Advances, Applications, and Comparison of Thermal (Pasteurization, Sterilization, and Aseptic Packaging) against Non-Thermal (Ultrasounds, UV Radiation, Ozonation, High Hydrostatic Pressure) Technologies in Food Processing
Достижения, применение и сравнение термических (пастеризация, стерилизация и асептическая упаковка) и нетермических (ультразвук, ультрафиолетовое излучение, озонирование и высокое гидростатическое давление) технологий в пищевой промышленности
2022-02-20
SCID: 54.1/3bqqbs2w
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Food processingHigh hydrostatic pressureMicrobial inactivationNon-thermal technologiesThermal processing
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Abstract (AI)
Nowadays, food treatment technologies are constantly evolving due to an increasing demand for healthier and tastier food with longer shelf lives. In this review, our aim is to highlight the advantages and disadvantages of some of the most exploited industrial techniques for food processing and microorganism deactivation, dividing them into those that exploit high temperatures (pasteurization, sterilization, aseptic packaging) and those that operate thanks to their inherent chemical–physical principles (ultrasound, ultraviolet radiation, ozonation, high hydrostatic pressure). The traditional thermal methods can reduce the number of pathogenic microorganisms to safe levels, but non-thermal technologies can also reduce or remove the adverse effects that occur using high temperatures. In the case of ultrasound, which inactivates pathogens, recent advances in food treatment are reported. Throughout the text, novel discoveries of the last decade are presented, and non-thermal methods have been demonstrated to be more attractive for processing a huge variety of foods. Preserving the quality and nutritional values of the product itself and at the same time reducing bacteria and extending shelf life are the primary targets of conscious producers, and with non-thermal technologies, they are increasingly possible.
Key Findings
1
Non-thermal methods are increasingly attractive for processing diverse foods because they can help preserve product quality and nutritional value while reducing bacteria and extending shelf life.
2
Non-thermal technologies—including ultrasound, ultraviolet radiation, ozonation, and high hydrostatic pressure—can reduce microbial contamination while mitigating quality losses associated with heating.
3
Recent advances demonstrate ultrasound’s potential for pathogen inactivation and broader application in food treatment.
4
The review compares advantages and disadvantages of major thermal and non-thermal food-processing technologies, highlighting their industrial applications and developments from the last decade.
5
Thermal processing methods, including pasteurization, sterilization, and aseptic packaging, reduce pathogenic microorganisms to safe levels but may cause adverse high-temperature effects.
Research Object
Food processing and treatment technologies applied to foods
Research Subject
Comparative advantages, disadvantages, and effectiveness of thermal and non-thermal technologies for microorganism inactivation, quality and nutrient preservation, and shelf-life extension
Publication Details
Publication Date
2022-02-20
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