties of soaking solution and physical and organoleptic properties of soybean during soaking at room temperature for 8 days were studied. The soybeans were acidified in vinegar solution at room temperature for 8 days. The results showed that soybean weight was rapidly increased until first two days and then gradually increased thereafter. Increase in total acidity and sugar concentration and decrease in pH of vinegar solution were also measured during initial soaking stage. The changes in pH and acidity were more significant in brewed vinegar than those in persimmon vinegar, The L values of persimmon vinegar solution after soaking the soybean were relatively lower than that of brewed vinegar. The a values of the vinegar solution used for black beans were increased while that of the vinegar solution used for white beans were decreased, The flavor and texture of acidified bean in persimmon vinegar were more soft and less benny than those acidified in vinegar. However sourness of the acidified beans in persimmon vinegar was much softer higher to those values of brewed vinegar.

Optimization for Preparation of Perilla Jangachi according to Steaming Time and Onion Contents (찌는 시간과 양파 첨가량에 따른 깻잎장아찌의 최적화)

  • Lee, Hye-Ran;Nam, Sang-Min;Lee, Jong-Mee
    • Journal of the Korean Society of Food Culture
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    • v.17 no.5
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    • pp.653-662
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    • 2002
  • Korean native Perilla Jangachi (salted and fermented vegetable) is popular and well-known but little study on its composition and most palatable condition has been reported. This study was performed to observe the change in the contents of chemical components and sensory evaluation of Perilla Jangachi which was prepared through two processing. First, as a pretreatment, Perilla leaves were soaked in salt water. The optimal level of salt concentration and soaking time (salt 4%, soaking time 42hours) was determined. Second, soaked Perilla Jangachi was steamed and then fermented in various ingredients like soy sauce, sugar, onion and so on. In this study, Perilla Jangachi was made by 3 levels of steaming time(30 seconds, 60 seconds, 90 seconds) and onion contents (10%, 30%, 50%). The optimal level of onion contents and steaming time was determined with the results of sensory evaluation by response surface methodology and analysis of composition. Sodium contents were decreased as the levels of onion contents were increased. Flavonoids contents weren't increased although contents of onion were increased. But they were influenced on steaming time that as the levels of steaming time were shortened, flavonoids contents were increased. To lengthen the shelf-life of Perilla Jangachi, the activities of enzyme peroxidase - which changes Jangachi's quality bad - by various levels of steaming time were measured. After steaming 50 seconds, peroxidase became inactive. Reducing sugar contents were decreased relying on either increased steaming time and onion contents. While steaming 30 seconds and 10% onion contents, the content of reducing sugar was 0.858% but steaming 90 seconds and 50% onion contents, it became 0.372%. Among the sensory attributes, brownness was increased as onion contents increased and steaming more than 60 seconds. Saltiness, sweetness, perilla flavor were greater relying on decreased onion contents. Toughness was decreased as both the amounts of onion and steaming time were increased. With this results, the most optimal adding level of onion content and steaming time was determined. Steaming 72 seconds and adding onion 27% was established as a optimal condition of Perilla Jangachi.

The Effect of Gibberellin on the Content of Vitamin C during the Growth of Mung Bean Sprout (녹두(綠豆)나물의 생육과정(生育過程) 중(中) Vitamin C 함량(含量)에 미치는 Gibberellin의 효과(效果))

  • Ko, Mu-Suk;Park, Bock-Hee
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.10 no.1
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    • pp.117-122
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    • 1981
  • Mung bean sprout has been grown for 96 hours by soaking mung bean in such eight test divisions as Gibberellin 5-50ppm solution, well-water, and so on. Study on the charge of vitamin C an reducing sugar during its growth can be summarized as follows. 1. During the growth of mung bean sprout, the length and weight in the sample treated with Gibberellin 20ppm are highest of all Gibberellin divisions. 2. When mung bean sprout has grown for 24 hours, its vitamin C content reaches maximum in each sample. 3. There is little dehydro asscorbic acid in each sample during the growth period of 24-96 hours. 4. During the period of growth, the content of vitamin C in the sample treated with Gibberellin 5ppm are highest of all. 5. When mung bean sprout has been grown enough for cooking, in 48 hours, the content of vitamin C in the sample treated with Gibberellin 10ppm is highest but a significant difference is not recognized. 6. After 24 hours growth, vitamin C decreases but reducing sugar increases.

