Advanced Zeolite 13X Molecular Sieves for Oxygen Production and Gas Purity
Unlock superior oxygen purity and efficient gas separation with our high-performance Zeolite 13X molecular sieves.
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Zeolite 13X Molecular Sieves
Leveraging a unique 10 angstrom pore size and a sodium aluminosilicate structure, these molecular sieves are engineered for exceptional performance in separating nitrogen from air, crucial for generating high-purity oxygen. Their inherent properties ensure efficient adsorption of contaminants like CO2 and moisture, making them ideal for a wide range of purification tasks.
- Discover how Zeolite 13X molecular sieves enhance PSA oxygen generation, delivering medical-grade oxygen with remarkable purity.
- Learn about the high adsorption capacity of 13X molecular sieves, vital for efficient nitrogen removal in oxygen concentrators.
- Understand the molecular sieve regeneration process, allowing for cost-effective reuse and extended operational life in various applications.
- Explore the versatility of 10 angstrom pore size molecular sieve technology in industrial gas separation and purification challenges.
Key Advantages
Superior Purity Output
Achieve exceptional purity levels in oxygen concentration systems by utilizing the selective nitrogen adsorption capabilities of Zeolite 13X.
Extended Service Life
The robust nature of these adsorbents, coupled with effective regeneration methods, ensures long-term reliability and reduced replacement frequency.
Cost-Effective Operation
Benefit from reduced operating costs and energy consumption, a direct result of the high efficiency and reusability of zeolite 13X molecular sieves.
Key Applications
Oxygen Generation
Essential for Pressure Swing Adsorption (PSA) units, including portable and stationary oxygen concentrators, to produce high-purity oxygen for medical and industrial use.
Gas Purification
Effectively removes impurities such as CO2 and H2S from various gas streams, ensuring product purity in sectors like natural gas processing.
Solvent Drying
Ideal for removing moisture from solvents in the chemical and pharmaceutical industries, maintaining solvent integrity and preventing unwanted reactions.
Petrochemical Separation
Used in refineries to separate hydrocarbons and purify gas streams, contributing to the quality of refined products and operational efficiency.