• Title/Summary/Keyword: summer sausage

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Effect of Ground Chopi (Zanthoxylum piperitum) on Physicochemical Traits and Microbial Community of Chicken Summer Sausage during Manufacture

  • Utama, Dicky Tri;Park, Jongbin;Kim, Dong Soo;Kim, Eun Bae;Lee, Sung Ki
    • Food Science of Animal Resources
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    • v.38 no.5
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    • pp.936-949
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    • 2018
  • Changes in microbial community and physicochemical traits of chicken summer sausage made from spent layer thigh added with different level (0%, 0.1%, 0.3%, and 0.5% w/w) of ground chopi (Zanthoxylum piperitum) during manufacture were analyzed. The microbial community was profiled and analyzed by sequencing 16S rRNA gene using Illumina MiSeq. Samples were taken from raw sausage batter, after 15 h of fermentation, 8 h of cooking including cooling down, and 7 d of drying. The final pH of the sausage was reduced by the addition of ground chopi. However, no clear effect on water activity was observed. Ground chopi inhibited the development of red curing color after fermentation as it exhibited antimicrobial effect. However, the effect on species richness and microbial composition after cooking was unclear. Ground chopi delayed lipid oxidation during manufacture and the effect was dependent on the addition level. Fermentation reduced the species richness with a dominancy of lactic acid bacteria. The profile of microbiota in the raw batter was different from other stages, while the closest relationship was observed after cooking and drying. Proteobacteria was predominant, followed by Firmicutes and Bacteroidetes in raw samples. Firmicutes became dominating after fermentation and so forth, whereas other predominant phylum decreased. At genus level, unclassified Lactobacillales was the most abundant group found after fermentation and so forth. Therefore, the overall microbial composition aspects were mainly controlled during fermentation by the abundance of lactic acid bacteria, while bacterial counts and lipid oxidation were controlled by cooking and the addition of ground chopi.

Residual Nitrite and Rancidity of Dry Pork Meet Products - Residual Nitrite and Nitrate in Home-Processed Dry Sausage and Ham - (돈육가공저장식품(豚肉加工貯藏食品)의 Nitrite 잔존량과 지방산패(脂肪酸敗) - 가내제조(家內製造)한 dry sausage와 ham의 Nitrite 및 Nitrate 잔존량 -)

  • Woo, Soon-Ja;Lee, Hye-June
    • Journal of Nutrition and Health
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    • v.15 no.3
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    • pp.186-193
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    • 1982
  • Dry hams and sausages we re processed manually under the environmental conditions in Seoul, Korea, by addition with $NaNO_2$ - equivalent of 264ppm and 185ppm, respectively. The residual nitrites levels throughout the processing and storage periods were 32-67 ppm which are below the maximum legal allowance of 70ppm . The nitrites showed the highest levels at 2- weeks processing of dry sausages and at 5-weeks processing of dry hams, and the levels were gradually decreased thereafter. The residual nitrites in sausages dried in intestinal cases were lower and dropped below 10ppm after 3-weeks processing. The dry hams processed in summer also contained lower levels of nitrites, below 10ppm after 4-weeks processing. The levels of residual nitrates, however, showed highest when that of nitrites were lowest and were increased gradually with the duration of storage.

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Microbial Quality of Street Foods Sold by Season (계절에 따른 길거리 제조 식품의 미생물 오염 특성)

  • Seo, Young-Ho
    • Journal of the East Asian Society of Dietary Life
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    • v.24 no.4
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    • pp.481-487
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    • 2014
  • This study examined microbiological contamination of street foods(kimbab, fish cake, Korean sausage) by microbiological analysis. A collection of 360 samples of street foods was obtained seasonally in four major cities(Seoul, Daejeon, Busan, Gwangju) in Korea. Aerobic mesophilic counts ranged between 1.0 and 9.9 log CFU/g, with the highest count recorded from Kimbab. Counts of psychrotrophic microorganisms were as high as those of mesophilic microorganisms. Total coliform populations between <1.0 and 7.5 log CFU/g were found in 53.6% of samples. Escherichia coli 4.4%, Staphylococcus aureus 7.8% and Clostridium perfringens 3.3%. Salmonella spp. and Listeria monocytogenes were not detected in any of the samples. Kimbab purchased in spring and summer showed higher S. aureus and Cl. perfringens contamination rates. Microbial contamination levels determined in the present study may be used as the primary data to execute microbial risk assessment of street foods.

Studies on the Utilization of Korean Native Goat for Meat Production (육자원(肉資源) 개발(開發)을 위한 한국재래산양(韓國在來山羊)의 이용(利用)에 관(關)한 연구(硏究))

  • Ra, Kwang-Yon;Kwon, Soon Ki;Kim, Jong-Woo
    • Korean Journal of Agricultural Science
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    • v.4 no.1
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    • pp.75-83
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    • 1977
  • Korean native goats were used for meat production test, and summarized resalts are as follows. 1. The amounts of feed consumed for Korean Native Goat were significantly higher at day than at night. 2. The feed intake was decreased and live weight gain was lower for the summer period. 3. The concentrate consumption was increased when poor quality of pasture and native grass. 4. Compared between single bran feeding group$(T_2)$ and mixed grain feeding group$(T_3)$, the roughage consumption were similar in both groups. 5. By the use of feeding standard for feeding of Korean Native Goat, the feed convertion of T.D.N, D.C.P, and M. E were decreased. 6. It is necessary to periodically protect from contamination parasitic such like stomach worm, liver flack, nodula worm disease and coccidiosis. 7. The carcass rates of goat at 11-12 months age were higher in $T_3$ feeding group as 44.56% compared with $T_2$ feeding group as 42.17% and tethering group as 35.1% and also the dressed carcass percentage were 33.89%, 30.25% and 29.92% respectively. 8. By increasing the amouat concentrate feeds, fat content in muscle was increased but moisture and ash contents were decreased. 9. The fat caused unacceptable flavour was about 4 percent of total dressed goat meat. 10. Among the spices, clove and pepper were better to improved meat flavour for sausage and can meat processing 11. It was known that the quality of goat meat was suitable for meat processing.

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