Management Sciences and Marketing Division, Alliance Manchester Business School, The University of Manchester, Booth Street West, Manchester, M15 6PB, UK.
Mitie Group PLC, UK.
J Environ Manage. 2024 Aug;366:121914. doi: 10.1016/j.jenvman.2024.121914. Epub 2024 Jul 22.
Food Supply Chains (FSCs) have become increasingly complex with the average distance between producers and consumers rising considerably in the past two decades. Consequently, FSCs are a major source of carbon emissions and reducing transportation costs a major challenge for businesses. To address this, we present a mathematical model to promote the three core dimensions of sustainability (economic, environmental, and social), based on the Mixed-Integer Linear Programming (MILP) method. The model addresses the environmental dimension by intending to decrease the carbon emissions of different transport modes involved in the logistics network. Several supply chain network characteristics are incorporated and evaluated, with a consideration of social sustainability (job generation from operating various facilities). The mathematical model's robustness is demonstrated by testing and deploying it to a variety of problem instances. A real-life case study (Norwegian salmon supply chain) helps to comprehend the model's applicability. To understand the importance of optimizing food supply networks holistically, the paper investigates the impact of multiple supply chain permutations on total cost, demand fluctuations and carbon emissions. To address fluctuations in retail demand, we undertook sensitivity analysis for variations in demand, enabling the proposed model to revamp Norway's salmon supply chain network. Subsequently, the results are thoroughly examined to identify managerial implications.
食品供应链 (FSCs) 在过去二十年中变得越来越复杂,生产者和消费者之间的平均距离大大增加。因此,FSCs 是碳排放的主要来源,降低运输成本是企业面临的主要挑战。为了解决这个问题,我们提出了一个基于混合整数线性规划 (MILP) 方法的数学模型,以促进可持续性的三个核心维度(经济、环境和社会)。该模型通过旨在减少物流网络中涉及的不同运输方式的碳排放量来解决环境方面的问题。模型考虑了社会可持续性(从运营各种设施中创造就业机会),并纳入和评估了几个供应链网络的特点。该数学模型的稳健性通过对各种问题实例的测试和部署得到了证明。一个现实生活中的案例研究(挪威三文鱼供应链)有助于理解模型的适用性。为了全面了解优化食品供应网络的重要性,本文研究了多种供应链排列对总成本、需求波动和碳排放的影响。为了应对零售需求的波动,我们对需求变化进行了敏感性分析,使所提出的模型能够调整挪威三文鱼供应链网络。随后,对结果进行了深入检查,以确定管理意义。