The effects of pyrolysis on the composition of the battery cell materials as a function of treatment time and temperature were investigated. Waste of Li-ion batteries was pyrolyzed in a nitrogen atmosphere at 400, 500, 600, and 700 degrees C for 30, 60, and 90 min. Thermodynamic calculations for the carbothermic reduction of active materials LiCoO2, LiMn2O4, and LiNiO2 by graphite and gas products were performed and compared to the experimental data. Ni, Mn, and Co (NMC) cathode materials recovered from spent Li-ion batteries were also studied. The results indicate that the organic compounds and the graphite are oxidized by oxygen from the active material and provide the reductive atmosphere. Such removal of the organic components increases...
A novel process to recover lithium and manganese oxides from a cathode material (LiMn2O4) of spent l...
With an ever-growing demand for critical raw materials for the production of lithium-ion batteries a...
The traditional acid leaching process for releasing valuable metals from spent lithium-ion batteries...
Wide application of NCM (LiNixCoyMnzO2) lithium-ion batteries (LIBs) for electric vehicles indicates...
Full-component pyrolysis has been proven to be a prospective method for the disposal of organic matt...
In a conventional roasting-sorting process to obtain cathode powders, the phase structure of LiMn2O4...
In several industrial Lithium-ion batteries recycling processes, a thermal treatment with oxidative ...
The recycling of spent lithium-ion batteries is in urgent demand, while organic binders hinder the r...
Green cars and electronic products consume lots of lithium-ion batteries (LIBs), and massive spent L...
In this paper, a process based on reducing thermal treatment before acid leaching for the recovery o...
The recovery of cathode and anode materials plays an important role in the recycling process of spen...
Lithium is one of the most valuable elements within lithium-ion batteries, but it is also one of the...
Spent lithium-ion (Li-ion) batteries are considered to be a secondary source of valuable metals, suc...
Spent lithium-ion (Li-ion) batteries are considered to be a secondary source of valuable metals, suc...
The increased demand for Li-ion batteries has prompted the scientific community to improve recycling...
A novel process to recover lithium and manganese oxides from a cathode material (LiMn2O4) of spent l...
With an ever-growing demand for critical raw materials for the production of lithium-ion batteries a...
The traditional acid leaching process for releasing valuable metals from spent lithium-ion batteries...
Wide application of NCM (LiNixCoyMnzO2) lithium-ion batteries (LIBs) for electric vehicles indicates...
Full-component pyrolysis has been proven to be a prospective method for the disposal of organic matt...
In a conventional roasting-sorting process to obtain cathode powders, the phase structure of LiMn2O4...
In several industrial Lithium-ion batteries recycling processes, a thermal treatment with oxidative ...
The recycling of spent lithium-ion batteries is in urgent demand, while organic binders hinder the r...
Green cars and electronic products consume lots of lithium-ion batteries (LIBs), and massive spent L...
In this paper, a process based on reducing thermal treatment before acid leaching for the recovery o...
The recovery of cathode and anode materials plays an important role in the recycling process of spen...
Lithium is one of the most valuable elements within lithium-ion batteries, but it is also one of the...
Spent lithium-ion (Li-ion) batteries are considered to be a secondary source of valuable metals, suc...
Spent lithium-ion (Li-ion) batteries are considered to be a secondary source of valuable metals, suc...
The increased demand for Li-ion batteries has prompted the scientific community to improve recycling...
A novel process to recover lithium and manganese oxides from a cathode material (LiMn2O4) of spent l...
With an ever-growing demand for critical raw materials for the production of lithium-ion batteries a...
The traditional acid leaching process for releasing valuable metals from spent lithium-ion batteries...