Claims
- 1. A two-stage electrostatic separator for separating particles from a particle laden gas stream, the separator comprising:
- a housing;
- a plurality of pairs of spaced-apart gas-permeable first and second oppositely charged electrodes in a zig-zag arrangement thereof, the first electrodes being grounded and positioned upstream from the second electrodes;
- a separating section defined between the first and second electrodes in each of said plurality of pairs of electrodes; and
- a pre-charging section in fluid communication with the separating section of each of said plurality of pairs of electrodes and positioned upstream therefrom;
- each of said plurality of pairs of electrodes having a first end and a second end;
- wherein said first electrodes of adjacent said pairs of electrodes comprise a conduit receiving the particle laden gas stream;
- wherein said second electrodes of adjacent said pairs of electrodes comprise a section expelling a clean gas stream;
- wherein the housing incorporates said plurality of electrodes and the pre-charging section and further has an inlet, a first outlet co-axial with the inlet, and a second outlet, substantially perpendicular to an axis connecting the inlet and the first outlet;
- wherein the housing further includes an entering section, a middle section and an exiting section;
- wherein the entering and the exiting sections of the housing respectively extend from the middle section in opposite directions and gradually narrow toward the inlet and the first outlet, respectively;
- wherein the particle laden gas stream enters into the separator through the inlet, flows into the entering section of the housing and diverges therein, thereby slowing down the motion thereof, and further slowly flows into the separating sections positioned in the middle section of the housing;
- wherein the particles in the particle laden gas stream are pre-charged to a certain charge in the pre-charging section prior to entering the conduit and penetrate through the first electrodes into the separating sections of said plurality of pairs of electrodes, such that the particles are separated from the particle laden gas stream therein;
- wherein a clean gas stream exits from the separating sections through the second electrodes;
- wherein the clean gas stream flows from the expelling sections toward a narrower end of the exiting section of the housing and exits the separator through the first outlet;
- wherein the particles separated from the particle laden gas stream are removed from each separating section with a bleed flow arranged through the second outlet;
- wherein a recirculation means directs the bleed flow from the second outlet toward the inlet of the separator and collects the particles carried by the bleed flow prior to entering the separator;
- the separator further including a row of front insulator sections and a row of rear insulator sections, wherein the first ends of respective adjacent said pairs of electrodes are affixed to a respective one of said row of front insulator sections, wherein the second ends of respective adjacent said pairs of electrodes are affixed to a respective one of said row of rear insulator sections;
- wherein the pre-charging section includes a plurality of ionizing electrodes each arranged upstream from and between the adjacent said front insulator sections, and a plurality of water-cooled tubes, each adjacent to a respective one of said front insulator sections;
- wherein the particle laden gas stream enters a plurality of said conduits through front edges thereof between adjacent of said plurality of front insulator sections; and
- wherein the clean gas stream exits a plurality of said expelling sections through rear edges thereof between adjacent of said plurality of rear insulator sections.
- 2. A two-stage electrostatic separator for separating particles from a particle laden gas stream, the separator comprising:
- a pre-charging section and a separating section in fluid communication with the pre-charging section and positioned downstream therefrom;
- a pair of spaced-apart gas-permeable co-axial cylindrical electrodes charged at opposite polarities and with said separating section of an annular shape defined therebetween, with a first one of said pair of cylindrical electrodes being grounded and positioned upstream from a second one of said pair of cylindrical electrodes;
- a housing incorporating said pre-charging section and said pair of electrodes and having co-axial first and second outlets and an inlet substantially perpendicular to an axis of the first and the second outlets,
- wherein the particle laden gas stream enters into the separator through the inlet,
- wherein the particles in the particle laden gas stream are pre-charged to a certain charge in the pre-charging section and penetrate through the first cylindrical electrode into the annular separating section, wherein the particles are separated from the particle laden gas stream, such that a clean gas stream exits from the separating section through the second cylindrical electrode and further exits the separator through the first outlet, and the particles separated from the particle laden gas stream are removed from the separating section with a bleed flow arranged from the annular separating section through the second outlet.
- 3. A two-stage electrostatic separator for separating particles from a particle laden gas stream, the separator comprising:
- a housing;
- a pre-charging section and a separating section in fluid communication with the pre-charging section and positioned downstream therefrom;
- at least a pair of spaced-apart gas-permeable electrodes charged at opposite polarities and with said separating section therebetween, with a first one of said pair of electrodes being grounded and positioned upstream from a second one of said pair of electrodes;
- wherein the particles in the particle laden gas stream are pre-charged to a certain charge in the pre-charging section and penetrate through the first electrode into the separating section, wherein the particles are separated from the particle laden gas stream, such that a clean gas stream exits from the separating section through the second electrode, and such that the particles separated from the particle laden gas stream are partially collected on the grounded electrode and wherein said two-stage electrostatic separator has a plurality of said pairs of spaced-apart gas-permeable electrodes in a zig-zag arrangement thereof, each of said pairs having a first end and a second end, wherein said first electrodes of adjacent said pairs of electrodes comprise a conduit receiving the particle laden gas stream; wherein said second electrodes of adjacent said pairs of electrodes comprise a section expelling a clean gas stream, and wherein the particles separated from the particle laden gas stream are partially removed from the separation section of each of said plurality of said pairs of electrodes with a bleed flow arranged in a plane substantially perpendicular to said incoming particle laden gas stream and said outgoing clean gas stream.
