Claims
- 1. A fluid bed system, comprising:
- a generally upright lift pipe;
- a first vessel in fluid communication with and located downstream and generally above said lift pipe;
- an enlarged mixing chamber in fluid communication with and located upstream and generally below said lift pipe, said enlarged mixing chamber having a maximum transverse cross-sectional area substantially greater than the maximum transverse cross-sectional area of said lift pipe;
- lift gas means directly connected to and communicating with said enlarged mixing chamber for injecting a lift gas into said enlarged mixing chamber, said lift gas means including combustion preventing means for preventing air and a sufficient amount of molecular oxygen to support combustion from entering said enlarged mixing chamber to substantially prevent combustion in said enlarged mixing chamber and lift pipe;
- first feed means directly connected and extending into said enlarged mixing chamber for feeding a first material into said enlarged mixing chamber;
- second feed means comprising combusted solid material feed means spaced separately and apart from said first feed means and directly connected and extending into said enlarged mixing chamber for feeding a second material consisting essentially of substantially combusted solid material into said enlarged mixing chamber;
- combustor means spaced separately and laterally away from said enlarged mixing chamber and said lift pipe for substantially combusting carbon residue contained on said material, said combustor means including a combustor lift pipe and a second vessel comprising a combustor vessel in fluid communication with and located downstream and generally above said combustor lift pipe;
- combustor feed means directly connecting and extending between said first vessel and said combustor lift pipe for discharging and feeding material containing carbon residue from said first vessel to said combustor lift pipe; and
- said second feed means directly connecting and extending between said combustor vessel and said enlarged mixing chamber for feeding said combusted material to said enlarged mixing chamber for use as said second material.
- 2. A fluid bed system in accordance with claim 1 wherein the ratio of the maximum transverse cross-sectional areas of said enlarged mixing chamber to said lift pipe is from 1.3:1 to 15:1.
- 3. A fluid bed system in accordance with claim 1 wherein said first vessel has a maximum transverse cross-sectional area substantially greater than the maximum transverse cross-sectional area of said lift pipe.
- 4. A fluid bed system in accordance with claim 3 wherein the maximum transverse cross-sectional area of said first vessel is substantially greater than the maximum transverse cross-sectional area of said enlarged mixing chamber and the ratio of the maximum transverse cross-sectional areas of said first vessel to said enlarged mixing chamber is from 2:1 to 10:1.
- 5. A fluid bed oil shale retorting system, comprising:
- an overhead solids-containing vessel having a lower portion for retorting raw oil shale and an upper portion for containing liberated hydrocarbons and a lift gas, said lower portion having a solids discharge outlet for discharging retorted oil shale and heat carrier material consisting essentially of substantially combusted retorted oil shale and said upper portion including a gas outlet for discharging liberated hydrocarbons and said lift gas;
- a mixing chamber located generally below said solids-containing vessel for mixing said raw oil shale and said combusted shale to partially retort said raw oil shale;
- raw oil shale feed means connected and extending directly into said mixing chamber for feeding raw oil shale directly into said mixing chamber at a solids flux flow rate of 500 lbs/ft.sup.2 hr to 100,000 lbs/ft.sup.2 hr;
- combusted shale feed means spaced separately and away from said raw oil shale feed means and directly connected and extending into said mixing chamber for feeding said combusted oil shale directly into said mixing chamber at a solids flux flow rate ratio relative to said raw oil shale of from 2.5:1 to 10:1 to mix with and heat said raw oil shale in said mixing chamber;
- a substantially vertical lift pipe in fluid communication with and extending upwardly from said mixing chamber into said overhead solids-containing vessel;
- said mixing chamber having a cross-sectional area substantially greater than the cross-sectional area of said lift pipe taken in a direction generally transverse to the upward direction of flow;
- lift gas injector means spaced separately and apart from both said raw oil shale feed means and said combusted shale feed means for injecting a lift gas into said mixing chamber at a sufficient velocity to fluidize and carry said raw and combusted oil shale and said liberated hydrocarbons generally upwardly through both said mixing chamber and said vertical lift pipe into said overhead solids-containing vessel, said lift gas injector means including combustion preventing means for substantially preventing air from entering said mixing chamber to substantially prevent combustion of said raw oil shale and liberated hydrocarbons in said mixing chamber, vertical lift pipe, and overhead solids-containing vessel;
- a combustor vessel spaced laterally away from said overhead solids-containing vessel, said combustor vessel having a lower portion for combusting retorted oil shale and an upper portion for containing combustion gases, said lower portion having a discharge outlet connected to said combusted shale feed means for discharging combusted shale into said combusted shale feed means, said upper portion having a combustion gas outlet;
- an upright dilute phase, combustor lift pipe extending upwardly into said combustor vessel for partially combusting said retorted shale;
- combustion feed means directly connected and extending between said solids discharge outlet of said overhead solids-containing vessel and said upright dilute phase, combustor lift pipe for feeding retorted shale from said solids discharge outlet of said overhead solids-containing vessel to said combustor lift pipe; and
- air injector means for injecting air into a bottom portion of said combustor lift pipe to substantially combust, fluidize, and carry said retorted shale generally upwardly through said combustor lift pipe into said combustor vessel.
