• Title/Summary/Keyword: spring kimchi cabbage

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Quality Change in Kimchi made of Spring Kimchi Cabbage during Fermentation under Different Storage Conditions (저장조건을 달리한 봄배추로 제조한 김치의 숙성 중 품질 변화)

  • Bang, Hye-Yeol;Cho, Sun-Duk;Kim, Byeong-Sam;Kim, Gun-Hee
    • The Korean Journal of Food And Nutrition
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    • v.30 no.2
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    • pp.378-387
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    • 2017
  • To stabilize the supply of kimchi by extending the storage period of spring kimchi cabbage, this study manufactured kimchi from spring kimchi cabbage under varying storage conditions and periods, and analyzed their quality and sensory characteristics following the maturing period. Trimming loss was lowest in the group of plasma+reverse direction+predrying+HDPE film processing. The salting yield of spring kimchi cabbage stored for 12 weeks was lower than that of spring kimchi cabbage stored for 6 weeks, and the kimchi yield was low in the pre-treatment group of spring kimchi cabbage stored for 12 weeks. The firmness was slightly different according to the storage period from one month of maturation. From the perspective of pH and acidity, the maturation in the reverse direction+pre-drying+HDPE film processing group was slower than that in the normal group (<0.05). In the sensory evaluation, the preference was increased in the low temperature storage processing group as the maturation period was increased (<0.05).

Quality Characteristics of Spring Napa Cabbage Kimchi Harvested at Different Times (봄배추의 수확시기가 김치의 품질특성에 미치는 영향)

  • Cho, Sun-Duk;Bang, Hye-Yeol;Lee, Eun-Ji;Kim, Gun-Hee
    • Journal of the Korean Society of Food Culture
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    • v.31 no.2
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    • pp.188-193
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    • 2016
  • The purposes of this study were to prolong the storage period and maintain quality of kimchi made from spring napa cabbage, which is used less frequently than winter napa cabbage. The results show that the firmness of kimchi from early July, the latest harvest period, was significantly higher than that of kimchi from mid-June. However, as maturation proceeded, no significant difference was observed following the harvest period when kimchi was stored for 8 weeks. Regarding pH and acidity, which are highly related to maturation of kimchi, pH generally decreased from the initial storage period while acidity increased. In the sensory evaluation, appearance was best in kimchi manufactured in late June according to manufacturing and maturation periods (p<0.05). After 4 and 8 weeks of storage, kimchi manufactured in early July had the highest scores with no significant difference. Texture and overall acceptability also showed no significant difference in each processing period.

The Quality Characteristics of Chinese Cabbage Kimchi around Masan Area (마산 지역 배추김치의 품질특성)

  • 박우포;김종현;조재선
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.25 no.3
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    • pp.535-538
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    • 1996
  • To investigate the quality characteristics of kimchi around Masan area, home made and commercial kimchi samples were collected from December 1994 to June 1995. The weight of a head of Chinese cabbage was 3.0kg after purchasing and reduced to 2.36kg after salting. Home made kimchi showed a little higher pH and titratable acidity than those of commercial kimchi in winter. Salt concentration of home made kimchi in winter was 3.69%, and higher than that of commercial kimchi. Color of home made kimchi was higher in L, a and b than that of commercial kimchi in winter and spring. The pH of commercial kimchi was lower about 0.3 than that of home made kimchi in spring. Home made kimchi in spring showed about 0.3% higher salt concentration than that of commercial kimchi.

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Reappraisal of Stimulatory Effect of Garlic on Kimchi Fermentation (마늘의 김치발효 촉진작용에 관한 연구)

  • Lee, Joo-Young;Choi, Mi-Kyung;Kyung, Kyu-Hang
    • Korean Journal of Food Science and Technology
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    • v.40 no.4
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    • pp.479-484
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    • 2008
  • There have been contradictory reports concerning the role of garlic on kimchi fermentation; therefore, in this study, the stimulatory effect of garlic on the fermentation of kimchi was reappraised. In this study, fermentation of kimchi prepared using spring Chinese cabbage was stimulated by the addition of garlic, but kimchi prepared using autumn Chinese cabbage was not. In addition, the results of this study revealed that the fermentation of kimchi prepared using spring Chinese cabbage was found to be stimulated by glucose, yeast extract, peptone, and secondary ingredients of kimchi, but the fermentation of kimchi prepared using autumn Chinese cabbage was not stimulated by these ingredients. Taken together, these results indicate that general nutrients in garlic stimulate the fermentation of kimchi by compensating for nutrients that are not found in spring Chinese cabbages. However, these findings do not indicate that certain specific substance(s) in garlic stimulate kimchi fermentation.

