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食品冷链管理改进:关于新冠疫情与食品冷链系统的联合分析

Food cold chain management improvement: A conjoint analysis on COVID-19 and food cold chain systems.

作者信息

Qian Jianping, Yu Qiangyi, Jiang Li, Yang Han, Wu Wenbin

机构信息

Key Laboratory of Agricultural Remote Sensing (AGRIRS), Ministry of Agriculture and Rural Affairs/Institute of Agricultural Resources and Regional Planning, Chinese Academy of Agricultural Sciences, 100081, Beijing, China.

Chinese Academy of Inspection and Quarantine, 100123, Beijing, China.

出版信息

Food Control. 2022 Jul;137:108940. doi: 10.1016/j.foodcont.2022.108940. Epub 2022 Mar 2.

Abstract

Cold chains are effective in maintaining food quality and reducing food losses, especially for long-distance international food commerce. Several recent reports have demonstrated that frozen foods are serving as carriers of SARS-CoV-2 and transmitting the virus from one place to another without any human-to-human contact. This finding highlights significant difficulties facing efforts to control the spread of COVID-19 and reveal a transmission mechanism that may have substantially worsened the global pandemic. Traditional food cold chain management practices do not include specific procedures related to SARS-CoV-2-related environmental control and information warnings; therefore, such procedures are urgently needed to allow food to be safely transported without transmitting SARS-CoV-2. In this study, a conjoint analysis of COVID-19 and food cold chain systems was performed, and the results of this analysis were used to develop an improved food cold chain management system utilizing internet of things (IoT) and blockchain technology. First, 45 COVID-19-related food cold chain incidents in China, primarily involving frozen meat and frozen aquatic products, were summarized. Critical food cold chain control points related to COVID-19 were analyzed, including temperature and cold chain requirements. A conceptual system structure to improve food cold chain management, including information sensing, chain linking and credible tracing, was proposed. Finally, a prototype system, which consisted of cold chain environment monitoring equipment, a cold chain blockchain platform, and a food chain management system, was developed. The system includes: 1) a defining characteristic of the newly developed food cold chain system presented here is the use of IoT technology to enhance real-time environmental information sensing capacity; 2) a hybrid data storage mechanism consisting of off-chain and on-chain systems was applied to enhance data security, and smart contracts were used to establish warning levels for food cold chain incidents; and 3) a hypothetical food cold chain failure scenario demonstration in which information collection, intelligent decision making, and cold chain tracing were integrated and automatically generated for decision-making. By integrating existing technologies and approaches, our study provides a novel solution to improve traditional food cold chain management and thus meet the challenges associated with the COVID-19 pandemic. Although our system has been shown to be effective, subsequent studies are still required to develop precise risk evaluation models for SARs-CoV-2 in food cold chains and more precisely control the entire process. By ensuring food safety and reliable traceability, our system could also contribute to the formulation of appropriate mechanisms for international cooperation and minimize the effect of the COVID-19 pandemic on international food commerce.

摘要

冷链对于保持食品质量和减少食品损失很有效,特别是在长途国际食品贸易中。最近的几份报告表明,冷冻食品正充当严重急性呼吸综合征冠状病毒2(SARS-CoV-2)的载体,在没有任何人际接触的情况下将病毒从一个地方传播到另一个地方。这一发现凸显了控制新型冠状病毒肺炎(COVID-19)传播所面临的重大困难,并揭示了一种可能已使全球大流行情况大幅恶化的传播机制。传统的食品冷链管理做法不包括与SARS-CoV-2相关的环境控制和信息警示的具体程序;因此,迫切需要此类程序,以使食品在不传播SARS-CoV-2的情况下得以安全运输。在本研究中,对COVID-19和食品冷链系统进行了联合分析,并利用该分析结果开发了一种利用物联网(IoT)和区块链技术的改进型食品冷链管理系统。首先,总结了中国45起与COVID-19相关的食品冷链事件,主要涉及冷冻肉类和冷冻水产品。分析了与COVID-19相关的关键食品冷链控制点,包括温度和冷链要求。提出了一个改进食品冷链管理的概念性系统结构,包括信息感知、链条连接和可靠追溯。最后,开发了一个原型系统,该系统由冷链环境监测设备、冷链区块链平台和食品链管理系统组成。该系统包括:1)此处提出的新开发的食品冷链系统的一个显著特征是利用物联网技术增强实时环境信息感知能力;2)应用了一种由链下和链上系统组成的混合数据存储机制来增强数据安全性,并使用智能合约为食品冷链事件设定警示级别;3)一个假设的食品冷链故障场景演示,其中信息收集、智能决策和冷链追溯被整合并自动生成以供决策。通过整合现有技术和方法,我们的研究提供了一种新颖的解决方案来改进传统的食品冷链管理,从而应对与COVID-19大流行相关的挑战。尽管我们的系统已被证明是有效的,但仍需要后续研究来开发食品冷链中SARS-CoV-2的精确风险评估模型,并更精确地控制整个过程。通过确保食品安全和可靠的可追溯性,我们的系统还可为制定适当的国际合作机制做出贡献,并将COVID-19大流行对国际食品贸易的影响降至最低。

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