High-Efficiency Coagulant Polyacrylamide in France

Coagulant Polyacrylamide in France - Innova Corporate (India) offers advanced coagulant polyacrylamide formulations for efficient water clarification and wastewater treatment in France's industrial facilities. This innovative product combines coagulation and flocculation properties, reducing the need for multiple chemical additions in ETPs across the Seine Valley, the Lyon chemical corridor, and the Dunkirk industrial zone. Industries in France trust our coagulant PAM for rapid charge neutralization, effective solid removal, and compliance with French Water Law and EU regulations.

France's chemical processing units, pharmaceutical plants, and food manufacturing facilities benefit from our coagulant polyacrylamide's superior performance in treating suspended solids, organic contaminants, and heavy metals. The product demonstrates excellent effectiveness across a wide pH range and varying water quality conditions typical of France's industrial effluents. By simplifying treatment processes and reducing chemical consumption, our coagulant PAM helps industries optimize operational costs while ensuring environmental sustainability - crucial given France's commitment to the EU's Zero Pollution Action Plan and the country's goal of reducing industrial discharges by 20% by 2026.

As a trusted coagulant polyacrylamide supplier in France, we provide customized product formulations and expert technical support for system optimization. Our commitment to quality ensures reliable performance in the most demanding treatment applications, helping France's industries achieve operational excellence and environmental stewardship in compliance with French and EU standards.

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) 10% - 15%
4 Effective pH Range 3.0 - 10.0
5 Standard Dissolving Time < 60 Minutes
6 Water Insoluble Matter < 0.1% Max
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