• Title/Summary/Keyword: salting condition

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Preparation of Kimchi and Salting (김치담금과 소금절임)

  • 김순동
    • Food Science and Preservation
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    • v.4 no.2
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    • pp.215-225
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    • 1997
  • The review was conducted to organize the desirable salting process from the literatures. In this study the principle of salting and effects of physicochemical changes in salting and salting factors such as cultivars of baechu(Chinese cabbage), concentration of salt, salting temperature, pH condition for salting and quality of kimchi were studied. The method of salting standard, treatment techniques in salting, and selection and mixture ratio of sub-ingredients were also reviewed. In future studies greater attention should be paid to salting and fermentation of kimchi.

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Effects of Yeast Addition during Salting and Preparation on Fermentation of Kimchi (소금절임과 김치담금시 효모의 첨가가 숙성에 미치는 영향)

  • 김순동;김경희;오영애
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.27 no.6
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    • pp.1077-1085
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    • 1998
  • The effects of yeast on the fermentation of kimchi were investigated. The treatments were divided into two groups; yeast treatment during salting of Chinese cabbage(YS) and yeast treatment added in kimchi preparation(YF kimchi). The edible periods of the kimchi after yeast treatment during salting (YS kimchi) was extended 4~5 days by the results of pH, acidity, sensory quality. The activities of amylase, polygalacturonase and galactosidase of YS kimchi were retained at low levels compared to non treated condition throughout all fermentation periods, whereas protease activity was not significant different from the non treated condition. In addition, the contents of total hexose and uronic acid did not show remarkable change throughout fermentation, but total pentose was decreased by more than 7% at the early middle stage of fermentation(7~14 day after soaking). The change of free amino acid content was decreased by 16~44% than the non treated condition. In contrast, in the YF kimchi, the sensory quality was not good. The activities of amylase, protease, polygalacturonase and gal actosidase were appreciably higher than that of the non treated condition. Meanwhile, the contents of total hexose, total pentose and uronic acid, as products of degradation of cell wall constituents by the above enzymes, were decreased by 18~68% throughout fermentation than the non treated con dition, and total free amino acids were higher than the YS kimchi. Thus, yeast treatment during salting was found to be more effective to extend the edible periods of the kimchi.

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Establishment of Processing Conditions of Salted Anchovy 1. Changes of Chemical Compositions during Fermentation of Salted Anchovy by Salting Methods (염장 멸치 (Salited Anchovy)의 제조조건 1. 염장방법에 따른 염장 멸치 (salted anchovy)의 제조 중 성분 변화)

  • SHIM Kil-Bo;KIM Tae-Jin;JU Jung-Mi;CHO Young-Je
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.34 no.2
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    • pp.98-102
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    • 2001
  • We investigated the changes of chemical compositions during fermentation of salted anchovy by salting methods for the purpose of establishment of processing condition. Dehydration of anchovy meat occurred remarkably by dry salting compared with that by brine salting and salinity was higher in anchovy by brine salting than by dry salting. Dehydration and salinity were increased in more anchovy fermented at $20^{\circ}C$ than at $5^{\circ}C$. Total nitrogen content was lower in anchovy by brine salting than by dry salting. Amino nitrogen increased remarkably during fermentation of salted anchovy at $20^{\circ}C$, while increased slightly at$5^{\circ}C$. Amino nitrogen showed maximum value on 120 days in dry salting and on 30 days in brine salting at $20^{\circ}C$, respectively. The changes of VBN were similar to the changes of amino nitrogen. The brine salting accelerated hydrolysis of anchovy meat compared with that of dry salting at $20^{\circ}C$, and the hydrolysis were suppressed at $5^{\circ}C$, The POV increased rapidly in dry-salted anchovy than brine-salted anchovy. We suggested that the appropriate processing condition of salted anchovy is to ferment for 5-6 months at $5^{\circ}C$ by addition of $25\%$ salt after pre-salting of raw anchovy.

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Salting of Chinese Cabbage under Sub-atmosphere (감압하에서 배추의 소금절임)

  • 정자림;김미정;김순동
    • Journal of the East Asian Society of Dietary Life
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    • v.3 no.2
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    • pp.99-106
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    • 1993
  • The aim of this study is to elevate the efficiency of salting with low salt concentration in order to improve the quality of salted Chinese cabbage. The efficiency of salting was tested with various sub-atmosphere(760mmHg to 0mmHg), temperature(20$^{\circ}C$ and 30$^{\circ}C$), and concentration of salt(3%, 5% and 10%). The salting efficiency was estimated by amounts of juice, calcium elution, sodium penetration and the state of tissue. The amunts of juice eleuted from Chinese cabbage was increased significantly with the decrease of atmosphere and the time to reach the highest amounts was reduced. This tendency was promoted, with increase of salinigy(from 3% to 10%)and the increase of temperature(more juice at 30$^{\circ}C$ than 20$^{\circ}C$). The amounts of eluted calcium from Chinese cabbage tissue during salting under sub-atmosphere was directly proportional to amounts of juice and was inversely proportional to penetrated sodium. The salting time was reduced with elevation of sub-atmosphere. It was desirable to take between 5.5 and 9 hours to salt under the condition of 3% of salting, 20$^{\circ}C$, and 560-0mmHg. It took between 4.4 and 5 hours under 5% of salt and between 4 and 4.5 hours under 10% of salt. However, it was undesirable because the drying phenomenon and the transparency of tissue appeared under 30$^{\circ}C$ and 160-0mmHg.

