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新冠疫情下可持续食品供应链中食物-能源-水-废弃物关联系统的优化:以伊朗为例

Optimization of food-energy-water-waste nexus in a sustainable food supply chain under the COVID-19 pandemic: a case study in Iran.

作者信息

Seif Marziye, Yaghoubi Saeed, Khodoomi Mohammad Reza

机构信息

School of Industrial Engineering, Iran University of Science and Technology, Narmak, Tehran, 16846-13114 Iran.

出版信息

Environ Dev Sustain. 2023 Feb 23:1-35. doi: 10.1007/s10668-023-03004-7.

Abstract

ABSTRACT

During the coronavirus epidemic, food supply chains have been affected by disruptions of this epidemic. Having an overview and considering food-related factors such as energy, waste, and water make the design of the supply chain more effective. In this study, a multi-objective model for a sustainable food supply chain is presented based on the prevalence of coronavirus by considering the food-energy-water-waste nexus. There are dual-channel sales including online and in-person channels, which their demand functions depend on products price in every channel, as well as the prevalence of coronavirus in high-risk or low-risk areas. Distribution centers, located in high-risk regions, require the disinfection of products to minimize coronavirus spread. Indeed, the proposed mathematical model has three objective functions that the first objective maximizes the profit of the food supply under COVID-19 conditions. The other two objectives minimize not only the environmental impact of transportation, but also the delivery time. In order to solve this multi-objective model, the epsilon constraint method, as an efficient technique, is employed. To validate the proposed model, the model is finally implemented in a two-channel supply chain in Iran. The results show that the food supply chain has a close relationship with the energy-water-waste nexus COVID-19 and can also affect customers' behavior. Moreover, the model shows when the prevalence of COVID-19 increases, people tend to buy from online shops, affecting product prices that can change by nearly 50%.

摘要

摘要

在冠状病毒疫情期间,食品供应链受到了疫情干扰的影响。对能源、废弃物和水等与食品相关的因素进行全面审视并加以考虑,能使供应链设计更具成效。在本研究中,基于冠状病毒的流行情况,通过考虑食品-能源-水-废弃物之间的联系,提出了一个可持续食品供应链的多目标模型。存在包括线上和线下渠道的双通道销售模式,其需求函数取决于每个渠道的产品价格以及高风险或低风险地区的冠状病毒流行情况。位于高风险地区的配送中心需要对产品进行消毒,以尽量减少冠状病毒传播。实际上,所提出的数学模型有三个目标函数,第一个目标是在新冠疫情条件下使食品供应利润最大化。另外两个目标不仅要使运输的环境影响最小化,还要使交货时间最短。为了解决这个多目标模型,采用了ε约束法这一有效技术。为了验证所提出的模型,最终在伊朗的一个双通道供应链中实施了该模型。结果表明,食品供应链与新冠疫情下的能源-水-废弃物联系密切,并且还会影响客户行为。此外,该模型显示,当新冠疫情的流行程度增加时,人们倾向于从网上商店购买商品,这会影响产品价格,价格可能会变化近50%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0619/9948801/316b769151d5/10668_2023_3004_Fig1_HTML.jpg

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