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Anionic Polyacrylamide

Product Introduction: Anionic Polyacrylamide for Wastewater Treatment
Anionic polyacrylamide (APAM) is a versatile, effective, and commonly used polymer in wast...

Product Overview

Product Introduction: Anionic Polyacrylamide for Wastewater Treatment
Anionic polyacrylamide (APAM) is a versatile, effective, and commonly used polymer in wastewater treatment. It functions by bonding with suspended particles in water to form large flocs. This is achieved through the presence of polar groups on its molecular chain, which facilitate particle aggregation or bridging. 

Product Features:
1. Excellent water solubility, even at low temperatures.
2. Compact floc formation with minimal dosage.
3. High clarity post-treatment.
4. Optimal compatibility with inorganic coagulants.

Product Uses:
1. Clarification and purification.
2. Enhanced sedimentation.
3. Faster filtration.
4. Thickening and other applications.

Usage Guidelines:
1. APAM can be prepared as a 0.01%-0.05% solution using neutral, non-saline water.
2. Sprinkle the product evenly into stirred water while maintaining a stirring speed between 100-300rpm. Heating below 60°C accelerates dissolution.
3. Adjust the pH level according to experimental findings to optimize product performance.
4. Mix rapidly upon adding the APAM solution to the target fluid before gradually reducing the stirring speed for enhanced floc growth and faster sedimentation.
(The above data are for reference only; specific recommendations should be based on site water quality.)

Application Fields:
1. Effective in textile and dyeing industry wastewater treatments due to improved adhesion.
2. Ideal flocculant for coarse, concentrated, positively charged particles in neutral or alkaline water.
3. Widely utilized in chemical industrial wastewater, municipal sewage, tap water, high turbidity water clarification, coal washing, ore selection, metallurgy, steel, zinc, aluminum processing, electronics, etc.
4. Useful in oil industry, oil extraction, drilling mud, waste mud disposal, well control, and more.
5. Improves paper strength, reduces material loss, and minimizes environmental pollution.
6. Enhances paper tear resistance and porosity for better visual and printing properties.
7. Applicable in various industries such as synthetic resin coatings, masonry grouting materials, building materials, cement quality improvement, construction adhesives, sealant repair, soil improvement, electroplating, and printing.

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