Quality Characteristics of Spring Kimchi Cabbage by Storage Conditions and Period (봄배추의 저장조건 및 기간을 달리하여 제조한 김치의 품질특성)

  • Cho, Sun-Duk;Bang, Hye-Yeol;Kim, Eunhyang;You, SoHyeon;Kim, Byeong-Sam;Kim, Gun-Hee
    • Journal of the Korean Society of Food Culture
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    • v.32 no.3
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    • pp.227-234
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    • 2017
  • This study attempted to establish the optimal conditions for storage of spring kimchi cabbage to stably control supply and demand. To this end, this study stored kimchi cabbages in various manners for different periods and compared the quality characteristics of kimchi using these cabbages. According to the results, pre-drying with photocatalytic and pre-cooling treatments showed average selectivity loss rates of 18.83 and 21.37%, respectively, which were lower than those of other treatments. Spring kimchi cabbages were stored for 15 weeks under various conditions, and the kimchi was stored for 4 weeks at $4^{\circ}C$. After ripening, each kimchi was analyzed for their soluble solid content, pH, acidity, and salinity. The average pH of kimchi was 4.60 and tended to rise, whereas average acidity was 0.38% and fell by 0.24 to 0.31% as the storage period was extended. Extension of the storage period caused decreases in soluble solid content and salinity, and the number of lactic acid bacteria decreased due to increased pH and reduced acidity (p<0.05). Sensory evaluation showed that all experts and non-professionals preferred kimchi treated by precooling compared to any other treatment.

Growth and salting properties influenced by culture methods, cultivars and storage packaging of kimchi cabbage (Brassica rapa) in spring

  • Lee, Jung-Soo
    • Korean Journal of Agricultural Science
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    • v.45 no.4
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    • pp.623-634
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    • 2018
  • This experiment was conducted to determine the effects of the pre- and post-harvest variable factors on the processed product of kimchi cabbage. Two kimchi cabbage cultivars, namely 'Chungwang' and 'Dongpung,' were grown in a field and under a plastic greenhouse condition and stored at $5^{\circ}C$ after harvesting with and without low-density polyethylene (LDPE) film packaging. Growths were determined after harvesting while salting characteristics were determined after the processing and storage. The results show that the height, weight and leaf thickness were higher in kimchi cabbages grown in the greenhouse than those grown in the field. The plastic house culture increased the kimchi cabbage growth of the head weight, head height and leaf thickness compared with that of the open field culture. However, the osmolality and firmness were higher in the outdoor cultivated kimchi cabbages. Kimchi cabbage packed in film covered sacks and stored at $5^{\circ}C$ showed lower weight loss than unpacked cabbages during storage. Salt concentration and pH were also affected by the different pre- and post-harvest factors after salting the kimchi cabbages. Salt concentrations of the kimchi cabbage were influenced by various factors such as the cultivars, cultivation methods and storage covering. Though the present findings showed a limited difference in salt concentration and pH between the cultivars of kimchi cabbages, this study suggests that there is a relationship between processed agricultural products and their pre- and post-harvest methods.

Quality Characteristics of Kimchi Prepared with Major Spring Chinese Cabbage Cultivars (주요 품종별 봄배추 김치의 품질특성)

  • 김미정;김순동
    • Food Science and Preservation
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    • v.7 no.4
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    • pp.343-348
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    • 2000
  • Characteristics of major suing Chinese cabbage cultivars in Korea, Norangbom(Nor), Gonaenggiyeurum(Gon), Maereuk (Mae) and Housekumgarak (Hou), and their qualities of Kimchies were investigated. Mean weight of the cabbages was in the range of 1.39∼2.40 kg, and was higher Gon, Mae, Nor, Hou in order. Leaves number was Gon 45, Nor 56, Mae 59 and Hou 56 pieces. Sensory taste of raw Chinese cabbage was best in Nor. Decreasing rate of gumminess and chewiness by salting was the highest in Gon and the lowest in Nor. fermentation of Gon and Nor-Kimchi were faster than Mae and Hou-Kimchi. Amount of gas formation during fermentation was the highest in Mae-Kimchi and lowest in Nor-Kimchi. Decreasing rate of AIS was the fastest in Mae-Kimchi and the latest in Hou-Kimchi. Hardness and gumminess of Kimchi fermented for 21 days were to be ordered Mae-Kimchi, Hou-kimchi, Gon-Kimchi and Nor-Kimchi. Overall acceptability by the sensory test was good in Nor- and Hou-Kimchi.

