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영.유아용 식품원료의 Bacillus cereus와 일반세균 모니터링 및 제조공정 중 미생물 품질제어 (Monitoring Bacillus cereus and Aerobic Bacteria in Raw Infant Formula and Microbial Quality Control during Manufacturing)

  • 정우영;엄준호;김병조;주인선;김창수;김미라;변정아;박유경;손상혁;이은미;정래석;나미애;육동연;강지연;허옥순;윤민호
    • 한국식품과학회지
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    • 제42권4호
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    • pp.494-501
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    • 2010
  • 영 유아용 식품에 주로 사용되는 원료에 대한 미생물 오염도를 조사한 결과, 총 10종(n=20)의 원료 중 B. cereus가 검출된 원료는 2종(n=4, 20%) 이었고, $1.02{\pm}1.36\;\log\;CFU/g$으로 나타났으며, B. cereus가 검출된 원료로는 organic brown rice powder(C사)와 mixed orgarnic vegetable powder(C사) 이었다. 미생물이 검출되지 않거나 낮게 검출된 원료는 제조공정에 살균, 분무건조, 팽화 및 압출 등의 열처리 공정이 있었다. 각 원료에 대한 일반세균수를 알아보기 위해 10종(n=20) 검사결과 4종(n=8) 검출(40%)되었으며, $3.21{\pm}3.64\log\;CFU/g$으로 나타났다. 원료에서 분리한 미생물 분포를 조사한 결과 총 11종이 분리 되었으며, 분리된 일반세균 중 76%를 차지하는 우점종은 S. paucimobilis, P. fluorescens, R. radiobactor, St. maltophilia 순으로 나타났다. 본 연구에서는 영 유아식의 미생물 안전성 확보를 위해 원료 생산공정에 살균 등의 열처리 공정이 필요하며, 미생물에 오염된 원료를 사용할 경우에도 생산공정에 드럼건조(drum surface temperature: $100-135^{\circ}C$), 분무건조(inlet air temperature: $135-204^{\circ}C$), 살균(pasteurization, UHT $130-150^{\circ}C$/1-4 sec), 미생물 저감화 방안의 제조공정을 거쳐 생산된 제품은 일반세균, 대장균군, B. cereus가 검출되지 않아 안전한 제품의 생산이 가능하였다. 또한, 영 유아용 식품을 제조할 경우 명확한 살균조건을 설정하고, 공정품의 품질평가를 거쳐야만 제품의 안전성을 확보할 수 있을 것으로 보인다.

크리핑 벤트그라스 훼어웨이에서 관수회수.예지물과 질소시비수준이 엽조직 및 토양 질소함유량에 미치는 효과 (A Three-year Study on the Leaf and Soil Nitrogen Contents Influenced by Irrigation Frequency, Clipping Return or Removal and Nitrogen Rate in a Creeping Bentgrass Fairway)

  • 김경남;로버트쉬어만
    • 아시안잔디학회지
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    • 제11권2호
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    • pp.105-115
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    • 1997
  • Responses of 'Penncross' creeping bentgrass turf to various fairway cultural practices are not well-established or supported by research results. This study was initiated to evaluate the effects of irrigation frequency, clipping return or removal, and nitrogen rate on leaf and soil nitrogen con-tent in the 'Penncross' creeping bentgrass (Agrostis palustris Huds.) turf. A 'Penncross' creeping bentgrass turf was established in 1988 on a Sharpsburg silty-clay loam (Typic Argiudoll). The experiment was conducted from 1989 to 1991 under nontraffic conditions. A split-split-plot experimental design was used. Daily or biweekly irrigation, clipping return or removal, and 5, 15, or 25 g N $m-^2$ $yr-^1$ were the main-, sub-, and sub-sub-plot treatments, respectively. Treatments were replicated 3 times in a randomized complete block design. The turf was mowed 4 times weekly at a l3 mm height of cut. Leaf tissue nitrogen content was analyzed twice in 1989 and three times in both 1990 and 1991. Leaf samples were collected from turfgrass plants in the treatment plots, dried immediately at 70˚C for 48 hours, and evaluated for total-N content, using the Kjeldahl method. Concurrently, six soil cores (18mm diam. by 200 mm depth) were collected, air dried, and analyzed for total-N content. Nitrogen analysis on the soil and leaf samples were made in the Soil and Plant Analyical Laboratory, at the University of Nebraska, Lincoln, USA. Data were analyzed as a split-split-plot with analysis of variance (ANOVA), using the General Linear Model procedures of the Statistical Analysis System. The nitrogen content of the leaf tissue is variable in creeping bentgrass fairway turf with clip-ping recycles, nitrogen application rate and time after establishment. Leaf tissue nitrogen content increased with clipping return and nitrogen rate. Plots treated with clipping return had 8% and 5% more nitrogen content in the leaf tissue in 1989 and 1990, respectively, as compared to plots treated with clipping removal. Plots applied with high-N level (25g N $m-^2$ $yr-^1$)had 10%, 17%, and 13% more nitrogen content in leaf tissue in 1989, 1990, and 1991, respectively, when compared with plots applied with low-N level (5g N $m-^2$ $yr-^1$). Overall observations during the study indicated that leaf tissue nitrogen content increased at any nitrogen rate with time after establishment. At the low-N level treatment (5g N $m-^2$ $yr-^1$ ), plots sampled in 1991 had 15% more leaf nitrogen content, as compared to plots sampled in 1989. Similar responses were also found from the high-N level treatment (25g N $m-^2$ $yr-^1$ ).Plots analyzed in 1991 were 18% higher than that of plots analyzed in 1989. No significant treatment effects were observed for soil nitrogen content over the first 3 years after establishment. Strategic management application is necessary for the golf course turf, depending on whether clippings return or not. Different approaches should be addressed to turf fertilization program from a standpoint of clipping recycles. It is recommended that regular analysis of the soil and leaf tissue of golf course turf must be made and fertilization program should be developed through the interpretation of its analytic data result. In golf courses where clippings are recycled, the fertilization program need to be adjusted, being 20% to 30% less nitrogen input over the clipping-removed areas. Key words: Agrostis palustris Huds., 'Penncross' creeping bentgrass fairway, Irrigation frequency, Clipping return, Nitrogen rate, Leaf nitrogen content, Soil nitrogen content.

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