PDF

Current Trends in Spent Portable Lithium Battery Recycling

Zita Takacova, Dusan Orac

2023enrecyclinglithium batterypyrometallurgyhydrometallurgysustainabilitylithium batteriesbattery recyclingcritical metalscircular economy

Abstract

Language:

This paper provides an overview of the current state of the field in spent portable lithium battery recycling at both the research and industrial scales. The possibilities of spent portable lithium battery processing involving pre-treatment (manual dismantling, discharging, thermal and mechanical-physical pre-treatment), pyrometallurgical processes (smelting, roasting), hydrometallurgical processes (leaching followed by recovery of metals from the leachates) and a combination of the above are described. The main metal-bearing component of interest is the active mass or cathode active material that is released and concentrated by mechanical-physical pre-treatment procedures. The metals of interest contained in the active mass include cobalt, lithium, manganese and nickel. In addition to these metals, aluminum, iron and other non-metallic materials, especially carbon, can also be obtained from the spent portable lithium batteries. The work describes a detailed analysis of the current state of research on spent lithium battery recycling. The paper presents the conditions, procedures, advantages and disadvantages of the techniques being developed. Moreover, a summary of existing industrial plants that are focused on spent lithium battery recycling is included in this paper.

Download

Cite This Work

@article{23ab397a-2b66-4743-937f-c20aa3f397ca,
  title={Current Trends in Spent Portable Lithium Battery Recycling},
  author={Zita Takacova and Dusan Orac},
  year={2023},
  language={en}
}
TY  - JOUR
TI  - Current Trends in Spent Portable Lithium Battery Recycling
AU  - Zita Takacova
AU  - Dusan Orac
PY  - 2023
LA  - en
ER  -

Similar Items

Current technologies for recovery of metals from industrial wastes: An overview

Santhana Krishnan, Nor Syahidah Zulkapli

Fast industrialization has increased the demand for heavy metals, while high-grade ore natural reserves are diminishing. Therefore, alternative source

2021enPDF

Extraction of Gold and other precious metals from E waste

Jaising Gadekar

E-Waste is a term used to cover items of all types of electrical and electronic equipment (EEE) and its parts that have been discarded by the owner as

2026enPDF

PRODUCTION OF TECHNOLOGY METALS FROM WASTE ELECTRONICS

Maja Mandić, Jovana Đokić, Nataša Gajić, Jelena Uljarević, Željko Kamberović

The rising criticality of technologically inevitably metals and the continuous growth of the waste electronics promote a scientifi c need for developm

2019enPDF

Design for Recovery of Precious and Base

2026enPDF

THE FUTURE OF ELECTRONIC WASTE RECYCLING

2026enPDF

Treatment of manufacturing scrap TV boar

The leachability tests for manufacturing scrap TV boards (STVB) have indicated the release of metals beyond the limit levels with potential problems f

2026enPDF