• Title/Summary/Keyword: osmotic dehydration

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Application of Cold-Osmotic Dehydration Method for Extending the Shelf Life during Frozen Storage of Filleted and Salted Fishes (염지어(鹽漬漁) 동결저장 중 Shelf life 연장을 위한 저온삼투압탈수법(低溫?透壓脫水法)의 적용)

  • Lee, Eung-Ho;Lee, Jung-Suck;Joo, Dong-Sik;Cho, Soon-Yeong;Choi, Heung-Gil;Kim, Jin-Soo;Cho, Man-Gi;Cho, Duck-Jae
    • Korean Journal of Food Science and Technology
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    • v.29 no.4
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    • pp.722-729
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    • 1997
  • The study was undertaken to extend the shelf life of filleted and salted fishes such as mackerel and jacopever. These filleted and salted fishes were dehydrated by dewatering sheet containing sodium polyacrylate resin at $5{\pm}1^{\circ}C$, wrapped with low density polyethylene film, and then stored at $-18{\pm}2^{\circ}C$. During the frozen storage, the change of brown pigment formation, peroxide value, carbonyl value, drip formation content in the cold-osmotic dehydrated fishes after salt dipping were much lower than those of non-dehydrated ones. Moreover, the proteins and Ca-ATPase in the cold-osmotic dehydrated fishes after salt dipping were more stable than those of non-dehydrated ones during frozen storage. It was supposed that the cold-osmotic dehydration pretreatment processing for filleted and salted fishes was useful in improvement of the frozen storage stability.

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Mass Transfer Characteristics during the Osmotic Dehydration Process of Apples (사과의 삼투건조시 물질이동 특성)

  • 윤광섭;최용희
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.25 no.5
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    • pp.824-830
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    • 1996
  • In order to minimize the deterioration of osmotic dried apple quality, the characteristics of mass transfer during osmotic dehydration such as solid gain(SG), weight reduction(WR) and moisture loss(ML) were investigated. Moisture and solid transfer were analyzed by Fick's law. The highest (equation omitted)E value was observed with severe browning at $60^{\circ}C.$ The concentration effect on (equation omitted)E were higher at high temperatures than at low temperatures. SG, WR and ML increased as immersion temperature, sugar concentration and immersion time increased. Higher concentration of sucrose led to more sucrose absorption resulting increase in SG. Diffusion coefficients of moisture increased with immersion temperature and sugar concentration. As concentration increased, diffusion coefficients of solids increased at $20^{\circ}C$ while it decreased at $40^{\circ}C$ and $60^{\circ}C.$ Arrhenius equation was appropriately explain the effect of temperature on diffusion coefficients. Moisture and solid diffusion showed high activation energy in 20 。Brix solution, compared with in 40 and 60 。Brix.

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Mass Transfer and Optimum Processing Conditions for Osmotic Conditions of Potatoes prior to Air Dehydration (열풍건조 전 감자의 삼투압농축시 물질이동과 공정의 최적화)

  • Kim, Myung-Hwan
    • Korean Journal of Food Science and Technology
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    • v.22 no.5
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    • pp.497-502
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    • 1990
  • The effect of sugar concentration, immersion time and temperature on water loss, solid gain or loss, and sugar molality of potatoes during osmotic concentration was analyzed by a response surface methodology (RSM), and those values were predicted by using a second degree polynomial regression model. Effect of osmotic concentration and blanching on vitamin C retention of air dried potatoes (6% MC: wet basis) was also evaluated. The most significant factor was sugar concentration for water loss, solid gain or loss, sugar molality, rate parameter and retention of vitamin C. Second and third factors were immersion time and temperature respectively. Water loss and solid gain were rapid in the first 10 min and then levelled off. A 44.6% of water loss was observed during osmotic concentration using a sugar solution $(60\;Brix,\;80^{\circ}C$) with 20 min of immersion time. Dried potatoes after osmotic concentration had higher vitamin C content than dried potatoes after blanching. Optimum regions for osmotic concentration process of potatoes were $60-70^{\circ}C$ of immersion temperature, 60 Brix of sugar solution and 16-20 min of immersion time based on above 30% of water loss and 50% of vitamin C retention.

