• DuPont™ AmberLite™ HPR4200 CL High-quality Resin For Industrial Demineralization applications
  • DuPont™ AmberLite™ HPR4200 CL High-quality Resin For Industrial Demineralization applications
  • DuPont™ AmberLite™ HPR4200 CL High-quality Resin For Industrial Demineralization applications
  • DuPont™ AmberLite™ HPR4200 CL High-quality Resin For Industrial Demineralization applications
DuPont™ AmberLite™ HPR4200 CL High-quality Resin For Industrial Demineralization applications

DuPont™ AmberLite™ HPR4200 CL High-quality Resin For Industrial Demineralization applications

商品の詳細:

起源の場所: 中国
ブランド名: Dupont
証明: ISO9001
モデル番号: Dupont™Amberlite™HPR4200 CL
ドキュメント: IER-AmberLite-HPR4200-Cl-PD...en.pdf

お支払配送条件:

最小注文数量: 1pc
価格: 交渉可能
パッケージの詳細: 標準輸出梱包
受渡し時間: 5-8勤務日
支払条件: T/T
供給の能力: 月額60000ユニット
ベストプライス 連絡先

詳細情報

主なアプリケーション: 産業脱塩のアプリケーション まったくないビーズ: 90%以上
腫れ(cl⁻→ああ): 20% 粒子密度: 1.07 g/ml
警告: 強い酸化剤(例、硝酸)は樹脂を分解したり、暴力反応を引き起こす可能性があります。使用する前に専門家に相談してください。 物理的な形: 黄色の半透明の球状ビーズ
タイプ: 強いベースアニオン、タイプI

製品の説明

DuPont™ AmberLite™ HPR4200 CL High-quality Resin For Industrial Demineralization applications

1. Product Overview

DuPont™ AmberLite™ HPR4200 Cl is a uniform particle size, gel-type, strong base anion exchange resin (Type I) designed for industrial demineralization applications requiring high performance and cost-effective operation. Its balanced chemical properties and particle size provide excellent operating capacity with low pressure drop while reducing chemical regenerant and rinse water consumption. Compatible with all system technologies, it can be used in lead single or layered anion beds and mixed bed polishers, allowing users to inventory only one strong base anion resin for various demineralization needs. The light color of this resin enables easy visual distinction from dark-colored cation resins after backwash separation.
杜邦罗门哈斯HPR4200CL强碱性阴离子交换树脂-离子交换树脂-铭和泰环保


2. Applications

  • Demineralization

    • Ideal for treating water with a high percentage of silica

    • Effective for removing strong and weak acids and achieving low silica leakage

  • Mixed bed polishing

3. Compatible System Designs

  • Mixed beds

  • Packed beds

  • Layered beds

  • Counter-current / hold-down systems

  • Co-current systems

4. Recommended Resin Pairings

  • For mixed beds:

    • AmberLite™ HPR1200 H (gel)

    • AmberLite™ HPR1300 H (gel)

  • For layered beds:

    • AmberLite™ HPR9500 (macroporous)

    • AmberLite™ HPR9600 (macroporous)

5. Historical Reference

Previously sold as DOWEX MARATHON™ 4200 Cl Ion Exchange Resin.


6. Typical Properties

Physical Properties

Property Specification
Copolymer Styrene-divinylbenzene
Matrix Gel
Type Strong base anion, Type I
Functional Group Trimethylammonium
Physical Form Yellow translucent spherical beads

Chemical Properties

Property Specification
Ionic Form (as shipped) Cl⁻
Total Exchange Capacity ≥ 1.30 eq/L (Cl⁻ form)
Water Retention Capacity 49.0 – 55.0% (Cl⁻ form)

Particle Size Distribution

Parameter Specification
Particle Diameter 650 ± 50 μm
Uniformity Coefficient ≤ 1.25
< 300 μm ≤ 0.3%
> 850 μm ≤ 5.0%

ℹ 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


7. 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.


8. 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 at service run start).

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


9. 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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