- 4. The separator of claim 3, further including a row of front insulator sections and a row of rear insulator sections, wherein the first ends of respective adjacent said pairs of electrodes are affixed to a respective one of said row of front insulator sections, wherein the second ends of respective adjacent said pairs of electrodes are affixed to a respective one of said row of rear insulator sections, wherein the pre-charging section includes a plurality of ionizing electrodes each arranged upstream from and between the adjacent said front insulator sections, and a plurality of water-cooled tubes, each adjacent to a respective one of said front insulator sections.
- 5. The separator of claim 4, wherein the particle laden gas stream enters a plurality of said conduits through front edges thereof between adjacent of said plurality of front insulator sections, and wherein the clean gas stream exits a plurality of said expelling sections through rear edges thereof between adjacent of said plurality of rear insulator sections.
- 6. The separator of claim 3, further including an inlet for incoming particle laden gas stream, a first outlet for outgoing clean gas stream and said bleed flow providing an outlet for outgoing particle laden gas from each of said pairs of electrodes, and further including a recirculation means directing said bleed flow toward the particle laden gas stream entering the separator.
- 7. The separator of claim 6, further including a particle collecting means positioned between the second outlet and the inlet, such that prior to being supplied to the inlet, the bleed flow passes through said particle collecting means.
- 8. The separator of claim 6, further including a particle collecting means positioned upstream from the inlet of the separator, so that, prior to entering the separator, both the particle laden gas stream and the bleed flow pass through said particle collecting means.
- 9. The separator of claim 3, wherein the pre-charging section is positioned within the housing.
- 10. A two-stage electrostatic separator for separating particles from a particle laden gas stream, the separator comprising:
- a pre-charging section and a separating section in fluid communication with the pre-charging section and positioned downstream therefrom;
- at least a pair of spaced-apart gas-permeable electrodes charged at opposite polarities and with said separating section therebetween, with a first one of said pair of electrodes being grounded and positioned upstream from a second one of said pair of electrodes and wherein said first electrode includes a plurality of louvers;
- wherein the particles in the particle laden gas stream are pre-charged to a certain charge in the pre-charging section and penetrate through the first electrode into the separating section, wherein the particles are separated from the particle laden gas stream, such that a clean gas stream exits from the separating section through the second electrode, and such that the particles separated from the particle laden gas stream are partially collected on the grounded electrode.
- 11. A two-stage electrostatic separator for separating particles from a particle laden gas stream, the separator comprising:
- a pre-charging section and a separating section in fluid communication with the pre-charging section and positioned downstream therefrom;
- at least a pair of spaced-apart gas-permeable electrodes charged at opposite polarities and with said separating section therebetween, with a first one of said pair of electrodes being grounded and positioned upstream from a second one of said pair of electrodes and wherein at least one pair of electrodes is a pair of co-axial outer and inner cylindrical electrodes defining the annular separating section therebetween;
- wherein the particles in the particle laden gas stream are pre-charged to a certain charge in the pre-charging section and penetrate through the first electrode into the separating section, wherein the particles are separated from the particle laden gas stream, such that a clean gas stream exits from the separating section through the second electrode, and such that the particles separated from the particle laden gas stream are partially collected on the grounded electrode.
- 12. The separator of claim 11, wherein the outer electrode is grounded, wherein the particle laden gas stream flows into the annular separating section through the outer electrode substantially tangentially thereto, wherein the clean gas stream exits from the annular separating section through the inner electrode and escapes from the separator substantially along the axis of the inner cylindrical electrode, and wherein a bleed flow exits from the annular separating section substantially parallel to the clean gas stream and in the opposite direction.
- 13. The separator of claim 11, wherein the inner electrode is grounded, wherein the particle laden gas flows into the annular separating section through the inner electrode substantially tangentially thereto, wherein the clean gas stream exits from the annular separating section through the outer electrode substantially tangentially thereto, and wherein a bleed flow exits from the annular separating section substantially perpendicular to the particle laden gas stream and to the clean gas steam.
RELATED APPLICATIONS
This application is a divisional application of our Ser. No. 08/833,886 filed Apr. 10, 1997 and now U.S. Pat. No. 5,961,693.
US Referenced Citations (32)
Foreign Referenced Citations (3)
Number |
Date |
Country |
168565 |
Jun 1951 |
AUX |
673302 |
Jul 1979 |
RUX |
799625 |
Aug 1958 |
GBX |
Divisions (1)
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Number |
Date |
Country |
Parent |
833886 |
Apr 1997 |
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