Advances in Ozone Oxidation Technology: Mechanisms, Applications, and Challenges in Postharvest Fruit Preservation.

Tong Li, Pufan Zheng, Xiaoxue Li, Yuyun Lu, Arzu Şen, Lalita Siriwattananon, Xiaoli Wu, Ling Zhang, Na Zhang, Chenghu Dong, Haipeng Ji, Cunkun Chen

Journal: Comprehensive reviews in food science and food safety 2026;25(2):e70437

PMID: 41725235

Abstract

Fruits are an important source of nutrients for maintaining people's health and are rich in various bioactive substances. Fresh fruits deteriorate in quality during the postharvest transportation and storage stages, resulting in substantial economic losses. Ozone is a strong oxidizing agent and is generally considered nonthermal sterilization technology in food processing industries. The current study reviews the recent applications and effects of ozone treatment, its influence on spoilage microorganisms, foodborne human pathogens, and fruit quality changes. The review summarizes the biochemical mechanisms of ozone treatment in maintaining postharvest fruit quality involved in regulating antioxidant system and secondary metabolic pathways. The recent advances in engineering solutions, including application systems (gaseous ozone, aqueous ozone, ozone micro-nano-bubbles (O3-MNBs), ozone ice, and O3-MNBs ice) and postharvest fruit logistics network associated with ozone treatment, are also summarized. Overall, ozone technology is effective and safe method for maintaining the quality and extending the shelf life of fresh produce. Future studies are needed to address the challenges in evaluation of hybrid processes and optimization of O3-MNB systems and to improve ozone-dose standardization and develop monitoring tools.

© 2026 Institute of Food Technologists®.

Address: Institute of Agricultural Products Preservation and Processing Technology (National Engineering and Technology Research Center for Preservation of Agricultural Products), Tianjin Academy of Agricultural Sciences, Key Laboratory of Storage and Preservation of Agricultural Products, Ministry of Agriculture and Rural Affairs, Tianjin Key Laboratory of Postharvest Physiology and Storage and Preservation of Agricultural Products, State Key Laboratory of Vegetable Biobreeding, Tianjin, China.; Department of Food Science and Technology, National University of Singapore, Singapore, Singapore.; Ataturk Horticultural Central Research Institute, Yalova, Turkey.; Faculty of Agricultural Technology, Rajamangala University of Technology, Thanyaburi, Pathum Thani, Thailand.; School of Life Sciences, Faculty of Medicine, Tianjin University, Tianjin, China.
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