首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Reverse Logistics Network Design for Effective Management of Medical Waste in Epidemic Outbreaks: Insights from the Coronavirus Disease 2019 (COVID-19) Outbreak in Wuhan (China)
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Reverse Logistics Network Design for Effective Management of Medical Waste in Epidemic Outbreaks: Insights from the Coronavirus Disease 2019 (COVID-19) Outbreak in Wuhan (China)

机译:有效管理疫情暴发中医疗废物的逆向物流网络设计:武汉(中国)2019年冠状病毒病(COVID-19)爆发的启示

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摘要

The outbreak of an epidemic disease may pose significant treats to human beings and may further lead to a global crisis. In order to control the spread of an epidemic, the effective management of rapidly increased medical waste through establishing a temporary reverse logistics system is of vital importance. However, no research has been conducted with the focus on the design of an epidemic reverse logistics network for dealing with medical waste during epidemic outbreaks, which, if improperly treated, may accelerate disease spread and pose a significant risk for both medical staffs and patients. Therefore, this paper proposes a novel multi-objective multi-period mixed integer program for reverse logistics network design in epidemic outbreaks, which aims at determining the best locations of temporary facilities and the transportation strategies for effective management of the exponentially increased medical waste within a very short period. The application of the model is illustrated with a case study based on the outbreak of the coronavirus disease 2019 (COVID-19) in Wuhan, China. Even though the uncertainty of the future COVID-19 spread tendency is very high at the time of this research, several general policy recommendations can still be obtained based on computational experiments and quantitative analyses. Among other insights, the results suggest installing temporary incinerators may be an effective solution for managing the tremendous increase of medical waste during the COVID-19 outbreak in Wuhan, but the location selection of these temporary incinerators is of significant importance. Due to the limitation on available data and knowledge at present stage, more real-world information are needed to assess the effectiveness of the current solution.
机译:流行病的爆发可能对人类造成重大影响,并可能进一步导致全球危机。为了控制流行病的传播,通过建立临时的逆向物流系统对迅速增加的医疗废物进行有效管理至关重要。但是,目前还没有研究针对流行病暴发期间处理医疗废物的流行病逆向物流网络的设计,如果不当处理,这可能会加速疾病的传播,并给医护人员和患者带来重大风险。因此,本文针对流行病暴发的逆向物流网络设计提出了一种新颖的多目标多周期混合整数程序,其目的是确定临时设施的最佳位置以及有效管理区域内呈指数增长的医疗废物的运输​​策略。很短的时间。通过基于中国武汉市冠状病毒病2019(COVID-19)爆发的案例研究说明了该模型的应用。即使在进行本研究时,未来COVID-19传播趋势的不确定性很高,但仍可以根据计算实验和定量分析获得一些一般性政策建议。在其他见解中,研究结果表明,在武汉市发生COVID-19暴发期间,安装临时焚烧炉可能是管理医疗废物大量增加的有效解决方案,但这些临时焚烧炉的位置选择非常重要。由于现阶段对可用数据和知识的限制,需要更多的实际信息来评估当前解决方案的有效性。

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