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Changes in Chemical Components of Soybean Cheese during Ripening in Ethanol-Brine Solution (대두치이즈 액침숙성중 화학성분의 변화)

  • 김길환;이양희
    • Microbiology and Biotechnology Letters
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    • v.9 no.3
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    • pp.153-157
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    • 1981
  • After Penicillium candidum and Actinomucor elegans were inooculated to soybean curd and incubated for 4-6 days at 10-13$^{\circ}C$, respectively, and the fresh soybean cheeses were soaked in ethanol-brine solution which was composed with 10% ethanol and 5% sodium chloride, for 16 weeks at above temperature. Total nitrogen content of soybean cheese was reduced by eloping the ripening time, but in soaking solution the content was increased. In amino nitrogen and reducing sugar of the cheese and the solution, the contents were continuously increased to the certain period, and after that time the rate was stupid. Nitrogen in the cheese inoculated with Act. elegans was highly hydrolysed and amino nitrogen and reducing sugar were much more produced than that inoculated with Pen. candidum.

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Changes in Chemical Components of Chungkugiang Prepared with Small Black Bean (소립검정콩 청국장의 화학성분 변화)

  • 손미예;권선화;성찬기;박석규;최상도
    • Journal of Life Science
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    • v.11 no.3
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    • pp.284-290
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    • 2001
  • Changes in chemical components of small black bean chungkugjang(SBBC) added with kiwi and radish as foodstuffs to repress off-odor and enhance the quality of SBBC suring fermentation were investigated. Optimal pretreatment conditions of small black bean suitable to the fermentation of chungkugjang were 3 hrs of soaking time 1.5 times of ratio of water to black bean. 1.0 atm of high pressure, 20 min of heating time, cutting and crushing of heat-treated black bean. Moisture content of SBBC was remarkably lower than that of soybean chungkugjang(SBC) as control. Crude protein of SBBC was in the range 23.37∼25.71% and higher than that of SBC, Crude lipid of SBBC was lower than that of SBC. Crude lipid of SBBC added with kiwi and radish paste was decreased than that of SBBC without two foodstuffs. pH of SBBC were rapidly increased to 24 hrs of fermentation and gradually increased thereafter. Total acidity was shown to be reversely decreased as compared to pH tendency. Reducing sugar was increased to 24 hrs of fermentation and then decreased. In SBBC and SBC, potassium was the most abundant followed by phosphorus, magnesium and calcium.

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Quality Properties of Dried Melon with Different Pretreatments (전처리 방법이 건조참외의 품질에 미치는 영향)

  • 김지강;정석태
    • Food Science and Preservation
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    • v.4 no.2
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    • pp.147-153
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    • 1997
  • Oriental melon has been increased in production amount, but its processed food was not made in spite of the fact that shelf-life of the fresh fruit is short. This study was carried out to develop a dried product with no use sulfur treatment. Fresh melons were peeled, cut into 6 pieces, and soaked to the following pretreatments soaking in sugar syrup(SS), sodium chloride(SC), ascorbic acid(AA) and sodium polyphosphate(SP). After preatreatments the melon pieces were dried by hot air drying at 5$0^{\circ}C$ for 9 and 12 hours, and the dried melons were air blown at $25^{\circ}C$ for 1 day. The dried samples were evaluated for moisture content, texture, rotor, and sensory quality. The moisture content of dried melons soaked in SS and SC were lower than those that were soaked in AA and SP after hot air drying. The melons dried for 12 hours were high in hardness, gumminess, chewness and adhesiveness and excellent in sensory evaluation compared to 9 hours. The "L" value of SS was higher and the "a" value was lower in Hunter color. And SS treatment inhibited browning of the dried melon and improved sensory characteristics in color, flavor, texture and taste. Sucrose concentration had no significant effect on color, hardness and sensory score in banal product. The combination of SS with SP represented a highly effective antibrowning treatment for the dried melon and the product was kept in good color for 3 months at room temperature.at room temperature.

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