(zn hedp)
The global market for HEDP (Hydroxyethylidene Diphosphonic Acid) is projected to grow at a CAGR of 5.2% through 2030, fueled by increasing demand in water treatment and industrial cleaning. Zn HEDP variants now account for 38% of phosphonate-based scale inhibitors due to their enhanced thermal stability (up to 250°C) compared to standard HEDP formulations.
Key technical differentiators include:
This chemical profile enables polydisperse HEDP systems to prevent carbonate and sulfate scaling in extreme conditions.
Supplier | Purity (%) | Cl⁻ Content (ppm) | Price/Ton (USD) | Application Scope |
---|---|---|---|---|
ChemCorp | 98.5 | ≤150 | 2,850 | Oil/Gas, Cooling Towers |
AquaSolve | 97.2 | ≤300 | 2,420 | Municipal Water |
ZnGuard Pro | 99.1 | ≤80 | 3,150 | High-Temp Manufacturing |
Customization parameters for HEDP water treatment systems:
A 500MW power plant achieved 92% corrosion rate reduction using modified Zn HEDP at 15ppm concentration. System parameters:
Bulk procurement (20+ tons) of polydisperse HEDP can reduce unit costs by 18-22%. Regional pricing variations:
Recent advancements enable Zn HEDP recovery rates exceeding 87% through nanofiltration, reducing environmental discharge. The 2023 WaterChem Symposium highlighted its growing adoption in ZLD (Zero Liquid Discharge) systems, particularly in markets with strict phosphate emission regulations.
(zn hedp)
A: Zn HEDP is a zinc-modified hydroxyethylidene diphosphonic acid used as a corrosion inhibitor. It combines the scale inhibition of HEDP with zinc's anti-corrosive properties. It is widely applied in industrial cooling water treatment systems.
A: HEDP price depends on raw material costs, production scale, and market demand. Purity levels (e.g., polydisperse HEDP variants) and packaging also affect pricing. Bulk purchases typically reduce the cost per unit.
A: Polydisperse HEDP contains molecules with varying chain lengths, enhancing its adaptability in complex water conditions. This diversity improves performance in stabilizing metal ions and inhibiting scale. It is ideal for applications requiring tailored chemical behavior.
A: HEDP binds to metal ions, preventing scale formation and corrosion in pipelines. Its stability under high temperatures and pH variations makes it suitable for industrial systems. It also synergizes with other treatments like Zn HEDP for enhanced results.
A: Zn HEDP offers added corrosion protection due to zinc's synergistic effect. However, choice depends on system requirements, budget, and compatibility. Standard HEDP remains cost-effective for non-corrosive environments.