TY - JOUR
T1 - Synergetic interactions improve cobalt leaching from lithium cobalt oxide in microbial fuel cells
AU - Huang, Liping
AU - Li, Tianchi
AU - Liu, Chuan
AU - Quan, Xie
AU - Chen, Lijie
AU - Wang, Aijie
AU - Chen, Guohua
PY - 2013/1
Y1 - 2013/1
N2 - Cobalt leaching from lithium cobalt oxide is a promising reduction process for recovery of cobalt and recycle of spent lithium ion batteries, but suffers from consumption of large amount of reductants and energy, and generation of excess secondary polluted sludge. Thus, effective and environmental friendly processes are needed to improve the existing process limitations. Here we reported microbial fuel cells (MFCs) to effectively reduce Co(III) in lithium cobalt oxide with concomitant energy generation. There was a synergetic interaction in MFCs, leading to a more rapid Co(III) leaching at a rate 3.4 times the sum of rates by conventional chemical processes and no-acid controls. External resistor, solid/liquid ratio, solution conductivity, pH and temperature affected system performance. This study provides a new process for recovery of cobalt and recycle of spent lithium ion batteries with concomitant energy generation from MFCs.
AB - Cobalt leaching from lithium cobalt oxide is a promising reduction process for recovery of cobalt and recycle of spent lithium ion batteries, but suffers from consumption of large amount of reductants and energy, and generation of excess secondary polluted sludge. Thus, effective and environmental friendly processes are needed to improve the existing process limitations. Here we reported microbial fuel cells (MFCs) to effectively reduce Co(III) in lithium cobalt oxide with concomitant energy generation. There was a synergetic interaction in MFCs, leading to a more rapid Co(III) leaching at a rate 3.4 times the sum of rates by conventional chemical processes and no-acid controls. External resistor, solid/liquid ratio, solution conductivity, pH and temperature affected system performance. This study provides a new process for recovery of cobalt and recycle of spent lithium ion batteries with concomitant energy generation from MFCs.
KW - Cathodic reduction
KW - Cobalt leaching
KW - Lithium cobalt oxide
KW - Microbial fuel cell
UR - https://www.webofscience.com/wos/woscc/full-record/WOS:000315545800076
UR - https://openalex.org/W2043230529
UR - https://www.scopus.com/pages/publications/84870526742
U2 - 10.1016/j.biortech.2012.11.011
DO - 10.1016/j.biortech.2012.11.011
M3 - Journal Article
SN - 0960-8524
VL - 128
SP - 539
EP - 546
JO - Bioresource Technology
JF - Bioresource Technology
ER -