• Title/Summary/Keyword: salted Chinese cabbages

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Storage of Salted Chinese Cabbages for Kimchi - I. Physicochemical and Microbial Changes During Salting of Chinese Cabbages - (김치용 간절임 배추의 저장에 관한 연구 - I. 배추의 간절임시 일어나는 이화학적 및 미생물학적 변화 -)

  • Kim, Joong-Man;Kim, Ihn-Sook;Yang, Hee-Cheon
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.16 no.2
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    • pp.75-82
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    • 1987
  • This study was to investigate physicochemical and microbial changes that took place during the salting of chinese cabbages. Salinity(3%) that is suitable for kimchi preparation was reached when chinese cabbages were salted for seven hours in 10%, three hours in 15% and one hour in 20%. In the case of 5% it was not reached though they were salted for over twelve hours. In order to decrease salinity from 7% level of salted chinese cabbages to 3% level by soaking in tap water, 1.2 hours for leaf and three hours for patiole were spent. Volume, moisture, firmness and internal space of raw chinese cabbages were significantly decreased by salting (15%, 10 hours) : volume, 59.90%, moisture, about 31.92% and internal space rate, 35.06%. Contents of mono-and divalent cations$(K^+,\;Mg^{2+}\;and\;Ca^{2+})$ were reduced whereas $Na^+$ content was greatly increased; therefore, in the future the increase of Na-content remains open to question. By salting and washing, mold, yeast and bacteria were decreased by 58%, 40%, 45%, respectivity.

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Cold Storage, Packing and Salting Treatments Affecting the Quality Characteristics of Winter Chinese Cabbages (월동 배추의 저온 저장 방법별 포장 및 염장 처리에 따른 품질 특성)

  • Lee, Jung-Soo;Choi, Ji-Won;Chung, Dae-Sung;Lim, Chai-Il;Park, Su-Hyung;Lee, Youn-Suk;Lim, Sang-Chul;Chun, Chang-Hoo
    • Food Science and Preservation
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    • v.14 no.1
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    • pp.24-29
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    • 2007
  • Quality changes in winter Chinese cabbages were evaluated during low temperature storage. Flesh and salt-treated Chinese cabbages were put into (a) polyethylene (PE) film sacks (size: $40cm{\times}60cm$, thickness: 0.03 mm, with four perforations each 8 mm in diameter), (b) plastic containers or (c) polypropylene (PP) nets and stored at $0^{\circ}C$. Also, Cabbages were also wrapped in newspapers and stored underground where the average temperature was $2.7^{\circ}C$. The weight loss rates of Chinese cabbages stored in PP nets and plastic containers were greater than those of cabbages stored with PE or wrapped in newspaper. Chinese cabbages wrapped in newspaper and stored underground needed much greater trimming compared to cabbages stored in other ways. The firmness and the soluble solid contents of Chinese cabbages were not affected by the various storage treatments. A better appearance was retained when Chinese cabbages were stored in PE film sacks. Chinese cabbages in PE film sacks stored at $0^{\circ}C$ showed delayed weight loss, less trimming loss, and less change in appearance. The quality changes in salted Chinese cabbages (desalting losses, pH changes, osmolarities, and crude fiber content) were not significantly different after the various treatments. No storage treatment was effective in maintaining a high quality of salted winter Chinese cabbage.

Combined Effects of Sanitizer Mixture and Antimicrobial Ice for Improving Microbial Quality of Salted Chinese Cabbage during Low Temperature Storage (저온 저장 중 절임배추의 미생물학적 품질 향상을 위한 혼합 살균제재와 항균성 얼음 병합처리 효과)

  • Choi, Eun Ji;Chung, Young Bae;Han, Ae Ri;Chun, Ho Hyun
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.44 no.11
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    • pp.1715-1724
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    • 2015
  • The combined effects of a sanitizer mixture solution and antimicrobial ice on the quality of salted Chinese cabbages were examined. Salted Chinese cabbages were treated with a sanitizer mixture (comprised 50 ppm aqueous $ClO_2$ and 0.5% citric acid), packed in 2% brine and antimicrobial ice, and stored for 12 days at 4 and $10^{\circ}C$. Microbiological data on the salted Chinese cabbages after washing with the sanitizer mixture indicated that the populations of total aerobic bacteria, and yeast and molds decreased by 2.20 and 1.28 log CFU/g after treatment with the sanitizer mixture. In addition, coliforms population of salted Chinese cabbage after 12 days storage at $4^{\circ}C$ in the combined mixture of the sanitizer and antimicrobial ice was 3.22 log CFU/g, which was a significantly different from that of control (5.46 log CFU/g). The combined treatment of sanitizer mixture, antimicrobial ice, and low temperature at $4^{\circ}C$ suppressed reduction of pH and elevation of titratable acidity, resulting in delaying the growth of lactic acid bacteria. Differences in salinity, hardness, and Hunter's $L^*$, $a^*$, and $b^*$ values among treatments were negligible during storage at $4^{\circ}C$. Therefore, this study suggests that a combination of sanitizer mixture, antimicrobial ice treatment, and low temperature storage could improve the microbial safety and quality of salted Chinese cabbages during storage.

