Claims
- 1. A grinding mixture comprising from about 60 to about 82 volume percent of solid carbonaceous material, from about 18 to about 40 volume percent of carrier liquid, and from about 0.01 to about 4.0 weight percent, by weight of dry solid carbonaceous material, of dispersing agent, wherein:
- (a) said grinding mixture has a pH of from about 5 to about 12,
- (b) said grinding mixture contains at least two consists of solid carbonaceous material,
- (c) from about 2 to about 50 weight percent of said solid carbonaceous material is comprised of carbonaceous particles with a median particle size of from about 0.05 to about 40 microns, and
- (d) from about 50 to about 98 weight percent of said solid carbonaceous material is comprised of carbonaceous particles with a median particle size greater than about 40 microns.
- 2. The grinding mixture as recited in claim 1, wherein said solid carbonaceous material is a solid carbonaceous fuel.
- 3. The grinding mixture as recited in claim 1, wherein said carbonaceous material is selected from the group consisting of coal, coke, char, charcoal, and mixtures thereof.
- 4. The grinding mixture as recited in claim 3, wherein said carbonaceous material is coal.
- 5. The grinding mixture as recited in claim 3, wherein said carbonaceous material is coke.
- 6. The grinding mixture as recited in claim 1, wherein from about 4 to about 40 weight percent of the solid carbonaceous material in the grinding mixture is comprised of carbonaceous particles with a median particle size of from about 1 to about 30 microns.
- 7. The grinding mixture as recited in claim 1, wherein from about 60 to about 96 weight percent of said solid carbonaceous material is comprised of carbonaceous particles with a median particle size greater than about 40 microns.
- 8. The grinding mixture as recited in claim 1, wherein from about 6 to about 30 weight percent of the solid carbonaceous material in the grinding mixture is comprised of carbonaceous particles with a median particle size of from about 2 to about 20 microns.
- 9. The grinding mixture as recited in claim 1, wherein from about 70 to about 94 weight percent of said solid carbonaceous material is comprised of carbonaceous particles with a median particle size greater than about 40 microns.
- 10. The grinding mixture as recited in claim 1, wherein the pH of said grinding mixture is from about 7 to about 11.
- 11. The grinding mixture as recited in claim 1, wherein said grinding mixture comprises from about 64 to about 81 volume percent of solid carbonaceous material.
- 12. The grinding mixture as recited in claim 11, wherein said grinding mixture comprises from about 75 to about 80 volume percent of solid carbonaceous material.
- 13. The grinding mixture as recited in claim 1, wherein said liquid is water.
- 14. The grinding mixture as recited in claim 1, wherein said liquid is a petroleum liquid selected from the group consisting of number 2 fuel oil, number 4 fuel oil, number 6 fuel oil, gasoline, naphtha, and mixtures thereof.
- 15. The grinding mixture as recited in claim 1, wherein said liquid is a mixture of water and petroleum liquid.
- 16. The grinding mixture as recited in claim 15, wherein at least 90 weight percent of said carrier liquid is water and no more than about 10 weight percent of said carrier liquid is a petroleum liquid.
- 17. The grinding mixture as recited in claim 2, wherein said carbonaceous material is selected from the group consisting of coal, coke, char, charcoal, and mixtures thereof.
- 18. The grinding mixture as recited in claim 17, wherein said grinding mixture comprises from about 64 to about 81 volume percent of solid carbonaceous material.
- 19. The grinding mixture as recited in claim 18, wherein from about 4 to about 40 weight percent of the solid carbonaceous material in the grinding mixture is comprised of carbonaceous particles with a median particle size of from about 1 to about 30 microns.
- 20. The grinding mixture as recited in claim 19, wherein from about 60 to about 96 weight percent of said solid carbonaceous material is comprised of carbonaceous particles with a median particle size greater than about 40 microns.
- 21. The grinding mixture as recited in claim 20, wherein the pH of said grinding mixture is from about 7 to about 11.
