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食品供应链的虚拟化和数字孪生技术可提高食品安全。

Virtualization and digital twins of the food supply chain for enhanced food safety.

机构信息

Department of Food Science & Arrell Food Institute, University of Guelph, Guelph, ON, Canada.

Department of Food Science, University of Guelph, Guelph, ON, Canada.

出版信息

Adv Food Nutr Res. 2024;111:71-91. doi: 10.1016/bs.afnr.2024.06.001. Epub 2024 Jun 18.

Abstract

Meeting food safety requirements without jeopardizing quality attributes or sustainability involves adopting a holistic perspective of food products, their manufacturing processes and their storage and distribution practices. The virtualization of the food supply chain offers opportunities to evaluate, simulate, and predict challenges and mishaps potentially contributing to present and future food safety risks. Food systems virtualization poses several requirements: (1) a comprehensive framework composed of instrumental, digital, and computational methods to evaluate internal and external factors that impact food safety; (2) nondestructive and real-time sensing methods, such as spectroscopic-based techniques, to facilitate mapping and tracking food safety and quality indicators; (3) a dynamic platform supported by the Internet of Things (IoT) interconnectivity to integrate information, perform online data analysis and exchange information on product history, outbreaks, exposure to risky situations, etc.; and (4) comprehensive and complementary mathematical modeling techniques (including but not limited to chemical reactions and microbial inactivation and growth kinetics) based on extensive data sets to make realistic simulations and predictions possible. Despite current limitations in data integration and technical skills for virtualization to reach its full potential, its increasing adoption as an interactive and dynamic tool for food systems evaluation can improve resource utilization and rational design of products, processes and logistics for enhanced food safety. Virtualization offers affordable and reliable options to assist stakeholders in decision-making and personnel training. This chapter focuses on definitions and requirements for developing and applying virtual food systems, including digital twins, and their role and future trends in enhancing food safety.

摘要

满足食品安全要求而不损害质量属性或可持续性,需要采用整体视角来审视食品产品、其制造工艺以及储存和分销实践。食品供应链的虚拟化提供了机会来评估、模拟和预测可能导致当前和未来食品安全风险的挑战和事故。食品系统的虚拟化提出了几个要求:(1)一个由仪器、数字和计算方法组成的综合框架,用于评估影响食品安全的内部和外部因素;(2)非破坏性和实时的传感方法,如基于光谱的技术,以促进食品安全和质量指标的映射和跟踪;(3)一个由物联网(IoT)互联性支持的动态平台,用于整合信息、进行在线数据分析以及交换产品历史、疫情、接触危险情况等信息;(4)基于广泛数据集的全面和补充的数学建模技术(包括但不限于化学反应和微生物失活和生长动力学),以实现现实模拟和预测。尽管当前在数据集成和虚拟化技术技能方面存在局限性,无法充分发挥其潜力,但作为食品系统评估的互动和动态工具,其应用日益广泛,可以提高资源利用效率,合理设计产品、工艺和物流,以增强食品安全。虚拟化提供了经济实惠且可靠的选择,可帮助利益相关者做出决策和进行人员培训。本章重点介绍了开发和应用虚拟食品系统(包括数字孪生)的定义和要求,以及它们在增强食品安全方面的作用和未来趋势。

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