Claims
- 1. A process for removing undesired particles from a gas stream, comprising:
contacting said gas stream with an additive composition comprising at least one of potassium nitrate and potassium nitrite and collecting at least a portion of the undesired particles and at least a portion of the additive composition or a derivative thereof on a collection surface to form on said collection surface an agglomerate comprising the at least a portion of the additive composition and the at least a portion of the undesired particles.
- 2. The process, as claimed in claim 1, further comprising:
removing said agglomerate from said collection surface.
- 3. The process, as claimed in claim 1, wherein the collection surface has a temperature of at least about 250° C.
- 4. The process, as claimed in claim 3, wherein the at least a portion of the additive composition comprises a plurality of additive particles and collecting step further comprises:
imparting an electrical charge to the undesired particles and additive particles and electrically attracting said electrically charged undesired particles and additive particles to the collection surface.
- 5. The process, as claimed in claim 1, wherein the at least a portion of the additive composition comprises a plurality of additive particles and said collecting step comprises filtering said undesired particles and additive particles containing said additive composition from said gas stream.
- 6. The process, as claimed in claim 1, wherein the additive composition comprises potassium nitrate.
- 7. The process, as claimed in claim 6, wherein said additive composition further comprises a nitrate and/or nitrite compounded with at least one metal other than potassium.
- 8. The process, as claimed in claim 7, wherein the additive composition, upon contact with the gas stream, comprises at least about 0.5 wt % of potassium nitrate and at least about 0.5 wt % of the nitrate and/or nitrite compounded with at least one metal other than potassium.
- 9. The process, as claimed in claim 7, wherein the at least one metal other than potassium is at least one of sodium, calcium, and aluminum.
- 10. The process, as claimed in claim 3, wherein the temperature of said collection surface is greater than the condensation temperature of water and the carrier fluid.
- 11. The process, as claimed in claim 1, wherein said additive composition comprises potassium nitrite.
- 12. The process, as claimed in claim 1, wherein the additive composition is in the form of a solid, when contacted with the gas stream.
- 13. The process, as claimed in claim 1, wherein the additive composition further comprises a solubilizing agent.
- 14. The process, as claimed in claim 13, wherein the solubilizing agent is a peroxygen compound.
- 15. The process, as claimed in claim 7, wherein a molar ratio between the at least one of potassium nitrate and potassium nitrite on the one hand and the nitrate and/or nitrite compounded with at least one metal other than potassium on the other ranges from about 0.2:1 to about 2:1.
- 16. A process, as claimed in claim 12, wherein the solid additive composition comprises at least about 25 wt % of the at least one of potassium nitrate and potassium nitrite.
- 17. A process, as claimed in claim 1, wherein the additive composition comprises at least about 75 wt. % solvent.
- 18. A process for removing undesired particles from a gas stream, comprising:
contacting said gas stream with a plurality of particles comprising a liquid additive composition including an oxidant and a solubilizing agent; and collecting at least most of said undesired particles and liquid additive particles on a collection surface to form an agglomerate.
- 19. The process, as claimed in claim 18, wherein said liquid additive particles are in the form of droplets and the droplets have a first Sauter Mean Diameter upon contacting with the gas stream ranging from about 20 to about 150 microns and, after vaporization of the carrier fluid, a second Sauter Mean Diameter ranging from about 1 to about 10 microns.
- 20. The process, as claimed in claim 18, wherein said oxidant comprises at least one of a nitrate, a nitrite, a phosphate, a phosphite, a carbonate, a sulfate, and a sulfite.
- 21. The process, as claimed in claim 20, wherein the oxidant comprises at least one of a nitrate and nitrite and the at least one of nitrate and nitrite is compounded with potassium.
- 22. The process, as claimed in claim 21, wherein the liquid additive composition comprises at least about 10 wt. % of the at least one of a potassium nitrate and potassium nitrite.
- 23. The process, as claimed in claim 18, wherein the liquid additive composition further comprises a mineral acid.
