Claims
- 1. A regenerable attrition resistant sorbent useful in a fluidized bed for the removal of gaseous nitrogen oxides, sulfur oxides and hydrogen sulfide from waste gas streams, which sorbent comprises
- (a) a gamma alumina substrate having a surface area between 100 m.sup.2 /g and 500 m.sup.2 /g and a pore volume between 0.4 and 0.8 cc/g, said gamma alumina substrate having a bimodal pore size distribution comprising micropores and macropores, said micropores having an average pore diameter d.sub.1 in the range of between 30 and 400 Angstroms and said macropores having an average pore diameter d.sub.2 in the range of between 80 and 3000 Angstroms, and
- (b) an alkali metal component, said substrate impregnated with said alkali metal component and the amount of said alkali metal component being between 50 and 400 .mu.g per m.sup.2 of said substrate.
- 2. The sorbent of claim 1, wherein said amount of said alkali metal component is between 100 and 350 .mu.g per m.sup.2 of said substrate.
- 3. The sorbent of claim 1, wherein said amount of said alkali metal component is between 150 and 250 .mu.g per m.sup.2 of said substrate.
- 4. The sorbent of claim 1, wherein said macropores of said substrate have an average pore diameter d.sub.2 of 100 and 1000 Angstroms.
- 5. The sorbent of claim 1, wherein said macropores of said substrate have an average pore diameter d.sub.2 of 200 and 500 Angstroms.
- 6. The sorbent of claim 1 wherein said micropores have an average pore diameter d.sub.1 of between 60 and 200 Angstroms.
- 7. The sorbent of claim 1 wherein said micropores have an averge pore diameter d.sub.1 of between 80 and 100 Angstroms.
- 8. The sorbent of claims 1 wherein said pore volume is between 0.6 and 0.8 cc/g.
- 9. The sorbent of claim 1, wherein said alkali metal component is selected from the group consisting of sodium, lithium, potassium, rubidium, cesium and francium.
- 10. The sorbent of claim 9, wherein said alkali metal component is sodium.
- 11. The sorbent of claim 9 wherein said alkali metal component is potassium.
- 12. A regenerable attrition resistant sorbent useful in a fluidized bed for the removal of gaseous nitrogen oxides, sulfur oxides and hydrogen sulfide from waste gas streams, which sorbent comprises:
- (a) a gamma alumina substrate having a surface area between 100 m.sup.2 /g and 500 m.sup.2 /g and a pore volume between 0.6 and 0.8 cc/g, and
- (b) an alkali metal component, said substrate impregnated with said alkali metal component and the amount of said alkali metal component being between 150 and 250 .mu.g per m.sup.2 of said substrate.
- 13. The sorbent of claim 12, wherein said alkali metal component is selected from the group consisting of sodium, lithium, potassium, rubidium, cesium and francium.
Parent Case Info
This is a continuation of application Ser. No. 659,996, filed Oct. 12, 1984, now abandoned.
US Referenced Citations (32)
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2419103 |
Oct 1975 |
DEX |
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CHX |
1154009 |
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GBX |
Non-Patent Literature Citations (2)
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Process Development In Removing Sulfur Dioxide From Hot Flue Gases, By D. Bienstock, J. H. Field and J. G. Myers, Report of Investigations 5735, Bureau of Mines, pp. 8-17 1961. |
Nielsen, I. "Low Cost Air-Water Pollution Control Chemicals From Colorado Oil Shale Deposits" Chemical Abstracts vol. 79, 1973, 34858g, p. 198. |
Continuations (1)
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Number |
Date |
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Parent |
659996 |
Oct 1984 |
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