P-507 (CAS 14802-03-0) Comprehensive User Guide
Table of Contents
- 1. Product Overview & Specifications
- 2. Key Applications & Use Cases
- 3. Performance Comparison With Competing Extractants
- 4. Industrial Implementation Case Studies
- 5. Client Success Stories
- 6. Technical Consultation & Procurement
1. Product Overview & Specifications
Chemical Name: Di-(2-ethylhexyl)phosphoric acid
CAS Number: 14802-03-0
Molecular Formula: C16H35O4P
Appearance: Colorless to pale yellow viscous liquid
| Parameter | Specification |
|---|---|
| Purity | ≥95% |
| Density (25°C) | 0.97-0.99 g/cm³ |
| Viscosity (25°C) | 35-45 mPa·s |
| Flash Point | >200°C |
2. Key Applications & Use Cases
2.1 Rare Earth Element (REE) Separation
P-507 demonstrates exceptional selectivity in separating:
- Lanthanum (La) from Cerium (Ce)
- Neodymium (Nd) from Praseodymium (Pr)
- Heavy REEs like Yttrium (Y) and Dysprosium (Dy)
2.2 Nuclear Fuel Reprocessing
Critical for:
- Uranium/Plutonium partitioning in PUREX process
- Minor actinide recovery from spent fuel
3. Performance Comparison With Competing Extractants
| Extractant | pH Working Range | Metal Loading Capacity | Stability |
|---|---|---|---|
| P-507 | 1.5-4.5 | 25-30 g/L REO | Excellent |
| P-204 | 0.5-2.5 | 18-22 g/L REO | Good |
| Cyanex 272 | 2.0-5.0 | 20-25 g/L REO | Moderate |
4. Industrial Implementation Case Studies
4.1 High-Purity Yttrium Production
Challenge: Achieve 99.999% Y2O3 from mixed heavy REE feed
Solution: 6-stage counter-current extraction with P-507
Outcome: 99.9992% purity at 94% recovery rate
5. Client Success Stories
5.1 Lynas Corporation (Malaysia)
Project: NdPr oxide production scale-up
Results: 22% throughput increase with P-507 vs traditional extractants
5.2 Rosatom (Russia)
Application: Uranium/plutonium separation
Performance: 99.98% Pu recovery efficiency
6. Technical Consultation & Procurement
Contact our extraction chemistry specialists:
Email: info@vivalr.com
Phone: (86) 15866781826
Request technical documents:
- Material Safety Data Sheet (MSDS)
- Extraction Isotherm Data
- Phase Disengagement Rates



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