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Effects of Blanching and Salting on the Quality of Immatured Soybeans during Frozen Storage (Blanching 및 염처리가 냉동저장중 풋콩의 품질에 미치는 영향)

  • 고재우;정호선;이준호;최용희
    • Food Science and Preservation
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    • v.5 no.4
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    • pp.320-325
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    • 1998
  • Effects of blanching and salting for the pretreatment during frozen storage condition were investigated and optimized the salting condition on the activities of peroxidase and lipoxygenase, the stability of vitamin C and color, moisture content and hardness in immatured soybean. Before frozen storage, pretreatment processing is necessary to extend the shelf-life of vegetables. Salting condition of 2% for 180min treatment led to maximum inactivation of both lipoxygenase and peroxidase while blanching can more inactivate for lipoxygenase. Salting at 2% for 180min resulted in the highest amount of vitamin C remaining in the immatured soybeans after 6 months storage. The color of the immatured soybeans were severely changed after 6 months storage, while the color of salted soybeans at 3% and 180min treatment was similar to fresh products. Moisture content and hardness were reduced with addition of salt.

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Permeation Effect of NaCl into Shell Egg with Concentration of NaCl Solution, Salting Time and Salting Pressure (염지액농도, 염지시간 및 염지압력에 따른 계란의 염 침투효과)

  • 전기홍;유익종;장윤희;강통삼
    • Korean Journal of Poultry Science
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    • v.20 no.3
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    • pp.125-131
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    • 1993
  • This study was performed to find the desirable conditions for processing salted hard-boiled egg without cracking egg shell in NaCl solution under pressure. Among the many factors affecting saltiness of the shell egg, concentration of NaCl solution(0~40%), different salting time(0~45h) and salting pressure (0~4.5kg/$\textrm{cm}^2$) were employed to identify the permeability of NaCl into shell egg at ambient temperature. The saltiness of the shell egg was proportionally risen as concentration of NaCl solution, salting time and pressure increased. The most desirable saltiness was observed at the 0.70~1.00% of NaCl in albumen and 0.40~0.45% in yolk, Besides the saltiness, sensory evaluation of the shell egg were carried out to evaluate the quality of the salted shell egg. The effect of various concentration of NaCl solution, salting time and pressure on sensory scores of hard-boiled salted eggs showed that 20~40% of NaCl solution, 12~20 h of salting time, 3~4.5 kg/$\textrm{cm}^2$ of salting pressure were proper conditions for processing the product. These results indicate that the desirable condition to get salted hard-boiled shell egg were ; 30% of NaCl solution, 16h of salting time and 4.0kg/$\textrm{cm}^2$ of salting pressure.

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Quality Characteristics of Dombaegi(Salted Shark Meat) with Reference to Salt Concentration and Temperature during Dry Salting (염농도와 절임온도에 따른 돔배기의 품질특성)

  • Kim, Do-Hoon;Youn, Kwang-Sup
    • Food Science and Preservation
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    • v.16 no.5
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    • pp.656-660
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    • 2009
  • We investigated the quality characteristics of Dombaegi after drying, with respect to salt concentration (1%, 2%, 3% all w/v) and salting temperature ($4^{\circ}C$, $18^{\circ}C$), to establish optimum salting conditions. Changes in moisture and salt content, water holding capacity, water activity, color, and textual properties of salted Dombaegi were measured. The moisture content was highest in Dombaegi prepared with 3% (w/v) salt at 4C. The salt content of Dombaegi rose as salt concentration and temperature increased. The water holding capacity was greatest after salting with 3% (w/v) salt at $4^{\circ}C$. Color and texture were superior after preparation at higher salt concentrations and lower salting temperatures. Thus, the quality of Dombaegi was optimal when dry salting was performed at the highest salt concentration (3%, w/v) and the lower salting temperature ($4^{\circ}C$).

