• Title/Summary/Keyword: spring chinese cabbage

Search Result 55, Processing Time 0.02 seconds

Growth Response and $CO_2$ Biomass of Chinese Cabbage and Radish under High Temperature and $CO_2$ Concentration (고온과 고농도 $CO_2$ 조건에서 배추와 무의 생육 반응 및 탄소 고정량)

  • Lee, Ji-Weon;Kim, Seung-Yu;Jang, Yoon-Ah;Moon, Ji-Hye;Lee, Woo-Moon
    • Journal of Bio-Environment Control
    • /
    • v.15 no.4
    • /
    • pp.364-368
    • /
    • 2006
  • This experiment was carried out to figure out the $CO_2$ biomass and the growth response of Chinese cabbage and radish grown under the condition of high temperature and high $CO_2$ concentration to provide the information for the coming climatic change. Chinese cabbage and radish were cultivated in spring and autumn seasons under 4 treatments, 'ambient temp.+ambient $CO_2$ conc.', 'ambient temp.+elevated $CO_2$ conc.', 'elevated temp.+ ambient $CO_2$ conc.', and 'elevated temp. +elevated $CO_2$ conc.'. The 'elevated temp,' plot was maintained at 5 higher than 'ambient temp. (outside temperature)'and the 'elevated $CO_2$ cone.' plot was done in 650 ppm $CO_2$. The growth of spring-sown Chinese cabbage was worse than autumn-sown one, and was affected more by high temperature than high $CO_2$. concentration. The $CO_2$ biomass of Chinese cabbage was lower as 25.1-39.1 g/plant in spring-sown one than 54.8-63.4 g/plant of autumn-sown one. Daily $CO_2$2 fixation ability was not significantly different between spring- and autumn-sown Chinese cabbage as 1.9-2.9, 2.7-3.1 kg/10a/day, respectively. The $CO_2$ biomass of radish were 87.4-104.6 /plant in spring-sown one and 51.3$\sim$76.4 g/plant in autumn-sown one. Daily $CO_2$ fixation ability of radish were 6.2-10.1 kg/10a/day in spring-sown one and 4.6-6.9 kg/10a/day in autumn-sown one.

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
    • /
    • v.40 no.4
    • /
    • pp.479-484
    • /
    • 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.

Effect of Ammonium Nitrate Plus Potash in Comparison with Urea Plus Potash on the Yield and Content of Some Mineral Nutrient Elements of Chinese Cabbage (요소+칼리에 대비(對備)한 질산암모늄+칼리가 배추의 수량(數量) 및 무기성분함량(無機成分含量)에 미치는 영향(影響))

  • Oh, Wang-Keun;Kim, Sung-Bae
    • Korean Journal of Soil Science and Fertilizer
    • /
    • v.18 no.4
    • /
    • pp.407-412
    • /
    • 1985
  • The effect of potash applied with different sources of nitrogen was experimented in pot soil culture on chinese cabbage (Brassica Pekinensis Rupr, Var. Fall 1984: Sammi Garak, Spring 1985: Jungang Summer lab.) in the fall, 1984 and in the spring, 1985. Results obtained are as follows; 1. Ammonium nitrate increased the yield of chinese cabbage more than urea did, and the effect of yield increase by ammonium nitrate was greater in the fall cultivation than in the spring. 2. The yield of chinese cabbage was positively correlated with the contents of K in the first (May 17, 1985) and second (June 9, 1985) thined cabbages (dry matter). It was also positively correlated with $NO_3-N$ content of the first thined cabbage and with K/Ca+Mg m.e, ratio of outer leaves of the harvested (June 27, 1985) cabbage, but negatively affected with Mg content of the outer leaves. 3. Correlations between K and $NO_3-N$ contained in the dry matter of first and second thined, and inner leaves of the harvested cabbage were learnt to be $r;0.9998^{**}$, r;0.4439, and $r;-0.7135^*$ respectively. The higher $NO_3-N$ content in the inner leaves of harvested cabbage was observed at K omitted ammonium nitrate plot where K was deficient, Ca and Mg contents were low. 4. The nutrient absorption and growth of chinese cabbage may take the following process. Nitrate nitrogen increases vegetative growth of the plant with enhanced K uptake and movement in to inner leaves and followed by replacement of Ca uptake and finally Mg uptake and its movement in to inner leaves.

  • PDF

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
    • /
    • v.25 no.3
    • /
    • pp.535-538
    • /
    • 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.

