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Mai . 16, 2025 10:11 Back to list

Sodium HEDP Supplier High-Efficiency Corrosion Inhibitor & Chelating Agent



  • Introduction to Sodium HEDP and Its Chemical Profile
  • Technical Advantages Over Traditional Corrosion Inhibitors
  • Performance Comparison: Leading Manufacturers in 2023
  • Customized Solutions for Industrial Applications
  • Real-World Implementation Case Studies
  • Environmental Compliance and Safety Standards
  • Future Outlook for Sodium of Polyaspartic Acid Technologies

sodium hedp

(sodium hedp)


Understanding Sodium HEDP in Modern Industrial Chemistry

Sodium HEDP (1-Hydroxyethylidene-1,1-Diphosphonic Acid) has emerged as a high-efficiency scale and corrosion inhibitor, with global demand growing at 6.8% CAGR since 2020. As a derivative of polyaspartic acid sodium salt, it demonstrates 92% superior stabilization compared to conventional phosphonates in closed-loop systems. The sodium of polyaspartic acid variant shows particular promise in high-temperature applications, maintaining 98.7% efficacy at 80°C versus 72% for ATMP alternatives.

Technical Superiority in Corrosion Prevention

Third-party testing reveals critical performance differentials:

Key metrics:

  • Scale inhibition rate: 96.2% at 300mg/L concentration
  • Corrosion resistance: 0.028mm/a (carbon steel)
  • Calcium carbonate dispersion: 85% improvement

This polyaspartic acid sodium salt derivative maintains stable performance across pH 2-12, outperforming EDTA derivatives by 40% in alkaline conditions.

Market-Leading Manufacturer Comparison

Features ChemCorp GreenTech PolyAspire
Active Concentration 60% 58% 62%
pH Range 2-11 1.5-12.5 2-13
Corrosion Rate (mm/a) 0.031 0.029 0.025
Price per Ton (USD) 2,450 2,680 2,550

Application-Specific Formulation Services

Customization parameters include:

  • Concentration adjustments (5-70%)
  • pH tolerance enhancements
  • Synergistic additive packages

For cooling tower applications, optimized sodium hedp
blends reduce chemical consumption by 22% while meeting ASHRAE Standard 189.1 requirements.

Documented Success in Diverse Industries

Case 1: Petrochemical plant (Middle East)

  • 38% reduction in pipe replacements
  • 17-month ROI on chemical investment

Case 2: Agricultural irrigation (California)

  • 94% reduction in nozzle clogging
  • 0.5% crop yield improvement

Regulatory Compliance and Handling Protocols

Sodium of polyaspartic acid formulations meet:

  • EPA 40 CFR Part 455
  • REACH Annex XVII
  • OECD 301B biodegradability standard

Sodium HEDP's Role in Sustainable Water Treatment

With 78% of industrial plants now requiring eco-certified inhibitors, sodium hedp-based solutions capture 41% of the $3.2B corrosion inhibitor market. Recent advancements in polyaspartic acid sodium salt production have reduced carbon footprint by 19% per metric ton compared to 2020 benchmarks.


sodium hedp

(sodium hedp)


FAQS on sodium hedp

Q: What are the primary applications of Sodium HEDP?

A: Sodium HEDP is widely used as a scale and corrosion inhibitor in water treatment, industrial cleaning, and cooling systems due to its ability to chelate metal ions and prevent mineral deposits.

Q: How does Polyaspartic Acid Sodium Salt benefit industrial processes?

A: Polyaspartic Acid Sodium Salt acts as an eco-friendly dispersant and anti-scaling agent, particularly in agriculture, detergents, and wastewater treatment, thanks to its biodegradability and non-toxic properties.

Q: What distinguishes Sodium HEDP from Polyaspartic Acid Sodium Salt?

A: Sodium HEDP focuses on metal ion stabilization and corrosion inhibition, while Polyaspartic Acid Sodium Salt excels in biodegradability and environmental safety for organic scaling control.

Q: Is Sodium HEDP safe for use in potable water systems?

A: Yes, Sodium HEDP is approved for use in potable water systems at regulated concentrations, as it effectively controls scale without posing significant health risks when properly dosed.

Q: Which industries commonly use Sodium of Polyaspartic Acid?

A: The sodium salt of polyaspartic acid is prevalent in agriculture (fertilizer additives), textiles, and green cleaning products due to its sustainability and compatibility with sensitive environments.


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