HP606 is an advanced adsorption material engineered with a nanoporous structure and uniform pore distribution, delivering exceptional hydraulic diffusion performance. This design enables rapid adsorption kinetics, high activity, superior precision (<1 mg/L), and large adsorption capacity, making it ideal for selectively removing impurities like aluminum from lithium iron phosphate (LFP) solutions in both battery production and recycling processes
Featuring high mechanical strength and chemical stability, HP606 withstands harsh operating conditions (pH 3–10) while maintaining performance through repeated regeneration cycles. Its sulfonate functional groups (-HSO₃⁻) enable efficient targeting of metal ions, ensuring minimal iron loss (<5%) and enhanced resource recovery from LFP materials
① High adsorption capacity: The cation adsorption capacity per unit volume far exceeds that of ordinary commercial materials, with higher adsorption efficiency;
② Excellent chemical resistance: Resistant to acid and alkali corrosion, high mechanical strength, good abrasion resistance, and long service life;
③ Stable surface performance: Acids/salts have no impact on its surface during the desorption process, with no performance degradation, and can withstand multiple acid/salt regeneration and desorption cycles for a long time;
④ Wide application: It has been stably applied in multiple fields such as wastewater reuse treatment and resource recycling, with mature and reliable technology. HP606 adsorption resin has become an ideal choice for efficient and environmentally friendly adsorption materials due to its excellent performance and broad application prospects.
Haipu HP606 special adsorption material can selectively remove impurity elements such as aluminum from iron phosphate solutions, with a removal rate exceeding 90% and iron loss less than 5%, improving the quality of iron phosphate and enabling full comprehensive utilization of iron and phosphorus resources in LFP batteries.
① Advanced upgrading of heavy metals in electroplating wastewater;
② Advanced treatment of complexed heavy metals;
③ Advanced upgrading of other heavy metal-containing wastewater;
④ Resource recovery of metal ions in lithium battery wet recycling
Parameter | Indicator |
Appearance | Yellow-brown spherical granules |
Functional Groups | -HSO₃⁻ (sulfonate) |
Moisture Content (%) | 45.0–50.0 |
Particle Size Range (0.315–1.25 mm) (%) | ≥95.0 |
Wet Apparent Density (g/mL) | 0.77–0.87 |
Sphericity (%) | ≥95.0 |
Total Exchange Capacity (mmol/g) | ≥4.5 |
Pore Uniformity (Coefficient of Variation) | ≤1.6 |
Initial Form | Sodium form |
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