• Title/Summary/Keyword: Saengshik

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Hazard Analysis and Determination of CCPs for Powdered Raw Grains and Vegetables, Saengshik (생식의 위해요인 분석 및 중요관리점 설정)

  • Kim, Dong-Ju;Ha, Sang-Do;Ryu, Kyung;Park, Ki-Hwan
    • Korean Journal of Food Science and Technology
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    • v.36 no.6
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    • pp.1032-1040
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    • 2004
  • Biological, physical, and chemical hazards in raw manufacturing processes of Saengshik, powdered raw grains and vegetables, were analyzed to identify critical control points (CCPs). In raw materials, total plate and coliform counts ranged 2.82-8.23 and $1.40-6.57\;{\log}_{10}\;CFU/g$, respectively. In final products, total plate counts, except for Lactobacillus spp., were $1.51-7.40\;{\log}_{10}\;CFU/g$. During processing steps, both total plate and coliform counts decreased after washing, whereas no changes were observed after freeze-drying. Physical hazards, such as contents of metal and other contaminants, and chemical hazards, such as moisture content, were assessed. Suggested CCPs for Saengshik were: washing process for controlling microbial contamination, freeze-drying process for controlling moisture content to prevent deterioration and growth of microorganisms, and pulverization process for controlling contamination of foreign substances such as metals. These results will provide guideline to apply HACCP system standards to this product.

Effect of Hypochlorous Acid to Reduce Microbial Populations in Dipping Procedure of Fresh Produce as Saengshik Raw Materials (생식원료 야채의 전처리공정에서 Hypochlorous Acid의 미생물 제어 효과)

  • Koh, So-Mi;Kim, Jeong-Mok
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.39 no.4
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    • pp.637-642
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    • 2010
  • Pre-treatment steps of fresh produce as Saengshik raw materials are followed by initial clean-up, dipping, primary washing, and cutting. Hypochlorous acid solution was applied in the dipping step to reduce natural microflora. Also, procedures were changed by cutting, dipping and then primary washing, and the efficacy of hypochlorus acid was evaluated. Potatoes, carrots, kales, and angelicas were submerged in water or 100 ppm of hypochlorous acid for 5 min. After initial clean-up, the aerobic plate counts of potatoes, carrots, kales and angelicas were 4.7, 5.3, 5.6, and 5.7 log CFU/g, respectively. When samples were submerged into water, it only reduced the population of natural microflora by 0.2 to 1.1 log CFU/g, whereas when treated with hypochlorous acid, it reduced the population by 0.5 to 2.8 log CFU/g. Reductions of natural microflora in green leafy vegetables were more highly achieved than bulbs such as potatoes and carrots. However, the numbers of natural microflora were increased after cutting step. To control the cross contamination at the cutting process, the process was changed as follows: initial clean-up, cutting, dipping in hypochlorous acid, and then primary washing. It showed effective reduction of the population by 2.3 to 3.2 log CFU/g. Hypochlorous acid solution could be useful as a sanitizer for surface washing of fresh vegetables.

Study on Reducing Methods of Natural Food-borne Pathogenic Microorganisms Originated from Saengshik (생식 중 자연환경유래 위해미생물 저감화 방법에 관한 연구)

  • Chang, Tae-Eun;Han, Jeong-Su;Song, Ok-Ja;Chung, Dong-Hwa;Shin, Il-Shik
    • Korean Journal of Food Science and Technology
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    • v.36 no.6
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    • pp.1020-1025
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    • 2004
  • In previous paper, contaminations of food-borne pathogenic bacteria of Saengshik was found to occur during processing, because detection rates of food-borne pathogenic bacteria in final products were higher than those of raw materials. In this study, methods to reduce food-borne pathogenic bacteria and improved manufacturing process were developed for microbial safety of Saengshik. Food-borne pathogenic bacteria in raw materials were reduced to about 0.5-2.0 log cfu/g when seven kinds of raw materials were washed with electrolyzed water and ozonated water, but food-borne pathogenic bacteria could not be removed completely. After improvement of manufacturing process, numbers of food-borne pathogenic bacteria were same or decreased to levels of raw materials. Gaseous ozone and Biocon could control air-borne bacteria under $1{\times}10^1$ cfu/1000 L of air in pulverization and mixing rooms.