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PHPA Powder 89% Min. Solid Content Anionic Copolymer for Contaminated Drilling Fluids

Categories Drilling Mud Additives
Certification: ISO/SGS
Solid Content: 89% Min.
Price: Negotiation
Packaging Details: 25kgs plastic drums, 1000kg IBC drums
Application Grade: Industrial and Oilfield Drilling Grade
Supply Ability: 5,000MT per month
Appearance: White Powder
Product Category: Drilling Fluid Additive
Payment Terms: T/T or L/C
Ionic Character: Anionic
Polymer Type: Water-Soluble Anionic Copolymer
Delivery Time: 10 working days after received your payment
Brand Name: Blufloc
Shelf Life: 2 Years
Specific Gravity: 1.01–1.10 at 25°C
Place of Origin: China
MOQ: 500kgs
Effective pH Range: 5–14
Full Name: Partially Hydrolyzed Polyacrylamide Powder
Mixing Speed: 200–500 rpm
Bulk Density: About 0.8
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PHPA Powder 89% Min. Solid Content Anionic Copolymer for Contaminated Drilling Fluids

Product Introduction

PHPA Powder Rheology Modifier for Contaminated Drilling Fluids

Cement, salt, hardness, drilled solids, and treatment residues can shift polymer response and create rapid rheology changes.

BLUFLOC powder PHPA is described in the supplied family TDS as a water-soluble copolymer of anionic character used in drilling-fluid and selected oilfield applications. The four powder grades span very-high and ultra-high molecular-weight classes with medium or high charge. The table does not assign a unique application to any grade, so the target duty, water, formation, mixing system, and representative test results must decide selection.

Family TDS Screening Overview

4 Grades Comparative screening candidates
89% Min Powder solid content
0.1-0.3% Recommended solution solids
25 kg Lined kraft paper bags
01

Application Challenges

  • Cement, salt, hardness, drilled solids, and treatment residues can shift polymer response and create rapid rheology changes.
  • Insufficient carrying capacity at the relevant annular shear rates.
  • Excess filtrate or a permeable filter cake in a water-based system.
  • Overtreatment that raises pressure loss or equivalent circulating density.
02

How PHPA Powder Works

Hydrated high-molecular-weight PHPA contributes viscosity, protective-colloid behavior, particle association, and filter-cake modification. The observed balance between carrying capacity and fluid loss depends on polymer grade, hydration, clay and solids, dissolved ions, shear, temperature, and companion additives.

Molecular-weight and charge classes describe broad polymer behavior, not a guaranteed field result. Powder dispersion, complete hydration, solution concentration, water quality, pH, solids, shear, aging, temperature, and companion chemistry can materially change observed performance.

Important selection note: The grades below are screening candidates, not a fixed prescription. Final grade, solution concentration, process dose, preparation, addition point, and acceptance criteria require current grade documentation and representative laboratory and field or plant trials.

03

Recommended BLUFLOC Grade Screening

GradeMW ClassChargeScreening Position
HA6518Very HighMediumScreening candidate; selection requires representative testing
HA8520Very HighHighScreening candidate; selection requires representative testing
HAA6520Ultra HighMediumScreening candidate; selection requires representative testing
HAA7525Ultra HighHighScreening candidate; selection requires representative testing
04

TDS Specifications

Powder Grade Classification

Powder GradeMolecular Weight ClassCharge Class
HA6518Very HighMedium
HA8520Very HighHigh
HAA6520Ultra HighMedium
HAA7525Ultra HighHigh

Family TDS Values and Guidance

Family TDS ItemPowder Product Value or Guidance
Product formPowder
AppearanceWhite powder
Solid content89% min
Bulk densityAbout 0.8
Specific gravity at 25 degrees C1.01-1.10
Shelf life2 years
Packaging25 kg kraft paper bags with inner PE liners, palletized
Recommended solution concentration0.1-0.3% solids
Recommended make-up water temperature10-40 degrees C
Effective pH range5-14
TDS mixing guidanceAbout 1 hour; propeller stirrer at 200-500 rpm

TDS confirmation note: Exact active content, viscosity, specification limits, shelf life, and preparation instructions should be confirmed on the current grade-specific TDS and order specification.

05

Powder Preparation and Dosing Guidance

The supplied family TDS recommends preparing powder PHPA at 0.1-0.3% solids with make-up water at 10-40 degrees C and an effective pH range of 5-14. Efficient dispersion is required; a polymer eductor or commercial dry-powder feeder is suggested. After dispersion into agitated water, continue stirring for about one hour. The TDS notes a propeller-type stirrer at 200-500 rpm and recommends separate stock make-up and solution holding tanks. The prepared anionic solutions are described as stable for up to one week. Aluminum, zinc, copper, and iron should be avoided in the make-up system. Confirm all details against the current grade-specific TDS, SDS, equipment manual, and order specification.