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Optimization of Pre-treatment Process for Manufacturing Apple Jangachi (사과장아찌 제조를 위한 전처리 공정의 최적화)

  • Oh, Chul-Hwan
    • Culinary science and hospitality research
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    • v.24 no.1
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    • pp.105-113
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    • 2018
  • In this study, optimized pre-treatment conditions were investigated to improve the quality of gochujang apple jangachi. The moisture content was decreased by 14% in 60% sugar solution and 17% in 30% salt solution during 12 hours. On the one hand, in the case of dry sugar and salt method, moisture content was decreased rapidly by 20% and 24%, respectively during 12 hours. Compared with the sugar and salt solution method, the dry sugar and salt method was more effective in reducing moisture content during 12 hours. In the case of osmotic dehydration of the apple parts in the dry sugar method, the moisture content of the flesh, flesh including peel, and peel of apple decreased by 23%, 20%, and 16%, respectively during 6 hours. However, in the dry salt method, the moisture content of the flesh, flesh including peel, and peel of apple decreased by 19%, 12% and 13%, respectively during 2 hours. During this time, the pH tended to decrease, regardless of the presence of sugar and salt. Total acidity was slightly increased in the case of salt. In hot air drying after osmotic dehydration, the moisture content of flesh including peel of apple decreased from 64% and 67% to 31% and 27%, respectively at 90 minutes, and from 64% and 67% to 11% and 18% at 150 minutes, respectively. The moisture content of the peel decreased from 51% to 10% at 120 minutes. As a result of the sensory evaluation, the overall acceptance of the flesh and flesh including peel was highly evaluated, resultantly, the products were considered to be suitable for the production of gochujang apple jangachi.

Effect of Pretreatments on the Drying Characteristics of Dried Vegetables (전처리 방법에 따른 채소류의 열풍건조특성)

  • Youn, Kwang-Sup;Bae, Dong-Ho;Choi, Yong-Hee
    • Korean Journal of Food Science and Technology
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    • v.29 no.2
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    • pp.292-301
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    • 1997
  • In drying process, to minimize the quality degradation by improved drying process and pretreatment methods, carrots, cabbages and radishes were dried and rehydrated. Physico-chemical properties of product were analyzed to determine the optimum pretreatment method and drying models were applied to explain drying mechanisms. Microwave, steam and water were used prior to drying as blanching method. In consideration of physical properties, optimum treatment time was decided that microwave was 1 min, steam and water were each 10 min. Control, steam, water, microwave and osmotic dehydration were treated prior to drying as pretreatment individually, osmotic dehydration was lower than the other treatmemt in drying efficiency, but carotene content was higher than the others. The effect continued after rehydration. Ten panelists tested dried and rehydrated carrots. After rehydration, the quality of air dried product with osmotic dehydration was superior to freeze dried without treatment. The fittness of drying models were conducted in order to explain the mechanism of drying each process. Quadratic model was most fittable to explain during drying. However, in rehydration process, no fittable model was found.

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Changes of Free Sugar and Organic Acid in the Osmotic Dehydration Process of Apples (사과의 삼투건조시 유리당과 유기산의 변화)

  • Youn, Kwang-Sup;Lee, Jun-Ho;Choi, Yong-Hee
    • Korean Journal of Food Science and Technology
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    • v.28 no.6
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    • pp.1095-1103
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    • 1996
  • In order to minimize the deterioration of dried apple quality, changes of free sugar content, organic acid and ascorbic and during osmotic dehydration with sucrose at various temperature, concentration and immersion time were investigated in this study, total sugar increased as the temperature, concentration and immersion time were increased. Sucrose showed the largest change in content while fructose and glucose showed no and small changes, respectively. Large amounts of malic and fumaric acids, and small amounts of oxalic, citric, maleic and succinic acids were detected. Organic acids were high at low temperature treatment, and became higher with increasing concentration. Loss of ascorbic acid was small at the low temperature and high concentration. Effect of immersion time was negligible. Changes of free sugar, and organic and ascorbic acid followed the first-order and second-order reaction rate equations, respectively. Arrhenius equation was applied to determine the effect of temperature on reaction rate constants with high $r^2$. To predict the changes of quality, a model was established by using the optimum functions of temperature, concentration and immersion time. The model had high $r^2$ value for the quality changes during drying.

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Effect of Osmotic Dehydration and Vacuum Impregnation on the Quality of Dried Apple (삼투건조와 진공주입이 사과 건조제품의 품질에 미치는 영향)

  • Choi, Hee-Don;Lee, Hae-Chang;Kim, Yun-Sook;Choi, In-Wook;Park, Yong-Kon;Seog, Ho-Moon
    • Korean Journal of Food Science and Technology
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    • v.40 no.2
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    • pp.178-183
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    • 2008
  • This study investigated the effects of osmotic dehydration (OD) and vacuum impregnation (VI) on the quality of dried apple products. Weight reduction and water loss increased during OD, but these decreased in the apples during VI. In particular, VI's effect on increasing solid gain was superb. For apples in 40% sucrose solution, OD and VI were followed by hot-air drying at 50$^{\circ}C$. The experimental data were fitted successfully using the modified Page model. OD and VI increased drying time and decreased the drying rate constant of these apples as compared to the control. Shrinkage and rehydration capacity greatly decreased in the apples dried by OD and increased in the apples dried by VI as compared to the control. OD also decreased titratable acidity and ascorbic acid content considerably. Sensory evaluations of the products indicated that the apples prepared by OD had higher palatability in their rehydrated form in yoghurt, and the apple products prepared by VI had higher palatability in their dried form.

