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Created with Pixso. Anionic PHPA Polymer Emulsion for Low-Solids Water-Based Mud

Anionic PHPA Polymer Emulsion for Low-Solids Water-Based Mud

Brand Name: Bluwat
Model Number: EC8050 / EA5620
MOQ: 1 Ton
Price: negotiable
Delivery Time: 7-10 Working days
Payment Terms: L/C, D/A, D/P, T/T
Detail Information
Place of Origin:
China
Certification:
ISO
Molecular Weight:
Very High
Charge Degree:
High
Appearance:
Milky White
Solid Content:
38-40%
Bulk Density:
About 1.0
Specific Gravity At 25°C:
1.01-1.05
Shelf Life:
6 Months
Packaging:
1000 Kg IBC Drum
Packaging Details:
1000 kg IBC drum
Product Description
BLUFLOC PHPA Emulsion · Low-Solids Mud Additive

Anionic PHPA Polymer Emulsion for Low-Solids Water-Based Mud

Screen EC8050 and EA5620 to balance shale control, rheology, selective solids behavior, and dilution economics in low-solids water-based mud.

Very High Molecular Weight
38-40% Solid Content
Low-Solids Mud Screening
EC8050 & EA5620
01

Product Introduction

Low-solids PHPA muds use polymer functionality while limiting colloidal clay loading, making selective solids behavior and dilution control central to system economics.

Polymer that extends a small bentonite fraction can improve rheology, yet nonselective flocculation or poor solids-control tuning can retain unwanted fines. BLUFLOC EC8050 and EA5620 are the two PHPA emulsion grades listed in the supplied family TDS. Both are shown as very-high-molecular-weight, high-charge, milky-white emulsions with 38-40% solid content. The TDS does not assign them different application roles, so final selection must come from current grade documents and representative testing.

02

Application Challenges

Polymer and Solids Balance

Polymer can extend a small bentonite fraction, but nonselective flocculation or poor solids-control tuning may retain unwanted fines.

Reactive Shale

Shale may disperse rapidly after contact with the water phase.

Fine Drilled Solids

Dispersed fines can accumulate and increase low-gravity solids.

Wellbore and Shaker Response

Wellbore enlargement, cavings, or unstable cuttings may appear at the shakers.

03

How the PHPA Emulsion Works

PHPA is used in water-based drilling fluids to adsorb at multiple points on shale and drilled solids. The resulting polymer film and encapsulation can reduce dispersion and disintegration while the long polymer chain also influences low-shear rheology and solids behavior. In a KCl-PHPA design, KCl and PHPA perform different but complementary roles, so the polymer should not be treated as a substitute for the entire inhibition package.

Very-high molecular weight provides long-chain reach, while the stated high charge describes the broad grade class. Neither description alone predicts field performance. Preparation quality, dissolved ions, pH, temperature, solids, shear, aging, and the complete chemical package can change the observed result.

Important selection note: The grades below are screening candidates, not a fixed prescription. Final selection, preparation, dose, addition point, and performance acceptance require representative laboratory and field or plant trials.
04

Recommended BLUFLOC Grade Screening

Grade Molecular Weight Charge Screening Position
EC8050 Very High High Screening candidate; no grade-specific application role stated
EA5620 Very High High Screening candidate; no grade-specific application role stated
05

TDS Specifications

TDS Item EC8050 EA5620
Product form Emulsion Emulsion
Molecular weight Very High Very High
Charge degree High High
Appearance Milky white Milky white
Solid content 38-40% 38-40%
Bulk density About 1.0 About 1.0
Specific gravity at 25°C 1.01-1.05 1.01-1.05
Shelf life 6 months 6 months
Packaging 1000 kg IBC drum 1000 kg IBC drum
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.
The supplied family TDS contains a general preparation section that refers to a polymer eductor or dry-powder feeder. It does not provide a separate inversion or make-down procedure for EC8050 and EA5620 emulsions. Do not automatically apply powder preparation instructions to the emulsion grades; obtain the current grade-specific emulsion procedure before commissioning.
06

