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Bioleaching of Post-consumer LiCoO2 Batteries Using Aspergillus Niger

Authors
Ilyas, SadiaSrivastava, Rajiv RanjanKim, Hyunjung
Issue Date
Feb-2024
Publisher
Springer International Publishing AG
Keywords
Fungi leaching; Metabolic acid; One- and two-step bioleaching; Resource circulation; Spent Li-ion battery
Citation
Minerals, Metals and Materials Series, pp 171 - 179
Pages
9
Indexed
SCOPUS
Journal Title
Minerals, Metals and Materials Series
Start Page
171
End Page
179
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/219372
DOI
10.1007/978-3-031-50236-1_18
ISSN
2367-1181
2367-1696
Abstract
Soaring demands for rechargeable Li-ion batteries in portable electronics and electric vehicles drive the unprecedented increase in post-consumer waste generation. Additionally, to fill the gaps between supply and demand for the critical elements in electrode materials, the recycling of waste batteries has become essential. Traditional recycling using high-energy smelting and high-reagent leaching processes generates harmful waste, hence, a new biotechnological process is being searched as a green alternative. Therefore, this study discloses a bioleaching option of LiCoO2 cathode powder using fungi, Aspergillus niger as the source of metabolic excreted organic acids lixiviant. The results of one-step bioleaching yielded 96% (w/w) lithium, whereas this efficiency was ~ 94% (w/w) with two-step bioleaching of cathode powder fed at a pulp density of 5% (w/v). The efficiency of cobalt in both types of fungal bioleaching was below 1% (w/w). Thus, the study demonstrates the potential of Aspergillus niger in lithium extraction from cathode powder of the battery waste, and the results will further be utilized to improve the design of bioleaching protocols for environmentally friendly recovery of both metals from LiCoO2 powder.
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Kim, Hyunjung
COLLEGE OF ENGINEERING (DEPARTMENT OF EARTH RESOURCES AND ENVIRONMENTAL ENGINEERING)
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