Quality Changes of Salted Chinese Cabbages with Electrolyzed Water Washing and a Low Storage Temperature (전해수 세척 및 저장 온도에 따른 절임배추의 품질변화)

  • Park, Seong Soon;Sung, Jung Min;Jeong, Jin Woong;Park, Kee Jai;Lim, Jeong Ho
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.42 no.4
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    • pp.615-620
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    • 2013
  • To extend the shelf-life of salted Chinese cabbages, electrolyzed water (EW) was used to wash raw Chinese cabbages before the salting process (to control microbial growth), and different storage temperatures evaluated (0, 4, and $10^{\circ}C$). A tap water washing group (TW) was used for comparison. The initial total bacterial population was 5.36 log CFU/g in the TW treatment and 3.50 log CFU/g in the EW treatment. The EW treatment decreased bacterial numbers by approximately 2 log CFU/g compared to the TW treatment and kept this initial population number for 32 days at $0^{\circ}C$. The salinity had no difference during storage. In general, several factors (pH, reducing sugars, hardness, and transmittance) decreased over time, and decreased slowly with EW treatment and $0^{\circ}C$ storage. Overall, the salted Chinese cabbages with EW treatment showed lower bacterial populations compared to TW treatment, and when stored at $0^{\circ}C$, delayed decreases in quality.

Characteristics of Growth and Salting of Chinese Cabbage after Spring Culture Analyzed by Cultivar and Cultivation Method (봄배추 재배방법 및 품종에 따른 생육 및 절임 특성)

  • Lee, Jung-Soo;Park, Su-Hyung;Lee, Youn-Suk;Lim, Byung-Sun;Yim, Sang-Chul;Chun, Chang-Hoo
    • Food Science and Preservation
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    • v.15 no.1
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    • pp.43-48
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    • 2008
  • This experiment investigated the characteristics of salted and fresh Chinese cabbages of different cultivars and using various cultivation methods. We measured the numbers of leaves, sizes, thicknesses, moisture contents, and firmness qualities of fresh Chinese cabbage grown in a plastic house, and outdoors. 'The bulb sizes, leaf thicknesses, and moisture contents of leaves were higher after plastic house cultivation than after growth in the field. Plastic house culture increased the growth rate of Chinese cabbage. Firmness and osmolarity showed better values after outdoor cultivation, however. The growth rates and the levels of chemical components were affected by interactions between cultivation methods and cultivars of Chinese cabbage. The salt levels of salted Chinese cabbage were 1.21.7% (w/w) after cabbages cultivated outdoors were preserved, and 0.91.2 % (w/w) after vegetables grown in a plastic house were treated. The quality properties of postharvest Chinese cabbages after salting varied with cultivation method even when the same cultivars of Chinese cabbage were used. The salt contents of salted Chinese cabbage thus varied with different cultivation methods. The results indicate that the properties of Chinese cabbage vary with the culture systems adapted.

Changes in the Texture and Salt Content of Chinese Cabbage Using Different Salting Methods (절임 방법에 따른 배추 조직 및 염도 변화)

  • Lee, Myung-Ki;Yang, Hye-Jung;Woo, Ha-Na;Rhee, Young-Kyoung;Moon, Sung-Won
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.40 no.8
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    • pp.1184-1188
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    • 2011
  • This study analyzed changes in the texture and salt content of Chinese cabbage after salting using different methods to determine the effects of low salt brining. To verify the possibility of brining under low salt concentration, Chinese cabbage was salted with 1%, 2%, 6%, and 10% salt solutions by pressing, pressure reduction, or steaming. After salting, the firmness (g, determined using the puncture test) of the Chinese cabbage changed according to the brining methods used, however, an increasing trend in rigidity was observed as the salinity increased. Because the power applied during pressing or pressure reduction treatments is higher, the firmness of and penetration time on the surface of the brined Chinese cabbages after these treatments increased more in the 6% salt solution cabbage. Additionally, the Chinese cabbages treated with steam showed significantly higher firmness and penetration time than those treated by pressing and pressure reduction. As a result of pressing the 6% salt concentrated cabbage with 1.35 $kg{\cdot}f/cm^2$, a pressure reduction from 250 mmHg, and steaming at 100$^{\circ}C$ for 1 min, the cabbage had roughly 2% of the salt concentration, ultimately. These physical treatments of pressing, pressure reduction, and steaming could be used as new methods for preparing salted Chinese cabbage with low salt concentrations for general use.

