Cationic PAM (Polyacrylamide) for Sludge Dewatering in Badli

Cationic Polyacrylamide Manufacturer in Badli - Innova Corporate (India) supplies high-performance cationic PAM for efficient sludge dewatering and organic wastewater treatment in Badli's municipal and industrial sectors. Our CPAM is extensively used in municipal sewage treatment plants and ETPs across the Badli Industrial Estate, effectively treating organic-rich effluents from food processing, textile, and chemical industries. The product's high charge density ensures rapid flocculation and superior dewatering performance, helping Badli's facilities meet DPCC compliance standards and address the BOD compliance challenges facing the Badli CETP.

Badli's growing industrial landscape generates significant organic wastewater requiring effective treatment. Our Cationic Polyacrylamide facilitates efficient dewatering in biological treatment systems, producing stable flocs that settle rapidly and release water readily. Industries across the Badli-Bawana Road corridor, including packaging units and chemical plants, trust our CPAM for its consistent quality and ability to reduce sludge volume, lowering disposal costs while ensuring environmental protection - particularly important given the environmental compensation penalties imposed on non-compliant CETPs [citation:2].

As a trusted cationic PAM supplier in Badli, we provide customized formulations and comprehensive technical support to optimize treatment performance. Our commitment to quality and innovation ensures that Badli's industries receive reliable, cost-effective solutions for their wastewater treatment challenges, contributing to the region's sustainable development under DPCC oversight.

Technical Specifications

No. Technical Parameters Polyelectrolyte Cationic (High Grade)
1 Physical Appearance White Granular Powder
2 Molecular Weight 8 - 15 Millions
3 Degree of Ionization (Charge Density) 15% - 20%
4 pH Value (Effective Range) 3.0 - 10.0
5 Standard Dissolving Time < 60 Minutes
6 Water Insoluble Matter < 0.1% Max
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