• Title/Summary/Keyword: Canned oyster

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Quality Stability of Instant Powdered Soup using Canned Oyster Processing Waste Water (굴통조림 부산물 유래 인스턴트 분말 수프의 품질안정성)

  • KIM Jin-Soo;Heu Min-Soo;HEU Min-Soo;CHO Moon-Lae
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.34 no.4
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    • pp.389-393
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    • 2001
  • For an effective utilization, quality stability of instant powdered oyster soup made of canned oyster processing waste water (IPSW) was determined. Instant powdered soup from oyster hot-water extracts (IPSE) was also prepared by mixing hot-water extract powder (15 g) with table salt (5 g), cream powder (19 g), milk replacer (12 g), wheat flour (20 g), corn flour (15 g), starch (5 g), glucose (7.5 g) and onion powder (1.5 g). In preparing IPSW, mixed powder from wash water and boiling liquid waste, instead of powder from hot-water extracts and table salt, was added (powder from boiling liquid waste: powder from wash water= 12: 8) and other additives were added in proportion to those in the IPSE. The moisture content, water activity, peroxide value and fatty acid composition showed little changes during storage of the IPSW. The pH, volatile basic nitrogen content and brown pigment formation increased slightly, while white index decreased slightly during storage of IPSW. No significant difference was observed in the changes of food component during storage between IPSW and IPSE. According to a sensory evaluation, the change in quality of IPSW was negligible during 12 months of storage. from the results of the chemical experiment and sensory evaluation, IPSW packed with laminated film bag (OPP, $20{\mu}m/PE,\;20{\mu}m/paper,\;45g/m^3/PE,\;20{\mu}\;m/Al,\;7{\mu}\;m/PE,\;20{\mu}m$) was revealed to be preserved in good quality during 12 months of storage.

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Isolation and Some Properties of Bitter Taste Compounds from Cultured Oyster, Crassostrea gigas (양식산 굴로부터 쓴맛 성분의 분리 및 성질)

  • LEE Jong-Soo
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.28 no.1
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    • pp.98-104
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    • 1995
  • Five bitter taste compounds (OY-22, OY-23, OY-24, OY-25 and OY-26) were firstly isolated from cultured oyster (Crassostrea gigas) at Gamak Bay, Sourthern coast of Korea, between November, 1989 and January, 1990, and smoked-canned oyster, which were produced by the same oysters. They were presumed as cyclic peptides composed with 6 or 7 amino acids, including sulfur on the basis of NMR and MS spectra. Val and Leu in OY-24, leu and lie in OY-25 and tow leucines in OY-26 were detected from those each compounds, seperately, by the amino acid analysis. Another amino acids were thought as non-constitutional amino acids. They showed non-toxic to mice $(100{\mu}g/20g\;mice i.p.)$ and non actibacterial artivities to Asp. niger and B. subtilis $(10{\mu}g/disk)$. The chemical structures and other biological activities of them are now in studying.

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Studies for Reestabilishment of Approval Toxin Amount in Paralytic Shellfish Poison-Infested Shellfish 1. Toxicity Change in Paralytic Shellfish Poison-Infested Blue mussel, Mytilus edulis and Oyster, Crassostrea gigas during Boiling and Canning Processes

  • KIM Young-Man;CHOI Su-Ho;KIM Sung-Joon;SUH Sang-Bok;PYUN Han-Suck;CHANG Dong-Suck;SHIN Il-Shik
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.29 no.6
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    • pp.893-899
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    • 1996
  • The studies on the detoxification of paralytic shellfish poison (PSP)-infested blue mussels, Mytilus edulis and oyster, Crassostrea gigas were performed for using of available processing resource. Toxic blue mussel and oysters from Nampo in Masan Bay, Hachong in Koje Bay and Woepori in Koje were used for experimental samples. The toxicity of low toxic blue mussel $(A,\;84{\mu}g/100g;\;B,\;166{\mu}g/100g;\;C,\;295{\mu}g/l00g;\;D,\;557{\mu}g/100g)$ and oyster $(740{\mu}g/100g)$ were reduced below the regulation limit of PSP $(80{\mu}g/100g)$ or undetected level by mouse bioassay after boiling at $98^{\circ}C$ for 10 min and retorting at $115^{\circ}C$ for 70 min, while the toxicity of high toxic blue mussel $(E,\;8,760{\mu}g/100g)$ remained beyond the regulation limit after boiling and retorting at same condition. These results suggested that the regulation limit of PSP could be level up from $(80{\mu}g/100g)$ to about $160{\mu}g/100g$.

