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Water Treatment High Viscosity HPAM Polyacrylamide For Enhanced Oil Recovery PHPA

Water Treatment High Viscosity HPAM Polyacrylamide For Enhanced Oil Recovery PHPA

Brand Name: OYI
Model Number: HA850
MOQ: 5TON
Price: USD2500
Payment Terms: L/C,D/A,D/P,T/T,Western Union
Supply Ability: 3000T/M
Detail Information
Place of Origin:
CHINA
SOLID CONTENT:
89%MIN
MOLECULAR WEIGHT:
5-25MILLION
CHARGE DEGREE:
18-80%
Applications:
Water Treatment, Papermaking, Mining, Drilling, Decoloring Agent, Textile Dyeing Water Color Removal
Packaging Details:
15, 25, 500, 1000KG BAGS
Highlight:

Water Treatment HPAM polyacrylamide

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High Viscosity HPAM polyacrylamide

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HPAM polymer drilling mud

Product Description
High Viscosity HPAM Polyacrylamide with 5-25 Million Molecular Weight and 89% Solid Content for Enhanced Oil Recovery PHPA
This high-viscosity HPAM polyacrylamide is engineered specifically for Enhanced Oil Recovery (EOR) polymer flooding. It features excellent thickening, stable rheology, fast dissolution, and a wide molecular-weight range to match reservoir conditions. The product is suitable for polymer flooding, water control, drilling fluids, and other oilfield chemical applications requiring consistent viscosity and reliable field performance.
Key Benefits
  • High viscosity at low dosage for improved mobility control
  • Fast dissolution with minimal fisheyes or undissolved particles
  • Stable polymer solution with strong resistance to mechanical degradation
  • Multiple ionic types (anionic, cationic, nonionic) to match reservoir requirements
  • Low residual monomer and high solid content for safe handling

 

Typical Technical Specifications
Parameter Typical Value
Appearance Off-white granular powder (20-100 mesh)
Ionic Type Anionic
Molecular Weight 5-25 million (depending on grade)
Solid Content ≥ 89%
Charge Degree 18-80%
Recommended Dosage 0.1% - 0.5%
pH (1% solution) 6 - 8
Bulk Density Approx. 0.8 g/cm³
Packaging 25 kg kraft/PE bags or 750 kg jumbo bags
Mechanism in Polymer Flooding
HPAM increases the viscosity of injection water, reducing the water-oil mobility ratio and enhancing the sweep of unswept zones within the reservoir. This results in a more uniform displacement front and greater recovery of remaining oil. The polymer's performance depends heavily on formation water salinity, temperature, shear exposure, and molecular-weight selection.
Reservoir Suitability
  • Temperature: Suitable for low-to-medium temperature reservoirs (commonly below 70°C)
  • Salinity: Works well in low to moderate salinity; divalent-rich brines require additional screening
  • Permeability: Ideal for sandstone and unconsolidated formations; adjust molecular weight for tight formations
  • Compatibility: Laboratory compatibility testing with formation water is recommended before field injection
Technical Highlights
  • High molecular weight: 5-25 million
  • Excellent thickening efficiency at low dosage levels
  • Fast dissolution and strong solution stability
  • Multiple ionic types for different reservoir chemistries
Implementation Notes
Effective EOR polymer flooding depends on correct polymer grade selection, formation water compatibility testing, pilot-scale validation, and careful injection control. The HPAM polymer described here is designed to support stable viscosity, reliable injectivity, and strong sweep efficiency when matched with proper reservoir engineering.