Unlock Peak Performance in Air Separation with 13X APG Molecular Sieves

Experience unparalleled CO2 and H2O removal for superior air cryo-separation efficiency.

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Key Product Advantages

Enhanced Separation Efficiency

As a high capacity CO2 adsorbent, the 13X APG molecular sieve significantly boosts the purity of separated gases by effectively removing CO2, a critical step in many industrial processes.

Process Stability Assurance

The ability of this zeolite molecular sieve for air separation to prevent bed gelation ensures stable and reliable operation, reducing maintenance needs and operational risks.

Superior Adsorption Kinetics

Benefit from the fast adsorption speed molecular sieve technology, allowing for quicker cycling times and increased overall process efficiency for CO2 removal.

Key Applications

Air Cryo-Separation

The primary application where the 13X APG molecular sieve excels, providing essential CO2 and H2O removal for producing high-purity oxygen and nitrogen.

Industrial Gas Drying

Utilize its potent drying capabilities for various industrial gases, ensuring they meet stringent moisture content specifications, a key aspect of molecular sieve applications.

CO2 Removal Processes

An efficient adsorbent for processes requiring the removal of carbon dioxide, crucial for natural gas purification and other chemical processes.

H2O Removal Processes

Effectively removes water vapor from gas streams, protecting downstream equipment and maintaining process integrity, a core function of this molecular sieve.

Why Choose Us?

Leverage our expertise and state-of-the-art infrastructure to accelerate your journey from discovery to commercial success.

Global Experience

With 20 years of R&D, manufacturing, and sales experience, we proudly serve clients across 60 countries and regions worldwide.

Advanced Facilities

Our in-house R&D laboratory, pilot platform, and large-scale production workshop are equipped to meet the audit requirements of global customers.

Seamless Scalability

We facilitate a perfect transition from small-scale lab requirements (grams) to full commercialization (hundreds of tons).