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Preparation of Instant Powdered Soup using Canned Oyster Processing Waste Water and Its Characteristics (굴통조림 부산액을 이용한 인스턴트 분말수프의 제조 및 특성)

  • KIM Jin-Soo;HEU Min-Soo
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.34 no.3
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    • pp.285-290
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    • 2001
  • To utilize canned oyster processing waste water effectively, this study was carried out to prepare instant powdered soup using the waste water (IPSW), Instant powdered souu from oyster hot-water extracts (IPSE) was prepared by mixing hot-water extracts powder (15 g) with table salt (5 g), cream powder (19 g), milk replacer (12 g), wheat flour (20 g), corn flour (15 g), starch (5 g), glucose (7.5 g) and onion powder (1.5 g). In preparing IPSW, mixed powder from wash water and boiling liquid waste, instead of powder from hot-water extracts and table salt, was added (powder from boiling liquid waste: powder from wash water= 12: 8) and other additives were added in proportion to those in the IPSE, The IPSW consists mainly of carbohydrates (about $72\%$). It was not different from the IPSE. The volatile basic nitrogen, viable cell counts, coliform group of the IPSW contains 33.4 mg/100g, $2.2\times10^4CFU/g$, <180 MPN/100g, respectively, and its water activity has 0.257. So it was a hygienically safe and conservable instant food. The main fatty acids of IPSW were 16: 0 and 18: 1n-9. Its chemical score of protein was $61.4\%$ and its main inorganic matter was iron. According to a sensual evaluation, in contrast to the IPSE, the IPSW had a bit lower aroma but better taste, It was concluded from the above chemical and sensory evaluation that even the boiling liquid waste which had been mostly abandoned because of its high table salt content can be used as a good material for instant powdered soup if it's powdered and mixed adequately with powder from wash water, and its table salt content is properly adjusted.

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Effects of Pretreatment and Storage Condition on the Quality of Canned Boiled Oyster (전처리와 저장조건이 굴 통조림의 품질에 미치는 영향)

  • NO Rak-Hyeun;SEONG Dae-Whan;YANG Han-Serb;BYUN Dae-Seok
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.14 no.3
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    • pp.130-138
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    • 1981
  • Discoloration of canned boiled oysters during storage is one of the serious problems which affect the quality of the products as well as the nutritive value. Usually the factors influencing the quality of canned boiled oysters are the process of pretreatments and the storage temperature of the products. In the present work, the changes of the total chlorophylls and carotenoids in the meat and the viscera of oysters were determined in order to make certain the procedure of the discoloration. In addition, the amino-N and the available lysine as factors of the nutritive value were also checked. In case of treatment with additives, direct addition of syrups containing additives just before seaming or soaking boiled oysters into the solution of additives seemed to have mild effects on retardation of discoloration. The migration of carotenoids from the viscera into the meat was faster than that of chlorophyll resulting in yellowing of the Products preceded greening caused by the chlorophylls. Treatment with $0.5\%\; Na_{2}EDTA\;of\;2.5\%$ brine retarded discoloration and available lysine loss of the Products while sodium-polyphosphate accelerated them. It was probably due to that sodium-polyphosphate could affect the softening or breakdown of the muscle of oysters. But most of all, storage temperature of canned boiled oysters seemed to be the major factor influencing the discoloration and nutritive loss of the products.