  • PDF

Effect of Pallet-unit MAP Treatment on Freshness Extension of Spring Chinese Cabbage (Pallet-unit MAP처리에 따른 봄배추의 선도 연장 효과)

  • Lee, Young-Joo;Lee, Hye-Ok;Kim, Ji-Young;Kim, Byeong-Sam
    • Journal of the Korean Society of Food Culture
    • /
    • v.31 no.6
    • /
    • pp.634-642
    • /
    • 2016
  • Chinese cabbage is produced and consumed as a main material for kimchi and as a staple vegetable in Korea throughout the year. However, due to environmental changes unbalance between supply and demand is repeated annually, requiring development of long-term storage technologies. Chinese cabbages, were harvested, put in plastic boxes, and precooled at $2^{\circ}C$ for 24 hours using forced air precooler. After precooling, Chinese cabbages were MAP-treated with 0.02 mm HDPE film and functional film and stored at low temperature ($1{\pm}0.5^{\circ}C$). The weight-loss rates after 9-weeks of storage were 8.47% in the control group, 4.07% in the HDPE film-treated group, and 3.07% in the functional film-treated group, respectively, suppressing weight loss. Trimming loss rate after 6-weeks of storage was 6.86% in the functional film MAP-treated group and lower than 7.50% in the control group. In the sensory test with 7 points as the limit of commodity, the control group lost it after 6-weeks of storage while the MAP-treated groups retained over 7 points. The functional film MAP-treated group showed over 6 points for processing as kimchi until 9-weeks of storage, proving that Pallet-type MAP storage is effective for extending storage life of spring Chinese cabbage.

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

  • 김미정;김순동
    • Food Science and Preservation
    • /
    • v.7 no.4
    • /
    • pp.343-348
    • /
    • 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.

  • PDF

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
    • /
    • v.15 no.1
    • /
    • pp.43-48
    • /
    • 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.

A Study on the Water Consumption of the Spring Chinese Cabbage in Greenhouse (온실재배 봄배추의 소비수량에 대한 고찰)

  • 윤용철;이종창;서원명;이근후
    • Proceedings of the Korean Society of Agricultural Engineers Conference
    • /
    • 1999.10c
    • /
    • pp.411-417
    • /
    • 1999
  • This study was performed to figure out an optimum water environment and to obtain the fundamental data related with saving labor and water consumption for the chinese cabbage being grown in greenhouse . The productivity of cabbage cultivated in boty pots and floor were compared to each other in the aspects of height and weight depending on the soil saturation levels. Obtained results are as follows. ; In case of pot cultivation , the height as well as weight of cabbage in 80% soil saturation level(P80) were measured to be larger than those in the other 2 soil saturation leves (P100 and P60). The weight of floor cultivated cabbages were relatively larger than that of pot cultivated ones. In accordance with saturation ration, the general trend of water consumption rate was maximum in P80 and was decreased in the order of P80 , P100 and P60. And the average indoor temperature as well as the plant growth rate were found to be closely related with water consumption rate.

  • PDF

Yield Loss of Spring Chinese Cabbage as Affected by Infection Time of Clubroot Disease in Fields (봄배추 무사마귀병의 포장 감염시기와 피해)

  • 김충회;조원대;김홍모
    • Research in Plant Disease
    • /
    • v.6 no.1
    • /
    • pp.23-26
    • /
    • 2000
  • Effects of infection time of the clubroot pathogen, Plasmodiophora brassicae, on yield loss of Spring-sown Chinese cabbage plants were examined in field experiments. Yield loss of Chinese cabbage plants increased as the infection time becomes early. Plants infected at 20 days after transplanting or earlier were completely killed before harvest, and those infected at 30 days after transplanting were healthy in appearance but their head weights were reduced to 59% with poor commodity value. The plants infected 40 days after transplanting were not affected in yield. Development of root hairs in diseased plants was greatly reduced as the infection progressed, and root length was reduced to 1/2 to 1/3 of that of healthy plants. root galls were first developed 20 days after inoculation and rapidly enlarged to reach the peak in size 20 days from initial development, and decayed thereafter. Development and decay of root galls tended to be faster at later season as air temperature became high, regardless of the infection time. Diseased plants started to wilt approximately 10 days after root gall development. Root galls began to decay 10 days after initial plant wilting, and then were completely rotten within following 10 days. Based on the results, root gall development stages on spring-sown Chinese cabbage plants could be grouped into 20 days of root gall enlargement period, and 10 days of root gall decay period, followed by survival period in soil.

  • PDF

Changes of Brine Characteristics during the Salting Process of Winter, Spring, and Summer Chinese Cabbage (계절별 배추 절임염수의 특성변화)

  • 윤혜현;김동만
    • Journal of the Korean Society of Food Science and Nutrition
    • /
    • v.29 no.1
    • /
    • pp.26-29
    • /
    • 2000
  • Major characteristics of brines produced from the salting process were compared among winter, spring, and summer (highland) Chinese cabbages. The soluble-solids contents of final brine were decreased to 87~90% of initial brine during salting process, and showed 16.3, 15.8, and 14.4$^{\circ}$Brix for winter, spring, and highland Chinese cabbages, respectively. The pHs showed similar changes during salting process from pH 8.40~8.63 for initial to pH 6.03~6.24 for final. The high salting(12.4~14%) of final brine needs dilution or reuse treatemnt before discard. The COD of final brine were increased to 39.6 ppm, 52.1 ppm, 37.7 ppm, respectively. During salting total microbial counts of final brine were increased ten times from those of the initial brines for all samples.

  • PDF