we are a lithium battery recycling plant and machine manufacturer.

— OEM ODM-SINCE 1995

Lithium-ion Battery Pyrolysis Furnace

A lithium-ion battery pyrolysis furnace, also known as a high-temperature lithium-ion battery pyrolysis furnace, is a key piece of equipment for the pyrolysis and recycling of lithium-ion batteries. It combines heat treatment and physical sorting equipment, achieving efficient lithium battery degradation for easier subsequent processing.

Raw Materials:Cylindrical battery, steel-cased batteries, portable batteries, iron-cased lithium batteries, positive and negative electrode materials, etc.
Final Products: Black mass, copper granules, aluminum granules, steel shells
Main Part: Lithium battery pyrolysis furnace, shredder, crusher, magnetic separator, air-gravity separator, exhaust gas treatment system etc.

Product Description

With the development of modern technology, traditional lithium battery recycling techniques face challenges, but the emergence of lithium battery pyrolysis furnaces undoubtedly offers a new and innovative approach. This equipment breaks through the limitations of traditional processing methods, solving the problem of waste lithium battery disposal in a more environmentally friendly and efficient way. The core of lithium-ion battery recycling lies in combining thermal treatment and physical sorting equipment to ensure the safe handling of undischarged batteries and the effective recovery of metal resources. Such recycling production lines can improve material reuse rates while reducing safety risks and harmlessly decomposing organic matter. High-temperature pyrolysis technology for lithium batteries has become a key step in the green recycling of waste lithium batteries and is suitable for the large-scale processing of power batteries and various types of waste lithium-ion batteries.

This process retains valuable metal elements (such as lithium, cobalt, and nickel) to the maximum extent for subsequent recycling. This process achieves resource recycling and avoids environmental pollution caused by waste. Meanwhile, the substances produced during pyrolysis can be further utilized, maximizing resource utilization.

Our lithium battery pyrolysis furnace has 24-hour continuous production capabilities. Whether it is large-scale industrial production or small-scale experimental research, this equipment can meet your pursuit of efficient production. Its emergence makes the production process more compact and efficient, bringing more convenience and benefits to our production.

Working principle of lithium battery pyrolysis furnace

The lithium battery pyrolysis furnace uses advanced pyrolysis technology to efficiently pyrolyze components such as electrolytes, binders, and plastic separators in lithium batteries. This pyrolysis recycling technology involves the pyrolysis reaction of organic matter (such as electrolytes and binders) in waste lithium batteries under high-temperature heating in an oxygen-free environment.

Features and advantages of lithium battery pyrolysis recycling process

1. High-Efficiency Pyrolysis

High-temperature pyrolysis technology thoroughly decomposes organic matter in lithium batteries under oxygen-free conditions, improving resource recovery rates. The recovery efficiency of metal elements is particularly high.

2. Environmentally Compliant

Waste gas is purified before emission, meeting environmental requirements. The organic waste gas generated during pyrolysis decomposes and produces heat, which can be recycled and reused in other process stages, achieving efficient energy utilization.

3. Safe and Reliable

Decomposition in an oxygen-free or low-oxygen environment effectively eliminates the risk of combustion or explosion caused by residual charge. Safety monitoring devices monitor equipment operation status in real time, ensuring operator safety.

4. Highly Automated

The control system uses PLC automated monitoring and management, reducing the risk of manual operation and improving production efficiency.

5. High Applicability

Suitable for recycling and processing various types of waste lithium batteries, including lithium iron phosphate (LFP), ternary lithium (NMC), and lithium cobalt oxide (LCO) batteries, with broad application prospects.

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