• Title/Summary/Keyword: storage of kimchi

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Development of Control System for Kimchi Fermentation and Storage Using Refrigerator (냉장고를 이용한 김치발효 및 저장 제어시스템의 개발)

  • Ko, Yong-Duck;Kim, Heung-Jae;Chun, Sung-Sik;Sung, Nack-Kie
    • Korean Journal of Food Science and Technology
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    • v.26 no.3
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    • pp.199-203
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    • 1994
  • Software for refrigerator capable of both rapid fermentation and suitable storage of Kimchi was developed and its performance was investigated. Refrigerator system consists of an insulated fermentation room, heater, damper for the control of outer cold air and two sensors for recognizing temperature of heater and fermentation room, which control temperature and time period of affecting Kimchi fermentation. Effects of fermentation at different NaCl concentration and three fermentation function keys were studied; At key I, time which was elapsed to edible ripening state, pH 4.5 and total acid 0.6%, was about $3{\sim}4$, $4{\sim}5$ and $11{\sim}12$ days, respectively. At key II, time was about $2{\sim}3$, $3{\sim}4$, and $10{\sim}11$ days, and at key III, about 2, 3 and $9{\sim}10$ days, respectively. Effect of storage at three fermentation function keys was all maintained to the level of a palatable pH range until 14 days. Sensory evaluation of Kimchi showed also significant difference in a taste.

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Inactivation of a Norovirus Surrogate (Feline Calicivirus) during the Ripening of Oyster Kimch (굴김치 숙성에 따른 노로바이러스 대체 모델 Feline Calicivirus의 불활성화)

  • Shin, Soon-Bum;Oh, Eun-Gyoung;Yu, Hong-Sik;Lee, Hee-Jung;Kim, Ji-Hoe;Park, Kun-Ba-Wui;Kwon, Ji-Young;Yun, Ho-Dong;Son, Kwang-Tae
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.43 no.5
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    • pp.415-420
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    • 2010
  • In Korea, oysters are used as an ingredient of Kimchi (Korean pickled cabbage) in early winter. Although viral contamination of oysters, including contamination by norovirus, can provoke gastroenteric illness, little is known of the epidemiological relationship to outbreaks. We postulated that Kimchi ripening can reduce the infectivity of norovirus, in order to test this hypothesis, we carried out a model experiment. Since norovirus is currently regarded as non-culturable, feline calicivirus (FCV) was used as a surrogate to examine the activation of norovirus with Kimchi ripening. In commercial well-prepared Kimchi, the infectivity ($TCID_{50}$) of FCV decreased by 2 log every 12 hours and reached the limit of detection after 48 hours during over-aging at $25^{\circ}C$. During storage at $4^{\circ}C$, the infectivity ($TCID_{50}$) of FCV decreased slowly and reached 5.00 $TCID_{50}$ after 48 hours. The low pH appears to affect the infectivity of FCV directly via organic acids produced by ripening during over-aging and storage. In neutralized lab-prepared Kimchi (pH 7.0), the infectivity ($TCID_{50}$) of FCV also decreased and reached the limit of detection after 72 hours at $4^{\circ}C$. This indicates that there are substances beside organic acids in Kimchi that originate from the raw materials and are produced during ripening. Among the raw materials, salt-fermented anchovies and garlic showed high direct antiviral activity. The main factor decreasing the infectivity of FCV in Kimchi was the high acidity caused by organic acids, regardless of the type, produced by ripening. Furthermore, unknown secondary products of microorganisms associated with Kimchi ripening and antiviral materials originating from raw material might contribute to the decreased infectivity of FCV, the surrogate of norovirus.

