A premium carbon molecular sieve engineered for PSA nitrogen generation, delivering nitrogen purity up to 99.999% with exceptional separation efficiency for the most demanding high-purity applications.
Key Features
* Ultimate Purity: Achieves nitrogen purity of 99.999% in a single PSA stage, meeting the most demanding industrial and scientific specifications.
* Uncompromising Quality: Engineered for applications where product purity is the sole priority and flow rate is secondary.
* Superior Separation Efficiency: Precisely controlled 4Å micropore structure ensures the highest possible oxygen-nitrogen separation efficiency.
* Stable and Reliable: Consistent pore structure guarantees stable purity and recovery rate over an extended operational life.
* Low Maintenance: High mechanical strength and low attrition rate minimize dusting, reduce system fouling, and lower maintenance costs.
* Critical High-Value Applications: Ideal for semiconductor manufacturing, high-end electronics production, specialized pharmaceutical synthesis, and precision scientific research.
BS-CMS-10UHP prioritizes ultimate separation efficiency and stability of purity. BS-CMS-10UHP is capable of producing ultra-high purity nitrogen of 99.999% in a single pass. For purity levels exceeding 99.999%, a post-purification unit may be required. It is the ideal choice for the most critical industrial processes where even trace oxygen contamination can compromise product quality, process safety, or scientific integrity, such as advanced semiconductor manufacturing, high-end electronics, specialized pharmaceutical synthesis, and precision scientific research.
Property
Value
Particle Size
0.9mm
Working Pressure
0.8-0.9 Mpa
Bulk Density
650-690 kg/m³
Crushing Strength
≥85 N
Adsorb Time
40s
* Ultimate Purity: Achieves nitrogen purity of 99.999% in a single PSA stage, meeting the most demanding industrial and scientific specifications.
* Uncompromising Quality: Engineered for applications where product purity is the sole priority and flow rate is secondary.
* Superior Separation Efficiency: Precisely controlled 4Å micropore structure ensures the highest possible oxygen-nitrogen separation efficiency.
* Stable and Reliable: Consistent pore structure guarantees stable purity and recovery rate over an extended operational life.
* Low Maintenance: High mechanical strength and low attrition rate minimize dusting, reduce system fouling, and lower maintenance costs.
* Critical High-Value Applications: Ideal for semiconductor manufacturing, high-end electronics production, specialized pharmaceutical synthesis, and precision scientific research.