循环经济
供应链
供应链网络
还原(数学)
环境经济学
供应链风险管理
供应链管理
基线(sea)
工程类
温室气体
线性规划
网络规划与设计
总成本
业务
服务管理
运筹学
资源(消歧)
降低成本
平衡(能力)
数学优化
产业组织
2019年冠状病毒病(COVID-19)
生命周期评估
经济
供求关系
网络模型
计算机科学
供应网络
运营管理
出处
期刊:Journal of Environmental Informatics
[International Society for Environmental Information Sciences]
日期:2026-01-01
卷期号:47 (1)
标识
DOI:10.3808/jei.202600553
摘要
This study proposes a novel mathematical model for designing a resilient and eco-friendly supply chain network under uncertainty. The proposed model applies the life cycle assessment (LCA) methodology and the cap-and-trade mechanism to decrease carbon emissions. To address demand uncertainty, the chance-constrained programming (CCP) method is utilized. The proposed model is validated by solving thirty-three test problems and comparing the results with a non-resilient model without pandemic considerations. Results demonstrate that the total costs of the resilient model during the pandemic exceed those of the non-resilient model, emphasizing the necessity for decision-makers to balance the benefits of a resilient supply chain network with the associated costs. Furthermore, total emissions of the resilient model are lower, highlighting the environmental advantages of resilience. Comparing circular and linear models, the circular supply chains represent an 8.8% cost reduction and a 12.1% emission reduction that is attributed to the recycling of returned items.
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