Akash Patil, Sandeep B. Somvanshi, Manoj Sawale, Krunal Desai, Ferhan Ozadali, Patnarin Benyathiar, Dharmendra K. Mishra
{"title":"微泡技术在食品卫生处理中的研究进展","authors":"Akash Patil, Sandeep B. Somvanshi, Manoj Sawale, Krunal Desai, Ferhan Ozadali, Patnarin Benyathiar, Dharmendra K. Mishra","doi":"10.1111/1541-4337.70230","DOIUrl":null,"url":null,"abstract":"<p>Microbubble (MB) technology has emerged as a transformative tool in food sanitization, where it offers innovative solutions for ensuring food safety and quality. The technology has a proven record of reducing dependency on chemicals for disinfecting food, which contributes to food safety. The success of MB technology lies in the unique properties of MBs, such as high surface area, enhanced gas solubility, and cavitation effects that lead to their effectiveness in food sanitization and disinfection. With diameters typically ranging from 1 from 100 µm and prolonged suspension (from a few hours to weeks) in the liquid phase, these gas-filled MBs enhance the effectiveness of cleaning, disinfection, and contaminant removal processes in the food industry. The purpose of this review was to explore recent advancements in MB technologies, focusing on their underlying mechanisms of action, such as cavitation, oxidative stress generation, and enhanced surface activity. It also examines a range of applications, from washing fruits and vegetables to sanitizing seafood, meat, and processing equipment. Furthermore, the review delves into the environmental benefits of MB technology, highlighting its potential to reduce water and chemical usage in sanitization processes, thereby contributing to more sustainable food production practices. This comprehensive review addresses the potential challenges and limitations of adopting MB technology on a commercial scale, including cost implications, scalability, and regulatory considerations. The review also outlines future prospects, such as the integration of MB systems with other emerging technologies, like ozone and ultrasound, to enhance food sanitization efficacy and to guide researchers, industry professionals, and policymakers in exploring the full potential of MB technology for improving food safety and quality.</p>","PeriodicalId":155,"journal":{"name":"Comprehensive Reviews in Food Science and Food Safety","volume":"24 4","pages":""},"PeriodicalIF":12.0000,"publicationDate":"2025-07-15","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://onlinelibrary.wiley.com/doi/epdf/10.1111/1541-4337.70230","citationCount":"0","resultStr":"{\"title\":\"Advances in Microbubble Technologies for Food Sanitization: A Comprehensive Review\",\"authors\":\"Akash Patil, Sandeep B. Somvanshi, Manoj Sawale, Krunal Desai, Ferhan Ozadali, Patnarin Benyathiar, Dharmendra K. Mishra\",\"doi\":\"10.1111/1541-4337.70230\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p>Microbubble (MB) technology has emerged as a transformative tool in food sanitization, where it offers innovative solutions for ensuring food safety and quality. The technology has a proven record of reducing dependency on chemicals for disinfecting food, which contributes to food safety. The success of MB technology lies in the unique properties of MBs, such as high surface area, enhanced gas solubility, and cavitation effects that lead to their effectiveness in food sanitization and disinfection. With diameters typically ranging from 1 from 100 µm and prolonged suspension (from a few hours to weeks) in the liquid phase, these gas-filled MBs enhance the effectiveness of cleaning, disinfection, and contaminant removal processes in the food industry. The purpose of this review was to explore recent advancements in MB technologies, focusing on their underlying mechanisms of action, such as cavitation, oxidative stress generation, and enhanced surface activity. It also examines a range of applications, from washing fruits and vegetables to sanitizing seafood, meat, and processing equipment. Furthermore, the review delves into the environmental benefits of MB technology, highlighting its potential to reduce water and chemical usage in sanitization processes, thereby contributing to more sustainable food production practices. This comprehensive review addresses the potential challenges and limitations of adopting MB technology on a commercial scale, including cost implications, scalability, and regulatory considerations. 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Advances in Microbubble Technologies for Food Sanitization: A Comprehensive Review
Microbubble (MB) technology has emerged as a transformative tool in food sanitization, where it offers innovative solutions for ensuring food safety and quality. The technology has a proven record of reducing dependency on chemicals for disinfecting food, which contributes to food safety. The success of MB technology lies in the unique properties of MBs, such as high surface area, enhanced gas solubility, and cavitation effects that lead to their effectiveness in food sanitization and disinfection. With diameters typically ranging from 1 from 100 µm and prolonged suspension (from a few hours to weeks) in the liquid phase, these gas-filled MBs enhance the effectiveness of cleaning, disinfection, and contaminant removal processes in the food industry. The purpose of this review was to explore recent advancements in MB technologies, focusing on their underlying mechanisms of action, such as cavitation, oxidative stress generation, and enhanced surface activity. It also examines a range of applications, from washing fruits and vegetables to sanitizing seafood, meat, and processing equipment. Furthermore, the review delves into the environmental benefits of MB technology, highlighting its potential to reduce water and chemical usage in sanitization processes, thereby contributing to more sustainable food production practices. This comprehensive review addresses the potential challenges and limitations of adopting MB technology on a commercial scale, including cost implications, scalability, and regulatory considerations. The review also outlines future prospects, such as the integration of MB systems with other emerging technologies, like ozone and ultrasound, to enhance food sanitization efficacy and to guide researchers, industry professionals, and policymakers in exploring the full potential of MB technology for improving food safety and quality.
期刊介绍:
Comprehensive Reviews in Food Science and Food Safety (CRFSFS) is an online peer-reviewed journal established in 2002. It aims to provide scientists with unique and comprehensive reviews covering various aspects of food science and technology.
CRFSFS publishes in-depth reviews addressing the chemical, microbiological, physical, sensory, and nutritional properties of foods, as well as food processing, engineering, analytical methods, and packaging. Manuscripts should contribute new insights and recommendations to the scientific knowledge on the topic. The journal prioritizes recent developments and encourages critical assessment of experimental design and interpretation of results.
Topics related to food safety, such as preventive controls, ingredient contaminants, storage, food authenticity, and adulteration, are considered. Reviews on food hazards must demonstrate validity and reliability in real food systems, not just in model systems. Additionally, reviews on nutritional properties should provide a realistic perspective on how foods influence health, considering processing and storage effects on bioactivity.
The journal also accepts reviews on consumer behavior, risk assessment, food regulations, and post-harvest physiology. Authors are encouraged to consult the Editor in Chief before submission to ensure topic suitability. Systematic reviews and meta-analyses on analytical and sensory methods, quality control, and food safety approaches are welcomed, with authors advised to follow IFIS Good review practice guidelines.