Lithium Nickel Cobalt Manganese Oxide Residue

£2,000.00

Lithium Nickel Cobalt Manganese Oxide Residue is a high-value intermediate byproduct derived from advanced lithium-ion battery cathode manufacturing and recycling streams. It serves as a critical feedstock for metal recovery processes targeting lithium, nickel, cobalt, and manganese extraction for reuse in energy storage and industrial applications.

Its primary advantage lies in its enriched multi-metal composition, enabling efficient downstream refining with higher recovery yields and reduced processing complexity. Consistent chemical profile and scalable availability make it a cost-effective input for circular battery supply chains and next-generation cathode material production.

Description

  1. Product Overview
    Lithium Nickel Cobalt Manganese Oxide Residue is a high-value intermediate by-product derived from advanced lithium-ion battery material processing and cathode manufacturing streams. It is primarily used for metal recovery, refining, and reprocessing into battery-grade active materials, supporting circular supply chains in the energy storage sector. The material offers significant strategic value by enabling cost-efficient recovery of critical metals such as lithium, nickel, cobalt, and manganese. In a rapidly expanding battery and EV market, it serves as a crucial feedstock for sustainable resource optimization and supply security.
  2. Key Specifications & Technical Characteristics
  • Chemical composition: Mixed lithium, nickel, cobalt, manganese oxides (Li-Ni-Co-Mn-O system residue)
  • Purity level/grade: Industrial recycling/intermediate recovery grade
  • Physical form: Powder / granulated residue
  • Color: Dark gray to black (typical)
  • Particle size: Variable, typically fine to semi-fine powder depending on processing stage
  • Density: Approx. 2.5–4.5 g/cm³ (process-dependent)
  • Packaging options: 25 kg bags, 500 kg jumbo bags, or customized bulk packaging
  • Shelf life: Stable under dry, sealed storage conditions for up to 12–24 months
  1. Core Industrial Applications
  • Battery recycling and hydrometallurgical recovery industries
  • Cathode material reprocessing for lithium-ion battery manufacturing
  • Metal refining operations focused on lithium, nickel, cobalt, and manganese extraction
  • Energy storage supply chain circularity systems
    This material enables efficient recovery of high-value metals, reducing reliance on virgin raw materials while improving resource utilization efficiency and lowering overall production costs in cathode material manufacturing.
  1. Competitive Advantages
  • High recovery efficiency for critical battery metals
  • Consistent composition supporting predictable downstream processing performance
  • Stable and scalable supply for industrial recycling operations
  • Cost advantage versus virgin raw material sourcing
  • Supports ESG and circular economy compliance initiatives
  • Strong technical documentation and quality control support for industrial buyers
  1. Commercial & Supply Information
  • Minimum Order Quantity (MOQ): BULK 20 MT
  • Loading capacity: 20–22 MT per 20ft container

Additional information

Price

per MT

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