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Effect of Pre-treatment and Packaging Method on Freshness Prolongation of Spring Kimchi Cabbage during Low Temperature Storage (봄배추의 전처리 및 포장방법이 저온저장 중 선도유지에 미치는 효과)

  • Se-Jin Park;Ji-Young Kim;Andri Jaya Laksana;Byeong-Sam Kim
    • KOREAN JOURNAL OF PACKAGING SCIENCE & TECHNOLOGY
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    • v.29 no.2
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    • pp.119-128
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    • 2023
  • This study was examined for investigating the quality changes of spring kimchi cabbage under various treatments (pre-drying/pre-cooling, packaging types, and stacking and loading in container and pallete in the storage room) during cold storage. The results showed that control (upward stacking without pre-drying/pre-cooling and HDPE or PVC film cover) was increased significantly in weight loss and trimming loss, compared to other treatments such as DPDH (downard stacking + pre-drying + HDPE), DPDP (downard stacking + pre-drying + PVC), DPCH (downnard stacking + pre-cooling + HDPE), and UPCH (upward stacking + pre-cooling +HDPE) during storage for three months. In Sensory evaluation, judging from marketable properties, the desirable appearance of spring kimchi cabbage with the modified pallet-unit MA packed, PE, and PVC film wrapping could be maintained until 9 weeks after pre-drying/pre-cooling. Meanwhile, the control without any treatments after 6 weeks, the sensory score was declined, significantly. In general, the low temperature (10℃ and 2℃) of pre-treatment with combination of plastic film packaging in spring kimchi cabbage storage could inhibit the physiological activity and reduce the direct exposure of environmental cold air in the storage. Therefore, these two variables were the key points for extending the shelf-life of spring kimchi cabbage.

Monitoring of Sodium Content in Commercial Baechu (Kimchi Cabbage) Kimchi (시판 배추김치의 나트륨 함량 모니터링)

  • Eun Woo, Moon;Hee-Min, Lee;Sung Hyun, Kim;Hye-Young, Seo
    • The Korean Journal of Food And Nutrition
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    • v.35 no.6
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    • pp.537-542
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    • 2022
  • This study was conducted to provide basic data on the amount of sodium and the setting of permissible error range of actual measurement, which is a problem for cabbage kimchi nutrients subject to labeling. The sample targeted was baechu (Kimchi cabbage) kimchi, which might have a large variation in sodium content by part of kimchi. Kimchi samples were collected twice from eight companies by season (spring, summer, fall, and winter). The average sodium content in kimchi samples was 619±87 mg/100 g (range, 534±63 mg/100 g to 783±40 mg/100 g). The error in average annual sodium content of abandonment kimchi (maximum value difference compared to the minimum value) was 26.8 to 64.3%. Sodium contents in kimchi produced in spring and summer were relatively low. However, deviation between individuals was large. It was found that cases exceeding the permissible error (120%) standard varied depending on the criteria for setting the amount of sodium. In addition, due to seasonal differences, sodium content in kimchi exceeded 120% of the labeling value. Thus, it is necessary to set standards suitable for characteristics of kimchi to prevent unintentional violations of labeling standards by raw materials and manufacturing processes.

A Study on the Material Ratio of Kimchi Products of Seoul and Chung Cheong Area and Chemical Properties of the Fermented Kimchis (서울 및 충청지역의 김치담금 재료비 및 숙성김치의 화학적 성질 조사)

  • 강근옥;이성희;차보숙
    • Korean journal of food and cookery science
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    • v.11 no.5
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    • pp.487-493
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    • 1995
  • The material ratio for preparation of Kimchi in Seoul and Chung Cheong area and the pH, total acidity and NaCl concentration of properly fermented Kimchi were investigated. The kinds of Kimch prepared for the Winter were cabbage Kimchi, Kakdugi, Chonggak Kimchi, Nabak Kimchi, Dongchimi, Bossam Kimchi, and Paek Kimchi. The materials used for chbbage Kimchi were 20 to 25 of ingredients including salted fish and dhellfish. The material ratio of Kimchi was 71.9% of cabbage, 11% of radish, 2.3-2.6% of green onion, 1.3-1.6% of garlic, 2.7-3.2% of powdered red pepper and 3.9-4.2% of salted fish. The kinds of Kimchi for Spring were cabbage Kimchi, Kakdugi, Chonggak Kimchi, Yulmu Kimchi and cucumber Kimchi. The amount of salted fish and shellfish used were decreased in Spring while vegetables of the season increased. The properly fermented cabbage Kimchi were measured of pH 4.2-4.5 and total acidity of 0.5-0.8%. The favorite concentrations of NaCl were found to be 2.3-2.7% in Winter Kimchi and 1.8-2.4% in Spring Kimchi and in watering Kimchi was shown low as 1.3-1.7%.

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