プレプリント / バージョン1

Sterilization of Bacillus subtilis in Powdered Food by Iterative Processing of Instantaneous High-Pressure

##article.authors##

  • Masaki Hachiman Department of Bioresources Engineering, National Institute of Technology, Okinawa College
  • Ayumi Takemoto Department of Bioresources Engineering, National Institute of Technology, Okinawa College
  • Ken Shimojima Department of Mechanical Systems Engineering, National Institute of Technology, Okinawa College
  • Yoshikazu Higa Department of Mechanical Systems Engineering, National Institute of Technology, Okinawa College
  • Osamu Higa Department of Information and Communication Systems Engineering, National Institute of Technology, Okinawa College

DOI:

https://doi.org/10.51094/jxiv.970

キーワード:

Heating、 Shock waves、 Sterilization、 High pressure (Physics)、 Food products、 Heat、 Pressure

抄録

Powdered foods, primarily made from cereal grains, carry a high risk of contamination by soil bacteria at the time of harvest. However, due to the low thermal conductivity of powdered food and the spore-forming nature of soil bacteria, thermal sterilization is challenging. Currently, iterative processing with instantaneous high pressure generated by shock waves is a promising method for destroying bacterial cells without heat. In this study, rice flour, inoculated with Bacillus subtilis spores, was processed iteratively using instantaneous high pressure. The processing conditions were examined based on the number of iterations. The cultivation of B. subtilis and the observation of the cells by scanning electron microscopy were used as the evaluation method. As a result, 99.5% inactivation of B. subtilis was achieved. Additionally, deformed bacterial bodies and bacterial aggregation were observed. Therefore, the iterative processing using instantaneous high pressure can ensure the safety and security of powdered food.

利益相反に関する開示

There are no conflicts of interest in this study.

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引用文献

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Takemoto, A., Otsuka, M., Itoh, S., Mibuka, Y., & Iwahara, M. (2007). On mechanism of non-heating sterilization using the underwater shock wave loading and gas formation. The International Journal of Multiphysics, 1(4), 407–417.

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投稿日時: 2024-11-27 09:53:05 UTC

公開日時: 2024-11-29 09:26:51 UTC
研究分野
農学・食品科学