Application Advantages to Evaluate

  • Potential fit for the defined anionic PHPA emulsion for low-solids mud duty after representative testing
  • Very-high-molecular-weight PHPA emulsion format for liquid handling and metering
  • High-charge classification stated for both EC8050 and EA5620 in the supplied TDS
  • PHPA-family compatibility claim covering biopolymers, PAC, and CMC, subject to formulation testing
  • Factory-direct documentation, sample screening, order coordination, and export support
07

Recommended Evaluation and Dosing Workflow

  1. Characterize the formation and baseline mud, including shale reactivity, salinity, hardness, pH, solids, and temperature.
  2. Screen EC8050 and EA5620 at several active-polymer doses without assuming the two TDS-listed grades have different application roles.
  3. Compare hot-rolling recovery, cuttings integrity, dispersion, rheology, fluid loss, and lubricity against an untreated control.
  4. Repeat the preferred condition with the actual KCl, PAC, CMC, biopolymer, weighting material, and contamination expected in the field.
  5. Run a controlled field trial and trend dilution, solids-control load, cavings, torque, drag, and mud properties before changing the treatment program.
08

Product Selection and Compatibility

Evaluate bentonite extension, drilled-solids response, settling, screenability, and rheology across contamination levels. Keep the low-solids objective explicit during every dose decision.

Compare candidates on active-polymer mass and total operating outcome. Neat-emulsion price per kilogram can be misleading when active content, make-down efficiency, dose, equipment throughput, solids or fluid quality, drilling performance, logistics, and downstream costs differ.

09

Operating Indicators to Record

Low-gravity solids percentage
Bentonite requirement
Yield and low-shear viscosity
Shaker and centrifuge removal efficiency
Dilution and disposal volume
10

Troubleshooting Note

If performance drifts: If viscosity is acceptable but solids climb, review polymer selectivity, screen choice, centrifuge settings, and the point at which drilled solids encounter the polymer.
11

Packaging, Storage, and Safe Handling

The supplied TDS specifies 1000 kg IBC drum packaging for liquid products. Store the product in its original packaging in a cool, dry place away from sources of heat, flame, and direct sunlight. The stated shelf life for the emulsion products is 6 months. Follow the current SDS for handling, spill control, personal protection, transport classification, and disposal. Polymer spills may create a severe slip hazard and should be contained and cleaned promptly.

12

Why Choose Bluwat Chemicals

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

For anionic PHPA emulsion for low-solids mud, Bluwat can review the target duty, prepare a screening plan, compare the TDS-listed emulsion grades, and define laboratory and field acceptance indicators with the customer. Company-level certificates or management-system documents should not be represented as grade-specific application approvals unless the applicable certificate explicitly says so.

13

Quality Control and Technical Support

  • Confirm the selected grade, current specification, order limits, and documentation before production.
  • Screen EC8050 and EA5620 with representative fluids because the supplied family TDS does not assign different application roles to the two grades.
  • Record water chemistry, temperature, shear history, mixing sequence, and baseline fluid properties during laboratory work.
  • Scale up only after agreed performance indicators and operating limits are demonstrated under representative conditions.
14

Frequently Asked Questions

Why use PHPA in a low-solids mud?

It can contribute shale control and rheology while limiting reliance on colloidal solids, provided solids removal remains effective.

Can the product be added directly to dirty active mud?

Only if the grade-specific procedure and field trial support it; poor dispersion and high solids can create erratic treatment.

Does PHPA stop every type of shale instability?

No. It can support encapsulation and dispersion control, but mechanical instability, pressure imbalance, fractured formations, and unsuitable mud weight require separate diagnosis.

Can PHPA replace KCl in a KCl-polymer mud?

Not automatically. Industry references describe KCl as a shale inhibitor in many PHPA mud designs; the two materials should be evaluated as parts of a complete formulation.

Build a Low-Solids PHPA Screening Plan

Share your formation, drilling-fluid, water-chemistry, bentonite, solids-control, and operating data to compare EC8050 and EA5620 under defined laboratory and field acceptance conditions.