Request a Quote
Leave Your Message
Cationic Polyacrylamide (CPAM) Suppliers & Factory in China for Wastewater Treatment Solutions
Hot Products
Product Categories
Featured Products

Cationic Polyacrylamide (CPAM) Suppliers & Factory in China for Wastewater Treatment Solutions

Cationic Polyacrylamide (CPAM, CAS 9003-05-is a water-soluble high molecular weight polymer that serves as an effective flocculant and coagulant for wastewater treatment. Sourced from leading suppliers in China, our CPAM features specifications of ≥90% solids, a molecular weight ranging from 8-12 million, and a cationic degree of 10-90%. This product dissolves in water within 60 minutes with ≤0.5% insolubility, making it highly efficient. With strong coagulation properties, CPAM enhances flocculation processes for both municipal and industrial wastewater applications, effectively removing turbidity, aiding in decolorization, and improving sludge dewatering. Non-toxic and eco-friendly, our cationic polyacrylamide is manufactured in our state-of-the-art factory, ensuring the avoidance of harmful monomer decomposition and guaranteeing safe usage in various wastewater treatment scenarios

    Product Specification

    Appearance: White To Faintly Yellow Granules, Solid Solid Content: ≥ 90%
    CAS NO: 9003-05-8 Molar Mass: 15000000 g/mol
    Dissolution Time: ≥ 60 Residual Unit: ≤ 0.05%
    Insoluble Matter: ≤ 0.5% Decomposition Temperature: > 150℃
    Key Features: Cpam Cationic Polyacrylamide Powder
    Polyacrylamide Coagulant Wastewater Treatment
    Wastewater Treatment Cationic Polyacrylamide Powder

    Cpam Cationic Polyacrylamide chemical coagulant polyamine for wastewater treatment

    Product Description

    Its customizable molecular weight and ionic charge allow tailored solutions for diverse applications, including papermaking, textiles, and enhanced oil recovery. CPAM excels in treating complex wastewater streams, such as those from chemical plants and mining operations, delivering clear and compliant effluents. Its adaptability to varying pH levels and water chemistries ensures consistent performance in challenging conditions. The polymer's high efficiency at low dosages reduces chemical consumption, making it a cost-effective choice for large-scale treatment systems. CPAM's environmentally safe profile aligns with regulatory standards, supporting sustainable water management practices. Its robust flocculation capabilities enhance sedimentation rates, improving operational efficiency and reducing processing times. Packaged for easy handling, CPAM integrates seamlessly into existing treatment systems, requiring minimal adjustments. By ensuring reliable particle aggregation and water clarification, it minimizes environmental impact and operational costs.

    CPAM's versatility and high performance make it a preferred solution for industries seeking efficient, eco-friendly, and cost-effective wastewater treatment that can deliver consistent results across diverse industrial and environmental applications.

    Synonyms: Acrylamide Homopolymer; Propenamide Homopolymer
    PAM is a synthetic chemical that can be tailored to fit a broad range of applications.
    – Cationic Polyacrylamide – CPAM
    – Anionic Polyacrylamide – APAM
    – Nonionic Polyacrylamide – NPAM

    Cationic Polyacrylamide Specifications

    Appearance White powder or granular
    Solid Content ≥ 90%
    Molecular Weight 800–1200 million
    Insoluble Matter ≤ 0.5%
    Residual Unit ≤ 0.05%
    Cation Degree 10–90%
    Dissolution Time ≤ 60 minutes

    Advantages

    Variety of Molecular Weight and Ionic Charge
    Wide Range of Applications
    Customized Formation to Fit Applications

    Features

    Strong coagulant agent
    Environmentally friendly
    Non-decomposable in nature (into toxic monomers)
    No poisoning and side effects
    Variety of characteristics and chemical and physical behavior

    Frequently Asked Questions

    What is Cationic Polyacrylamide (CPAM) and what is it used for?
    Cationic Polyacrylamide (CPAM) is a water-soluble polymer with a positive ionic charge. It is widely used as a flocculant and coagulant in wastewater treatment, papermaking, textile processing, mining operations, and enhanced oil recovery. Its positively charged groups allow it to attract and aggregate negatively charged suspended particles, improving water clarity and treatment efficiency.
    What is the CAS number and molecular weight of CPAM?
    The CAS number of Cationic Polyacrylamide is 9003-05-8. Its molar mass reaches up to 15,000,000 g/mol, with a practical molecular weight range of 800 to 1,200 million, which contributes to its strong flocculation performance.
    How does CPAM perform across different pH levels and water conditions?
    CPAM is highly adaptable to varying pH levels and diverse water chemistries. This versatility ensures consistent and reliable performance even in challenging industrial wastewater conditions, such as those found in chemical plants, mining facilities, and municipal treatment systems.
    What are the key physical and chemical specifications of CPAM?
    CPAM appears as a white to faintly yellow granular solid with a solid content of ≥90%, insoluble matter ≤0.5%, residual monomer ≤0.05%, cation degree ranging from 10–90%, dissolution time ≤60 minutes, and a decomposition temperature above 150℃.
    Is Cationic Polyacrylamide environmentally safe?
    Yes. CPAM is considered environmentally friendly. It does not decompose into toxic monomers under normal conditions and has no known poisoning or side effects when used as directed. Its environmental safety profile aligns with international regulatory standards, supporting sustainable water management practices.
    What are the differences between CPAM, APAM, and NPAM?
    All three are forms of Polyacrylamide (PAM) differentiated by their ionic charge: CPAM (Cationic) carries a positive charge and is ideal for negatively charged suspended solids; APAM (Anionic) carries a negative charge and is suited for positively charged particles or alkaline wastewater; NPAM (Nonionic) carries no charge and is used in acidic or neutral environments. Each type can be customized in molecular weight and ionic degree to fit specific applications.