Environmental ScienceEngineeringMaterials Science

Juner Zhu, I. Mathews, Dongsheng Ren, Wei Li, Daniel A. Cogswell, Bobin Xing, Tobias Sedlatschek, S. Kantareddy, Mengchao Yi, Tao Gao, Yong Xia, Qing Zhou, T. Wierzbicki, M. Bazant

2021.8.18Cell Reports Physical Science

DOI: 10.1016/j.xcrp.2021.100537

Abstract

Summary E-mobility, especially electric cars, has been scaling up rapidly because of technological advances in lithium-ion batteries (LIBs). However, LIBs degrade significantly with service life cycles. With the current increase in the adoption of electric vehicles (EVs), a large volume of retired LIB packs, which can no longer provide satisfactory performance to power an EV, will soon appear. Various end-of-life (EOL) options are under development, such as recycling and recovery. Recently, stakeholders have become more confident that giving the retired batteries a second life by reusing them in less-demanding applications, such as stationary energy storage, may create new value pools in the energy and transportation sectors. In this perspective, we evaluate the feasibility of second-life battery applications, from economic and technological perspectives, based on the latest industrial reports and technical publications.

Citation format

ZHU, Juner, et al. End-of-life or second-life options for retired electric vehicle batteries. Cell Reports Physical Science, 2021.