TY - JOUR
T1 - Removal of impurity Metals as Phosphates from Lithium-ion Battery leachates
AU - Klaehn, John R.
AU - Shi, Meng
AU - Diaz, Luis A.
AU - Molina, Daniel E.
AU - Reich, Sabrina M.
AU - Palasyuk, Olena
AU - Repukaiti, Reyixiati
AU - Lister, Tedd E.
N1 - Funding Information:
This work was supported by the Critical Materials Institute , an Energy Innovation Hub funded by the US Department of Energy , Office of Energy Efficiency and Renewable Energy , Advanced Materials and Manufacturing Technologies Office under Grant AL-12-350-001 . The work at Idaho National Laboratory was conducted under contract DE-AC07-05ID14517. We would like to thank Richard Schutte and Anthony Rogers from Cirba Solutions by providing the LIBBM from their recycling center. The authors also wish to express their appreciation to Dr. Kunal Mondal and Timothy Yoder (Idaho National Laboratory) for assistance in the XRD and SEM analyses.
Publisher Copyright:
© 2023 Elsevier B.V.
PY - 2023/3
Y1 - 2023/3
N2 - Recovery of critical materials from end-of life (EOL) lithium-ion batteries (LIB) is gaining interest as demands for materials grows. Hydrometallurgical processes start with an intermediate product known as black mass which contains critical materials of interest (Co, Ni, Li, and graphite) as well as impurities such as Cu, Al, and Fe. These impurities are deleterious to downstream separation processes, as well as impact functionality of the final products. These impurities effectively compete with most solvent extraction (SX) and metal recovery processes to diminish the overall yields of the desired materials. In this work, a process flowsheet is presented where a previously reported electrochemical leaching (ECL) process is followed by selective precipitation using diammonium hydrogen phosphate (DAP) to remove Cu, Al, and Fe from LIB leachate solutions. The electrochemical leach process removes Cu and produces a pH-adjusted leachate, ca. pH 2, without requiring an extra Cu extraction step. The addition of the precipitant DAP to leachate by slightly adjusting the pH to 3–4 at 45 °C, precipitates 95–99% of Al and Fe as their phosphates and the leachate retains >95% of Co, Ni and Li. After the filtration of phosphate impurities, the solution is ready for further processing, such as SX. As an unexpected result from the leachate processing, 20–30% of the Ni and Co co-crystalize as the double salt after cooling to room temperature, which could provide a shorter route to their recovery.
AB - Recovery of critical materials from end-of life (EOL) lithium-ion batteries (LIB) is gaining interest as demands for materials grows. Hydrometallurgical processes start with an intermediate product known as black mass which contains critical materials of interest (Co, Ni, Li, and graphite) as well as impurities such as Cu, Al, and Fe. These impurities are deleterious to downstream separation processes, as well as impact functionality of the final products. These impurities effectively compete with most solvent extraction (SX) and metal recovery processes to diminish the overall yields of the desired materials. In this work, a process flowsheet is presented where a previously reported electrochemical leaching (ECL) process is followed by selective precipitation using diammonium hydrogen phosphate (DAP) to remove Cu, Al, and Fe from LIB leachate solutions. The electrochemical leach process removes Cu and produces a pH-adjusted leachate, ca. pH 2, without requiring an extra Cu extraction step. The addition of the precipitant DAP to leachate by slightly adjusting the pH to 3–4 at 45 °C, precipitates 95–99% of Al and Fe as their phosphates and the leachate retains >95% of Co, Ni and Li. After the filtration of phosphate impurities, the solution is ready for further processing, such as SX. As an unexpected result from the leachate processing, 20–30% of the Ni and Co co-crystalize as the double salt after cooling to room temperature, which could provide a shorter route to their recovery.
KW - Aluminum phosphate
KW - Diammonium phosphate
KW - Double salts
KW - Iron phosphate
KW - Lithium-ion battery leachate
KW - Metal impurities removal
UR - https://www.scopus.com/pages/publications/85149765213
UR - https://www.mendeley.com/catalogue/7d3694b1-83f5-35fc-8738-ee8e5de4fb3b/
U2 - 10.1016/j.hydromet.2023.106041
DO - 10.1016/j.hydromet.2023.106041
M3 - Article
AN - SCOPUS:85149765213
SN - 0304-386X
VL - 217
JO - Hydrometallurgy
JF - Hydrometallurgy
M1 - 106041
ER -