High Ion Charge Cationic Polyacrylamide Polyelectrolyte PAM Polymer for Municipal Waste Water

PRODUCT PARAMETERS

Description
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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.

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High Ion Charge Cationic Polyacrylamide Polyelectrolyte PAM Polymer for Municipal Waste Water

Specifications of High Ion Charge Cationic Polyacrylamide Polyelectrolyte PAM Polymer for Municipal Waste Water

High Ion Charge Cationic Polyacrylamide– Technical Specs

Item Review

This cationic polyacrylamide (PAM) is a high-performance polyelectrolyte designed for community wastewater treatment. It carries a solid positive cost, which assists bind with negatively charged bits in water. This action creates bigger flocs that resolve quickly, boosting sludge dewatering and clarifying effluent.

Trick Specifications

Appearance: White to light yellow granular powder or great grains
Molecular Weight: 8– 12 million Daltons
Ionic Charge Thickness: High (normally 40– 60%).
Solids Web content: ≥ 90%.
Polymer Type: Cationic, straight chain framework.
pH Array (in solution): 4.0– 8.0.
Dissolution Time: Totally dissolves in 60– 90 mins with appropriate frustration.

Performance Perks

The polymer functions fast in cold or warm water. It lowers turbidity and suspended solids successfully. Operators see much better filter press performance and lower cake dampness web content. Chemical usage drops due to the fact that much less polymer is required per quantity of wastewater. The product also reduces sludge volume, which decreases disposal expenses.

Handling and Storage

Shop in a great, completely dry area away from straight sunlight. Keep product packaging secured when not in use to prevent moisture absorption. Use conventional PPE– gloves, safety glasses, and dust mask– during handling. Prevent producing air-borne dirt. Mix only with tidy, fresh water. Do not mix with oxidizing agents or strong acids/bases.

Dose Support

Common dosage ranges from 2 to 10 ppm, depending on wastewater high quality. Always run a jar examination prior to major application. Prepare a 0.1% to 0.3% working remedy by slow-moving enhancement to agitated water. Enable full aging time before feeding right into the treatment stream. Change dose based on real-time results and plant conditions.

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High Ion Charge Cationic Polyacrylamide Polyelectrolyte PAM Polymer for Municipal Waste Water

Applications of High Ion Charge Cationic Polyacrylamide Polyelectrolyte PAM Polymer for Municipal Waste Water

High Ion Charge Cationic Polyacrylamide for Local Wastewater Therapy

Powerful Solid-Liquid Separation

High ion fee cationic polyacrylamide (PAM) is widely used in local wastewater therapy plants. It works well to different solids from water. This polymer brings a strong favorable fee. That charge brings in adversely charged fragments discovered in sewer sludge. The result is fast and reliable clumping of great solids right into larger flocs.

Improved Sludge Dewatering

Community plants frequently deal with wet, hard-to-handle sludge. Adding cationic PAM makes dewatering easier. The polymer binds water molecules and strong particles with each other. This permits more water to drain away during mechanical pushing or centrifugation. Operators see drier cake solids and lower disposal expenses.

Better Clarifier and Working Out Performance

In main and secondary clarifiers, cationic PAM assists suspended solids resolve quicker. Without it, some bits remain drifting or take as well long to sink. With the appropriate dose, clarity improves and overflow rates enhance. Plants can handle higher circulations without losing performance.

Reduced Chemical Usage and Operational Prices

Because of its high fee density, much less cationic PAM is required compared to low-charge alternatives. This cuts chemical costs. It also lowers the load on downstream devices like filters and presses. Maintenance requires decline, and system uptime rises.

Compatible with Usual Therapy Procedures

This polymer fits efficiently right into existing setups– whether using dissolved air flotation, belt filter presses, or decanters. It mixes conveniently in common dosing systems. Operators do not require major adjustments to start using it. Simply change the feed rate based on sludge type and circulation conditions.

High ion cost cationic PAM supplies trustworthy outcomes across a range of metropolitan wastewater applications. Its efficiency in flocculation, resolving, and dewatering makes it a best option for modern-day treatment facilities going for performance and price control.

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.

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High Ion Charge Cationic Polyacrylamide Polyelectrolyte PAM Polymer for Municipal Waste Water

5 FAQs of High Ion Charge Cationic Polyacrylamide Polyelectrolyte PAM Polymer for Municipal Waste Water

Frequently Asked Questions: High Ion Charge Cationic Polyacrylamide for Municipal Wastewater

What is high ion charge cationic PAM?

High ion charge cationic polyacrylamide (PAM) is a water-soluble polymer. It carries a strong positive charge. This makes it very effective at binding with negatively charged particles in wastewater, such as sludge and organic matter.

How does it work in municipal wastewater treatment?

The polymer attracts and clumps together fine solids in the water. This process is called flocculation. Once clumped, the solids become heavier and settle faster. This helps clarify the water and improves dewatering of sludge.

Why choose high ion charge over low or medium charge types?

Municipal wastewater often contains high levels of organic sludge with strong negative charges. A high ion charge cationic PAM neutralizes these charges more effectively. This leads to better floc formation, faster settling, and drier sludge cakes.

Is it safe for use in public wastewater systems?

Yes. When used as directed, this polymer meets safety standards for municipal applications. It breaks down into harmless byproducts under proper treatment conditions. Always follow dosage guidelines to avoid excess residuals.

How should it be stored and handled?

Store the product in a cool, dry place away from moisture. Keep containers sealed when not in use. Use gloves and eye protection during handling. Avoid breathing dust. Mix only with clean water to prevent premature reaction or loss of effectiveness.

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