Could ‘Isochoric Freezing’ Revolutionise Food Preservation?
Abstract
:1. Introduction
2. Terminology
3. Plausibility, Resource Efficiency and Safety
4. Process Rate
5. Energy Demand and Efficiency
6. General Observations and Discussion
7. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- IIR News. Isochoric Freezing Could Cut Down Energy Use in the Global Food Cold Chain. Available online: https://iifiir.org/en/news/isochoric-freezing-could-cut-down-energy-use-in-the-global-food-cold-chain (accessed on 17 February 2024).
- McHugh, T.; Bilbao-Sainz, C. Isochoric freezing: A new technology for food preservation. Food Technol. Mag. 2019, 73, 66–68. Available online: https://www.ift.org/news-and-publications/food-technology-magazine/issues/2019/november/columns/isochoric-freezing (accessed on 17 February 2024).
- Deluzarche, C. La «Congélation Isochore» Pourrait Révolutionner la Conservation des Aliments. Korii. Available online: https://korii.slate.fr/tech/technologie-congelation-isochore-revolution-conservation-aliments-energie-qualites-liquide-isotonique (accessed on 17 February 2024).
- Westwick-Farrow Media. Next Revolution in Freezing Food. Available online: https://issuu.com/westwick-farrowmedia/docs/food_technology_nov_dec_2021/s/13877400 (accessed on 17 February 2024).
- Dhanya, R.; Abhirami, P.; Venkatachalapathyc, N. Comprehensive review on isochoric freezing: A recent technology for preservation of food and non-food items. Sustain. Food Technol. 2023, 2, 9–18. [Google Scholar] [CrossRef]
- Thakur, S.; Jha, B.; Bhardwaj, N.; Singh, A.; Sawale, P.; Kumar, A. Isochoric freezing of foods: A review of instrumentation, mechanism, physicochemical influence, and applications. J. Food Process. Pres. 2022, 46, e17113. [Google Scholar] [CrossRef]
- Powell-Palm, M.J.; Rubinsky, B. A shift from the isobaric to the isochoric thermodynamic state can reduce energy consumption and augment temperature stability in frozen food storage. J. Food Eng. 2019, 251, 1–10. [Google Scholar] [CrossRef]
- Zhao, Y.; Powell-Palm, M.J.; Wang, J.; Bilbao-Sainz, C.; McHugh, T.; Rubinsky, B. Analysis of global energy savings in the frozen food industry made possible by transitioning from conventional isobaric freezing to isochoric freezing. Renew. Sust. Energ. Rev. 2021, 151, 111621. [Google Scholar] [CrossRef]
- Fikiin, K.; Akterian, S. A lauded refrigeration technique and resource-efficiency of frozen food industry. Trends Food Sci. Tech. 2022, 128, 185–187. [Google Scholar] [CrossRef]
- Fikiin, K.; Akterian, S.; Le Bail, A.; Carson, J.; Eikevik, T.M. ‘Isochoric freezing’: Ambitions and reality. J. Food Eng. 2023, 349, 111460. [Google Scholar] [CrossRef]
- IIR News. Is an ‘Isochoric Freezing’ Revolution Really in the Offing? Available online: https://iifiir.org/en/news/is-an-isochoric-freezing-revolution-really-in-the-offing (accessed on 17 February 2024).
- Powell-Palm, M.J.; Rubinsky, B. Response to “‘Isochoric freezing’: Ambitions and reality”. J. Food Eng. 2023, 349, 111461. [Google Scholar] [CrossRef]
- ASHRAE—American Society of Heating, Refrigerating and Air Conditioning Engineers. ASHRAE Terminology. Available online: https://terminology.ashrae.org (accessed on 17 February 2024).
- IIR—International Institute of Refrigeration. International Dictionary of Refrigeration. Available online: http://dictionary.iifiir.org (accessed on 17 February 2024).
- Urrutia Benet, G.; Schlüter, O.; Knorr, D. High pressure—Low temperature processing. Suggested definitions and terminology. Innov. Food Sci. Emerg. 2004, 5, 413–427. [Google Scholar] [CrossRef]
- Lyu, C.; Nastase, G.; Ukpai, G.; Serban, A.; Rubinsky, B. A comparison of freezing-damage during isochoric and isobaric freezing of the potato. PeerJ 2017, 5, e3322. [Google Scholar] [CrossRef] [PubMed]
- Zhao, X.; Chen, L.; Wongmaneepratip, W.; He, Y.; Zhao, L.; Yang, H. Effect of vacuum impregnated fish gelatin and grape seed extract on moisture state, microbiota composition, and quality of chilled seabass fillets. Food Chem. 2021, 354, 129581. [Google Scholar] [CrossRef] [PubMed]
- Zhu, Z.; Bassey, A.P.; Cao, Y.; Ma, Y.; Huang, M.; Yang, H. Food protein aggregation and its application. Food Res. Int. 2022, 160, 111725. [Google Scholar] [CrossRef] [PubMed]
- Lou, L.; Takeoka, G.; Rubinsky, B.; Bilbao-Sainz, C. Isochoric freezing to extend the shelf life of pomegranate juice. J. Food Sci. 2024, 89, 1347–1360. [Google Scholar] [CrossRef] [PubMed]
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Fikiin, K.; Akterian, S.; Le Bail, A.; Carson, J.K.; Eikevik, T.M. Could ‘Isochoric Freezing’ Revolutionise Food Preservation? Foods 2024, 13, 1762. https://doi.org/10.3390/foods13111762
Fikiin K, Akterian S, Le Bail A, Carson JK, Eikevik TM. Could ‘Isochoric Freezing’ Revolutionise Food Preservation? Foods. 2024; 13(11):1762. https://doi.org/10.3390/foods13111762
Chicago/Turabian StyleFikiin, Kostadin, Stepan Akterian, Alain Le Bail, James K. Carson, and Trygve M. Eikevik. 2024. "Could ‘Isochoric Freezing’ Revolutionise Food Preservation?" Foods 13, no. 11: 1762. https://doi.org/10.3390/foods13111762
APA StyleFikiin, K., Akterian, S., Le Bail, A., Carson, J. K., & Eikevik, T. M. (2024). Could ‘Isochoric Freezing’ Revolutionise Food Preservation? Foods, 13(11), 1762. https://doi.org/10.3390/foods13111762