Preparation and Quality Characteristics of Mul-kimchi Added with Chlorella (클로렐라 분말을 첨가한 물김치의 제조와 품질특성)

  • Kim, Dong Chung;Won, Sun Im;In, Man-Jin
    • Journal of Applied Biological Chemistry
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    • v.57 no.1
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    • pp.23-28
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    • 2014
  • Mul-kimchi was prepared with addition of 0.025, 0.05, and 0.1% (w/v) chlorella powder and fermented at $10^{\circ}C$ for 6 days. Quality characteristics of the Mul-kimchi were evaluated in terms of acid production (pH and titratable acidity) and lactic acid bacterial counts during fermentation. The addition of chlorella powder stimulated the growth of lactic acid bacteria and significantly enhanced the acid production. After 3 days fermentation, titratable acidity of chlorella Mul-kimchi was 0.12-0.14% and was higher than that (0.11%) of Mul-kimchi made without chlorella. The acid production and the number of viable lactic acid bacterial cell increased with increasing the concentration of added chlorella powder. The sensory score of Mul-kimchi added with 0.05% chlorella powder showed the highest values in taste and overall acceptability among the tested Mul-kimchi preparations. When chlorella Mul-kimchi preparations incubated for 3 days were kept at $4^{\circ}C$ for 19 days, their quality characteristics were well maintained through storage period. According to sensory score and storage ability, the optimum concentration of chlorella powder was around 0.05%.

Screening of Natural Preservatives to Inhibit Kimchi Fermentation (김치의 선도유지를 위한 천연보존제의 탐색)

  • Moon, Kwang-Deog;Byun, Jung-A;Kim, Seok-Joong;Han, Dae-Suk
    • Korean Journal of Food Science and Technology
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    • v.27 no.2
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    • pp.257-263
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    • 1995
  • As a primary step to develop natural preservative for extending the shelf-life of kimchi, the effect of 102 edible plants, 21 antimicrobial agents and related compounds on kimchi fermentation was studied. Among 42 oriental medicinal plants tested, Baical skullcap and Assam indigo were found to be highly effective for maintaining the fresh state of kimchi. Although Bugbane, Red mangolia, Bushy sophora, Szechuan pepper, Chinese quince and Scisandre significantly inhibit the growth of Lactobacilli, their effect was not high enough to be used as raw materials for kimchi preservative. When the effect of 32 herbs and spices was tested, peppermint, cinnamon, lemon balm, clove, hop, rosemary, sage, horseradish and thyme showed high antimicrobial activity against kimchi microorganisms. Among them, the effect of clove ranked top. When it was added to fresh kimchi, initial cfu value ($2.4{\times}10^{6}cfu/g$) changed little even after 2 day's fermentation ($2.6{\times}10^{6}cfu/g$). Sensory test was not a good criteria to evaluate the effect of herbs and spices, since their highly specific flavors affected the taste of kimchies. Twenty eight fruits, vegetables and related plants were tested, but only leaves of pine tree, persimmon and oak leaves showed a significant bactericidal effect, finally contributing to the storage of kimchi. In addition, when 21 natural preservatives and other compounds were added individually to fresh kimchi, nisin and caffeic acid could inhibit fermentation.

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Studies on the Kimchi Pasteurization -Part 1. Method of Kimchi Pasteurization with Chinese Cabbage Kimchi and its Effect on the Storage- (김치의 순간살균방법(瞬間殺菌方法) -제1보(第-報). 배추 김치의 순간살균방법(瞬間殺菌方法)과 살균효과(殺菌效果)-)

  • Lee, Nam-Jin;Chun, Jae-Kun
    • Applied Biological Chemistry
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    • v.24 no.4
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    • pp.213-217
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    • 1981
  • A Kimchi pasteurizer consisting of preheating, holding, cooling and liquid separation sections was built with copper tubing coil and glasses. The liquid portion of a Chiness Cabbage Kimchi prepared with 3% NaCl solution was preheated and held for 3 minutes at sterilization temperature. Thereafter it was cooled momentarily and recombined with the untreated solid part of Kimchi At four different temperatures of $68^{\circ}$, $75^{\circ}$, $81^{\circ}$ and $85^{\circ}C$ Kimchi was sterilized and examined for the sterilization effects by measuring acid and pH changes of the Kimchi when stored at $15^{\circ}C$. The shelf-life of sterilized Kimchi was prolonged by two folds compared with the untreated one. When Kimchi was sterilized at different maturing stages. the less cured one prolonged its shelf-life more effectively.

