Lithium Iron Phosphate Residue

£500.00

Lithium Iron Phosphate (LFP) Residue is a high-value industrial byproduct derived from lithium battery manufacturing and recycling processes, containing recoverable lithium, iron, and phosphate compounds. It is widely used as a feedstock for material recovery, refining operations, and secondary production in the energy storage and chemical industries.

Its key value lies in enabling cost-efficient resource recovery while supporting circular economy initiatives and reducing raw material dependency. With consistent composition control and scalable supply availability, it offers a strategic advantage for processors seeking high-yield lithium reclamation and sustainable input sourcing.

Description

  1. Product Overview
    Lithium Iron Phosphate (LFP) Residue is a high-value industrial byproduct derived from lithium-ion battery manufacturing and recycling processes. It contains recoverable lithium, iron, and phosphate compounds, making it a strategically important secondary raw material for advanced metal recovery and circular battery supply chains. This material is primarily used in hydrometallurgical and pyrometallurgical recovery operations to extract critical battery-grade elements. Its value lies in enabling cost-efficient resource recovery while supporting sustainable and ESG-driven supply chain strategies in the global energy storage market.
  2. Key Specifications & Technical Characteristics
  • Chemical Composition: Lithium (Li), Iron (Fe), Phosphate (PO₄) compounds with trace carbon and binder residues
  • Purity Level: Industrial recovery grade (varies by batch; typically 10–60% recoverable Li content equivalent)
  • Physical Form: Fine powder / granular slurry residue
  • Color: Dark gray to black
  • Particle Size: Typically 10–200 microns (process-dependent)
  • Bulk Density: Approx. 0.8–1.5 g/cm³
  • Packaging Options: Sealed industrial drums, supersacks (500–1000 kg), or bulk liner containers
  • Shelf Life: Stable under dry, sealed storage conditions for up to 12 months
  1. Core Industrial Applications
  • Battery recycling and lithium recovery plants for extraction of lithium salts and precursors
  • Chemical processing industries producing lithium carbonate and lithium hydroxide
  • Metallurgical recovery facilities focused on iron and phosphate reutilization
  • Energy storage supply chain integration for circular economy operations
  • Preferred over virgin feedstock in recovery systems due to lower sourcing cost and reduced environmental impact, while maintaining high metal recovery efficiency under optimized processing conditions
  1. Competitive Advantages
  • High recoverable lithium content enabling strong downstream yield economics
  • Consistent batch quality supporting stable industrial processing performance
  • Secure and scalable supply from battery manufacturing and recycling streams
  • Cost advantage versus virgin lithium-bearing raw materials
  • Strong alignment with ESG and circular economy requirements
  • Technical documentation and material analysis reports available per shipment
  • Flexible logistics solutions supporting global bulk chemical and recycling operations
  1. Commercial & Supply Information
  • Minimum Order Quantity (MOQ): BULK 20MT
  • Loading Capacity: 20–22 MT per 20FT container (depending on packaging density and regional shipping regulations)

Additional information

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per MT

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