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超高压灭活枯草芽孢杆菌(AS1.140)的参数优化 被引量:26

Optimization of ultra high pressure processing parameters on survivors of Bacillus subtilis AS 1.140
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摘要 该文采用响应曲面方法中的Box-Behnken模式,对超高压灭活枯草芽孢杆菌进行了试验优化设计,并进行了实验分析验证。试验结果表明:压力、温度、保压时间是超高压灭活枯草芽孢杆菌的显著影响因子,分析表明其显著度顺序为压力>温度>保压时间;在本试验条件范围内建立并验证的超高压杀灭枯草芽孢杆菌的回归模型准确有效;优化得出10组杀灭106cfu/mL枯草芽孢杆菌工艺参数的取值范围为压力343.79~475.75MPa,温度27.47~57.44℃,保压时间14.14~19.72min。 Ultra high pressure processing (UHPP) to Bacillus subtilis was investigated, and all experiments were designed and optimized with Box-Behnken concept of response surface methodology (RSM). Results show that the pressure, temperature and dwell time are the significant factors for ultra high pressure sterilization to Bacillus subtilis, and the significant order is as follows: pressure > temperature > dwell time. The regression equation (model) for UHPP to Bacillus subtilis was established, and also verified with the check experiments. The optimized processing parameters of 10 groups were obtained, and the scales of variable factors to sterilize Bacillus subtilis of 106 cfu/mL are as follows: pressure 343.79-475.75 MPa, temperature 27.47-57.44°C and dwell time 14.14-19.72 min.
出处 《农业工程学报》 EI CAS CSCD 北大核心 2005年第4期158-162,共5页 Transactions of the Chinese Society of Agricultural Engineering
基金 安徽省教育厅重点科研项目(2004kj004zd) 农产品生物化工教育部重点实验室开放基金(NKF2004005)
关键词 超高压 枯草芽孢杆菌 响应曲面法 优化 ultra high pressure bacillus subtilis response surface methodology(RSM) optimization
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参考文献15

  • 1潘见,张文成,陈从贵.超高压液体饮料实用性灭菌工艺及设备设计[J].食品科学,1999,20(12):62-64. 被引量:14
  • 2潘见.草莓汁的超高压杀菌研究[J].食品信息与技术,2004(3):53-53. 被引量:8
  • 3曾庆梅,潘见,谢慧明,杨毅,王海翔.超高压处理对砀山梨汁中过氧化物酶活性的影响[J].农业工程学报,2004,20(4):199-202. 被引量:29
  • 4曾庆梅,潘见,谢慧明,杨毅,徐惠群.西瓜汁的超高压杀菌效果研究[J].高压物理学报,2004,18(1):70-74. 被引量:42
  • 5Cheftel J C. Review: High-pressure, microbial inactivation and food preservation [J]. Food Sci Technol Int,1995,1(2):75-90.
  • 6Knorr D. Effects of high-hydrostatic-pressure processes on food safety and quality[J]. Food Technology, 1993,47(6):156-161.
  • 7Fair D. High pressure technology in the food industry[J].Trends Food Science and Technology, 1990,1 (1) : 15 - 16.
  • 8MertensB, Knorr D. Developments of nonthermal processes for food preservation[J]. Food Technol, 1992,46(5):124-133.
  • 9Stewarta C M, Dunne C P, Sikes A, et al. Sensitivity of spores of Bacillus subtilis and Clostridium sporogenes PA 3679 to combinations of high hydrostatic pressure and other processing parameters[J]. Innovative Food Science & Emerging Technologies, 2000,1: 49- 56.
  • 10Smelt J P P M. Recent advances in the microbiology of high pressure processing[J]. Food Science & Technology,1998,9 (4) : 152- 158.

二级参考文献28

  • 1陈寿鹏.食品高压装置[J].包装与食品机械,1996,14(4):33-39. 被引量:4
  • 2马成林,左春柽,张守勤,王丽红.玉米高压糊化淀粉的老化特性和变色性质[J].农业工程学报,1997,13(2):203-205. 被引量:13
  • 3杨公明 马成林.食品高压加工技术的最新动向[J].农业工程学报,1995,11(4).
  • 4Gomes M R A, Ledward D A. Effect of high-pressure treatment on the activity of some polyphenoloxidases[J]. Food Chemistry, 1996, 56(1): 1-5.
  • 5Tauscher B. Pasteurization of food by hydrostatic hydrostatic high pressure chemical aspects[J]. Lebensm Unters Forsch, 1995, 200: 3-13.
  • 6Moerman F, Mertens B, Demey L, et al. Reduction of Bacillus subtilis, Bacillus stearothermophilus and Streptococcus faecalis in meat batters by temperature-high hydrostatic pressure pasteurization[J]. Meat science, 2001, 59:115-125.
  • 7Spilimbergo S, Elvassore N, Bertucco A. Microbial inactivation by high-pressure[J]. Supercritical Fluids, 2002, 22: 55-63.
  • 8Smelt J P P M. Recent advances in the microbiology of high pressure processing[J]. Food Science & Technology, 1998,(9): 152-158.
  • 9Pandya Y, et al. Concurrent effects of high hydrostatic pressure, acidity and heat on the destruction and injury of yeasts[J]. Food Protection, 1995, 58(3): 301-304.
  • 10Hite B H. The Effect of Pressure in the Preseryation of Milk [J]. West Virginia Agricultural Experimental Station Bulletin, 1899,58 : 15 - 35.

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