Claims
- 1. A multi-stage vortex reactor vessel for enhancing the mixing of a material into a gas stream thereby forming a mixture and for maintaining said mixture out of contact with walls of said reactor vessel, comprising:
- first housing means having a first peripheral side wall defining a first elongated generally cylindrical vortex chamber having an inlet end and an outlet end;
- second housing means having a second peripheral side wall defining a second elongated generally cylindrical vortex chamber, said second housing being disposed concentrically outside said first chamber;
- first tangential inlet means in the inlet end of the first vortex chamber for introducing a first gas stream tangentially as a vortex flow into the first vortex chamber;
- second tangential inlet means in the second vortex chamber for introducing a second gas stream tangentially as a vortex flow into the second vortex chamber;
- transfer means in said first peripheral side wall adjacent said inlet end for introducing the second gas stream tangentially as a vortex flow from the second vortex chamber into the first vortex chamber adjacent the inlet end of the first vortex chamber for flowing around at least a part of the inside of said first peripheral side wall of the first vortex chamber for at least partially separating said first gas stream from said first peripheral side wall;
- means for dividing a gas stream into at least a first gas stream and a second gas stream and for introducing said first gas stream into the first inlet means in the first vortex chamber and said second gas stream into said second inlet means in the second vortex chamber;
- means for introducing a material into said first gas stream in the first vortex chamber for mixing therewith; and
- outlet means at said outlet end of the first vortex chamber for continuously removing gas from the first vortex chamber.
- 2. An apparatus as recited in claim 1 wherein said transfer means comprises an opening through the first side wall in the form of a vertical slot for introducing said second gas stream into said first vortex chamber along the first wall thereof in a circular flow around the axis of said chamber.
- 3. An apparatus as recited in claim 1 wherein the openings through the first side wall contain a guide plate forming an angle with the outer periphery of the first side wall for guiding a second gas stream in a controlled direction to the first vortex chamber.
- 4. An apparatus as recited in claim 1 further comprising a damper in the means for dividing the gas stream for regulating the proportion of first gas stream to second gas stream.
- 5. An apparatus as recited in claim 1 wherein said second vortex chamber includes annular housing means surrounding at least part of the first peripheral side wall at the inlet end of the first vortex chamber and providing a flow path for the second gas stream around at least a part of the first vortex chamber.
- 6. An apparatus as recited in claim 1 wherein said transfer means comprises a plurality of radially and angularly distributed gas inlet openings through an end wall at the inlet end of said first vortex chamber.
- 7. An apparatus as recited in claim 1 wherein said transfer means comprises an opening through the first side wall in the form of a vertical slot including a guide plate for introducing the second gas stream tangentially into the first vortex chamber along the first wall thereof in a circular flow around the axis of said first vortex chamber.
- 8. An apparatus as recited in claim 1 wherein said transfer means comprises a plurality of axially and angularly distributed gas inlet openings through the first peripheral side wall of said first vortex chamber including a guide plate for introducing the second stream tangentially into said second vortex chamber counter to the flow of said first stream.
- 9. An apparatus as recited in claim 8 further comprising a damper in the means for dividing the gas stream for regulating the proportion of first gas stream to second gas stream.
- 10. A method as recited in claim 9 wherein the gas flow is split immediately in front of the inlet duct of the vortex reactor.
- 11. An apparatus as recited in claim 8 wherein said second vortex chamber includes annular housing means surrounding at least a part of the first peripheral side wall at the inlet end of the first vortex chamber and providing a flow path for the second gas stream around at least a part of the first vortex chamber.
- 12. An apparatus as recited in claim 11 further comprising a damper in the means for dividing the gas stream for regulating the proportion of first gas stream to second gas stream.
- 13. An apparatus as recited in claim 11 wherein said transfer means comprises a plurality of radially and angularly distributed gas inlet openings through an end wall at the inlet end of the said first vortex chamber.
- 14. An apparatus as recited in claim 1 wherein said transfer means comprises a plurality of axially and angularly distributed gas inlet openings through the first peripheral side wall of said first vortex chamber for introducing said second gas stream into said first vortex chamber counter to the flow of said first stream.
- 15. An apparatus as recited in claim 14 wherein the openings through the first side wall contains a guide plate for introducing the second gas stream tangentially into the first vortex chamber.
- 16. A method of mixing a fluid stream into a gas stream, utilizing a vortex reactor, having a first generally cylindrical vortex chamber having an inlet and an outlet end, a second generally cylindrical vortex chamber disposed concentrically outside said first vortex chamber, and transfer means for introducing a gas stream tangentially from the second vortex chamber into the first vortex chamber, comprising the steps of:
- dividing a gas stream into at least a first and a second gas stream;
- introducing said first gas stream through an inlet duct tangentially as a vortex flow into said first vortex chamber at the inlet end of said first vortex chamber;
- introducing a fluid stream into said first vortex chamber at the inlet end of the first vortex chamber for mixing the fluid stream into the first gas stream;
- directing the second gas stream tangentially as a vortex flow into said second vortex chamber in the inlet end of said first vortex chamber;
- introducing gas from said second gas stream in the second vortex chamber through said transfer means into the first vortex chamber at a tangent thereto; and
- continuously removing gas through the outlet end of the first vortex chamber.