Scale-up warning: Do not scale a laboratory rpm directly to a full tank. Validate impeller, tank geometry, feed distribution, water flow, residence time, shear, and solution quality at the intended production rate.

06

Application Advantages to Evaluate

Target Application

Potential fit for PHPA powder rheology modifier for contaminated mud after representative qualification.

Comparative Screening

Four TDS-listed molecular-weight and charge class combinations for comparative screening.

Powder Solids

Powder format with at least 89% solids stated in the family TDS.

Formulation Compatibility

PHPA-family compatibility statement covering biopolymers, PAC, and CMC, subject to formulation testing.

Export Packaging

Palletized 25 kg lined bag format for storage, export, and controlled field make-down.

07

Recommended Evaluation and Dosing Workflow

STEP 01

Establish untreated rheology, gels, filtration, solids, and hydraulic baselines.

STEP 02

Prepare candidate powder grades at a verified concentration and full hydration.

STEP 03

Measure a dose response across viscosity, yield behavior, gels, filtration, and screenability.

STEP 04

Age and contaminate the complete formulation under representative temperature and shear.

STEP 05

Confirm pumpability, hole cleaning, pressure response, solids control, and treatment economics in a controlled trial.

08

Product Selection and Compatibility

Build contamination tolerance curves and define corrective actions before field exposure.

Compare candidates on polymer solids and achieved operating outcome. Price per bag can be misleading when hydration, make-down losses, dose, equipment throughput, drilling response, fluid recovery, waste, logistics, and downstream costs differ.

09

Operating Indicators and Troubleshooting

Operating Indicators to Record

  • Rheology versus contaminant level
  • Fluid loss
  • pH and hardness
  • Solids and conductivity
  • Treatment recovery

Troubleshooting Note

If performance drifts: If a small contaminant increase causes a large response, check preparation, additive sequence, and polymer-clay interactions before adding more PHPA.

10

Packaging, Storage, and Safe Handling

The supplied TDS states that powder products are packed in 25 kg kraft paper bags with inner PE liners and are palletized. Store unopened material in its original packaging in a cool, dry place away from heat, flame, and direct sunlight. The family table states a two-year shelf life for powder products. Protect opened bags from moisture and contamination. Follow the current SDS for personal protection, dust control, spill cleanup, transport, and disposal. Wet polymer is extremely slippery; contain and clean spills promptly.

11

Why Choose Bluwat Chemicals

  • More than 25 years of water-treatment chemical manufacturing experience since 2000.
  • Three production bases supporting factory-direct supply, batch planning, and export coordination.
  • Export experience serving customers in more than 80 countries and regions.
  • Technical screening support using the customer's formation, drilling fluid, brine, produced water, or make-up water.
  • TDS, SDS, COA format, packing details, and available company-level certification documents for commercial review.

For PHPA powder rheology modifier for contaminated mud, Bluwat can review the target duty, water and formation data, make-down equipment, proposed test methods, and the four TDS-listed powder classes with the customer. Company-level certifications or management-system documents should not be represented as grade-specific application approvals unless the applicable certificate explicitly says so.

12

Quality Control and Technical Support

  • Confirm the named grade, current specification limits, order requirements, and documentation before production.
  • Compare candidate grades under the same water chemistry, solids, temperature, shear, mixing, and aging conditions.
  • Record raw-material lot, solution concentration, hydration time, mixing energy, and test method for traceable evaluation.
  • Scale up only after laboratory acceptance criteria and a controlled field or plant trial have been agreed.
13

Frequently Asked Questions

Can PHPA correct every contamination event?

No. Source control, dilution, precipitation, solids removal, and other treatments may be required.

Why age contaminated samples?

Some polymer and clay responses develop over time and under temperature and shear.

Is the highest molecular-weight class always best?

No. Higher chain length can increase viscosity and bridging, but dispersion, shear, pumpability, solids control, and the target fluid window decide the grade.

Can PHPA universally replace PAC or CMC?

No. The TDS states compatibility, not interchangeability. Each additive can contribute differently to filtration and rheology.

Screen PHPA Powder for Contaminated Drilling Fluids

Share the target duty, formation and water data, mud formulation, make-down equipment, and proposed test method. Bluwat can help compare the four TDS-listed powder classes under representative conditions.

Request Grade Screening and Current TDS
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