Claims
- 1. A silica-based particulate material characterized as having:
a median particle size of at least 20 μm; a BET surface area of at least 90 m2/g; and a pH of at least 9.5.
- 2. The silica-based particulate material of claim 1, comprising less than 5 wt. % of a multivalent cation, based on the oxide of said cation.
- 3. The silica-based particulate material of claim 1, wherein the median particle size is from 30 μm to 50 μm.
- 4. The silica-based particulate material of claim 1, wherein the median particle size is from 150 μm to 300 μm.
- 5. The silica-based particulate material of claim 1, wherein the silica is a precipitated silica.
- 6. The silica-based particulate material of claim 1, wherein the silica is a hydrophilic silica.
- 7. A carrier comprising the silica-based particulate material of claim 1.
- 8. The carrier of claim 7 having an oil absorption of greater than 220 ml/100 g.
- 9. A hydrophilic silica-based particulate material comprising less than 5 wt. % of a multivalent cation, based on the oxide of said cation, characterized as having:
a median particle size of up to 20 μm; and a pH of at least 10.
- 10. The silica-based particulate material of claim 9 having a BET surface area of at least 20 m2/g.
- 11. The silica-based particulate material of claim 9, wherein the particle size is from 1 μm to 20 μm.
- 12. The silica-based particulate material of claim 9, wherein the silica is a precipitated silica.
- 13. The silica-based particulate material of claim 9, comprising less than 2 wt. % of a multivalent cation, based on the oxide of said cation
- 14. A hydrophobic silica-based particulate material characterized as having a pH of at least 10.5.
- 15. The silica-based particulate material of claim 14 having a median particle size of up to 20 μm.
- 16. The silica-based particulate material of claim 14 comprising less than 5 wt. % of a multivalent cation based on the oxide of said cation.
- 17. The silica-based particulate material of claim 14 having a BET surface area of at least 20 m2/g.
- 18. The silica-based particulate material of claim 14, wherein the particle size is less than 20 μm.
- 19. The silica-based particulate material of claim 14, wherein the silica is a precipitated silica.
- 20. A defoamer composition comprising the silica-based particulate material of claim 14.
- 21. A method of forming a silica-based particulate material comprising the steps of:
(a) providing a filter cake comprising silica; (b) applying water and shear to form a silica slurry; (c) adding an alkaline material to the cake before, during or after (b) to form an alkaline silica slurry; and (d) drying the silica slurry to form a silica-based particulate material characterized as having:
a median particle size of at least 20 μm; a BET surface area of at least 90 m2/g; and a pH of at least 9.5.
- 22. The method of claim 21, wherein the silica-based particulate material comprises less than 5 wt. % of a multivalent cation, based on the oxide of said cation, and
- 23. The method of claim 21, wherein the silica-based particulate material median particle size is from 30 μm to 50 μm.
- 24. The method of claim 21, wherein the silica-based particulate material median particle size is from 150 μm to 300 μm.
- 25. The method of claim 21, wherein the silica-based particulate material is a precipitated silica.
- 26. The method of claim 21, wherein the dried silica-based particulate material of (d) is a hydrophilic silica.
- 27. A silica-based particulate material prepared by the method of claim 21.
- 28. A carrier comprising the silica-based particulate material of claim 27.
- 29. The carrier of claim 28 having an oil absorption of greater than 220 ml/100 g.
- 30. The method of claim 21 further comprising the step of
(e) reducing the particle size of the dried silica-based particulate material to a median particle size of less than 20 μm.
- 31. The method of claim 21 further comprising the steps of
(f) adding silicone oil to the dried silica-based particulate material; and (g) subjecting the composition in (f) to a temperature of from 50° C. to 250° C. for a period of time sufficient for the silicone oil to react with the surface of the dried silica-based particulate material.
- 32. A silica-based particulate material prepared by the method of claim 31.
- 33. A defoamer composition comprising the silica-based particulate material of claim 32.
- 34. The method of claim 21, wherein the alkaline material is one or more selected from sodium hydroxide, potassium hydroxide, sodium silicate, potassium silicate, ammonia and an organic amine.
