Claims
- 1. A plasma reactor comprising:
a primary dielectric having at least one slit defined therein; and a segmented electrode including a plurality of electrode segments, each electrode segment disposed proximate and in fluid communication with an associated slit.
- 2. The plasma reactor in accordance with claim 1, wherein the primary dielectric is a substantially planar dielectric plate with the at least one slit defined therethrough forming an open top end an open bottom end and closed walls on all sides.
- 3. The plasma reactor in accordance with claim 1, wherein the primary dielectric is a substantially U-shaped dielectric plate with a U-shaped channel forming the at least one slit.
- 4. The plasma reactor in accordance with claim 1, wherein the primary dielectric is a plurality of dielectric segments assembled together so that adjacent dielectric segments are separated by a predetermined distance to form the at least one slit therebetween, adjacent dielectric segments forming walls open on at least one side.
- 5. The plasma reactor in accordance with claim 4, wherein the plural dielectric segments are in the shape of one of a rod, a bar, a plate, an annular ring, an annular wedge.
- 6. The plasma reactor in accordance with claim 1, wherein the electrode segments are one of a blade, rod or wire.
- 7. The plasma reactor in accordance with claim 6, wherein the electrode segments are disposed substantially parallel to respective slits in the primary dielectric.
- 8. The plasma reactor in accordance with claim 6, wherein the electrode segments are disposed substantially perpendicular to respective slits in the primary dielectric.
- 9. The plasma reactor in accordance with claim 1, further comprising a receiving electrode disposed proximate the primary dielectric.
- 10. The plasma reactor in accordance with claim 1, wherein at least a portion of the receiving electrode is covered with a secondary dielectric.
- 11. The plasma reactor in accordance with claim 1, wherein the electrode segments are at least partially inserted into the respective slits of the primary dielectric.
- 12. The plasma reactor in accordance with claim 4, wherein the dielectric segments are a dielectric annular tube divided longitudinally into a predetermined number of annular sections, with adjacent sections separated to form a slit therebetween.
- 13. The plasma reactor in accordance with claim 4, wherein the dielectric segments are a dielectric annular tube divided laterally into a predetermined number of ring sections, with adjacent ring sections separated to form a slit therebetween.
- 14. The plasma reactor in accordance with claim 1, wherein the segmented electrode has a sawtooth edge.
- 15. The plasma reactor in accordance with claim 5, wherein the electrode segments are a plurality of electrode rods assembled together to form a slit between adjacent electrode rods.
- 16. The plasma reactor in accordance with claim 15, wherein the plural electrode rods are disposed about an inner cylindrical tube having a hollow center and apertures defined therethrough.
- 17. Method for using a plasma reactor including a primary dielectric having at least one slit, and a segmented electrode including a plurality of electrode segments, each electrode segment disposed proximate and in fluid communication with an associated slit, said method comprising the steps of:
applying a voltage differential between the segmented electrode and a receiving electrode disposed proximate the first dielectric to produce a plasma discharge; and emitting through the slit the generated plasma discharge.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional Application No. 60/336,866, filed on Nov. 2, 2001, which is hereby incorporated by reference in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60336866 |
Nov 2001 |
US |