- 22. A process of preparing a solid-liquid slurry, comprising the steps of:
- (a) providing the grinding mixture of claim 1; and
- (b) grinding said mixture until a solid-liquid slurry is produced wherein:
- 1. said slurry is comprised of from about 60 to about 82 volume percent of solid carbonaceous material, from about 18 to about 40 volume percent of carrier liquid, and from about 0.01 to about 4.0 weight percent, by weight of dry carbonaceous material, of dispersing agent;
- 2. said slurry has a yield stress of from about 3 to about 18 Pascals and a Brookfield viscosity at a solids content of 70 volume percent, ambient temperature, ambient pressure, and a shear rate of 100 revolutions per minute of less than 5,000 centipoise;
- 3. the slurry consist has a specific surface area of from about 0.8 to about 4.0 square meters per cubic centimeter and an interstitial porosity of less than 20 volume percent;
- 4. from about 5 to about 70 volume percent of said particles of solid carbonaceous material are of colloidal size, being smaller than about 3 microns;
- 5. said slurry consists of finely-divided particles of solid carbonaceous material has a particle size distribution substantially in accordance with the following formula: ##EQU7## wherein: (a) CPFT is the cumulative percent of said solid carbonaceous material finer than a certain specified particle size D, in volume percent;
- (b) k is the number of component distributions in the consist and is at least 1;
- (c) X.sub.j is the fractional amount of the component j in the consist, is less than or equal to 1.0, and the sum of all of the X.sub.j 's in the consist is 1.0;
- (d) n is the distribution modulus of fraction j and is greater than about 0.001;
- (e) D is the diameter of any particle in the consist and ranges from about 0.05 to about 1180 microns;
- (f) D.sub.s is the diameter of the particle in fraction j, measured at 1% CPFT on a plot of CPFT versus size D, is less then D.sub.L, and is greater than 0.05 microns;
- (g) D.sub.L is the diameter of the size modulus in fraction j, measured by sieve size or its equivalent, and is from about 10 to about 1180 microns; and
- (h) no more than about 0.05 volume percent of the particles in the slurry consist have a diameter less than about 0.05 microns;
- 6. the net zeta potential of said colloidal size particles of solid carbonaceous material is from about 15 to about 85 millivolts; and
- 7. the concentration of solid carbonaceous material in said slurry, the interstitial porosity of said consist, the specific surface area of said consist; and the zeta potential of said colloidal size particles of solid carbonaceous material are interrelated in accordance with the following formula:
- V.sub.s +P.sub.s +SA+240/ZP=H
- wherein:
- (a) V.sub.s is the percent, by volume, of solid carbonaceous material in said slurry;
- (b) P is the porosity of said consist in the slurry, in percent;
- (c) S.A. is the specific surface area consist in said slurry, in square meters per cubic centimeter;
- (d) Z.P. is the net zeta potential of said colloidal size particles of carbonaceous material in said consist, in millivolts, and
- (e) H is from about 75 to about 98.
- 23. The process as recited in claim 22, wherein said solid carbonaceous material is coal.
- 24. The process as recited in claim 22, wherein said solid carbonaceous material is coke.
- 25. The process as recited in claim 24, wherein said coke is petroleum coke.
- 26. The process as recited in claim 22, wherein said solid carbonaceous material is char.
- 27. The process as recited in claim 22, wherein said solid carbonaceous material is charcoal.
- 28. The process as recited in claim 22, wherein said solid carbonaceous material is solvent refined coal.
- 29. The process as recited in claim 22, wherein said solid carbonaceous material comprises a mixture of at least one coarse carbonaceous fraction containing less than about 30 weight percent of volatilizable hydrocarbons and at least one fine carbonaceous fraction which contains more than about 35 weight percent of volatilizable hydrocarbons.
- 30. The process as recited in claim 22, wherein from about 4 to about 40 weight percent of said solid carbonaceous material in said grinding mixture has a median particle size of from about 1 to about 30 microns.
- 31. The process as recited in claim 30, wherein from about 6 to about 30 weight percent of said solid carbonaceous material in said grinding mixture has a median particle size of from about 2 to about 20 microns.
- 32. The process as recited in claim 29, wherein said grinding mixture is comprised of from about 60 to about 96 weight percent of coarse solid carbonaceous material which has a median particle size greater than about 40 microns.
- 33. The process as recited in claim 30, wherein said grinding mixture is comprised of from about 70 to about 94 weight percent of coarse solid carbonaceous material which has a median particle size greater than about 40 microns.
- 34. The process as recited in claim 22, wherein said grinding mixture is comprised of from about 64 to about 81 volume percent of said solid carbonaceous material.
- 35. The process as recited in claim 34, wherein said grinding mixture is comprised of from about 75 to about 80 volume percent of said solid carbonaceous material.
- 36. The process as recited in claim 22, wherein the pH of said grinding mixture is from about 7 to about 11.
- 37. The process as recited in claim 22, wherein said liquid is an alcohol containing from about 1 to about 10 carbon atoms.
- 38. The process as recited in claim 37, wherein said alcohol is selected from the group consisting of methanol, ethanol, propanol, butanol, phenol, and mixtures thereof.
- 39. The process as recited in claim 22, wherein said liquid is petroleum liquid.
- 40. The process as recited in claim 39, wherein said petroleum liquid is selected from the group consisting of number 2 fuel oil, number 4 fuel oil, number 6 fuel oil, gasoline, nephtha, and mixtures thereof.
- 41. The process as recited in claim 22, wherein said liquid is carrier water.