- 35. The method of claim 21, wherein the pH of the alkaline silica slurry in (c) is from 9.5 to 12.5.
- 36. The method of claim 21, wherein the silica slurry is dried using a drying method selected from spray drying, rotary drying and flash drying.
- 37. A method of forming a silica-based particulate material comprising the steps of:
(a) providing a filter cake comprising silica; (b) applying water and shear to form a silica slurry; (c) adding an alkaline material to the cake before, during or after (b) to form an alkaline silica slurry; and (d) drying the silica slurry to form a silica-based particulate material characterized as comprising less than 5 wt. % of a multivalent cation, based on the oxide of said cation, and having:
a median particle size of up to 20 μm; and a pH of at least 10.5.
- 38. The method of claim 37, wherein the silica-based particulate material has a BET surface area of at least 20 m2/g.
- 39. The method of claim 37, wherein the silica-based particulate material is a precipitated silica.
- 40. The method of claim 37, wherein the dried silica-based particulate material of (d) is a hydrophilic silica.
- 41. A silica-based particulate material prepared by the method of claim 37.
- 42. The method of claim 37 further comprising the steps of
(e) adding silicone oil to the dried silica-based particulate material; and (f) subjecting the composition in (e) to a temperature of from 50° C. to 250° C. for a period of time sufficient for the silicone oil to react with the surface of the dried silica-based particulate material.
- 43. A silica-based particulate material prepared by the method of claim 42.
- 44. A defoamer composition comprising the silica-based particulate material of claim 43.
- 45. The method of claim 37, wherein the alkaline material is one or more selected from sodium hydroxide, potassium hydroxide, sodium silicate, potassium silicate, ammonia and organic amines.
- 46. The method of claim 37, wherein the pH of the alkaline silica slurry in (c) is from 9.5 to 12.5.
- 47. The method of claim 37, wherein the silica slurry is dried using a drying method selected from spray drying, rotary drying and flash drying.
- 48. A silica-rubber additive composition comprising an additive for rubber and the silica-based particulate material of claim 1.
- 49. The silica-rubber additive composition of claim 48, wherein the additive for rubber is a resin.
- 50. The silica-rubber additive composition of claim 49, wherein the resin is a self-condensing alkylated triazine resin.
- 51. A silica-rubber additive composition comprising an additive for rubber and the silica-based particulate material of claim 25.
- 52. The silica-rubber additive composition of claim 51, wherein the additive for rubber is a resin.
- 53. The silica-rubber additive composition of claim 52, wherein the resin is a self-condensing alkylated triazine resin.
- 54. A flatting agent for coatings comprising the silica-based particulate material of claim 1.
- 55. A flatting agent for coatings comprising the silica-based particulate material of claim 9.
- 56. A flatting agent for coatings comprising the silica-based particulate material of claim 14.
- 57. The use of the silica-based particulate material of claim 1 as a thickening agent.
- 58. The use of the silica-based particulate material of claim 9 as a thickening agent.
- 59. The use of the silica-based particulate material of claim 14 as a thickening agent.
- 60. The use of the silica-based particulate material of claim 1 as a reinforcing filler.
- 61. The use of the silica-based particulate material of claim 9 as a reinforcing filler.
- 62. The use of the silica-based particulate material of claim 14 as a reinforcing filler.
- 63. A paper coating composition comprising the silica-based particulate material of claim 1.
- 64. A paper coating composition comprising the silica-based particulate material of claim 9.
- 65. A paper coating composition comprising the silica-based particulate material of claim 14.
- 66. An inkjet printable paper comprising the silica-based particulate material of claim 1.
- 67. An inkjet printable paper comprising the silica-based particulate material of claim 9.
- 68. An inkjet printable paper comprising the silica-based particulate material of claim 14.
- 69. A synthetic printing sheet comprising the silica-based particulate material of claim 1.
- 70. A synthetic printing sheet comprising the silica-based particulate material of claim 9.
- 71. A synthetic printing sheet comprising the silica-based particulate material of claim 14.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority from U.S. Provisional Patent Application Serial No. 60/310,609 filed Aug. 7, 2001 and entitled “Silica-Based Particulates,” which is herein incorporated by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60310609 |
Aug 2001 |
US |