Claims
- 1. A high surface area product prepared from solid-containing material by a process comprising:
(A) subjecting the solid-containing material to controlled incineration at a temperature ranging from 800 to 900° C.; (B) comminution; and (C) carbonation, wherein the high surface area product comprises calcium carbonate.
- 2. A high surface area product according to claim 1, wherein the surface area is at least 35 M2/g.
- 3. A high surface area product according to claim 1, wherein the surface area is at least 50 M2/g.
- 4. A high surface area product according to claim 1, wherein the controlled incineration temperature ranges from 850 to 900° C.
- 5. A high surface area product according to claim 1, wherein the solid-containing material is contained in or produced from an effluent or waste from a process for treating waste paper.
- 6. A high surface area product according to claim 1, wherein the solid-containing material comprises calcium carbonate.
- 7. A high surface area product according to claim 6, wherein the calcium carbonate is present in the solid-containing material in an amount ranging from 25 to 60% by weight, relative to the total weight of the solid-containing material.
- 8. A high surface area product according to claim 1, wherein the comminution is performed by grinding, and wherein the grinding energy ranges from 50 to 100 kWh per ton at 25% solids.
- 9. A high surface area product according to claim 1, wherein the carbonation is performed at a temperature ranging from 20 to 35° C.
- 10. A high surface area product comprising calcium carbonate, wherein the high surface area product meets the following specifications:
- 11. A high surface area product according to claim 10, wherein the surface area is at least 50 M2/g.
- 12. A method for preparing a high surface area product, said method comprising:
(A) subjecting a solid-containing material to controlled incineration at a temperature ranging from 800 to 900° C.; (B) comminution; and (C) carbonation.
- 13. A method for preparing a high surface area product according to claim 12, wherein the incineration is performed in a toroidal fluid flow furnace.
- 14. A method for preparing a high surface area product according to claim 13, wherein the incineration is performed in a single stage.
- 15. A method for preparing a high surface area product according to claim 13, wherein the incineration is performed in two stages.
- 16. A method for preparing a high surface area product according to claim 12, wherein the incineration temperature ranges from 850 to 900° C.
- 17. A method for improving newsprint runnability, said method comprising incorporating into the newsprint a high surface area product prepared from solid-containing material by a process comprising:
(A) subjecting the solid-containing material to controlled incineration at a temperature ranging from 800 to 900° C.; (B) comminution; and (C) carbonation, and wherein the high surface area product comprises calcium carbonate.
- 18. A method for improving newsprint runnability, said method comprising incorporating into said newsprint a high surface area product according to claim 10.
- 19. A method for improving the coefficient of friction in newsprint, said method comprising incorporating into the newsprint a high surface area product obtained from solid-containing material by a process comprising:
(A) subjecting the solid-containing material to controlled incineration at a temperature ranging from 800 to 900° C.; (B) comminution; and (C) carbonation.
- 20. A method for improving the coefficient of friction in newsprint, said method comprising incorporating into the newsprint a high surface area product according to claim 10.
DESCRIPTION OF THE INVENTION
[0001] This application claims priority to U.S. Provisional Patent Application No. 60/331,176, filed Nov. 9, 2001.
Provisional Applications (1)
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Number |
Date |
Country |
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60331176 |
Nov 2001 |
US |