- 42. The process as recited in claim 22, wherein said liquid comprises a mixture of at least two liquids.
- 43. The process as recited in claim 42, wherein said liquid comprises a mixture of water and an alcohol containing from about 1 to about 10 carbon atoms.
- 44. The process as recited in claim 43, wherein said alcohol is ethanol.
- 45. The process as recited in claim 42, wherein said liquid comprises a mixture of water and petroleum liquid.
- 46. The process as recited in claim 45, wherein at least about 90 weight percent of said liquid is water and less than about 10 weight percent of said liquid is petroleum liquid.
- 47. The process as recited in claim 22, wherein said grinding mixture comprises from about 19 to about 36 volume percent of carrier liquid.
- 48. The process as recited in claim 47, wherein said grinding mixture comprises from about 20 to about 25 volume percent of carrier liquid.
- 49. The process as recited in claim 22, wherein said slurry has a yield stress of from about 5 to about 15 Pascals.
- 50. The process as recited in claim 49, wherein said slurry has a yield stress of from about 7 to about 12 Pascals.
- 51. The process as recited in claim 22, wherein said Brookfield viscosity of said slurry is less than 4,000 centipoise.
- 52. The process as recited in claim 51, wherein said Brookfield viscosity of said slurry is less than 3,000 centipoise.
- 53. The process as recited in claim 52, wherein said Brookfield viscosity of said slurry is less than 2,000 centipoise.
- 54. The process as recited in claim 53, wherein said Brookfield viscosity of said slurry is less than 1,000 centipoise.
- 55. The process as recited in claim 22, wherein said slurry consist has a specific surface area of from about 0.8 to about 3.0 square meters per cubic centimeter.
- 56. The process as recited in claim 55, wherein said slurry consist has a specific surface area of from about 0.8 to about 2.4 square meters per cubic centimeter.
- 57. The process as recited in claim 56, wherein said slurry consist has a specific surface area of from about 0.8 to about 2.0 square meters per cubic centimeter.
- 58. The process as recited in claim 22, wherein said slurry consist has an interstitial porosity of less than about 15 volume percent.
- 59. The process as recited in claim 58, wherein said slurry consist has an interstitial porosity of less than about 10 volume percent.
- 60. The process as recited in claim 22, wherein from about 5 to about 30 weight of the carbonaceous particles in said slurry consist are smaller than 3.0 microns.
- 61. The process as recited in claim 22, wherein said k is from about 1 to about 30.
- 62. The process as recited in claim 61, wherein said k is 1.
- 63. The process as recited in claim 22, wherein said n is from about 0.001 to about 10.
- 64. The process as recited in claim 63, wherein said n is from about 0.01 to about 1.0.
- 65. The process as recited in claim 64, wherein said n is from about 0.1 to about 0.5.
- 66. The process as recited in claim 22, wherein said D.sub.L is from about 30 to about 420 microns.
- 67. The process as recited in claim 22, wherein at least 90 weight percent of the solid carbonaceous particles in said slurry have a particle size less than 300 microns.
- 68. The process as recited in claim 67, wherein at least 95 weight percent of the solid carbonaceous particles in said slurry have a particle size less than 300 microns.
- 69. The process as recited in claim 41, wherein the colloidal sized carbonaceous particles in said slurry have a net zeta potential of from about 15 to about 85 millivolts.
- 70. The process as recited in claim 41, wherein the colloidal sized carbonaceous particles in said slurry have a zeta potential of from about -15.4 to about -70.2 millivolts.
- 71. The process as recited in claim 70, wherein the colloidal sized carbonaceous particles in said slurry have a zeta potential of from about -30 to about -70 millivolts.
- 72. The process as recited in claim 22, wherein said grinding mixture is ground in a tumbling mill.
- 73. The process as recited in claim 72, wherein said tumbling mill is a ball mill.
- 74. The process as recited in claim 73, wherein said grinding mixture is ground at from about 50 to about 70 percent of the ball mill critical speed.
- 75. The process as recited in claim 74, wherein said grinding mixture is ground at less than about 60 percent of the ball mill critical speed.
- 76. The process as recited in claim 75, wherein said grinding mixture is ground at less than about 55 percent of the ball mill critical speed.
- 77. The process as recited in claim 22, wherein:
- (a) from about 4 to about 40 weight percent of said solid carbonaceous material in said grinding mixture has a median particle size of from about 1 to about 30 microns;
- (b) said grinding mixture is comprised of from about 60 to about 96 weight percent of coarse solid carbonaceous material which has a median particle size greater than about 40 microns;
- (c) said grinding mixture is comprised of from about 64 to about 81 volume percent of said solid carbonaceous material;
- (d) the pH of said grinding mixture is from about 7 to about 11;
- (e) said grinding mixture comprises from about 19 to about 36 volume percent of carrier liquid;
- (f) said slurry has a yield stress of from about 5 to about 15 Pascals;
- (g) said Brookfield viscosity of said slurry is less than 3,000 centipoise;
- (h) said slurry consist has a specific surface area of from about 0.8 to about 3.0 square meters per cubic centimeter;
- (i) said slurry consist has an interstitial porosity of less than about 15 volume percent;
- (j) from about 5 to about 30 weight of the carbonaceous particles in said slurry consist are smaller than 3.0 microns;
- (k) said k is 1;
- (l) said n is from about 0.01 to about 1.0.
