<p>To improve the feasibility and effectiveness of the circular economy for waste electronic products, Gompertz is used to construct a circular economy management model for waste electronic products. The Gompertz model is applied to the circular economy network of waste electronic products to optimize the recycling and reuse of waste electronic products. Firstly, K-medoids algorithm is used to determine the optimal path and central point of reverse logistics network. Then, the Gompertz model is combined to model and analyze the circular economy process of waste electronic products. Empirical analysis was conducted on the waste electronic product circular economy network and the Gompertz-based waste electronic product circular economy management model. It was found that the recall rate of the circular economy network reached 92.4%, and the distribution route was clearer, outperforming other comparison networks. The optimal solution cost of the Gompertz-based waste electronic product circular economy management model was 1.2 × 10<sup>5</sup> RMB, and the transportation time was 5&#xa0;h, which was better than other comparison models. In addition, the coefficient of variation was the smallest, at 2.4 × 10<sup>−2</sup>, with an expert satisfaction score of 8.6 and a practicality score of 8.9, which was higher than other comparison models. In summary, the Gompertz-based circular economy management model performs better than other methods, which can be applied to the recycling and reuse of waste electronic products. The Gompertz-based circular economy management model can promote the development of the circular economy for waste electronic products. This provides a theoretical basis for the feasibility and effectiveness of the circular economy of waste electronic products.</p>

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Circular Economy of Waste Electronic Products Based on Gompertz Model

  • Yunli Guo

摘要

To improve the feasibility and effectiveness of the circular economy for waste electronic products, Gompertz is used to construct a circular economy management model for waste electronic products. The Gompertz model is applied to the circular economy network of waste electronic products to optimize the recycling and reuse of waste electronic products. Firstly, K-medoids algorithm is used to determine the optimal path and central point of reverse logistics network. Then, the Gompertz model is combined to model and analyze the circular economy process of waste electronic products. Empirical analysis was conducted on the waste electronic product circular economy network and the Gompertz-based waste electronic product circular economy management model. It was found that the recall rate of the circular economy network reached 92.4%, and the distribution route was clearer, outperforming other comparison networks. The optimal solution cost of the Gompertz-based waste electronic product circular economy management model was 1.2 × 105 RMB, and the transportation time was 5 h, which was better than other comparison models. In addition, the coefficient of variation was the smallest, at 2.4 × 10−2, with an expert satisfaction score of 8.6 and a practicality score of 8.9, which was higher than other comparison models. In summary, the Gompertz-based circular economy management model performs better than other methods, which can be applied to the recycling and reuse of waste electronic products. The Gompertz-based circular economy management model can promote the development of the circular economy for waste electronic products. This provides a theoretical basis for the feasibility and effectiveness of the circular economy of waste electronic products.