Govindan Kannan, Nasr Arash Khalili, Mostafazadeh Parisa, Mina Hassan
China Institute of FTZ Supply Chain, Shanghai Maritime University, Shanghai 201306, China.
Yonsei Frontier Lab, Yonsei University, Seoul, South Korea.
Comput Ind Eng. 2021 Dec;162:107668. doi: 10.1016/j.cie.2021.107668. Epub 2021 Sep 16.
Municipal solid waste (MSW) directly impacts community health and environmental degradation; therefore, the management of MSW is crucial. Medical waste is a specific type of MSW which is generally divided into two categories: infectious and non-infectious. Wastes generated by coronavirus disease 2019 (COVID-19) are classified among infectious medical wastes; moreover, these wastes are hazardous because they threaten the environment and living organisms if they are not appropriately managed. This paper develops a bi-objective mixed-integer linear programming model for medical waste management during the COVID-19 outbreak. The proposed model minimizes the total costs and risks, simultaneously, of the population's exposure to pollution. This paper considers some realistic assumptions for the first time, including location-routing problem, time window-based green vehicle routing problem, vehicles scheduling, vehicles failure, split delivery, population risk, and load-dependent fuel consumption to manage both infectious and non-infectious medical waste. We apply a fuzzy goal programming approach for solving the proposed bi-objective model, and the efficiency of the proposed model and solution approach is assessed using data related to 13 nodes of medical waste production in a location west of Tehran.
城市固体废物(MSW)直接影响社区健康和环境退化;因此,城市固体废物的管理至关重要。医疗废物是城市固体废物的一种特殊类型,通常分为两类:传染性和非传染性。2019冠状病毒病(COVID-19)产生的废物属于传染性医疗废物;此外,这些废物具有危险性,因为如果管理不当,它们会威胁环境和生物。本文针对COVID-19疫情期间的医疗废物管理开发了一个双目标混合整数线性规划模型。所提出的模型同时最小化了总成本和人群接触污染的风险。本文首次考虑了一些现实假设,包括选址路径问题、基于时间窗的绿色车辆路径问题、车辆调度、车辆故障、分批配送、人群风险以及与负载相关的燃料消耗,以管理传染性和非传染性医疗废物。我们应用模糊目标规划方法来求解所提出的双目标模型,并使用德黑兰以西一个地区13个医疗废物产生节点的数据评估所提出模型和求解方法的效率。