New Technological Breakthrough in Lithium Battery Physical Recycling
High-efficiency Physical Separation Process Optimizes Whole Battery Recycling Performance
In response to the rapid expansion of the new energy industry and the increasing volume of retired power batteries, our company has made new technological breakthroughs in the field of waste lithium-ion battery recycling equipment. By optimizing the whole-process mechanical crushing and physical separation system, we have further improved material separation accuracy, equipment stability and overall recycling efficiency, providing more reliable and environmentally friendly technical support for the green development of the battery circular economy.
Waste lithium-ion batteries contain a variety of valuable components, including cathode and anode materials, copper foil, aluminum foil, electrolyte and separators. Among them, lithium and cobalt in cathode materials are core strategic resources, while copper and aluminum current collectors also have high economic recycling value. Traditional recycling methods often cause secondary pollution, low material purity and high resource waste, which restrict the standardized and large-scale development of the battery recycling industry.
Aiming at the pain points of the industry, our R&D team has optimized the structural layout and sorting logic of the complete recycling equipment. The upgraded production line integrates intelligent shredding, fine crushing, magnetic separation, air classification and full dust removal systems. Through pure physical treatment without chemical pollution, the equipment realizes effective separation of positive and negative electrode powder, copper-aluminum foil and diaphragm materials. The whole process is closed and environmentally friendly, which greatly reduces dust emission and environmental impact.
Compared with traditional equipment, the new generation of lithium battery recycling system features higher automation, simpler process flow and more stable operation. The sorted battery powder achieves higher purity, and the comprehensive recovery rate of lithium, cobalt, copper and aluminum materials is significantly improved. The equipment is widely applicable for the recycling and disposal of waste power batteries, soft-pack batteries, battery pole pieces and various lithium battery scraps, with strong market adaptability and engineering practicability.
