Claims
- 1. A stable deashed coal-water slurry containing from about 65 to about 85 percent of solids by weight of slurry, from about 15 to about 35 percent of carrier water by weight of slurry, from about 0 to about 14 weight percent of ash by weight of solids, and from about 0.01 to about 4.0 weight percent of dispersing agent by weight of dry coal, wherein:
- (a) said coal-water slurry has a Brookfield viscosity of less than 4,000 centipoise when tested at a solids content of 75 weight percent, ambient temperature, and 60 revolutions per minute;
- (b) said coal-water slurry has a yield stress of from about 0.1 to about 10 Pascals;
- (c) the viscosity of said coal-water slurry decreases at a constant shear rate with time, decreases at an increasing shear rate, and decreases at an increasing temperature;
- (d) said coal-water slurry comprises a compact of finely-divided particles of coal dispersed in said carrier water;
- (e) at least about 85 weight percent of the particles of coal in said coal-water slurry have a particle size less than 300 microns;
- (f) no more than 0.5 weight percent of the particles of coal in said slurry have a particle size less than 0.05 microns;
- (g) from about 5 to about 36 weight percent of the particles of coal in said slurry are of colloidal size, being smaller than about 3 microns, and said colloidal sized particles of coal have a net zeta potential in said coal-water slurry of from about 15 to about 85 millivolts; and
- (h) said compact of finely divided particles of coal has a particle size distribution substantially in accordance with the following formula: ##EQU6## where CPFT=cumulative weight percent, dry basis, of particles finer than a particle of stated size, D,
- D=diameter of any particle in the compact,
- D.sub.L =diameter of largest particle in compact, sieve size or its equivalent, being from about 38 to about 400 microns,
- D.sub.S =diameter of smallest particle in compact, being from about 0.01 to about 0.4 microns, and
- n=numerical exponent, with n being from about 0.2 to about 0.5 and with all diameters sized in microns.
- 2. The coal-water slurry as recited in claim 1 wherein said dispersing agent is an organic surfactant.
- 3. The coal-water slurry as recited in claim 2 wherein said surfactant is anionic.
- 4. The coal-water slurry as recited in claim 3 wherein the pH of said slurry is from about 5 to about 12.
- 5. The coal-water slurry as recited in claim 4 wherein said slurry contains less than about 5 weight percent of ash by weight of solids.
- 6. The coal-water slurry as recited in claim 5 wherein:
- (a) said D.sub.S is from about 0.05 to about 0.25 microns, said D.sub.L is from about 100 to about 300 microns, and said n is from about 0.27 to about 0.42;
- (b) said coal-water slurry contains at least about 70 weight percent of solids by weight of slurry;
- (c) the Brookfield viscosity of said slurry when it is tested at a solids content of 75 weight percent, at 60 revolutions per minute, and at ambient temperature and pressure is less than 3000 centipoise;
- (d) said slurry has a yield stress of from about 0.5 to about 7 Pascals;
- (e) at least about 90 weight percent of the coal particles in the slurry have a particle size less than about 300 microns;
- (f) said colloidal size particles of coal have a zeta potential of from about -30 to about -70 millivolts; and
- (g) the pH of said slurry is from about 7 to about 11.
- 7. The coal-water slurry as recited in claim 6 wherein:
- (a) said D.sub.S is from about 0.05 to about 0.20, said D.sub.L is from about 200 to about 250 microns, and said n is from about 0.33 to about 0.37;
- (b) the Brookfield viscosity of said slurry when it is tested at 75 weight percent of solids, 60 revolutions per minute, and ambient temperature and pressure is from about 300 to about 2400 centipoise;
- (c) said slurry has a yield stress of from about 0.75 to about 5 Pascals; and
- (d) at least about 95 weight percent of the coal particles in the slurry have a particle size less than about 300 microns.
- 8. The coal-water slurry as recited in claim 7 wherein said D.sub.L is about 220 microns and said slurry has a Brookfield viscosity at 75 weight percent solids, 60 revolutions per minute, and ambient temperature and pressure of less than about 2000 centipoise.
- 9. The coal-water slurry as recited in claim 1 wherein said slurry contains less than about 5 weight percent of ash by weight of solids.
- 10. The coal-water slurry of claim 1 wherein
- (a) said D.sub.S is from about 0.05 to about 0.25 microns, said D.sub.L is from about 100 to about 300 microns, and said n is from about 0.27 to about 0.42;
- (b) said coal-water slurry contains at least about 70 weight percent of solids by weight of slurry;
- (c) the Brookfield viscosity of said slurry when it is tested at a solids content of 75 weight percent, at 60 revolutions per minute, and at ambient temperature and pressure is less than 3000 centipoise;
- (d) said slurry has a yield stress of from about 1 to about 7 Pascals;
- (e) at least about 90 weight percent of the coal particles in the slurry have a particle size less than about 300 microns;
- (f) said colloidal size particles of coal have a zeta potential of from about -30 to about -70 millivolts.
