Principles and Application of High Pressure–Based Technologies in the Food Industry
Принципы и применение технологий на основе высокого давления в пищевой промышленности
2015-03-06
SCID: 54.1/6cvm8pvm
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Food packaging barrier propertiesFood preservationHigh pressure processingNonthermal pasteurizationThermodynamic properties
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Abstract (AI)
High pressure processing (HPP) has emerged as a commercially viable food manufacturing tool that satisfies consumers' demand for mildly processed, convenient, fresh-tasting foods with minimal to no preservatives. Pressure treatment, with or without heat, inactivates pathogenic and spoilage bacteria, yeast, mold, viruses, and also spores and extends shelf life. Pressure treatment at ambient or chilled temperatures has minimal impact on product chemistry. The product quality and shelf life are often influenced more by storage conditions and packaging material barrier properties than the treatment itself. Application of pressure reduces the thermal exposure of the food during processing, thereby protecting a variety of bioactive compounds. This review discusses recent scientific advances of high pressure technology for food processing and preservation applications such as pasteurization, sterilization, blanching, freezing, and thawing. We highlight the importance of in situ engineering and thermodynamic properties of food and packaging materials in process design. Current and potential future promising applications of pressure technology are summarized.
Key Findings
1
Ambient- or chilled-temperature pressure processing causes minimal changes to food chemistry and reduces thermal exposure, helping preserve bioactive compounds.
2
Food quality and shelf life may depend more on storage conditions and packaging barrier properties than on the pressure treatment itself.
3
High pressure processing is a commercially viable technology producing minimally processed, convenient foods with fresh-like qualities and few or no preservatives.
4
High pressure technology supports pasteurization, sterilization, blanching, freezing, and thawing, with process design requiring consideration of food and packaging thermodynamic properties.
5
Pressure treatment, alone or combined with heat, inactivates pathogens, spoilage microorganisms, viruses, and spores, thereby extending food shelf life.
Research Object
High pressure processing (HPP) technology applied to food products and packaging systems
Research Subject
the effects and applications of pressure treatment on microbial inactivation, product quality, bioactive-compound retention, shelf life, and food-processing operations
Publication Details
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2015-03-06
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