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PRODUCT PARAMETERS
Description
Overview of Cationic Surfactant
Cationic surfactants are surface-active agents with a positively charged hydrophilic head. These surfactants are widely used in various industries, including personal care, textiles, and industrial cleaning. They are known for their antimicrobial properties, making them effective in disinfectants and fabric softeners. Their unique charge allows them to interact strongly with negatively charged surfaces, enhancing their effectiveness in specific applications.
Features of Cationic Surfactant
Positively Charged Head: The cationic nature of these surfactants makes them particularly effective in interacting with negatively charged surfaces.
Antimicrobial Properties: Effective against a wide range of microorganisms, making them ideal for use in disinfectants and sanitizers.
Fabric Softening: Commonly used in fabric softeners due to their ability to provide a soft feel and reduce static cling.
Emulsifying Ability: Can stabilize emulsions, which is useful in cosmetic and personal care products.
Foaming Characteristics: Produces stable foam, beneficial in cleaning products.
Solubility: Generally soluble in water and organic solvents, facilitating their use in various formulations.
Compatibility: Often compatible with other types of surfactants, allowing for versatile formulations.

Specifications of High Viscosity Cationic Charge Polyelectrolyte for Oil Recovery PAM CPAM Polyacrylamide
High Viscosity Cationic Fee Polyelectrolyte for Oil Recuperation
Item Introduction
This product is a high thickness cationic polyelectrolyte based on polyacrylamide (PAM/CPAM). It is specifically developed for enhanced oil recovery (EOR) procedures. The polymer delivers solid enlarging power and exceptional adsorption onto negatively charged rock surfaces in reservoirs. This aids enhance sweep performance and push more oil towards manufacturing wells.
Secret Requirements
Solid Content: Minimum 88%.
Molecular Weight: 8– 15 million Daltons.
Cationic Cost Thickness: 10– 50% (flexible based on area requirements).
Viscosity (1 ‰ service): ≥ 30 mPa · s at 25 ° C.
pH Array (1% remedy): 4.0– 7.0.
Bit Dimension: 20– 80 mesh (standard), or as asked for.
Recurring Acrylamide Monomer: ≤ 0.05%.
Performance Features
The polymer liquifies swiftly in fresh or brackish water. It continues to be steady under common storage tank salinity and temperature level conditions. Its cationic nature enables it to bind properly with sandstone and clay minerals, decreasing polymer loss and boosting uniformity control. The high molecular weight makes certain solid viscosity accumulation also at reduced concentrations. This decreases transportation and managing costs while preserving efficiency.
Handling and Storage
Shop in an awesome, dry area far from straight sunlight. Keep product packaging sealed when not in use to prevent dampness absorption. Usage standard commercial mixing devices for dissolution. Avoid too much shear throughout preparation to preserve molecular integrity. Constantly adhere to neighborhood safety and security guidelines when dealing with polymer powders.

Applications of High Viscosity Cationic Charge Polyelectrolyte for Oil Recovery PAM CPAM Polyacrylamide
Applications of High Thickness Cationic Cost Polyelectrolyte in Oil Recuperation
Boosted Oil Healing with CPAM
High viscosity cationic polyelectrolyte, additionally referred to as cationic polyacrylamide (CPAM), plays a vital function in modern oil recovery procedures. This polymer is specifically created to improve the effectiveness of removing petroleum from mature or low-permeability tanks.
Why CPAM functions well
CPAM carries a favorable cost that helps it bind tightly to adversely billed fragments found in tank rock and development water. This binding action decreases rubbing and supports the flow of fluids underground. Its high molecular weight offers it strong thickening power, which enhances the thickness of injected water throughout flooding processes. Because of this, water moves a lot more uniformly through the storage tank, pressing even more oil towards production wells.
Secret makes use of in the field
Operators usage CPAM in polymer flooding, a typical enhanced oil recovery (EOR) technique. By blending CPAM into shot water, they produce a much more effective variation front that sweeps trapped oil from pore rooms. It likewise assists control water mobility, which avoids very early water development and boosts move efficiency. In addition, CPAM lowers interfacial tension in between oil and water, making it simpler to mobilize recurring oil.
Performance in tough problems
This polyelectrolyte does reliably even in high-salinity or high-temperature environments normal of numerous oilfields. Its stable structure withstands destruction, ensuring regular outcomes with time. Area trials show that using CPAM can boost oil result by 10% to 25% compared to conventional water flooding.
Oil companies select high thickness cationic CPAM because it supplies real gains without major changes to existing infrastructure. It blends quickly with common shot systems and functions well alongside other EOR chemicals. With its tried and tested track record and economical performance, CPAM continues to be a smart choice for extending the effective life of oil storage tanks.
Company Introduction
Welcome to Robocup, a premier global supplier of high-quality surfactants. Our extensive range includes anionic, cationic, nonionic, and amphoteric surfactants, catering to industries such as personal care, textiles, cleaning, and industrial applications. With advanced manufacturing facilities and rigorous quality control, we ensure that our products meet the highest international standards. We pride ourselves on our commitment to innovation, sustainability, and customer satisfaction. Our dedicated team provides tailored solutions to meet your specific needs. Partner with us for reliable, high-performance surfactants that drive your business forward. Explore our offerings and discover the difference today.
If you have any questions, please feel free to contact us(nanotrun@yahoo.com).
Payment Methods
T/T, Western Union, Paypal, Credit Card etc.
Shipment Methods
By air, by sea, by express, as customers request.

5 FAQs of High Viscosity Cationic Charge Polyelectrolyte for Oil Recovery PAM CPAM Polyacrylamide
Frequently Asked Questions: High Viscosity Cationic Polyelectrolyte for Oil Recovery
What is high viscosity cationic polyelectrolyte used for in oil recovery?
This product is a type of polyacrylamide (PAM) with a positive charge. It helps improve oil recovery by thickening injection water and controlling its flow in reservoirs. This lets water push more oil toward production wells.
How does it work underground?
When mixed with water, the polymer increases viscosity. The thicker fluid moves more evenly through rock pores. Its cationic charge also helps it stick to negatively charged rock surfaces. This reduces water loss into less productive zones and directs flow toward trapped oil.
Why choose cationic over other types?
Many oil-bearing rocks carry a negative surface charge. A cationic (positively charged) polymer bonds better to these surfaces than neutral or anionic types. This gives stronger control over fluid movement and better sweep efficiency during flooding operations.
Is it stable under harsh reservoir conditions?
Yes. This polyelectrolyte is designed to handle high salinity, hard water, and temperatures common in oil fields. Its high molecular weight and strong ionic structure help it stay effective even when conditions are tough.
How is it applied on site?
The powder or liquid form is dissolved in fresh or produced water to make a working solution. This solution is then injected into the reservoir through injection wells. Dosage and concentration depend on reservoir depth, temperature, and water chemistry. Always follow technical guidelines for best results.
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