Customization: | Available |
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Shape: | Sphere, Pellet |
Drying Method: | Static Drying |
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Technical Parameter:
Type | Adsorbent pressure (Mpa) |
Nitrogen concentration (N2%) |
Nitrogen quantity (NM3/h.t) |
N2/Air (%) |
CMS-200 | 0.8 | 99.99 | 72 | ≥21 |
99.9 | 140 | ≥31 | ||
99.5 | 200 | ≥40 | ||
99.0 | 275 | ≥45 | ||
98.0 | 325 | ≥46 | ||
97.0 | 365 | ≥48 | ||
CMS-220 | 0.8 | 99.99 | 85 | ≥21 |
99.9 | 165 | ≥31 | ||
99.5 | 220 | ≥40 | ||
99.0 | 280 | ≥45 | ||
98.0 | 335 | ≥46 | ||
97.0 | 375 | ≥48 | ||
CMS-240 | 0.8 | 99.99 | 92 | ≥21 |
99.9 | 180 | ≥31 | ||
99.5 | 240 | ≥40 | ||
99.0 | 305 | ≥45 | ||
98.0 | 365 | ≥46 | ||
97.0 | 410 | ≥48 | ||
CMS-260 | 0.8 | 99.99 | 105 | ≥21 |
99.9 | 205 | ≥31 | ||
99.5 | 260 | ≥40 | ||
99.0 | 310 | ≥45 | ||
98.0 | 380 | ≥46 | ||
97.0 | 425 | ≥48 |
While the compressed and purified air flows through the adsorbent bed with CMS inside in a bottom up way under the pressure of 0.6MPa, the oxygen molecules will be absorbed by the solid surfaces of the CMS, and the enriched nitrogen will be output from the top of the bed to the container.
When the adsorbent bed reaches the end of its capacity to absorb oxygen, it can be regenerated by reducing the pressure, thereby releasing the adsorbed oxygen. Using two adsorbent beds to absorb and regenerate in turn allows producing continuous nitrogen in cycle.