Variable-pressure adsorption method using auxiliary system
A pressure swing adsorption method and auxiliary system technology, applied in separation methods, chemical instruments and methods, dispersed particle separation, etc., can solve the problems of low partial pressure of easily adsorbed components, insufficient saturation depth, energy consumption, etc., and improve the utilization rate , large adsorption capacity, and the effect of improving purity
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Embodiment 1
[0021] This embodiment is used for hydrogen extraction from methanol tail gas, and the gas pressure of the raw material is 1.8MPa gauge pressure. This embodiment adopts the A.62220+B.31114 process, that is, the main system A is a six-tower process, in which the two towers are fed at the same time, the two towers are evacuated at the same time, and the pressure is equalized directly twice without indirect pressure equalization; the auxiliary system B It is a three-tower process, in which a single tower is fed in, a single tower is evacuated, one direct pressure equalization, and four indirect pressure equalizations. In each period of the adsorption regeneration cycle of the main system and the auxiliary system, the steps of each tower are shown in Tables 1 and 2.
[0022] A1
Adsorption and output of hydrogen
output to system B
A2
two bucks
release pressure
evacuate
A3
take time out
triple boost
Final punch
...
Embodiment 2
[0028] This embodiment is used for shift gas separation in urea production, and the feed gas pressure is 0.8 MPa gauge pressure. This embodiment adopts the A.C4320+B.81131 process, that is, the main system A is a twelve-tower process, in which four towers are fed at the same time, three towers are evacuated at the same time, the two towers are directly equalized, and there is no indirect pressure equalization process: Auxiliary system B It is an eight-tower process, with single-tower air intake, single-tower evacuation, three direct pressure equalizations and one indirect pressure equalization. In each period of the adsorption regeneration cycle of the main system and the auxiliary system, the steps of each tower are shown in Table 3 and Table 4.
[0029] A1
Adsorption and output of hydrogen and nitrogen
output to system B
A2
two bucks
release pressure
take time out
A3
evacuate
triple boost
Final punch
A4
...
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