Solvent Extractants
Solvent extractants for Recovering Critical Metals (Cathode Materials) from Spent Batteries
Extractant: A Key Material in Used Battery Recycling Processes
Technical Edge
Extractant Design Concept
Selectivity Introduction and control of heteroatoms (N, O) |
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Improved metal selectivity |
Binding Extension and branching of alkyl chains |
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Increased metal extraction efficiency |
Stability Maintaining extractant stability in organic solvents |
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Enhanced reusability of the extractant |
Product Information
Product | Name Target Metal | Chemical Structure | Performance | Production |
RECYION 156 | Manganese | Phosphoric acid–based substance (equivalent to D2EHPA) | Comparable to existing market products | Production CAPA: 1 ton/month |
RECYION 205 | Manganese | Phosphoric acid–based substance | 1.2x better than existing market products | Mass production scheduled for 1H 2025 |
RECYION 302 | Cobalt | Phosphoric acid–based substance | Equal or better than market equivalents | Mass production scheduled for 1H 2025 |
RECYION 405 | Nickel | Phosphoric acid–based substance | Equal or better than market equivalents | Mass production scheduled for 2H 2024 |
RECYION 502 | Lithium | New ethylene glycol–based substance | Equal or better than Li extractants used in mining | Mass production scheduled for 2H 2025 |
※ For inquiries: Jaegyu Jang (CTO) jangjaegyu@cosolus.com
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