- 24. The process, as claimed in claim 18, wherein the oxidant is compounded with a metal and the metal is at least one of sodium, potassium, calcium, and aluminum.
- 25. A process for conditioning undesired particles in a gas stream, comprising:
contacting, with a gas stream comprising undesired particles, an additive composition comprising an oxidant, at least some of the oxidant being compounded with potassium; and imparting an electric charge to the undesired particles and particles of the additive composition; and collecting the charged undesired particles and additive composition particles on one or more electrically charged surfaces.
- 26. The process, as claimed in claim 25, wherein the oxidant comprises a nitrogen-containing anion selected from the group consisting essentially of a nitrate, a nitrite, and mixtures thereof.
- 27. The process, as claimed in claim 26, wherein at least some of the nitrogen-containing anion is compounded with a metal selected from the group consisting essentially of potassium, sodium, calcium, and aluminum.
- 28. The process, as claimed in claim 26, wherein at least about 25 mole % of the oxidant is compounded with potassium and the additive composition comprises at least about 10 wt. % of the oxidant.
- 29. The process, as claimed in claim 25, wherein the oxidant and potassium effect a resistivity reduction in at least some of the collected undesired particles of at least about 50%.
- 30. The process, as claimed in claim 25, wherein the additive composition is in the form of a liquid and comprises a solubilizing agent.
- 31. The process, as claimed in claim 30, wherein the solubilizing agent is a peroxygen compound.
- 32. The process, as claimed in claim 31, wherein the peroxygen compound is a peroxide.
- 33. An additive for conditioning undesired particles in a gas stream, comprising:
an oxidant, at least about 50 wt. % of the oxidant comprising a nitrogen-containing anion selected from the group consisting essentially of a nitrate and a nitrite, wherein at least some of the oxidant is compounded with potassium.
- 34. The additive of claim 33, wherein at least about 30 mole % of the oxidant is compounded with potassium and the additive is in the form of a liquid and comprises a solvent for the oxidant.
- 35. The additive of claim 34, wherein the additive further comprises a solubilizing agent for the oxidant.
- 36. The additive of claim 33, wherein the additive is in the form of a solid when injected into the gas stream and wherein the additive comprises at least about 75 wt. % oxidant.
- 37. The additive of claim 33, wherein at least some of the oxidant is compounded with at least one other metal selected from the group consisting essentially of sodium, calcium, aluminum, and mixtures thereof.
- 38. The additive of claim 35, wherein the solubilizing agent is a peroxygen compound.
- 39. The additive, as claimed in claim 38, wherein the peroxygen compound is a peroxide.
- 40. The additive, as claimed in claim 33, wherein at least about 0.1 mole % of the oxidant is compounded with potassium.
- 41. The additive, as claimed in claim 33, further comprising a mineral acid.
- 42. The additive as claimed in claim 37, wherein at least about 50 mole % of the oxidant is compounded with the at least one other metal.
- 43. A process for removing undesired particles from a gas stream, comprising:
contacting said gas stream with a plurality of solid additive particles comprising an oxidant selected from the group consisting essentially of nitrates, nitrites, and mixtures thereof; wherein the plurality of particles are in the form of a free-flowing solid powder when contacted with the gas stream; and electrically collecting at least most of the undesired particles and additive particles on a collection surface to form an agglomerate.
- 44. The process as claimed in claim 43, wherein the oxidant is compounded with a metal selected from the group consisting essentially of an element in Groups 1, 2, 6, 7, 8, 9, 10, 11, 12 and 13 of the Periodic Table and mixtures thereof and wherein the particles comprise at least about 25 wt. % of the oxidant.
- 45. The process, as claimed in claim 43, wherein at least about 80% of the additive particles have a particle size of no more than about 15 microns.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application claims the benefits under 35 U.S.C. §119(e) of copending U.S. Provisional Application Serial No. ______, filed Aug. 30, 2002, to Baldrey et al., which is incorporated herein by reference in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60407519 |
Aug 2002 |
US |