Lithium Battery Black Mass

£3,800.00

Lithium Battery Black Mass is a high-value intermediate material recovered from end-of-life lithium-ion batteries, containing concentrated amounts of lithium, nickel, cobalt, manganese, and graphite. It serves as a critical feedstock for hydrometallurgical and pyrometallurgical recycling processes, enabling efficient recovery of strategic battery metals.

Its key competitive advantage lies in its high metal concentration and consistent composition, which improves recovery yields and reduces refining costs. This makes it a preferred input for advanced battery recycling operations seeking scalable, circular supply chain solutions.

Description

  1. Product Overview
    Lithium Battery Black Mass is a high-value intermediate material derived from the mechanical processing of end-of-life lithium-ion batteries. It serves as a critical feedstock for hydrometallurgical and pyrometallurgical recycling operations aimed at recovering strategic metals such as lithium, cobalt, nickel, and manganese. The product enables circular supply chains in the rapidly expanding battery materials sector, supporting both resource security and ESG-driven procurement strategies. Its strategic importance lies in its role as a concentrated secondary resource stream that reduces dependency on primary mining while improving overall material recovery efficiency.
  2. Key Specifications & Technical Characteristics
  • Chemical Composition: Mixed lithium-ion battery active materials including Li, Ni, Co, Mn, graphite, and trace electrolytes
  • Purity Level / Grade: Recovered concentrate (variable metal content depending on feedstock source)
  • Physical Characteristics: Fine black powder, heterogeneous particulate mixture
  • Particle Size: Typically 0–5 mm after shredding and separation processing
  • Density: Bulk density approx. 0.8–1.2 g/cm³ (varies by processing method)
  • Packaging Options: Sealed steel drums, jumbo bags (1MT), or customized bulk packaging
  • Shelf Life: Stable under dry, sealed, and controlled storage conditions
  1. Core Industrial Applications
  • Primary Industries: Battery recycling, non-ferrous metal refining, hydrometallurgical processing, and resource recovery sectors
  • Use Cases: Feedstock for lithium, cobalt, nickel, and manganese extraction; secondary raw material for battery precursor production
  • Performance Advantage: Enables efficient recovery of multiple high-value metals from a single input stream
  • Commercial Benefit: Reduces reliance on virgin ore mining while lowering upstream material sourcing costs
  • Operational Value: Supports scalable recycling operations with consistent input material for refining facilities
  1. Competitive Advantages
  • Quality Consistency: Controlled sourcing from standardized lithium-ion battery waste streams
  • Supply Reliability: Stable and scalable supply aligned with global battery waste growth
  • Logistics Capability: Bulk export-ready packaging optimized for international shipping efficiency
  • Price Competitiveness: Lower cost feedstock compared to primary mined concentrates
  • Sustainability Benefits: Strong ESG alignment through circular economy and reduced mining footprint
  • Technical Support: Full material characterization and assay documentation available for industrial buyers
  1. Commercial & Supply Information
  • Minimum Order Quantity (MOQ): BULK 20MT
  • Loading Capacity: 20–25 MT per 20ft container (depending on packaging configuration and density)

Additional information

Price

per MT

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