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Heat Penetration of Canned Oyster Mushroom (느타리버섯 통조림의 전열특성)

  • Lee, Dong-Sun;Park, Noh-Hyeon;Shin, Dong-Hwa;Min, Byong-Yong
    • Korean Journal of Food Science and Technology
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    • v.16 no.2
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    • pp.206-210
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    • 1984
  • Heat penetration pattern of canned oyster mushroom(Pleurotus astreatus) was monitored for processing variables-can size, heating temperature and solid fill fraction, and its effects on sterilization condition was reviewed. The $f_h$ value decreased sharply with decrease of solid fill fraction and then became stable from certain solid fill fraction unique to can size. Heat penetration was a little faster at higher heating temperature with lower $f_h$ value. As viewed from $f_h$ value, convection started at higher solid fill fraction with higher length/diameter ratio, and $f_h$ values decreased to about 1.0 with decrease of solid fill fraction. From standpoint of overall cost, retorting time and energy consumption, solid fill fraction of 3/5 was optimum for all can sizes considered.

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Introduction of the representative mushroom cultivars and groundbreaking cultivation techniques in Korea

  • Jang, Kab-Yeul;Oh, Youn-Lee;Oh, Minji;Woo, Sung-I;Shin, Pyung-Gyun;Im, Ji-hoow;Kong, Won-Sik
    • Journal of Mushroom
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    • v.14 no.4
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    • pp.136-141
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    • 2016
  • The production scale of mushrooms in Korea is approximately 600 billion won, which is 1.6% of Korea's gross agricultural output. In Korea, ca. 190,000 tons of mushrooms are harvested annually. Although the numbers of mushroom farms and cultivators are constantly decreasing, total mushroom yields are increasing owing to large-scale cultivation facilities and automation. The recent expansion of the well-being trend has caused an increase in mushroom consumption in Korea: the annual per capita mushroom was 3.9 kg ('13), whichis a little higher than that in Europe. Thus, mushroom export, mainly Flammulina velutipes and Pleurotus ostreatus, has increased since the mid-2000s. Recently, however, it is slightly reduced. Nevertheless, Vietnam, Hong Kong, the United States, and the Netherlands continue to export mushrooms, and Korea has increased its export to Australia, Canada, Southeast Asia, etc. Canned Agaricus bisporus, the first export of the Korean mushroom industry, reached it speak sales in 1977-1978. When Korea initiated trade with China in 1980, the international prices of mushrooms fell sharply, leading to shrinkage of the domestic markets. Spurred by the high demand to develop substitute goods for A. bisporus, the oyster mushroom (P. ostreatus) gained attention since it seemed to suit the taste of Korean consumers. Although the log cultivation technique for oyster mushroom was developed in the early 1970s, it required a great deal of labor. Thus, we developed the shelf cultivation technique, which is easier to manage and allows for mass production. In this technique, the growing shelf is made mafrom fermented rice straw, whichis the only P. ostreatus medium in the world and isused only in South Korea. After then, the use of cotton wastes as an additional material of medium, the productivity. Currently, we are developing a standard cultivation technique and environmental control system that can stably produce mushrooms throughout the year. The increase of oyster mushroom production may boostthe domestic market and contribute to industrial development. In addition, oyster mushroom production technology played a role in forming the basis for the development of bottle cultivation, which made mass production. In particular, bottle cultivation using liquid spawn could allow for the export of F. velutipes and Pleurotus eryngii. In addition, the white varieties of F. velutipes were second developed in the world after Japan. We also developed the new A. bisporus cultivar 'Saeah', which is easy to grow in Korea. In hopes to advance the mushroom industry, we will continue to develop cultivars with international competitive power and to improve cultivation techniques.

