• DuPont™ AmberLite™ IRA402 Cl Strong Base Anion Exchange Resin – Industrial Demineralization
  • DuPont™ AmberLite™ IRA402 Cl Strong Base Anion Exchange Resin – Industrial Demineralization
DuPont™ AmberLite™ IRA402 Cl Strong Base Anion Exchange Resin – Industrial Demineralization

DuPont™ AmberLite™ IRA402 Cl Strong Base Anion Exchange Resin – Industrial Demineralization

Λεπτομέρειες:

Τόπος καταγωγής: Κίνα
Μάρκα: Dupont
Πιστοποίηση: ISO9001
Αριθμό μοντέλου: Dupont ™ Amberlite ™ IRA402 CL
Έγγραφο: IER-AmberLite-IRA402-Cl-PDS...en.pdf

Πληρωμής & Αποστολής Όροι:

Ποσότητα παραγγελίας min: 1 ΤΕΜ
Τιμή: διαπραγματεύσιμα
Συσκευασία λεπτομέρειες: Τυπική συσκευασία εξαγωγής
Χρόνος παράδοσης: 5-8 εργάσιμες ημέρες
Όροι πληρωμής: T/T
Δυνατότητα προσφοράς: 60000 μονάδες το μήνα
Καλύτερη τιμή Επικοινωνία

Λεπτομερής ενημέρωση

Ολόκληρες χάντρες: ≥ 90% Εμφίδρωση: ≤ 20%
Πυκνότητα σωματιδίων: 1.07 g/ml Εύρος Θερμοκρασίας: 5 – 100°C (μορφή Cl-)
Συνολική ικανότητα ανταλλαγής: ≥ 1,20 eq/L (μορφή Cl-) Δυνατότητα συγκράτησης νερού: 49,0 - 59,0% (μορφή Cl-)

Περιγραφή προϊόντων

DuPont™ AmberLite™ IRA402 Cl Strong Base Anion Exchange Resin – Industrial Demineralization

DuPont™ AmberLite™ IRA402 Cl is a Gaussian, gel-type, strong base anion exchange resin (Type I) with a long-established track record of reliable performance in industrial demineralization applications. This industry-staple resin provides an excellent balance of properties including high capacity, physical strength, silica selectivity, and long service life. It is particularly well-suited for co-current flow regenerated systems treating water with high percentages of silica, delivering efficient removal of strong and weak acids with minimal silica leakage.

DuPont™ AmberLite™ IRA402 Cl Strong Base Anion Exchange Resin – Industrial Demineralization 0
Applications
  • Industrial demineralization
  • Treatment of water with high percentage of silica
  • Removal of strong and weak acids
  • Achieving lowest silica leakage in treated water
  • Co-current regenerated systems
Compatible System Designs
  • Co-current (co-flow) regenerated systems
  • Separate bed demineralization trains

For additional information on recommended minimum bed depth, operating conditions, and regeneration conditions for separate beds, refer to DuPont Tech Fact (Form No. 45-D01131-en).

Typical Properties
Physical Properties
Property Specification
Copolymer Styrene-divinylbenzene
Matrix Gel
Type Strong base anion, Type I
Functional Group Trimethylammonium
Physical Form Amber translucent spherical beads
Chemical Properties
Property Specification
Ionic Form (as shipped) Cl⁻
Total Exchange Capacity ≥ 1.20 eq/L (Cl⁻ form)
Water Retention Capacity 49.0 - 59.0% (Cl⁻ form)
Particle Size Distribution
Parameter Specification
Uniformity Coefficient ≤ 1.80
< 300 μm ≤ 1.0%
> 1180 μm ≤ 5.0%

For additional particle size information, refer to Document No. 45-D00954-en.

Stability
  • Whole Uncracked Beads: ≥ 90%
  • Swelling (Cl⁻ → OH⁻): ≤ 20%
Density
  • Particle Density: 1.07 g/mL
  • Shipping Weight: 670 g/L
Operating Conditions
  • Temperature Range:
    • OH⁻ form: 5 - 60°C (41 - 140°F) †
    • Cl⁻ form: 5 - 100°C (41 - 212°F)
  • pH Range:
    • Service Cycle: 1 - 14
    • Stable: 0 - 14

† Operating at elevated temperatures (e.g., >60-70°C) may impact resin life. Consult DuPont technical representatives for details.

DuPont™ AmberLite™ IRA402 Cl Strong Base Anion Exchange Resin – Industrial Demineralization 1
Hydraulic Characteristics
  • Backwash Expansion: Estimated bed expansion as a function of backwash flow rate and temperature is shown in Figure 1.
  • Pressure Drop: Estimated pressure drop as a function of service flow rate and temperature is shown in Figure 2 (valid for clean water and well-classified beds at service run start).

(Note: Refer to original document for graphical data.)

Safety & Compliance
Warning: Strong oxidizing agents (e.g., nitric acid) may degrade the resin or cause violent reactions. Consult experts before use.

Users should review safety data sheets (SDS) and ensure compliance with local regulations.

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