Dry Processing Technology Utilization
Fully Automated Live Battery Crushing Line
Live battery cell crushing
It enables batteries to be directly processed by the crushing equipment without the need for prior discharge. This method significantly increases processing efficiency.
Fully automatic production line
The entire battery cell crushing line is automated, enabling safe and rapid production.
Compatibility with various battery cell types
The crushing equipment is compatible with various types of battery cells, offering exceptional flexibility without the need for additional adaptations to the production line.
Custom-Designed Crushing Unit
A specially designed crusher achieves efficient crushing of battery cells, reducing powder residue and preventing the compaction of battery materials, ensuring a smoother recycling process.
Precise control of disposal environment
Precise environmental control in disposal processes ensures oxygen levels are managed and material temperatures are reduced, mitigating the risk of fire during live battery crushing.
Comprehensive Safety Facility Support
Comprehensive safety facilities are in place, with the entire line equipped with over ten highly sensitive early-warning sensors and complemented by a liquid nitrogen system to ensure production line safety.
Advantages
-In black powder preliminary sorting
Integrating Multiple Processes
The production line integrates various processes such as magnetic separation, gravity separation, and air separation, achieving efficient separation of metal impurities like copper, iron, and aluminum. This enriches the variety of by-products to the greatest extent, further extending the value chain.
RCO+ Activated Carbon
RCO=Regenerative Catalytic Oxidation
Organic gases released from the pyrolysis of separators and binders are further decomposed through the RCO and absorbed by activated carbon. This integrated approach enhances the efficiency of treating and purifying exhaust gases, effectively reducing environmental impact by breaking down harmful organic compounds and capturing them using activated carbon.
Low-Temperature Decomposition and Carbonization
Through low-temperature calcination under nitrogen protection, which enhances safety, the process effectively reduces the oxidation of copper and aluminum. Consequently, the resulting black powder has a lower content of copper and aluminum impurities, ensuring a higher purity product.
