Study of the Development Status and Potential Solutions for Improving the Logistics of Power Battery Reverse Logistics
DOI:
https://doi.org/10.54691/45wsrg89Keywords:
Power Battery; Reverse Logistics; Ladder Utilisation.Abstract
In recent years, there has been a notable surge in the production and sales of new energy vehicles, driven by a confluence of factors including economic growth, enhanced environmental consciousness, and the growing awareness of the scarcity of natural resources. This growth has been facilitated by the joint efforts of the government and vehicle manufacturers. As a central component of new energy vehicles, the market demand for power batteries is also expanding rapidly. In consideration of the warranty period of automobiles, the peak elimination of power batteries is imminent. In light of the current state of automotive power battery recycling reverse logistics and the associated challenges, this paper presents a series of proposed measures and recommendations with the aim of fostering the advancement of power battery recycling reverse logistics. In the context of the circular economy, these suggestions will assist the power battery recycling industry in achieving a more rational and efficient planning of investment decisions, facility configuration, network layout and human resource allocation. Furthermore, they will provide a basis for the government to introduce encouraging policies.
Downloads
References
Liu, J. & Guo, Y. A framework for the design of reverse logistics networks for electric vehicle power batteries, taking into account the inherent uncertainty associated with such systems. Journal of Shanghai Maritime University, 2021, 42(02), pp. 96–102.
Hao Hao, Zhang Ji, Zhang Qian. This article presents a series of measures designed to facilitate the advancement of reverse logistics for power battery recycling in China within the context of a circular economy. Ecological Economy, 2020, 36(1), pp. 86–91.
YANG Yuxiang, GUAN Qian, YU Yanna, et al. A sustainable reverse logistics network optimisation model under a dual-channel power battery recycling mode. Computer Integrated Manufacturing Systems, 2023, 29(07): 2461-2473.
GAN Junwei, KONG Ruixiao. This paper presents an overview of the current research and trends in reverse logistics network design for end-of-life vehicles. Modern Manufacturing Engineering, 2022, 12(1), pp. 131–143.
LI Shanshan, HAN Yangjie, ZHAO Yingzi, et al. The design of a reverse logistics network for express packaging in an uncertain environment. Journal of Chongqing Normal University (Natural Science Edition), 2022, 39(1), pp. 100–107.
Downloads
Published
Issue
Section
License

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.