Circularity of lithium-ion battery materials in electric vehicles
收藏DataONE2023-06-27 更新2024-06-08 收录
下载链接:
https://search.dataone.org/view/sha256:82c36514999de05cd92ba7a8c90ac7ce6f3788abacacb59dfbcb75cbe5596071
下载链接
链接失效反馈官方服务:
资源简介:
Batteries have the potential to significantly reduce greenhouse gas emissions from on-road transportation. However, environmental and social impacts of producing lithium-ion batteries, particularly cathode materials, and concerns over material criticality are frequently highlighted as barriers to widespread electric vehicle adoption. Circular economy strategies, like reuse and recycling, can reduce impacts and secure regional supplies. To understand the potential for circularity, we undertake a dynamic global material flow analysis of pack-level materials that includes scenario analysis for changing battery cathode chemistries and electric vehicle demand. Results are produced regionwise and through the year 2040 to estimate the potential global and regional circularity of lithium, cobalt, nickel, manganese, iron, aluminum, copper, and graphite, although the analysis is focused on the cathode materials. Under idealized conditions, retired batteries could supply 60% of cobalt, 53% of lith..., This data was collected through various sources, including from EV Volumes, International Energy Agency, Argonne National Lab, and published articles. A model was created with R to process the data. , R is required to open the models.
创建时间:
2025-07-21



