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Combined Multifunctional Impinging Stream Gas-Liquid Reactor

Figure 7.21 Combined multifunctional impinging stream gas-liquid reactor. 1-tower 2-screen foam-remover 3-gas outlet tube 4-liquid outlet tube 5-gas conduit 6-eddy pressure nozzle 7-... Figure 7.21 Combined multifunctional impinging stream gas-liquid reactor. 1-tower 2-screen foam-remover 3-gas outlet tube 4-liquid outlet tube 5-gas conduit 6-eddy pressure nozzle 7-...
It can be seen that in the combined multifunctional impinging stream gas-liquid reactor shown in Figs. 7.21 and 7.23. the working principles and action in enhancing transfer between phases for each sub chamber of absorption are the same as those of the reactor shown in Fig. 7.10. The first difference between the two reactors is that a pair of impinging streams is added in the direction perpendicular to the flow axis of the original pair of impinging streams. As a result, the utilization factor of the space inside the sub chamber is increased. [Pg.189]

Figure 7.23 Combined multifunctional impinging stream gas-liquid reactor with the screen foam remover (2) in Fig. 7.21 replaced by the internal cyclone (9) in this figure. Figure 7.23 Combined multifunctional impinging stream gas-liquid reactor with the screen foam remover (2) in Fig. 7.21 replaced by the internal cyclone (9) in this figure.

See other pages where Combined Multifunctional Impinging Stream Gas-Liquid Reactor is mentioned: [Pg.187]    [Pg.189]    [Pg.348]    [Pg.187]    [Pg.189]    [Pg.348]   


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Combined gas

Combined reactor

Gas streams

Gas-liquid reactors

Impinger

Impingers

Impingment

Liquid reactors

Liquid stream

Multifunction combination

Multifunctional

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