- 17. A method as recited in claim 16 wherein the fluid stream contains fine dispersed liquid droplets.
- 18. A method as recited in claim 16 wherein the fluid stream contains fine dispersed solid particles.
- 19. A method as recited in claim 16 wherein the fluid stream contains gaseous compounds.
- 20. A method as recited in claim 16 wherein the fluid stream is introduced into a hot flue gas stream in a vortex reactor for gas cleaning.
- 21. A method as recited in claim 16 wherein the second gas stream is introduced tangentially into the first vortex chamber and substantially in the opposite direction to the gas flow in the first vortex chamber for improving the mixing of gas and reactant.
- 22. A method as recited in claim 16 wherein the second gas stream is directed in heat exchange contact with a peripheral wall of the first vortex chamber.
- 23. A method as recited in claim 22 wherein the second gas stream is directed for heating the peripheral wall of the first vortex chamber.
- 24. A method as recited in claim 22 wherein the second gas stream is directed for cooling the peripheral wall of the first vortex chamber.
- 25. A method as recited in claim 22 wherein the first gas stream is introduced tangentially into the first vortex chamber for creasing a generally circular gas flow in said first vortex chamber.
- 26. A method as recited in claim 25 wherein the fluid stream is introduced substantially into the center of the circular gas flow at the inlet end of the first vortex chamber.
- 27. A method as recited in claim 25 wherein the second gas stream is introduced tangentially through a plurality of openings in a peripheral wall into the first vortex chamber and in the same direction as the circular gas flow in the first vortex chamber.
- 28. A method of establishing minimum contact between liquid droplets dispersed into a hot gas flow and gaseous compounds in the gas flow, utilizing a vertical vortex reactor having a first generally cylindrical vortex chamber having an upper inlet end and a lower outlet end, a second generally cylindrical vortex chamber disposed concentrically outside said first vortex chamber, and transfer means for introducing a gas stream tangentially from the second vortex chamber into the first vortex chamber, comprising the steps of:
- splitting the gas flow into a first larger gas flow and a second smaller gas flow;
- feeding the first gas flow tangentially through an inlet duct into an upper part of the first vortex chamber for forming a vortex gas flow;
- dispersing the liquid droplet into the vortex gas flow in the inlet end of the first vortex chamber for mixing the liquid droplets with the first gas flow;
- directing the second gas flow in the second vortex chamber in a path surrounding the upper part of the first vortex chamber for heating the upper part of the walls of the first vortex chamber;
- introducing gas from the second gas flow into the first vortex chamber through the transfer means for gradually contacting the second gas flow with the first gas flow and the dispersed liquid droplets; and
- continuously removing gas from the first vortex chamber at the outlet end.
- 29. A method as recited in claim 28 wherein the gas introduced through transfer means is introduced in the opposite direction to the vortex flow in the first vortex chamber.
- 30. A method as recited in claim 28 wherein droplets containing desulphurizing reagents are dispersed into a hot flue gas flow.
- 31. A method of mixing a fluid stream forming sticky compounds into a gas stream, utilizing a vortex reactor having a first generally cylindrical vortex chamber having an upper inlet end and a lower outlet end, a second generally cylindrical vortex chamber disposed concentrically outside said first vortex chamber, and transfer means for introducing a gas stream tangentially from the second vortex chamber into the first vortex chamber, comprising the steps of:
- splitting the gas stream into a first and a second gas stream before introducing the gas into an inlet end of the vortex reactor;
- introducing the first gas stream tangentially into said inlet end of the first vortex chamber for creating a whirling gas stream in the first vortex chamber;
- introducing the fluid stream substantially into the center of the whirling gas stream at said inlet end of the first vortex chamber;
- directing the second gas stream into the second vortex chamber at the inlet end of the first vortex chamber, in heat exchange contact with at least a part of a peripheral wall of the first vortex chamber;
- introducing the second gas flow tangentially through the transfer means for providing a shielding gas flow at the outer periphery inside the first vortex chamber for preventing sticky particles from depositing on the peripheral wall of the first vortex chamber and for gradually mixing the second gas stream into the whirling gas stream in the first vortex chamber; and
- continuously removing gas at said outlet end of the first vortex chamber.
Parent Case Info
This is a continuation of application Ser. No. 351,822, filed on May 12, 1989, now abandoned.
US Referenced Citations (6)
Foreign Referenced Citations (5)
Number |
Date |
Country |
1014936 |
Aug 1957 |
DEX |
860955 |
Sep 1987 |
FIX |
717238 |
Oct 1954 |
GBX |
1141196 |
Jan 1969 |
GBX |
1183912 |
Mar 1970 |
GBX |
Continuations (1)
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Number |
Date |
Country |
Parent |
351822 |
May 1989 |
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