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The Quality Properties of Rapidly Fermented Mukeun (Long-Term Fermented) Kimchi with Different Salinity and Fermented Temperature (염도와 발효온도를 달리하여 제조한 단기 숙성 묵은 김치의 품질특성)

  • Ko, Myeong-Sin;Hur, Sung-Won;Kim, Mi-Ran;Jung, Seo-Jin;Lee, Hyeran;Cho, Mi-Sook
    • The Korean Journal of Food And Nutrition
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    • v.28 no.3
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    • pp.335-342
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    • 2015
  • We conducted a study on mukeun (long-term fermented) kimchi ripened over one year in an attempt to develop an alternative salt and improve the quality of low-salt kimchi. However, few studies have focused on mukeun kimchi that has been fermented for a short time in different salinity conditions. Therefore, the aim of this study was to investigate the physicochemical characteristics that occur during the fermentation of mukeun kimchi samples produced with different conditions of salinity and fermentation temperature. Kimchi samples were produced at 3 different salinity levels: 1.6%, 2.4%, and 3.2%. Previous studies revealed that the optimum fermentation time at pH 4.1 was 128 hours at $18^{\circ}C$ and 417 hours at $12^{\circ}C$; furthermore, the samples were stored for 12 weeks under the condition of $-1^{\circ}C$ after fermentation. Total cell increased on week 0 of storage and decreased according to the storage period. Total cell was the highest at 3.2% salinity and had a high value at $18^{\circ}C$ temperature during the storage period. Based on the physiochemical results, mukeun kimchi at a salinity of 3.2% can be fermented for a short time, and low-salt kimchi at a salinity of 1.6% and fermented at $18^{\circ}C$, is similar to mukeun kimchi at 2.4% salinity.

Characterization cf salted Chinese cabbage in relation to salt content, temperature and time (배추절임시 염수농도와 침지온도 및 시간에 따른 특성 변화)

  • 심영현;안기정;유창희
    • Korean journal of food and cookery science
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    • v.19 no.2
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    • pp.210-215
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    • 2003
  • When Kimchi is cooked, it is very import to find an appropriate level for the salt content of the cabbage to makes the best tasting Kimchi. Therefore, in this article, attempts were made to find the best salted cabbage condition using difference salt solution concentration, temperatures and fermentation periods. In the experiments with the difference of the salt solutions, 10 and 15%, the salted cabbages were packed in polyethylene bags, and incubated at 10, 15, 20 and 25$^{\circ}C$ for 0, 2, 4, 6, 8, 10, 12, 14, 16 and 20 hrs. As a result, the best tasting Kimchi, in terms of texture characteristic, were found with storage times of 10 and 6-8 hrs, with salt solution concentrations of 10 and 15%, respectively, both of these at 25$^{\circ}C$. The best conditions, in terms of the kimchi taste characteristics, where 6-10 hrs, with the salt solution concentrations of 10 & 15%. With storage conditions of 10 hrs and a salt solution concentraction of 10%, and 6-8 hrs and a salt solution concentration of 15%, both at 25$^{\circ}C$, the texture characteristics were fresh. clear and coot. Also, the points of the appropriate salt content differ with temperature. Therefore, the appropriate conditions for the salting time, storage temperature and salt solution concentrations will make the best tasting, most nutritious Kimchi, in the least time and most economically.

