The product can be used in coal washing tailing centrifugal separation, as well as in sedimentation and filtration of coal powder and coal mud, improving both the recovery rate of coal powder and the filtration speed.
Added with other chemicals to prepare chemical grout for starching textiles, it enhances adhesive property, penetrability, and desizing performance. It provides electrostatic prevention, lowers the desizing rate, and reduces starch mixing spots, cloth machine breaking efficiency, and falling objects.
Optimal for acidophilic sewage water systems. The product can be combined with flocculating agents such as PAC and aluminum sulphate to achieve the best performance in water purification.
Utilized in the flotation and smelting of zinc, manganese, and copper mines. Adding PAM to its leachate and slag significantly enhances overall separation efficiency.
Nonionic polyacrylamide is a high molecular weight polymer with a low ion exponent. It performs key functions including flocculation, dispersal, thickening, bonding, film forming, gelatin, and maintaining colloidal stability.
Its flocculation effectiveness is hardly influenced by pH values or salt content. It performs exceptionally well in acid waste water treatment, outperforming anionic polymers under acidic conditions.
In mine washing, it aids in coal washing tailing centrifugal separation, sedimentation, and filtration of coal powder and mud, which effectively increases coal powder recovery rates and filtration speed.
When mixed with chemical grout for textile starching, it improves adhesion, penetrability, and desizing performance. It also reduces static electricity, starch spots, fabric machine breaking efficiency, and material shedding.
Nonionic polyacrylamide can be effectively paired with inorganic flocculating agents such as Polyaluminum Chloride (PAC) and aluminum sulphate for optimal acidophilic water treatment results.
It is used during the flotation and smelting processes of zinc, manganese, and copper mines by adding PAM directly into leachate and slag to increase separation efficiency.