Place of Origin:
China
Brand Name:
Hengyang
Certification:
ISO9001
Model Number:
HC-398
Waste Lithium-ion battery breaking and separation recycling system
The waste lithium-ion battery are mainly from the electrical vehicles, like the two wheels or the four wheels. The lithium battery generally has two types LiFePO4 as the anode and LiNi0.3Co0.3Mn0.3O2.
Our machine can process the lithium-ion LiFePO4 as the anode and LiNi0.3Co0.3Mn0.3O2. battery. The layout like the below:
Waste lithium-ion battery pack breaking lines adopts manual work and high level of automation.
After breaking, crushing, separation and other continuous process, we could get the diaphragm, shell, copper foil, aluminum foil, anode & cathode powder and other products.
The process is based on market demand, resource regeneration and benefit maximization. Fully efficient recovery of single lithium batteries, leftover bits of materials can be achieved.
The all discharge is standard after the waste water and off-gas are treated.
The ecnomical output data:
NO | Main products | Capacity or yield (%) | Recycling rate(%) |
1 | Cathode and anode | 47.47 | >97-98.5 |
2 | Copper | 11.76 | >98 |
3 | Aluminum | 3.91 | >98 |
4 | Electrolyte organic solvent | 12.73 | >97 |
5 | diaphragm | 5.92 | >84.5 |
6 | Plastic | 4.01 | >98 |
7 | Pile head and iron shell | 12.03 | >98 |
The technical parameter and consumption of the lithium-ion battery recycling line
NO. | Item | Unit | Parameter |
1 | The capacity of lithium-ion recycling line | T/h | 0.2-4.0 |
2 | The handling the battery diagonal | mm | 420 |
3 | Total installation volume | kW | 1300 |
4 | Electricity consumption | kWH/t | 426 |
5 | Water consumption | M3/t | 0.125 |
6 | Waste water recycling use | % | >96 |
7 | Natural gas | M3/t | 26.7 |
8 | Auxiliary material consumption | USD/t | 2.5 |
9 | Directly processing cost | USD/t | 72 |
Features:
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