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PAFC CAS 1327-41-9 Industrial Polymeric Coagulant
PAFC CAS 1327-41-9 Industrial Polymeric Coagulant
PAFC CAS 1327-41-9 Industrial Polymeric Coagulant
PAFC CAS 1327-41-9 Industrial Polymeric Coagulant

PAFC CAS 1327-41-9 Industrial Polymeric Coagulant

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Min. Order:1 Ton
Product Attributes

Model No.PAFC

BrandLanyao

Packaging & Delivery
Selling Units : Ton

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Polyaluminum Ferric Chloride (PAFC)
Product Description
Color: Brown Boiling Point: 100-110 °C
Cas No: 1327-41-9 Application: Sewage Water Treatment
Basicity: 20.0~85.0 Vapor Pressure: Not Applicable
Flash Point: Not Applicable Vapor Density: Not Applicable
Highlight:

Industrial Polyaluminum Ferric Chloride

,

inorganic polymeric coagulant Polyaluminum Ferric Chloride

 

 

Product Description:

Polyaluminum Ferric Chloride (PAFC) is an inorganic polymeric coagulant synthesized by combining aluminum salts (Al³⁺) and iron salts (Fe³⁺). It integrates the advantages of both aluminum-based coagulants (e.g., PAC) and iron-based coagulants (e.g., PFS), offering enhanced coagulation efficiency and adaptability.

PAFC is widely used in water and wastewater treatment due to its stable chemical structure, high charge density, and rapid formation of dense flocs. Its development addresses limitations of traditional coagulants, such as narrow pH tolerance and residual metal ions, making it a versatile solution for modern environmental challenges.

Features:

Synergistic Coagulation Mechanism:

Combines the rapid flocculation of aluminum salts with the strong adsorption and dense flocs of iron salts, improving sedimentation speed and effluent clarity.

Broad pH Adaptability:

Effective across pH 4–10, reducing the need for pH adjustment in most water types.

Low Residual Aluminum/Iron:

Minimizes secondary pollution risks, crucial for drinking water safety and compliance with regulations (e.g., WHO guidelines for residual Al <0.2 mg/L).

High Efficiency in Turbidity and Color Removal:

Removes colloidal particles, organic matter, and dyes effectively, achieving >90% turbidity reduction in optimal conditions.

Temperature Resilience:

Performs well in low-temperature (≤5°C) or high-salinity water, unlike conventional coagulants that may fail under such conditions.

Reduced Corrosivity:

Less corrosive to equipment compared to FeCl₃, lowering maintenance costs.

Cost-Effectiveness:

Lower dosage requirements (typically 10–50 mg/L) translate to operational savings.

Applications:

Drinking Water Treatment

Removes suspended solids, pathogens, and organic contaminants.

Case Example:

A plant in China achieved 95% turbidity removal using PAFC at 15 mg/L, meeting GB5749-2022 standards.

Industrial Wastewater
  • Textile Dyeing: Degrades azo dyes; achieves >85% COD removal.
  • Petrochemical: Efficient in oil-water separation and heavy metal adsorption (e.g., 80–95% Pb²⁺ removal).
  • Paper/Pulp: Reduces lignin and suspended fibers, lowering BOD by 70%.
Municipal Wastewater

Treats sewage and stormwater, removing phosphorus (60–80% reduction) to combat eutrophication.

Sludge Conditioning

Enhances dewatering efficiency, reducing sludge volume by 30–50% and lowering disposal costs.

Niche Uses
  • Mining: Treats acid mine drainage (AMD) by neutralizing pH and precipitating metals.
  • Food Processing: Clarifies wastewater with high organic loads (e.g., dairy effluent).
Comparative Advantages
  • vs. PAC: Better performance in low-temperature/high-turbidity water.
  • vs. PFS: Less residual color (no yellowing of water) and lower corrosion.
  • vs. Alum: Lower dosage, faster settling, and broader pH range.
Environmental & Safety Considerations
  • Handling: Use PPE to avoid inhalation/contact; store in corrosion-resistant containers.
  • Regulatory Compliance: Meets EPA and EU standards for coagulants in drinking water.
  • Research Trends: Nano-PAFC hybrids and bio-polymer composites for enhanced pollutant targeting.

Our main products include Polyaluminum ChlorideAluminum ChlorohydratePolyferric SulfateBiochemical BacteriaPolyacrylamide PAM and Decoloring Agent.

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