Effect of Temperature, pH and Salt Concnetration on formation of N-nitrosamines during Kimchi Fermentation (김치숙성중 숙성온도, pH 및 소금 농도가 니트로스아민의 생성에 미치는 영향)

  • 김준환;장영상;신효선
    • Journal of Food Hygiene and Safety
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    • v.13 no.4
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    • pp.332-336
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    • 1998
  • The effect of ripening temperature, pH and salinity on the formation of Nnitrosamine (NA) during Kimchi fermentation and in vitro was studied, respectively. During Kimchi fermentation for six weeks at cold storage temperature ($4^{\circ}C$) and room temperature ($16{\pm}2^{\circ}C$), the contents of nitrite and dimethylamine (DMA) showed variation at room temperature but no variation at cold storage temperature. The maximum generation of nitrosodimethylamine (NDMA) resulted low content ($2.69\;\mu\textrm{g}/kg$) at cold storage temperature but started to increase after one week fermentation and reached to the 18-fold higher generation ($49.6\;\mu\textrm{g}/kg$) at room temperature. During Kimchi fermentation, no correlation was observed between the variation of nitrite and DMA content and the generation of NDMA. However, pH showed effective relation to NDMA generation such as the highest NDMA generation was obtained at lowest pH 4. During in vitro test, higher temperature and lower pH resulted more NDMA generation and generation amount was affected more by pH. Also, the salinity of Kimchi provided inhibitory effects on the formation of NDMA. NDMA was produced $5.86\;\mu\textrm{g}/kg$ at normal salinity (2.5%) but $90.9\;\mu\textrm{g}/kg$ at lower salinity (15%) after three week. The higher salinity showed lower formation of NDMA in vitro test, too.

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The short-term storage characteristics of cut kimchi cabbages treated with Ca2+ (Ca2+처리 절단배추의 소포장 단기 저장 특성)

  • Kim, Sang-Seop;Seong, Gi-Un;Hwang, Hee-Young;Jeong, Moon-Cheol;Chung, Shin-Kyo
    • Food Science and Preservation
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    • v.21 no.2
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    • pp.157-162
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    • 2014
  • To enhance the commercialization of fresh cut kimchi cabbage, the short-term storage effect of cut kimchi cabbage treated with $Ca^{2+}$ was studied. Cut kimchi cabbages ($3{\times}3$ cm) were treated with 2% calcium chloride (Ca), ascorbic acid (As), citric acid (Ct), and calcium chloride and citric acid (Ca/Ct), were put inside LDPE bags, and stored at $5^{\circ}C$ for 6 weeks. The weights reduced about 0.13~0.72%, and the ratio was the lowest in the Ca/Ct treatment. The reduction ratios of soluble soilds were 18.85~35.00%, and were the lowest in the Ca/Ct treatment. The titratable acidity decreased in all the treatments. The L values decreased, but a and b values of Hunter colorimeter increased in all the treatments. The preference for Ca/Ct treatment was the highest among all the treatments in the sensory evaluation. The marketing shelf-life of cut kimchi cabbage can be prolonged by the combination treatment of $Ca^{2+}$ and citric acid.

Technology Innovation in Kimchi Packaging for Marketing in Food Supply Chain (상품적 유통을 고려한 김치 포장의 기술혁신 현황)

  • Lee, Dong Sun;Kwon, Ho Ryoung;An, Duck Soon;Chung, Michael;Lee, Kwang Sik;Yang, Dong Jin
    • KOREAN JOURNAL OF PACKAGING SCIENCE & TECHNOLOGY
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    • v.18 no.1_2
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    • pp.1-8
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    • 2012
  • Kimchi, a Korean fermented vegetable is packaged without pasteurization and distributed with live bacteria actively working to produce lactic acid and carbon dioxide gas in the product. The $CO_2$ production consisting of two distinct phases of initial fast and later slow rates depends on kimchi type, salt content and storage temperature. The $CO_2$ produced from kimchi is accumulated in the product package causing volume expansion and pressure buildup. The dependence of $CO_2$ production rate on salt content and storage temperature has been published formerly and can be used for estimating the package volume and pressure under a variety of storage conditions. As methods to alleviate the problems from the produced $CO_2$, package designs with controlled diffusion pinhole, high $CO_2$ permeable film or $CO_2$ absorber have been tried by several researchers. Properly designed packages adopting the device or tool were shown to have high dissolved $CO_2$ in kimchi without volume expansion and pressure buildup, giving good sensory quality with carbonic taste. Advantages and limitations of each method have been discussed.

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