Advanced Molecular Sieves 13X HP for Superior Oxygen Production
Achieve higher oxygen purity and efficiency with our specialized zeolite adsorbents for PSA oxygen concentrators.
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Molecular Sieves 13X HP
Our Molecular Sieves 13X HP are engineered with uniform pore sizes, making them ideal for selective adsorption in pressure swing adsorption (PSA) systems. They are specifically designed to enhance the performance of oxygen concentrators.
- Leveraging high nitrogen adsorption capacity, these sieves effectively separate nitrogen from air to produce high-purity oxygen.
- The excellent N2/O2 selectivity ensures efficient oxygen enrichment, critical for medical and industrial applications.
- As a highly effective desiccant agent, they can absorb moisture and humidity from liquids, oils, and gases.
- Their consistent performance in the N2/O2 separation process makes them a cost-effective solution for reliable oxygen generation.
Key Advantages
Enhanced Oxygen Purity
Achieve up to 93%±3% oxygen concentration, crucial for medical applications and industrial processes requiring high-purity oxygen.
Improved Efficiency
Experience faster adsorption rates and higher oxygen production output compared to conventional molecular sieves, optimizing your PSA system's performance.
Cost-Effectiveness
The superior performance and longevity of our molecular sieves translate into reduced operating costs and extended service life for your oxygen generation equipment.
Key Applications
Medical Oxygen Concentrators
Essential for home and portable oxygen concentrators, ensuring patients receive a continuous supply of medical-grade oxygen.
Industrial Oxygen Generation
Used in industrial PSA units for processes requiring high-purity oxygen, such as in manufacturing and chemical production.
Gas Purification and Drying
Acts as a versatile desiccant agent to remove water, CO2, and other contaminants from various gases and liquids.
Aquaculture and Wastewater Treatment
Supports oxygenation in aquaculture and is utilized in wastewater treatment processes.