A processing system includes an air blower and an air manifold with a main body having an inlet coupled to the air blower and a plurality of outlet openings. Each of the outlet openings is coupled to a nozzle. An ionizer bar includes a housing, a power cable contained within the housing, and a plura
A processing system includes an air blower and an air manifold with a main body having an inlet coupled to the air blower and a plurality of outlet openings. Each of the outlet openings is coupled to a nozzle. An ionizer bar includes a housing, a power cable contained within the housing, and a plurality of emitter pins electrically coupled to the power cable. A cartridge includes two side plates forming a channel in which the ionizer bar is mounted. The cartridge is removably couplable to an interior of the main body of the air manifold.
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1. A processing system comprising: an air blower;an air manifold comprising a main body having an inlet coupled to the air blower and a plurality of outlet openings, each of the outlet openings being coupled to a nozzle;an ionizer bar comprising a housing, a power cable contained within the housing,
1. A processing system comprising: an air blower;an air manifold comprising a main body having an inlet coupled to the air blower and a plurality of outlet openings, each of the outlet openings being coupled to a nozzle;an ionizer bar comprising a housing, a power cable contained within the housing, and a plurality of emitter pins electrically coupled to the power cable; anda cartridge including two side plates forming a channel in which the ionizer bar is mounted, the cartridge being removably couplable to an interior of the main body of the air manifold. 2. The system of claim 1, wherein at least one of the cartridge or the main body of the air manifold is formed of a conductive material. 3. The system of claim 2, wherein the housing of the ionizer bar is formed of a non-conductive material. 4. The system of claim 3, wherein the at least one of the cartridge or the main body forms a reference electrode for the ionizer bar. 5. The system of claim 1, further comprising a plurality of hollow, elongated cylindrical shafts, each of which is coupled to one of the plurality of nozzles for receiving and emitting air output by the nozzles. 6. The system of claim 5, wherein an inner diameter of each of the cylindrical shafts is constant along a length thereof. 7. The system of claim 6, wherein an outer diameter of each of the cylindrical shafts is constant along a length thereof, the inner diameter being about 5/16 of an inch and the outer diameter being about ⅜ of an inch. 8. The system of claim 1, wherein each of the two side plates of the cartridge includes a lip extending perpendicularly therefrom toward the channel, the lips forming a slot extending longitudinally along the cartridge. 9. The system of claim 8, wherein the housing of the ionizer bar includes a pair of longitudinally extending grooves on opposing sides of the housing, the lips of the cartridge being configured to engage respective ones of the grooves on the housing when the ionizer bar is installed in the cartridge such that the emitter pins extend through the slot. 10. The system of claim 1, wherein an end of the housing of the ionizer bar opposite to the inlet opening is filled with a non-conductive material. 11. The system of claim 10, wherein the non-conductive material is a polyolefin-based hot melt adhesive. 12. The system of claim 1, wherein the cartridge is removably coupled to the interior of the main body of the air manifold by a plurality of bolts extending from an exterior of the main body of the air manifold to the interior and into the cartridge. 13. The system of claim 12, wherein the cartridge includes a plurality of nut plates each having a threaded hole, each of the bolts being received in a corresponding threaded hole. 14. The system of claim 1, wherein a cable opening is provided in the main body of the air manifold at a radial outer surface thereof, the cable opening receiving the power cable of the ionizer bar. 15. The system of claim 14, wherein the cable opening is proximate to the inlet opening. 16. The system of claim 1, wherein a cable opening is provided in the main body of the air manifold at a sealed end opposite to the inlet opening, the cable opening receiving the power cable of the ionizer bar. 17. The system of claim 1, wherein the cartridge includes a spacer at an end thereof that is adjacent to the inlet opening when the cartridge is installed in the air manifold. 18. The system of claim 1, further comprising a filter arranged between the air blower and the inlet of the main body of the air manifold.
Parker Wesley A. (Pasadena TX) Gwyn John E. (Pasadena TX) McCullough Glenn R. (Pasadena TX), Fluidized bed regeneration of carbon-contaminated catalysts using gas discharge nozzles of specific dimensions.
McCracken Thomas W. (Orleans CAX) Jonasson Kevin A. (Orleans CAX) Bennett Adam J. (Ottawa CAX), Liquid atomizing device with controlled atomization and spray dispersion.
Mercer William B. (Annapolis MD) Cardarelli Nathan F. (Akron OH) Henry Richard L. (Akron OH), Toxin containing perforated antifouling polymer nozzle grommet.
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