High Purity 5A Zeolite Molecular Sieves for Efficient CO2 and Oxygen Concentration
Achieve superior gas purification with our high-performance 5A zeolite molecular sieves, essential for critical applications.
Get a Quote & SampleProduct Core Value

5A Zeolite Molecular Sieve
Our 5A zeolite molecular sieve is a high-purity adsorbent with a precise 5 Angstrom pore diameter, making it ideal for selective adsorption of molecules based on size. Its exceptional capacity for removing CO2 and water makes it a cornerstone for advanced gas purification processes.
- Leverage the power of 5A molecular sieve for oxygen concentrator applications, ensuring high-purity oxygen output.
- Utilize its high purity for effective CO2 removal from various gas streams, enhancing air quality and process efficiency.
- Benefit from its performance in pressure swing adsorption (PSA) systems, enabling efficient gas separation and concentration.
- Discover the advantage of using zeolite molecular sieves for gas separation, isolating specific components with precision.
Key Advantages
Selective Adsorption
The defined 5 Angstrom pore size allows for highly selective adsorption, crucial for differentiating molecules in complex gas mixtures, a key aspect when considering 5A molecular sieve for CO2 removal.
High Purity Output
When used in oxygen concentrators, these sieves facilitate the production of high-purity oxygen, vital for medical and industrial applications, supporting the goal of obtaining a reliable 5A molecular sieve for oxygen concentrator.
Versatile Applications
Its broad applicability ranges from static dehydration of insulating glass units to the bulk separation of hydrocarbons, showcasing its utility as a versatile zeolite molecular sieve for gas separation.
Key Applications
CO2 Removal
Efficiently removes carbon dioxide from natural gas and other industrial gas streams, a critical step in many purification processes.
Oxygen Concentration
Plays a vital role in oxygen concentrators and PSA systems, concentrating oxygen from ambient air by adsorbing nitrogen.
Hydrocarbon Separation
Effectively separates normal paraffins from iso-paraffins, essential in petrochemical processing.
Static Dehydration
Used for the static, non-regenerative dehydration of insulating glass units, preventing moisture ingress.