- 6. A fluid bed system in accordance with claim 5 wherein the ratio of the cross-sectional areas of said mixing chamber to said vertical lift pipe is in the range from about 1.3:1 to about 15:1.
- 7. A fluid bed system in accordance with claim 6 wherein the ratio of the cross-sectional area of said combustor vessel to the cross-sectional area of said combustor lift pipe taken in a direction generally transverse to the upward direction of air flow is in the range from about 2:1 to about 10:1.
- 8. A fluid bed system in accordance with claim 5 wherein the ratio of the cross-sectional area of said mixing chamber to the cross-sectional area of said lift gas injector means is in the range from about 2.5:1 to about 20:1.
- 9. A fluid bed system in accordance with claim 5 wherein said overhead solids-containing vessel includes a conical baffle spaced slightly above said vertical lift pipe for directing said shale generally downwardly into the lower portion of said overhead solids-containing vessel.
- 10. A fluid bed system in accordance with claim 9 wherein said overhead solids-containing vessel includes an array of conical baffles arranged in an offset, staggered pattern in the lower portion of said solids-containing vessel for enhancing the downward flow and minimizing backmixing of retorted shale in said overhead solids containing vessel.
- 11. A fluid bed system in accordance with claim 5 further including steam injector means for injecting steam into the lower portion of said solids-containing vessel.
- 12. A fluid bed system in accordance with claim 5 wherein said mixing chamber includes a series of vertical bars for enhancing mixing of said raw and combusted oil shale.
- 13. A fluid bed system in accordance with claim 5 wherein the ratio of the height to the diameter of said mixing chamber is in the range from about 1:1 to about 10:1.
- 14. A fluid bed system in accordance with claim 5 wherein the ratio of the cross-sectional area of the said solids-containing vessel to the cross-sectional area of said mixing chamber is in the range of about 2:1 to about 10:1.
- 15. A fluid bed system in accordance with claim 5 wherein the ratio of the cross-sectional areas of said solids-containing vessel to said mixing chamber is about 5:1, the ratio of the cross-sectional areas of said mixing chamber to said vertical lift pipe is about 3:1, the ratio of the cross-sectional area of said mixing chamber to the cross-sectional area of said lift gas injector means is about 5:1, and the ratio of the cross-sectional area of said combustor vessel to said combustor lift pipe is about 5:1.
- 16. A fluid bed system in accordance with claim 5 further including a return pipe directly connecting and extending from the lower portion of said overhead solids-containing vessel to said mixing chamber and valve means operatively connected to said return pipe for selectively limiting flow of shale through said return pipe.
- 17. A fluid bed system in accordance with claim 5 wherein said lift gas injector means includes a series of lift gas injection nozzles.
CROSS-REFERENCES TO RELATED APPLICATIONS
This application is a continuation-in-part of U.S. patent application, Ser. No. 293,694, filed Aug. 17, 1981, now U.S. Pat. No. 4,404,083, for a Fluid Bed Retorting Process and System.
US Referenced Citations (8)
Foreign Referenced Citations (1)
Number |
Date |
Country |
2526839 |
Jan 1976 |
DEX |
Continuation in Parts (1)
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Number |
Date |
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Parent |
293694 |
Aug 1981 |
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