- 78. The process as recited in claim 77, wherein:
- (a) from about 6 to about 30 weight percent of said solid carbonaceous material in said grinding mixture has a median particle size of from about 2 to about 20 microns;
- (b) said grinding mixture is comprised of from about 70 to about 94 weight percent of coarse solid carbonaceous material which has a median particle size greater than about 40 microns;
- (c) said slurry has a yield stress of from about 7 to about 12 Pascals;
- (d) said Brookfield viscosity of said slurry is less than 2,000 centipoise;
- (e) said slurry consist has a specific surface area of from about 0.8 to about 2.4 square meters per cubic centimeter;
- (f) said n is from about 0.1 to about 0.5.
- 79. The process as recited in claim 78, wherein:
- (a) said solid carbonaceous material is coal;
- (b) said liquid is carrier water; and
- (c) the colloidal sized coal particles in the slurry have a net zeta potential of from about 15 to about 85 millivolts.
- 80. The process as recited in claim 79, wherein the colloidal sized coal particles in the slurry have a zeta potential of from about -15.4 to about -70.2 millivolts.
- 81. The process as recited in claim 79, wherein the colloidal sized coal particles in said slurry have a zeta potential of from about -30 to about -70 millivolts.
- 82. The process as recited in claim 78, wherein:
- (a) said solid carbonaceous material is coke; and
- (b) said liquid is petroleum liquid.
- 83. The process as recited in claim 82, wherein:
- (a) said coke is petroleum coke; and
- (b) said petroleum liquid is selected from the group consisting of number 2 fuel oil, number 4 fuel oil, number 6 fuel oil, gasoline, naphtha, and mixtures thereof.
- 84. The process as recited in claim 78, wherein said liquid comprises a mixture of water and petroleum liquid.
- 85. The process as recited in claim 84, wherein at least about 90 weight percent of said liquid is water and less than about 10 weight percent of said liquid is petroleum liquid.
- 86. The process as recited in claim 78, wherein said grinding mixture is ground in a tumbling mill.
- 87. The process as recited in claim 86, wherein said tumbling mill is a ball mill.
- 88. The process as recited in claim 87, wherein said grinding mixture is ground at from about 50 to about 70 percent of the ball mill critical speed.
- 89. The process as recited in claim 88, wherein said grinding mixture is ground at less than about 60 percent of the ball mill critical speed.
- 90. The process as recited in claim 89, wherein said grinding mixture is ground at less than about 55 percent of the ball mill critical speed.
- 91. The process as recited in claim 78, wherein:
- (a) said grinding mixture is comprised of from about 75 to about 80 volume percent of said solid carbonaceous material;
- (b) said grinding mixture comprises from about 20 to about 25 volume percent of carrier liquid;
- (c) said slurry consist has a specific surface area of from about 0.8 to about 2.0 square meters per cubic centimeters; and
- (d) said slurry consist has an interstitial porosity of less than about 10 volume percent.
- 92. The process as recited in claim 78, wherein said Brookfield viscosity of said slurry is less than 1,000 centipoise.
CROSS-REFERENCE TO RELATED APPLICATIONS
This application is a continuation-in-part of applicant's copending application Ser. No. 375,183 filed May 5, 1982 now U.S. Pat. No. 4,441,887 which was a continuation-in-part of application Ser. No. 288,737 filed July 31, 1981, now U.S. Pat. No. 4,416,666 which was a continuation-in-part of application Ser. No. 088,815 filed Oct. 26, 1979 (now U.S. Pat. No. 4,282,006), which was a continuation-in-part of application Ser. No. 957,166 filed Nov. 2, 1978 (now abandoned), which was a continuation-in-part of application Ser. No. 790,337 filed Apr. 25, 1977 (now abandoned).
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
4104035 |
Cole et al. |
Aug 1978 |
|
4282006 |
Funk |
Apr 1981 |
|
Continuation in Parts (5)
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Number |
Date |
Country |
Parent |
375183 |
May 1982 |
|
Parent |
288737 |
Jul 1981 |
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Parent |
88815 |
Oct 1979 |
|
Parent |
957166 |
Nov 1978 |
|
Parent |
790337 |
Apr 1977 |
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