Klimko, J.; Oráč, D.; Miškufová, A.; Vonderstein, C.; Dertmann, C.; Sommerfeld, M.; Friedrich, B.; Havlík, T.
A Combined Pyro- and Hydrometallurgical Approach to Recycle Pyrolyzed Lithium-Ion Battery Black Mass Part 2: Lithium Recovery from Li Enriched Slag—Thermodynamic Study, Kinetic Study, and Dry Digestion. Metals 2020, 10, 1558.
https://doi.org/10.3390/met10111558
AMA Style
Klimko J, Oráč D, Miškufová A, Vonderstein C, Dertmann C, Sommerfeld M, Friedrich B, Havlík T.
A Combined Pyro- and Hydrometallurgical Approach to Recycle Pyrolyzed Lithium-Ion Battery Black Mass Part 2: Lithium Recovery from Li Enriched Slag—Thermodynamic Study, Kinetic Study, and Dry Digestion. Metals. 2020; 10(11):1558.
https://doi.org/10.3390/met10111558
Chicago/Turabian Style
Klimko, Jakub, Dušan Oráč, Andrea Miškufová, Claudia Vonderstein, Christian Dertmann, Marcus Sommerfeld, Bernd Friedrich, and Tomáš Havlík.
2020. "A Combined Pyro- and Hydrometallurgical Approach to Recycle Pyrolyzed Lithium-Ion Battery Black Mass Part 2: Lithium Recovery from Li Enriched Slag—Thermodynamic Study, Kinetic Study, and Dry Digestion" Metals 10, no. 11: 1558.
https://doi.org/10.3390/met10111558
APA Style
Klimko, J., Oráč, D., Miškufová, A., Vonderstein, C., Dertmann, C., Sommerfeld, M., Friedrich, B., & Havlík, T.
(2020). A Combined Pyro- and Hydrometallurgical Approach to Recycle Pyrolyzed Lithium-Ion Battery Black Mass Part 2: Lithium Recovery from Li Enriched Slag—Thermodynamic Study, Kinetic Study, and Dry Digestion. Metals, 10(11), 1558.
https://doi.org/10.3390/met10111558