BATTERY RECYCLING SYSTEM

Black Mass Roasting System (Pyrolysis)

The Black Mass Roasting Unit is a horizontal cylindrical reactor designed for the advanced thermal processing of black mass materials recovered from end-of-life lithium-ion batteries. It is equipped with an internal helical blade system that ensures…

Black Mass Roasting System (Pyrolysis)

The Black Mass Roasting Unit is a horizontal cylindrical reactor designed for the advanced thermal processing of black mass materials recovered from end-of-life lithium-ion batteries. It is equipped with an internal helical blade system that ensures continuous mixing and controlled movement of the material from top feeding to bottom discharge. The unit operates under an inert gas atmosphere and pyrolytic conditions, with the black mass being heated between 550°C and 650°C. This allows for the removal of organic binders and electrolyte residues, the controlled decomposition of polymers such as PVDF, the reduction of lithium metal oxides to their metallic or more easily leachable forms, and the structural ordering of graphite to optimize downstream separation processes.

 

The roasting process effectively removes organic components like PVDF binders, electrolyte residues, and plastic separators, facilitating the separation and recovery of metal oxides and graphite. The partial reduction of lithium metal oxides improves the efficiency of subsequent hydrometallurgical extraction, while the thermal treatment enhances the crystallinity of graphite, supporting more effective separation and reuse. Controlled processing conditions also minimize the formation of hazardous emissions, contributing to safer and more efficient recycling operations.

 

Designed to operate across a wide temperature range from 400°C to 900°C, the Black Mass Roasting Unit ensures uniform thermal exposure through its integrated helical agitation system while maintaining a stable inert environment. The horizontal cylindrical configuration and internal blade mechanism enhance heat transfer efficiency, promote material homogenization, and ensure smooth material flow throughout the process. Energy released during the decomposition of organic materials further contributes to the system’s overall thermal efficiency. Constructed from corrosion- and high-temperature-resistant alloy steels, the unit offers exceptional operational durability. By optimizing material purity and improving recovery yields, the Black Mass Roasting Unit provides a sustainable and economically viable solution for lithium-ion battery recycling.

Technical Specifications

The Black Mass Roasting System is designed for the thermal pretreatment of lithium-ion battery black mass under an oxygen-free inert atmosphere. The system removes PVDF binders, electrolyte residues and organic compounds while improving the efficiency of downstream hydrometallurgical metal recovery.

Model Processing Capacity Operating Temperature Heating Method Reactor Type Residence Time Installed Power* Approx. Dimensions (W × L × H)
BMR-100 100 kg/h 400–900°C Electric / Gas Horizontal Rotary Reactor 30–90 min 90 kW 1,800 × 5,500 × 2,500 mm
BMR-250 250 kg/h 400–900°C Electric / Gas Horizontal Rotary Reactor 30–90 min 160 kW 2,100 × 6,500 × 2,800 mm
BMR-500 500 kg/h 400–900°C Electric / Gas Horizontal Rotary Reactor 30–90 min 260 kW 2,500 × 8,000 × 3,000 mm
BMR-1000 1,000 kg/h 400–900°C Electric / Gas Horizontal Rotary Reactor 30–120 min 480 kW 3,000 × 10,500 × 3,500 mm
BMR-2000 2,000 kg/h 400–900°C Gas / Hybrid Horizontal Rotary Reactor 45–120 min 780 kW 3,800 × 13,000 × 4,000 mm
BMR-3000 3,000 kg/h 400–900°C Gas / Hybrid Horizontal Rotary Reactor 45–120 min 1,050 kW 4,300 × 15,000 × 4,500 mm
BMR-5000 5,000 kg/h 400–900°C Gas / Hybrid Horizontal Rotary Reactor 60–120 min 1,650 kW 5,000 × 18,000 × 5,200 mm

*Installed power values are indicative and depend on the selected heating system.

Standard Technical Features

  • Continuous horizontal rotary reactor
  • Oxygen-free inert atmosphere operation
  • Uniform material mixing by internal helical blades
  • Operating temperature up to 900°C
  • Adjustable residence time
  • Automatic temperature control
  • PLC & HMI based automation
  • Variable-speed reactor drive
  • Heavy-duty insulated furnace body
  • High-temperature alloy steel construction
  • Continuous material feeding and discharge
  • Compatible with dust collection and off-gas treatment systems
  • Designed for integration with downstream hydrometallurgical plants

Process Connections

  • Black mass feed inlet
  • Inert gas (N₂) inlet
  • Pyrolysis gas outlet
  • Dust extraction connection
  • Roasted material discharge
  • Temperature sensor ports
  • Pressure monitoring connection
  • Emergency vent connection
  • Electrical control panel
  • Sampling and inspection ports

Feed Material Requirements

Parameter Recommended Value
Material Lithium-ion battery black mass
Particle size 0–20 mm
Moisture content <5%
Bulk density 0.6–1.3 t/m³
Feed method Continuous controlled feeding
Atmosphere Nitrogen (N₂) or inert gas
Operating pressure Slight negative pressure