Improvement of Temperature Constancy of Direct Refrigerator for Supercooled Storage (직냉식 냉장고의 과냉각 저장을 위한 항온 특성 개선 연구)

  • Kim, Jinse;Nam, Soyoung;Jung, Hyun Kyung;Son, Jae Yong;Choi, Dong Soo;Kim, Yong Hoon;Lee, Soo Jang;Park, Chun Wan;Kim, Ha Yoon;Park, Seok Ho
    • Food Engineering Progress
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    • v.23 no.4
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    • pp.270-277
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    • 2019
  • Commercial direct refrigerators have good energy efficiency, but are difficult to use for supercooled storage due to their large temperature deviation. Placing insulators and conductors inside the refrigerator could reduce these temperature deviations to within 0.3 degrees, allowing for the supercooled storage. The supercooled storage of salted Chinese cabbages during ten weeks was progressed to compare the other low temperature storages. The nucleation temperatures of salted Chinese cabbage were around -2.5℃ and the freezing points were around -0.4℃, so -2℃ was selected for the supercooled storage. The growth rate of lactic acid bacteria and yeast at -2℃ storage was lower than that at 2℃ storage. The reducing sugar was maintained higher due to the growth rate of lactic acid bacteria. The supercooled storage had an effect of delaying the fermentation of the salted Chinese cabbage, which may have the effect of delaying the fermentation of kimchi. This enhancement method of the direct refrigerator was effective for the supercooled storage and would be promising for commercial use.

Quality Characteristics of Chinese Cabbage with Different Salting Conditions Using Electrolyzed Water (전기분해수를 이용한 절임 조건에 따른 배추의 품질 특성)

  • Jeong, Jin-Woong;Park, Seong-Soon;Lim, Jeong-Ho;Park, Kee-Jai;Kim, Bum-Keun;Sung, Jung-Min
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.40 no.12
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    • pp.1743-1749
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    • 2011
  • The microbial reduction and quality characteristics of salted Chinese cabbage using electrolyzed water were investigated. The electrolyzed water was used to control the microbes in the processes of primary washing, salting, and secondary washing. The total bacteria, lactic acid bacteria, coliform, pH, salinity, vitamin C, and total sugar were analyzed. After primary washing by electrolyzed water, the total bacteria populations were reduced to 2.78 log cfu/g, and the coliform populations were similarly reduced. After secondary washing by electrolyzed water, the total bacteria population of Chinese cabbage was reduced to a maximum of 1.5 log cfu/g. The salinity of Chinese cabbage and salting solutions increased rapidly over three hours, and then increased slowly. The sterilization effect of electrolyzed salting water could not last beyond 3 hours, because the OHCl concentration of electrolyzed water was reduced by over 90% at the third hours of the salting process. Vitamin C was reduced and total sugar did not change regardless of treatments during the salting process. Consequently, electrolyzed water was effective to remove microbes from salted Chinese cabbages.

Hygienic Superiority of Kimchi (김치의 위생학적 우수성)

  • Kim, Yong-Suk;Shin, Dong-Hwa
    • Journal of Food Hygiene and Safety
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    • v.23 no.2
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    • pp.91-97
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    • 2008
  • Kimchi is a representative traditional food in Korea and a type of vegetable product that is the unique complex lactic acid fermentation in the world. It can be considered as a unique fermented food generated by various flavors, which are not included in raw materials, that can be generated by mixing and fermenting various spices and seasonings, such as red pepper powder, garlic, ginger, and salted fish, added to Chinese cabbages. Functionalities in Kimchi have been approved through several studies and the probiotic function that is mainly based on lactic acid bacteria including their physical functions in its contents has also verified. Studies on the verification of the safety of Kimchi including its physiological functions have been conducted. In particular, the function of lactic acid bacteria, which is a caused of the fermentation of Kimchi. Although the lactic acid bacteria contributed to the fermentation of Kimchi is generated from raw and sub-materials, the lactic acid bacteria attached on Chinese cabbages has a major role in the process in which the fermentation temperature and dominant bacteria are also related to the process. The salt used in a salt pickling process inhibits the growth of the putrefactive and food poisoning bacteria included in the fermentation process of Kimchi and of other bacteria except for such lactic acid bacteria due to the lactic acid and several antimicrobial substances generated in the fermentation process, such as bacteriocin and hydrogen peroxide. In addition, the carbon dioxide gas caused by heterolactic acid bacteria contributes to the inhibition of aerobic bacteria. Furthermore, special ingredients included in sub-materials, such as garlic, ginger, and red pepper powder, contribute to the inhibition of putrefactive and food poisoning bacteria. The induction of the change in the intestinal bacteria as taking Kimchi have already verified. In conclusion, Kimchi has been approved as a safety food due to the fact that the inhibition of food poisoning bacteria occurs in the fermentation process of Kimchi and the extinction of such bacteria.