EM533 Polyacrylamide PAM Polymer Polyacrylamide Mining Emulsion Flocculant

Daisy
June 12, 2025
Category Connection: Mining Wastewater Treatment
Quality Mining Wastewater Treatment from China.
https://www.pampolyacrylamide.com/sale-53393938-em533-polyacrylamide-pam-polymer-polyacrylamide-mining-emulsion-flocculant.html
Jiangsu Hengfeng Fine Chemical Co., Ltd. quality manufacturer from China.
daisy@jshfpam.com
WhatsApp:+86 13951412113
Brief: Discover EM533 Polyacrylamide PAM Polymer, a high-performance mining emulsion flocculant designed for efficient water treatment. Ideal for high-turbidity tailings, acid mine drainage, and coal washing water, this product offers optimal dosing and pH adaptability. Manufactured by HENGFENG Polymer with 24 years of expertise.
Related Product Features:
  • EM533 PAM Polymer is a high-efficiency flocculant for mining wastewater treatment.
  • Dilute to 0.1-0.3% concentration with deionized or low-TDS water for best results.
  • Optimal performance in pH range of 7-11, with pre-treatment recommended for acidic waters.
  • Effective dosage ranges from 5-30 ppm depending on water type and turbidity.
  • Available in anionic, cationic, and nonionic forms to suit various applications.
  • Fast dissolving time of ≤10 minutes ensures quick operational readiness.
  • Manufactured by HENGFENG Polymer, a leader with 24 years of industry experience.
  • Supports sludge dewatering and sedimentation in mining and industrial processes.
Faqs:
  • What is the recommended dosage for EM533 PAM Polymer in high-turbidity tailings?
    The recommended dosage for high-turbidity tailings is 10-30 ppm, often paired with FeSO₄ or PAC for enhanced results.
  • How should EM533 PAM Polymer be dissolved for use?
    Dilute the emulsion to 0.1-0.3% concentration using deionized or low-TDS water, and stir at 80-150 rpm for 5-8 minutes to avoid molecular weight degradation.
  • Can EM533 PAM Polymer be used in acidic water conditions?
    Yes, but pre-treatment with lime to adjust pH to 7-11 is recommended before adding APAM for optimal performance in acidic waters.