- 11. The coal-water slurry of claim 1 wherein:
- (a) said D.sub.S is from about 0.05 to about 0.20, said D.sub.L is from about 200 to about 250 microns, and said n is from about 0.33 to about 0.37;
- (b) the Brookfield viscosity of said slurry when it is tested at 75 weight percent of solids, 60 revolutions per minute, and ambient temperature and pressure is from about 300 to about 2400 centipoise;
- (c) said slurry has a yield stress of from about 2 to about 5 Pascals; and
- (d) at least about 95 weight percent of the coal particles in the slurry have a particle size less than about 300 microns.
- 12. A process for preparing a coal-water slurry, comprising the step of grinding a coal-water mixture comprised of from about 65 to about 85 weight percent of solids by weight of slurry, from about 15 to about 35 weight percent of carrier water by weight of slurry, and from about 0.01 to about 4.0 weight percent of dispersing agent by weight of dry coal until said coal-water slurry comprises a compact of finely-divided particles of coal dispersed in said carrier water and said compact has a particle size distribution substantially in accordance with the following formula: ##EQU7## where CPFT=cumulative weight percent, dry basis, of particles finer than a particle of stated size, D,
- D=diameter of any particle in the compact,
- D.sub.L =diameter of largest particle in compact, sieve size or its equivalent, being from about 38 to about 400 microns,
- D.sub.S =diameter of smallest particle in compact, being from about 0.01 to about 0.4 microns, and
- n=numerical exponent, with n being from about 0.2 to about 0.5 and with all diameters sized in microns.
- 13. The process as recited in claim 12, wherein said coal-water mixture comprises from about 0 to 13 weight percent of ash.
- 14. The process as recited in claim 13, wherein said coal-water mixture comprises from about 0 to 10 weight percent of ash.
- 15. The process as recited in claim 13, wherein said coal-water mixture comprises from about 0 to 5 weight percent of ash.
- 16. The process as recited in claim 12, wherein said coal-water mixture comprises at least about 70 weight percent of said solids, as measured on a dry basis.
- 17. The process as recited in claim 12, wherein said coal-water mixture comprises from about 20 to about 35 weight percent of carrier water.
- 18. The process as recited in claim 12, wherein said coal-water mixture comprises from about 15 to about 25 weight percent of carrier water.
- 19. The process as recited in claim 12, wherein said coal-water mixture comprises from about 0.01 to about 4.0 weight percent of organic surfactant.
- 20. The process as recited in claim 19, wherein said surfactant is anionic organic surfactant.
- 21. The process as recited in claim 12, wherein said coal-water mixture comprises from about 0.01 to about 2.4 weight percent of said dispersing agent.
- 22. The process as recited in claim 12, wherein said coal-water mixture comprises from about 0.03 to about 1.8 weight percent of said dispersing agent.
- 23. The process as recited in claim 12, wherein said coal-water mixture comprises from about 0.05 to about 1.4 weight percent of said dispersing agent.
- 24. The process as recited in claim 12, wherein said coal-water mixture comprises from about 0.1 to about 1.2 weight percent of said dispersing agent.
- 25. The process as recited in claim 12, wherein the pH of said coal-water mixture is from about 5 to about 12.
- 26. The process as recited in claim 25, wherein the pH of said coal-water mixture is from about 7 to about 11.
- 27. The process as recited in claim 12, wherein said coal-water mixture is comprised of a blend of at least two coal consists.
- 28. The process as recited in claim 12, wherein said coal-water mixture is ground in a ball mill.
- 29. The process as recited in claim 12, wherein said coal-water mixture comprises from about 0.05 to about 2.0 weight percent of inorganic electrolyte.
- 30. The process as recited in claim 29, wherein said inorganic electrolyte is of the formula
- M.sub.a Z.sub.b
- wherein M is an alkali metal selected from the group consisting of lithium, sodium, potassium, rubidium, cesium, and francium; Z is an anion selected from the group consisting of hexametaphosphate, pyrophosphate, silicate, sulfate, carbonate, hydroxide, and halide anions; a is the valence of anion Z; and b is the valence of metal M.
- 31. The process as recited in claim 29, wherein said coal-water mixture comprises from about 0.1 to about 0.8 weight percent of inorganic electrolyte.
- 32. The process as recited in claim 29, wherein said coal-water mixture comprises from about 0.1 to about 0.5 weight percent of inorganic electrolyte.
- 33. The process as recited in claim 12, wherein said coal-water mixture is ground until a coal-water slurry which comprises at least about 5 weight percent of colloidal coal particles smaller than about 3 microns is produced.
- 34. The process as recited in claim 12, wherein said coal-water mixture is ground until a coal-water slurry which comprises from about 5 to about 36 weight percent of coal particles smaller than about 3 microns is produced.
- 35. The process as recited in claim 12, wherein said coal-water mixture is ground until a coal-water slurry which comprises from about 5 to about 20 weight percent of coal particles smaller than about 3 microns is produced.