Effect of Pretreatment before Air Drying on the Quality of Carrot Flake (열풍건조 전 전처리 방법이 당근 후레이크의 품질에 미치는 영향)

  • Lee, Byung-Woo;Shin, Gun-Jin;Kim, Myung-Hwan;Choi, Chun-Un
    • Korean Journal of Food Science and Technology
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    • v.21 no.3
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    • pp.430-434
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    • 1989
  • The effect on pretreatments with sugar and blanching on the quality of dried carrot flake were investigated. The color of carrot flakes soaking in sugar solution for 2 mins $(60^{\circ}C,\;30 Brix)$ after water blanching $(100^{\circ}C,\;10 min)$ was similar to fresh carrots and the carrot flakes contained relatively high carotene and $Cu^{++}$ values. The osmotic dehydration with sugar solution $(80^{\circ}C,\;40\;Brix)$ prior to air drying reduced browning reaction and shrinkage. According to sensory test, no significant difference occured, after osmotic dehydration, among air drying. But there was a significant difference occured air drying after water blanching.

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Proline accumulation and transcriptional regulation of proline biothesynthesis and degradation in Brassica napus

  • Xue, Xingning;Liu, Aihua;Hua, Xuejun
    • BMB Reports
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    • v.42 no.1
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    • pp.28-34
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    • 2009
  • To understand the molecular mechanism underlying proline accumulation in Brassica napus, cDNAs encoding ${\Delta}^1$-pyrroline-5-carboxylate synthetase (BnP5CS), ornithine $\delta$-aminotransferase (BnOAT) and proline dehydrogenase (BnPDH) were isolated and characterized. Southern blot analysis of BnP5CSs in B. napus and its diploid ancestors suggested a gene loss may have occurred during evolution. The expression of BnP5CS1 and BnP5CS2 was induced, while the expression of BnPDH was inhibited under salt stress, ABA treatment and dehydration, prior to proline accumulation. The upregulation of BnOAT expression was only detected during prolonged severe osmotic stress. Our results indicate that stress-induced proline accumulation in B. napus results from the reciprocal action of activated biosynthesis and inhibited proline degradation. Whether the ornithine pathway is activated depends on the severity of stress. During development, proline content was high in reproductive organs and was accompanied by markedly high expression of BnP5CS and BnPDH, suggesting possible roles of proline during flower development.

Ultrarapid Freezing of Mouse Ova (생쥐난자의 초급속동결)

  • 박영식;서태광;이택후;전상식
    • Journal of Embryo Transfer
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    • v.10 no.3
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    • pp.203-208
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    • 1995
  • This study was carried out to efficiently use the ultrarapid freezing method in the cryopreservation of mouse ova. For this, the effects of dehydration method, oval vigour and $0^{\circ}C$ controlling method on post-thawing viability were investigated. Fresh mouse ova were dehydrated in mPBS with 3.5M DMSO and /or 0.25M sucrose, and directly immersed in L$N_2$ for ultrarapidly freezing. The frozen ova were thawed at 37$^{\circ}C$, rehydrated in mPBS with 0.25M sucrose, and then repeatedly washed in HAM's Fl0 before evaluating the morphological normality of frozen-thawed ova. The results obtained showed that there was difference between treatments in a experiment. 1) The post-thawing viability of ova dehydrated in multi-step (48.4$\pm$13.8%) was higher than that of ova in two-step (40.9$\pm$14.0%). 2) The post-thawing viability of fertilized ova (87$\pm$14.0%) was significantly(p<0.0l) higher than that of unfertilized ova (5.4$\pm$5.4%). 3) The post-thawing viability of ova dehydrated and rehydrated using a cooling machine (95.8$\pm$4.2%) was significantly(p<0.05) higher than that on ice(84.1$\pm$9.9). In conclusion, in order to efficiently cryopreserve ova in vitro with ultrarapidly freezing method, highly viable embryos should be selected, heavy osmotic shock to the dehydrating ova should be avoided, and embryos in high osmotic condition were dehydrated and rehydrated in a constantly low temperature.

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