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March 13, 2026Journal of Food Process Engineering0 citations

Infrared‐Powered Retort Sterilization of Canned Fish Compared to Conventional Retorting: Process Optimization and Product Storage Stability

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AAAtheer Abdul Amir Al‐MturyAAAsaad R. Al‐HilphySASabah Malik Al‐Shatty

Key Points

  • The study aims to evaluate the quality parameters of canned fish using infrared and conventional sterilization methods.
  • Altered sterilization temperature (110°C–121°C) and time (10–20 min)
  • Assessment of peroxide value, acid value, free fatty acid, and more
  • Conducted scanning electron microscopy and Fourier transform infrared spectroscopy
  • Sensory evaluation of products during a 1-year storage period
  • Optimal conditions achieved at 116.5°C for 15.6 min, extending shelf life
  • Lowered peroxide value, acid value, free fatty acid, thiobarbituric acid, and total volatile nitrogen
  • Higher sensory acceptance score for RIR product (8.9 ± 0.6) compared to CR (7.4 ± 0.8)
  • SEM showed a more organized structure in RIR products

Abstract

ABSTRACT Recently, the infrared‐based retort (RIR) was developed for sustainable food production in the canning process. However, its industrial applications require assessing its effects on product properties during storage. This study aims to comparatively evaluate the novel RIR and conventional retort (CR) for canned Talang Queenfish's quality parameters and to define optimal processing conditions by altering sterilization temperature (110°C–121°C) and time (10–20 min) to minimize peroxide value (PV), acid value (AV), free fatty acid (FFA), thiobarbituric acid (TBA), total volatile nitrogen (TVN), and maintain acceptable pH. Scanning Electron Microscopy (SEM), Fourier Transform Infrared Spectroscopy (FTIR), and sensory evaluation were also performed, and the products were assessed monthly during a 1‐year storage period. The optimal product was achieved at 116.5°C/15.6 min, with significantly ( p < 0.05) extended shelf‐life and reduced PV, AV, FFA, TBA, TVN, with a slight decrease in pH compared to CR. SEM revealed that the RIR product exhibited more organized cellular structure with a smoother surface. Despite the similarity of spectra, FTIR analysis indicated differences in functunal group characteristics between RIR and CR samples, particularly in hydroxyl and carbonyl regions. RIR‐sterilized fish achieved higher overall acceptance sensory score than CR (8.9 ± 0.6 vs. 7.4 ± 0.8). Results indicate RIR capability for practical applications and contribution to food quality enhancement and waste reduction.

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Cite This Study

Al‐Mtury et al. (2026) studied this question.

synapsesocial.com/papers/69b3acf302a1e69014ccf204https://doi.org/10.1111/jfpe.70415
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