Changes in Organoleptic and Rheological Properties of Chinese Cabbage with Salting Condition (배추의 절임조건에 따른 관능적 특성 및 물성 변화)

  • Lee, Myung-Hee;Lee, Gee-Dong;Son, Kwang-Jin;Yoon, Sung-Ran;Kim, Jeong-Sook;Kwon, Joong-Ho
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.31 no.3
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    • pp.417-422
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    • 2002
  • Salting conditions on organoleptic properties and rheology of Chinese cabbage were optimized and monitored by four-dimensional response surface methodology. Experimental conditions were decided in the ranges of salt concentration 8∼12%, salting time 5∼25 hr and salting temperature 5∼15$^{\circ}C$. The salted Chinese cabbage with experiment design was measured on organoleptic and physical properties. The organoleptic form of the salted Chinese cabbage showed maximum score in 11.28% of salt concentration, 9.75 hr of salting time and 12.81$^{\circ}C$ of salting temperature. The organoleptic taste was maximized in 11.19% of salt concentration, 11.38 hr of salting time and 13.58$^{\circ}C$ of salting temperature. The organoleptic mouth-feel was maximized in 11.24% of salt concentration, 11.71 hr of salting time and 13.57$^{\circ}C$ of salting temperature. The organoleptic palatability was maximized in 11.52% of salt concentration, 12.86 hr of salting time and 13.07$^{\circ}C$ of salting temperature. In rheological properties of salted Chinese cabbage, hardness and chewiness decreased with the increase of salt concentration.

Physicochemical and Microbial Characteristics of Oiji Prepared with Dry Salting Methods during Low Temperature Storage (저염 건식절임법으로 제조한 오이지의 저온저장 중 이화학적$\cdot$미생물학적 품질특성)

  • Kwon Oh-Yun;Yang Yun-Hyoung;Park Wan Soo;Kim Mee Ree
    • Korean journal of food and cookery science
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    • v.21 no.4 s.88
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    • pp.545-555
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    • 2005
  • The physicochemical and microbial characteristics of Oiji prepared with dry salting method, which has been used industrially for industry, were investigated. Low salting and low storage temperature were employed:extremely low salting extremely low temperature; ESET $(5\%,\;0^{\circ}C)$, very low salting extremely low temperature;VSET $(10\%,\;0^{\circ}C)$, extremely low salting very low temperature; ESVT$(5\%,\;5^{\circ}C)$, low salting very low temperature; VSVT$(10\%,\;5^{\circ}C)$ and high salting low temperature;HSLT$(30\%,\;10^{\circ}C)$ for control. Acidity was lower, and pH was higher in VSET, in of which the fermentation pattern was similar with that of HSLT The time required to reach the optimum acidity ($0.3\%$ lactic acid) was longer delayed for VSET (168 days), than for compared to ESVT (51 days). During storage of Oiji, greenness (-a) as measured with of the Hunter color system wasshowed the highest in VSET, and the lowest while in ESVT, the lowest. Total microbial and lactic acid bacteria counts number were the lowest in HSLT and VSET and were the lowest than in other groups, while the highest in ESVT. Yeast was not detected in HSLT, but was the highest while in VSVT. E coli coliform and listeria were detected in the $5\%$ salting groups, although Salmonella was not detected in any of the all groups. Texture profile analysis demonstrated exhibited that fracturability and hardness were highest in HSLT and VSET, compared to the other groups. Scores of over-all preference for ESVT and HSLT were higher atwith 6.3 and 6.2, respectively, compared to the other products. Based on these results, lower saltiness less than $10\%$ and lower storage temperature (less than $5^{\circ}C$) condition was optimum for maximizing the better for good quality of industrial Oiji preparation in industry.

Effect of Salting Conditions on the Fermentation and Quality of Dandelion (Taraxacum platycarpum D.) Kimchi (소금절임 조건이 민들레 김치의 숙성과 품질에 미치는 영향)

  • Kim, Mee-Hyang;Kim, Soon-Dong;Kim, Kwang-Soo
    • Korean Journal of Food Science and Technology
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    • v.32 no.5
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    • pp.1142-1148
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    • 2000
  • This study was conducted to investigate the effect of different salting conditions, short-time salting(SS) and long-time salting(LS), on the fermentation and quality of dandelion kimchi. The desirable salt concentration of brine and salting time evaluated by salting degree were 16 hrs at 5% brine, 8 hrs at 10% brine and 4 hrs at 15% brine, respectively. Among them, the best quality of salted dandelion was salting of 10% brine for 8 hrs. But the bitter taste in salted dandelion treated by SS was remained. The proper condition to salt and remove the bitter taste in salted dandelion together was salting by LS, which was salted for 4 days in 100% brine changed once a day. pH of the dandelion kimchi salted for 8 hrs in 10% brine during fermentation at $10{\times}$ was lower than that of LS kimchi, but acidity, total microbe, number of lactic acid bacteria, content of reducing sugar and vitamin C were higher than those of LS kimchi. The optimum- fermentation periods of SS(salted for 8 hrs in 10% brine) and LS kimchi evaluated by sensory test were 40th and 50th day, respectively.

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