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PAC-Q0 Ultra-Low Ash Resin Based Spherical Activated Carbon for High-Purity Gas Purification

PAC-Q0 is a high-purity resin based spherical activated carbon engineered for precision gas purification applications. Manufactured from premium polymer raw materials through advanced curing, carbonization and steam activation processes, it features an extremely low ash content, uniform spherical geometry and well-developed pore structure. It delivers excellent adsorption performance, low flow resistance and stable long-term operation in demanding high-purity gas treatment scenarios.
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  • PAC-Q0

  • purestar

Product Overview

PAC-Q0 spherical activated carbon adopts selected organic polymer resin as raw material, processed through precise curing, high-temperature carbonization and controlled activation with carbon dioxide and steam. It features regular spherical shape, uniform particle size and highly consistent pore size distribution. With ash content below 2% and single chemical composition, it minimizes impurity release and avoids secondary pollution to gas systems.

The uniform spherical structure delivers stable and low pressure drop in gas flow, with excellent adsorption selectivity and low desorption rate, making it ideal for deep purification of high-purity gases and precision gas separation processes.

Specifications

Parameter

PAC-Q0

PAC-Q3

Unit

Ash content

< 2

< 2

%

Moisture content

< 5

< 5

%

Specific surface area

> 1000

> 1300

m²/g

Diameter

0.15 ~ 0.9

0.15 ~ 0.9

mm

Packaging

20 kg/bag、500 kg/bag

Key Features

  • Ultra-Low Ash Profile

    Extremely low ash content prevents inorganic leaching and catalyst poisoning in ultra-pure gas and chemical processes.

  • Uniform Spherical Geometry

    Perfectly round shape ensures excellent fluidization, minimal flow resistance and consistent contact efficiency in filtration systems.

  • Narrow & Single Pore Size Distribution

    Highly consistent pore structure with excellent adsorption selectivity, suitable for precise separation and targeted removal of specific gas components.

  • High Chemical Stability

    Inert carbon matrix provides excellent resistance to chemical corrosion, ensuring stable performance in demanding process environments.

Applications

  • Chemical Protective Equipment Filtration: Respiratory protective devices for chemical, biological and emergency response scenarios require media that captures diverse toxic gases without adding weight or bulk. PAC-Q0's uniform spherical shape provides excellent fluidization in filter canisters with minimal flow resistance, ensuring reliable protection in critical safety equipment.

  • Blood Purification Adsorption: Hemoperfusion and blood filtration systems need adsorbents with ultra-low ash and minimal impurity release. PAC-Q0's resin-based single-composition structure eliminates toxic metal leaching risks, providing safe adsorption of toxins and metabolic wastes from blood.

  • Pet Detoxification: Veterinary and pet care applications require safe, effective adsorption of ingested toxins. PAC-Q0's high purity and uniform pore structure enable rapid toxin capture in emergency detoxification protocols without introducing harmful contaminants.

  • Rapid-Response Water Treatment: Emergency water purification and high-purity process water systems need fast-acting adsorption with zero secondary contamination. PAC-Q0's narrow pore distribution and low pressure drop deliver precise, rapid impurity removal.

Technical Advantages

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  • Resin-based synthetic raw material ensures more uniform pore size distribution than natural raw material carbon, with higher adsorption selectivity for specific gas molecules.

  • Regular spherical shape brings more stable bed resistance than irregular granular carbon, avoiding channeling effect and ensuring uniform gas distribution.

  • Low desorption rate and stable adsorption performance reduce secondary release risk of adsorbed impurities under long-term continuous operation.

  • High mechanical strength and low dust generation maintain complete particle structure during long-term operation and backwashing.

Certifications

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PURESTAR adheres to strict quality control and international certification standards. Our authentic certifications include:

  • ISO 9001: Quality Management System

  • ISO 14001: Environmental Management System

  • ISO 45001: Occupational Health & Safety Management System

  • NSF: Certified for drinking water safety & sanitation

  • HALAL: Certified for food-contact applications

Quality Assurance

  • MSDS (Material Safety Data Sheet) available upon request

  • COA (Certificate of Analysis) provided with every shipment

All products undergo strict quality inspection to deliver stable, reliable performance for global customers.

Why Choose Us

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  • 10+ years of experience in activated carbon manufacturing and export

  • Stable production capacity ensuring reliable supply for bulk orders

  • Strict quality control system from raw material to final product

  • Customized solutions based on different industrial applications

  • Fast response within 12–24 hours for all inquiries

  • Professional technical support for product selection and application guidance

FAQ

Q: What is the difference between PAC-Q0 and PAC-Q3?

A: PAC-Q0 has specific surface area >1000 m²/g suitable for conventional high-purity gas purification. PAC-Q3 is an upgraded grade with >1300 m²/g delivering larger adsorption capacity for trace impurities, designed for deeper gas refining. For electrochemical precursor applications, consider PAC-Q Series.

Q: What is the standard particle size?

A: Standard range is 0.15–0.9 mm. Custom specifications can be provided according to system design and flow rate requirements. For catalyst carrier applications, GPC-P or CTC-100 may be alternatives depending on purity requirements.

Q: Can PAC-Q0 be regenerated?

A: Yes, PAC-Q0 supports controlled thermal regeneration under inert atmosphere. Its stable pore structure maintains good adsorption performance after multiple cycles. For non-regenerable medical applications, fresh replacement is standard practice.

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