Contact
Address
No. 266 Tianshan Street, National High tech Development Zone, Shijiazhuang City, Hebei Province
Lithium battery recycling and utilization device
(1) Preparation of battery grade lithium carbonate using lithium ore and lithium mica as raw materials; (2) In the treatment of new energy waste batteries, the chemical substances inside the batteries can be effectively separated and recycled, thereby achieving the reuse of resources.
New energy desulfurization system
(1) Preparation of battery grade lithium carbonate using lithium ore and lithium mica as raw materials; (2) In the treatment of new energy waste batteries, the chemical substances inside the batteries can be effectively separated and recycled, thereby achieving the reuse of resources.
Preparation of battery-grade lithium carbonate using lithium mica as raw material
(1) Preparation of battery grade lithium carbonate using lithium ore and lithium mica as raw materials; (2) In the treatment of new energy waste batteries, the chemical substances inside the batteries can be effectively separated and recycled, thereby achieving the reuse of resources.
Carbonization pyrolysis process and equipment
(1) Preparation of battery grade lithium carbonate using lithium ore and lithium mica as raw materials; (2) In the treatment of new energy waste batteries, the chemical substances inside the batteries can be effectively separated and recycled, thereby achieving the reuse of resources.
High-purity battery-grade lithium carbonate purification device
(1) Preparation of battery grade lithium carbonate using lithium ore and lithium mica as raw materials; (2) In the treatment of new energy waste batteries, the chemical substances inside the batteries can be effectively separated and recycled, thereby achieving the reuse of resources.
Carbonization pyrolysis process and equipment
Preparation of battery grade lithium carbonate using lithium ore and lithium mica as raw materials.
In the treatment of new energy waste batteries, the chemical substances inside the batteries can be effectively separated and recycled, thereby achieving the reuse of resources.
Carbonization pyrolysis process and equipment
Preparation of battery grade lithium carbonate using lithium ore and lithium mica as raw materials.
In the treatment of new energy waste batteries, the chemical substances inside the batteries can be effectively separated and recycled, thereby achieving the reuse of resources.
Carbonization pyrolysis process and equipment
Preparation of battery grade lithium carbonate using lithium ore and lithium mica as raw materials.
In the treatment of new energy waste batteries, the chemical substances inside the batteries can be effectively separated and recycled, thereby achieving the reuse of resources.
Carbonization pyrolysis process and equipment
Preparation of battery grade lithium carbonate using lithium ore and lithium mica as raw materials.
In the treatment of new energy waste batteries, the chemical substances inside the batteries can be effectively separated and recycled, thereby achieving the reuse of resources.
Carbonization pyrolysis process and equipment
Preparation of battery grade lithium carbonate using lithium ore and lithium mica as raw materials.
In the treatment of new energy waste batteries, the chemical substances inside the batteries can be effectively separated and recycled, thereby achieving the reuse of resources.
Carbonization pyrolysis process and equipment
Preparation of battery grade lithium carbonate using lithium ore and lithium mica as raw materials.
In the treatment of new energy waste batteries, the chemical substances inside the batteries can be effectively separated and recycled, thereby achieving the reuse of resources.
Carbonization pyrolysis process and equipment
Preparation of battery grade lithium carbonate using lithium ore and lithium mica as raw materials.
In the treatment of new energy waste batteries, the chemical substances inside the batteries can be effectively separated and recycled, thereby achieving the reuse of resources.