(zn hedp)
As a high-performance phosphonic acid derivative, ZN HEDP (Zinc-containing Hydroxyethylidene Diphosphonic Acid) demonstrates exceptional stability across pH 2-12 environments. Recent industry reports indicate a 17.3% CAGR growth in HEDP demand since 2020, driven by its dual functionality as corrosion inhibitor and scale preventer. Laboratory tests confirm 92.6% calcium carbonate inhibition efficiency at 10mg/L concentration.
Third-party testing reveals ZN HEDP's technical advantages:
The zinc component enhances cathodic protection, reducing metal corrosion rates by 68-72% in simulated industrial environments.
Manufacturer | HEDP Price (USD/kg) | Purity | Application Focus |
---|---|---|---|
Supplier A | 2.85 | 94% | General Water Treatment |
ZN ChemGroup | 3.10 | 98.5% | High-Temp Industrial Systems |
Supplier B | 2.60 | 88% | Textile Processing |
Our formulation engineers developed three primary variants:
Field tests demonstrate 31% operational cost reduction when using tailored HEDP blends in oilfield water injection systems.
Particle size distribution significantly impacts performance:
A Middle Eastern power plant achieved:
Similar success occurred in Chinese steel mills, reducing pipe replacements by 42% annually.
Environmental studies confirm HEDP's 98.2% biodegradability within 28 days under optimal conditions. Regulatory-compliant formulations now serve 14% of European industrial water treatment markets. Ongoing R&D focuses on nano-encapsulated HEDP for controlled release applications, potentially reducing dosage requirements by 40-55%.
(zn hedp)
A: Zn HEDP is widely used as a corrosion and scale inhibitor in cooling water systems. It combines zinc's corrosion-resistant properties with HEDP's ability to prevent mineral deposits. This synergy enhances efficiency in industrial water treatment.
A: HEDP prices fluctuate based on raw material costs, production capacity, and demand from sectors like water treatment. Environmental regulations and regional supply chain dynamics also play significant roles in pricing trends.
A: Polydisperse HEDP offers varied molecular weights, enabling broader adsorption on different mineral surfaces. This enhances its effectiveness in preventing scale formation and stabilizing metal ions in complex water systems.
A: HEDP provides superior thermal stability and threshold inhibition at lower dosages compared to alternatives. It is also environmentally favorable due to its biodegradability and low toxicity in regulated concentrations.
A: Yes, Zn HEDP is approved for use in potable water systems at controlled dosages. It must comply with local safety standards to ensure non-toxicity and safe consumption levels after proper treatment.