Quality Stability of Powdered Soup Using Powder from Oyster Wash Water (굴 세척액 유래 분말수프의 품질안정성)

  • Heu, Min-Soo;Lee, Jung-Suck;Kim, Poong-Ho;Cho, Moon-Lae;Ahn, Hwa-Jin;Shim, Hyo-Do;Kim, Jin-Soo;Kim, In-Soo
    • Applied Biological Chemistry
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    • v.44 no.4
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    • pp.224-229
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    • 2001
  • This study was carried out to examine the quality stability of powdered soup using powder from oyster wash water (PSW). To compare the quality stability, powdered soup from oyster hot-water extracts (PSE) was also prepared by mixing hot-water extract powder (15 g), table salt (5 g), cream powder (19 g), milk replacer (12 g), wheat flour (20 g), corn flour (15 g), starch (5 g), glucose (7.5 g), and onion powder (1.5 g). In preparing PSW, powder from oyster wash water, instead of powder from oyster hot-water extracts, was added and other additives were the same proportion as PSE. The PSW and PSE were packed with laminated film bag (OPP,$20\;{\mu}m$; PE, $20{\mu}m$; paper, $45\;g/m^3$; PE, $20\;{\mu}m$; Al, $7\;{\mu}m$; PE, $20\;{\mu}m$), and then stored at ambient temperature for 12 months. The moisture content, water activity, peroxide value, and fatty acid composition showed little changes during storage of the PSW, The pH, volatile basic nitrogen content, and brown pigment formation increased slightly, while white index decreased slightly during storage of PSW. No significant difference was observed in the changes of food components between PSW and PSE during storage. According to a sensory evaluation, the change in quality of PSW was negligible during 12 months of storage. From the results of the chemical experiment and sensory evaluation, PSW packed with laminated film bag (OPP, $20\;{\mu}m$; PE, $20\;{\mu}m$; paper, $45\;g/{\mu}m$; PE, $20\;{\mu}m$) was revealed to be preserved in good quality during 12 months of storage.

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Studies on the Mechanism of Pigmentation during Storage of Canned Boiled Oysters I. Isolation and Spectroscopic Characterization of Pigments Isolated from Brown Oysters (보일드 굴 통조림의 저장에 따르는 변색원인에 관한 연구 제1보.굴의 갈변 원인 색소의 분리 및 그 분광학적 성질)

  • Lee, T.Y.;Chang, Y.K.;Choi, C.H.
    • Korean Journal of Food Science and Technology
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    • v.6 no.4
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    • pp.209-213
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    • 1974
  • Pigments were extracted by aqueous acetone from the boiled canned oyster colored during storage and then the components were separated by thin layer chromatography. Totally eleven pigments could be isolated including one yellow, one red, five orange or reddish orange and four green components, and their UV-visible spectra were measured. It can be envisioned from the electronic spectral study and color reaction on the indivisual pigments isolated from the brown acetone extracts that the green pigments as well as most of the yellow orange ones may be porphyrin derivatives originated probably from the chlorophyll and some of the orange pigments contains ketocarotenoids. In particular, the pigment of band 8 which is expected to be pheophytin a or its derivatives and the carotenoid band 7 seem to be the major pigment. The close resemblance of the chromatogram of the colored muscle extract to that of the viscera suggests that the brown coloring material is probably originated from the viscera pigments.

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Characteristics of Thermal Permeation of Marine Canned Products with Different Vacuum Conditions (수산물 조미통조림 제품의 진공도별 열침투 특성)

  • KIM Dong-Soo;RYU Jae-Sang;YANG Seung-Yong;LEE Keun-Woo
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.33 no.5
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    • pp.399-402
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    • 2000
  • Very little information is known on the canning of fishery products by vacuum pack. In this paper, some fundamental process conditions for the canning of fishery products were investigated. Moisture-controlled mackerel pike, shrimp and oyster were packed in lacquered cans with spice and additives. After sealing, pressure of the cans were reduced by do-aeration through specially designed gas-tight silicone rubber plug previously attacked to the lid. On this investigation, vacuum can prior to thermal processing were set up to 15, 30, 45 and 60 cmHg, The higher vacuum in cans showed the more quick heat transfer in thermal processing. tinder 60 cmHg vacuum, the heat transfer was more quick than that of the conventional water packed products, Under 15 cmHg, however, the heat transfer was markedly increased by air which acted as an insulator in conductive heat transfer. These results demonstrated that high vacuum was essential secure for the heat processing in vacuum pack.

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