循环经济下食品供应链中逆向物流绩效评估:基于系统动力学

Performance evaluation of reverse logistics in food supply chains in a circular economy using system dynamics

BUSINESS STRATEGY AND THE ENVIRONMENT · 2020
被引 153
人大 A-ABS 3

中文导读

构建系统动力学模型预测食品供应链中逆向物流活动的环境排放(CO2、NOx、SO2、PM),通过案例验证,发现逆向物流能减少食物浪费并改善绿色绩效。

Abstract

Abstract Supply chains are composed of multiple stakeholders who have complex interrelationships. In addition, the forward and reverse flow of materials, information, human resources, and finance occurs among different stakeholders in closing the loop of supply chains. Reverse logistics (RL) activities are gaining importance in terms of size and quantity due to both economic and environmental concerns. These flows in RL in supply chains are both dynamic and complex in nature. Further, the environmental impact of RL activities has barely been considered in holistic way in available literature. In this study, a system dynamics model has been developed to analyze and comprehend the green performance of RL activities by predicting the environmental impact of RL activities. The proposed model has been validated by a case study in the context of a food supply chain. In the company where the case study is carried out, the environmental effects of RL activities have been analyzed. These activities in a food supply chain in terms of CO 2 (carbon dioxide), NO x (nitrogen oxide), SO 2 (sulfur dioxide), and PM (particulate matter) emissions have been predicted through a system dynamics model for the years 2020 to 2024. The proposed methodology is applied in a food supply context, a major player in retail business, especially in emerging economies. According to our findings, the RL activities in a food supply chain can significantly contribute to green performance management by minimizing food waste and loss; hence, the environmental impacts of such activities should be closely examined from a managerial perspective.

供应链管理循环经济逆向物流食品供应链系统动力学