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首页> 外文期刊>Food microbiology >Validation of a predictive model coupling gas transfer and microbial growth in fresh food packed under modified atmosphere
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Validation of a predictive model coupling gas transfer and microbial growth in fresh food packed under modified atmosphere

机译:修正气氛下新鲜食品中气体转移与微生物生长耦合预测模型的验证

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摘要

Predicting microbial safety of fresh products in modified atmosphere packaging implies to take into account the dynamic of O_2, CO_2 and N_2 exchanges in the system and its effect on microbial growth. In this paper a mechanistic model coupling gas transfer and predictive microbiology was validated using dedicated challenge-tests performed on poultry meat, fresh salmon and processed cheese, inoculated with either Listeria monocytogenes or Pseudomonas fluorescens and packed in commercially used packaging materials (tray + lid films). The model succeeded in predicting the relative variation of O_2, CO_2 and N_2 partial pressure in headspace and the growth of the studied microorganisms without any parameter identification. This work highlighted that the respiration of the targeted microorganism itself and/or that of the naturally present microflora could not be neglected in most of the cases, and could, in the particular case of aerobic microbes contribute to limit the growth by removing all residual O_2 in the package. This work also confirmed the low sensitivity of L monocytogenes toward CO_2 while that of P. fluorescens permitted to efficiently prevent its growth by choosing the right combination of packaging gas permeability value and initial % of CO_2 initially flushed in the pack.
机译:预测采用气调包装的新鲜产品的微生物安全性,意味着要考虑系统中O_2,CO_2和N_2交换的动态及其对微生物生长的影响。在本文中,通过对家禽肉,新鲜鲑鱼和加工奶酪进行了专门的挑战测试,并接种了单核细胞增生性李斯特菌或荧光假单胞菌并包装在商用包装材料中(托盘+盖膜),验证了结合气体传输和预测微生物学的机理模型)。该模型成功地预测了顶空O_2,CO_2和N_2分压的相对变化以及所研究微生物的生长,而无需任何参数识别。这项工作着重指出,在大多数情况下,目标微生物本身和/或天然存在的菌群的呼吸作用不能被忽略,并且在有氧微生物的特殊情况下,可以通过去除所有残留的O_2来限制其呼吸。在包装中。这项工作还证实了单核细胞增生李斯特氏菌对CO_2的敏感性较低,而荧光假单胞菌则可以通过选择包装气体渗透率值和最初冲入包装的初始CO_2%的正确组合有效地阻止其生长。

著录项

  • 来源
    《Food microbiology》 |2016年第9期|43-55|共13页
  • 作者单位

    UMR IATE University of Montpellier, 2 place Pierre Viala, F-34060, Montpellier Cedex, France;

    LUBEM, 2 Rue de l'Universite', F-29334, Quimper, France;

    Aerial, 250 rue Laurent Fries, F67412, Illkirch, France;

    ACTALIA, Bd du 13 juin 1944 - BP2, 14310, Villers-bocage, France;

    ACTALIA, Bd du 13 juin 1944 - BP2, 14310, Villers-bocage, France;

    ADRIA Developpement, Z.A. Creac'h Gwen, F29196, Quimper Cedex, France;

    UMR IATE University of Montpellier, 2 place Pierre Viala, F-34060, Montpellier Cedex, France;

    LNE, 1, rue Gaston Boissier, 75724, Paris Cedex 15, France;

    LNE, 1, rue Gaston Boissier, 75724, Paris Cedex 15, France;

    ADRIA Developpement, Z.A. Creac'h Gwen, F29196, Quimper Cedex, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Modified atmosphere packaging; Gas transfer; Microbial growth; Modelling; Shelf life; CO_2 antimicrobial effect;

    机译:气调包装;气体传输;微生物生长;造型;保质期;CO_2抗菌作用;

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