- 36. The process as recited in claim 12, wherein said coal-water mixture is ground until a coal-water slurry which comprises from about 7 to about 36 weight percent of coal particles smaller than about 3 microns is produced.
- 37. The process as recited in claim 12, wherein said coal-water mixture is ground until a coal-water slurry is produced which has a Brookfield viscosity of less than 4,000 centipoise when tested at a solids content of 75 weight percent, ambient temperature, and 60 revolutions per minute.
- 38. The process as recited in claim 12, wherein said coal-water mixture is ground until a coal-water slurry is produced which has a Brookfield viscosity of less than about 3,000 centipoise when tested at a solids content of 75 weight percent, ambient temperature, and 60 revolutions per minute.
- 39. The process as recited in claim 12, wherein said coal-water mixture is ground until a coal-water slurry is produced which has a Brookfield viscosity of from about 300 to about 2,400 centipoise when tested at a solids content of 75 weight percent, ambient temperature, and 60 revolutions per minute.
- 40. The process as recited in claim 12, wherein said coal-water mixture is ground until a coal-water slurry is produced wherein at least 85 weight percent of the coal particles in said slurry have a particle size less than 300 microns.
- 41. The process as recited in claim 12, wherein said coal-water mixture is ground until a coal-water slurry is produced wherein at least 90 weight percent of the coal particles in said slurry have a particle size less than 300 microns.
- 42. The process as recited in claim 12, wherein said coal-water mixture is ground until a coal-water slury is produced wherein at least 95 percent of the coal particles in said slurry have a particle size less than 300 microns.
- 43. The process as recited in claim 12, wherein said coal-water mixture is ground until a coal-water slurry is produced wherein at least about 98 weight percent of the coal particles in said slurry are smaller than 300 microns.
- 44. The process as recited in claim 25, wherein said coal-water mixture is ground until a coal-water slurry which comprises at least 5 weight percent of coal particles smaller than about 3 microns is produced.
- 45. The process as recited in claim 44, wherein said coal-water slurry has a Brookfield viscosity of less than 4,000 centipoise when tested at a solids content of 27 weight percent, ambient temperature, and 60 revolutions per minute.
- 46. The process as recited in claim 45, wherein said coal-water mixture comprises from about 0.01 to about 2.4 weight percent of dispersing agent.
- 47. The process as recited in claim 46, wherein said dispersing agent is anionic organic surfactant.
- 48. The process as recited in claim 46, wherein said coal-water mixture is ground until a coal-water slurry is produced wherein at least 85 weight percent of the coal particles in the slurry have a particle size less than 300 microns.
- 49. The process as recited in claim 48, wherein said coal-water mixture comprises at least about 70 weight percent of said solids, as measured on a dry basis.
- 50. The process as recited in claim 49, wherein said coal-water mixture comprises from about 0 to 5 weight percent of ash.
- 51. The process as recited in claim 49, wherein said coal-water mixture comprises from about 0.05 to about 1.4 weight percent of anionic organic surfactant.
- 52. The process as recited in claim 49, wherein said coal-water mixture is comprised of a blend of at least two coal consists.
- 53. The process as recited in claim 49, wherein said coal-water mixture is ground in a ball mill.
- 54. The process as recited in claim 49, wherein said coal-water mixture comprises from about 0.05 to about 2.0 weight percent of inorganic electrolyte.
- 55. The process as recited in claim 49, wherein said coal-water mixture is ground until a coal-water slurry is produced which has a Brookfield viscosity of less than about 3,000 centipoise when tested at a solids content of 75 weight percent, ambient temperature, and 60 revolutions per minute.
- 56. The process as recited in claim 49, wherein the pH of said coal-water mixture is from about 7 to about 11.
- 57. The process as recited in claim 49, wherein said coal-water mixture comprises from about 0.1 to about 0.5 weight percent of inorganic electrolyte.
- 58. The process as recited in claim 49, wherein said coal-water mixture is ground until a coal-water slurry is produced wherein at least 95 weight percent of the coal particles in said slurry have a particle size less than 300 microns.
- 59. The process as recited in claim 58, wherein said coal-water mixture is ground until a coal-water slurry is produced which has a Brookfield viscosity of from about 300 to about 2400 centipoise when tested at a solids content of 75 weight percent, ambient temperature, and 60 revolutions per minute.
CROSS-REFERENCES TO RELATED APPLICATIONS
This application is a continuation-in-part of applicant's copending application Ser. No. 088,815 filed on Oct. 26, 1979, now U.S. Pat. No. 4,282,006 which was a continuation-in-part of copending application Ser. No. 957,166 filed on Nov. 2, 1978 and now abandoned, which in turn was a continuation-in-part of copending application Ser. No. 790,337 filed on Apr. 25, 1977 and also now abandoned.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
4104035 |
Cole et al. |
Aug 1978 |
|
4282006 |
Funk |
Apr 1981 |
|
Continuation in Parts (3)
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Number |
Date |
Country |
Parent |
88815 |
Oct 1979 |
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Parent |
957166 |
Nov 1978 |
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Parent |
790337 |
Apr 1977 |
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