0.3 To 3.6MPa High Efficient Hydrogen PSA Unit Gas Generation Anti Rust
High Efficient Hydrogen PSA Unit 0.3-3.6MPa Pressure Stable Operation
General
The characteristics, process principle and process flow of PSA decarburization technology are basically the same as that of PSA in purifying hydrogen. The difference lies in that the raw gas of PSA is CO2 rich mixture and the product gas can be H2, N2 & CO.
Features
- Mature production technology and reliable operation
- Simplified and easy-to-operate process with quick start-up and shutdown
- High automation, simple and reliable operation and control
- Stable, safe and reliable operation
- Less land occupation, investment can be recovered in a short period of time
- Cost-effective operation and production
- Recovery of high concentration >90% CO2
Process Principle
De-carbonization separates carbon dioxide from other gaseous components by utilizing the nature of adsorbent which is selected adsorption of carbon dioxide in gas mixture under pressurized condition.
Meanwhile, adsorbents release adsorbed carbon dioxide gas under the depressurizing condition as to enable adsorbents to regain adsorbing capacity. One stage or two stages of operation are adopted based on the client’s different requirements for the contents of carbon dioxide as a product so as to ensure the yield of valid components and stable index.
Process Description
CO2 rich feed gas is pretreated and then entered into the PSA system from the bottom of the adsorption tower. Purified gas (H2, N2, CO) is obtained from the top of the tower. From the bottom of the tower, we get the desorption gas (main content is CO2) so to recover CO2 or release it into the atmosphere.
Performance
| ·Capacity | 5,000~100,000 Nm3/h |
| ·Remaining CO2 | ≤ 0.2%(v/v) |
| ·Pressure | 0.3~3.6MPa(G) |
| ·Hydrogen Recovery | ≥98%(v/v) |
| ·Nitrogen recovery | ≥90%(v/v) |
| ·CO recovery | ≥92%(v/v) |
Application
- CO2 removal and purification from water gas and semi water gas
- CO2 removal and purification from shift gas
- CO2 removal and purification from pyrolysis gas of methanol cracking
- CO2 removal or concentration from other sources of CO2 –rich gases
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