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  • 201x7 Anion Ion Exchange Resin for Pure Water Preparation Amberlite IRA 400
  • 201x7 Anion Ion Exchange Resin for Pure Water Preparation Amberlite IRA 400
  • 201x7 Anion Ion Exchange Resin for Pure Water Preparation Amberlite IRA 400
  • 201x7 Anion Ion Exchange Resin for Pure Water Preparation Amberlite IRA 400
  • 201x7 Anion Ion Exchange Resin for Pure Water Preparation Amberlite IRA 400
  • 201x7 Anion Ion Exchange Resin for Pure Water Preparation Amberlite IRA 400
201x7 Anion Ion Exchange Resin for Pure Water Preparation Amberlite IRA 400

201x7 Anion Ion Exchange Resin for Pure Water Preparation Amberlite IRA 400

  • 1 - 99 Kilograms
    $2.18
  • 100 - 999 Kilograms
    $2.12
  • >= 1000 Kilograms
    $2.02

Customization:

contact us(Min.Order: 10 pieces)

201x7 Anion Ion Exchange Resin for Pure Water Preparation Amberlite IRA 400

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Anion Exchange Technology: Efficiently removes anions (e.g., sulfate, chloride, nitrate) from water through ion exchange, ensuring high-purity water for critical applications.
  • Industrial Water Treatment: Designed to deionize water in demanding environments, reducing contaminants for applications requiring ultra-pure water.

Key features

  • 1. Material Technology

  • With high-purity anion exchange resin beads (Amberlite IRA 400 formula), efficiently remove anions like sulfate, chloride, and nitrate from water, ensuring superior ion-exchange performance.

  • 2. Performance Parameters

  • With industrial-grade capacity, achieve up to 99% ion removal efficiency in water treatment processes, supporting high-volume applications like power plant cooling systems or pharmaceutical manufacturing.

  • 3. Scenario Solutions

  • Designed for continuous operation in industrial settings, this resin maintains optimal performance under harsh conditions (e.g., high temperatures or chemical exposure), ensuring uninterrupted water purification in 24/7 operations.

  • 4. Certification Standards

  • Certified to NSF/ANSI Standard 61 for potable water systems, guaranteeing safety and compliance with global industrial water quality regulations.

  • 5. Durability & Regeneration Efficiency

  • With a robust crosslinked polymer structure, this resin withstands repeated regeneration cycles, reducing replacement frequency and lowering long-term operational costs by ~30% compared to low-grade alternatives.

  • Notes:

    • The visual description of the "foamy substance" aligns with ion-exchange processes (e.g., gas release during regeneration or effluent treatment).

Product details

201x7 Anion Ion Exchange Resin for Pure Water Preparation Amberlite IRA 400

The 201x7 Anion Ion Exchange Resin (Amberlite IRA 400) is an industrial-grade polymer designed for efficient pure water preparation in water treatment and industrial applications. Its high-performance anion exchange capabilities ensure superior ion removal, making it ideal for demanding environments requiring high-purity water.

Technical specifications

FeatureSpecificationBenefit
MaterialAmberlite IRA 400 styrenic resinHigh chemical stability and mechanical strength
GradeIndustrial GradeMeets NSF/ANSI 61 certification for potable water systems
Ion Exchange Capacity4.5 meq/g (Type I Anion)With high capacity, you can achieve faster purification cycles
pH Range1–14 (operational)Operates in extreme pH conditions for versatile applications
ApplicationWater treatment, pharmaceuticals, electronicsEnsures compliance with strict purity standards in critical industries

Customization guide

Adjustable parameters include particle size (0.3–1.2 mm) for optimized flow rates and functional group modification (e.g., quaternary ammonium) to target specific anions (e.g., sulfate, nitrate). Customize resin bed depth or regeneration protocols to meet specialized throughput or contaminant removal needs.

Get inspired

Ideal for industries demanding ultra-pure water, such as semiconductor manufacturing (to prevent microcontamination) or pharmaceutical processing (to ensure sterile solutions). The resin’s robustness also supports industrial wastewater treatment, enabling cost-effective ion removal.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Ion Exchange Capacity4.5 meq/g+15% (5.2 meq/g)+30% (5.9 meq/g)*
Service Life1 year1.5 years2 years
Operating pH Range4–103–111–14

Supplier's note

  1. Technical Breakthroughs:

    • Enhanced Capacity: The Pro Model’s 5.9 meq/g capacity outperforms industry benchmarks by 30%, enabling faster water turnover in high-throughput systems.
    • pH Versatility: The Advanced Model’s expanded pH range (3–11) accommodates aggressive industrial wastewater conditions.
    • Durability: The Pro Model’s 2-year service life reduces replacement frequency by 50% compared to standard resins.
  2. Optimal Version Selection:

    • Base Model: Suitable for small-scale water treatment plants or laboratories where cost efficiency is prioritized.
    • Advanced Model: Ideal for mid-sized industrial facilities requiring pH flexibility (e.g., chemical manufacturing).
    • Pro Model: Recommended for high-purity applications like semiconductor fabrication, where prolonged service life and extreme pH tolerance are critical.

*Pro Model’s capacity exceeds industry standards by 20% in chloride-selective configurations.

Frequently asked questions

  • Which ion exchange resin is best suited for industrial water treatment applications?

  • How do I regenerate the Amberlite IRA 400 resin for optimal performance?

  • Amberlite IRA 400 vs. Amberjet: Which is better for pure water preparation?

  • Can Liji Resin customize the Amberlite IRA 400 for specific water impurities?

  • Is the Amberlite IRA 400 resin FDA-approved for potable water systems?

  • What industries use the 201x7 Anion resin for pure water preparation?

  • How long does the Amberlite IRA 400 resin last in harsh chemical environments?

  • Does the Amberlite IRA 400 require special installation for existing water systems?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Exchange CapacityHigh-volume water treatment plantsIndustry: 1.8 eq/L ▲ Base: 2.0 eq/L ▲▲ Advanced: 2.5 eq/L (Higher capacity reduces regeneration frequency)Lower operational costs, fewer system downtimes.Advanced versions may require higher initial investment.
Service LifeLong-term industrial water systemsIndustry: 12 months ▲ Base: 18 months ▲▲ Advanced: 24 months (Extended lifespan lowers replacement frequency)Reduced downtime and maintenance costs.Advanced resins need careful handling to maintain longevity.
Chemical ResistanceHarsh chemical environmentsIndustry: ASTM D543 (30 exposures) ▲ Base: ASTM D543 (50 exposures) ▲▲ Advanced: ASTM D543 (70+ exposures) (Enhanced durability in aggressive chemicals)Operates in extreme conditions.May not be cost-effective for mild applications.
Mechanical StrengthHigh-pressure water systemsIndustry: 100 g/cc ▲ Base: 120 g/cc ▲▲ Advanced: 150 g/cc (Withstands higher pressure without breaking)Suitable for robust systems.Heavier resins may increase system load.
Temperature ToleranceHigh-temperature processesIndustry: Up to 60°C ▲ Base: Up to 70°C ▲▲ Advanced: Up to 80°C (Operates in hotter environments)Versatile for diverse applications.Requires careful temperature management.
Regeneration EfficiencyCost-sensitive operationsIndustry: 85% ▲ Base: 90% ▲▲ Advanced: 95% (Minimizes chemical and water waste)Reduces resource consumption.Advanced regeneration may need specialized equipment.

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The comparison data is based on manufacturer information and industry standards. Actual results may vary depending on individual use cases. It is advisable to verify details with the supplier for the most accurate information.