Claims
- 1. A process of producing titanium oxide by oxidizing titanium tetrachloride with an oxidizing gas at a high temperature in a vapor phase process, comprising the step of preheating a titanium tetrachloride-containing gas and an oxidizing gas at about 500° C. or more and supplying the preheated gases into a reaction tube, thereby producing particulates of titanium oxide particulate having a BET specific surface area of from about 3 m2/g to about 200 m2/g.
- 2. The process of producing titanium oxide as claimed in claim 1, wherein the reaction is performed by supplying the titanium tetrachloride-containing gas and the oxidizing gas each preheated at about 500° C. or more to a reaction tube each at a flow rate of 10 m/sec or more.
- 3. The process of producing titanium oxide as claimed in claim 2, wherein the titanium tetrachloride-containing gas and the oxidizing gas are reacted by allowing them to stay for about 3 seconds or less in said reaction tube under a high temperature condition such that the temperature inside said reaction tube exceeds about 600° C.
- 4. The process of producing titanium oxide as claimed in claim 3, wherein each gas passes through said reaction tube at an average flow rate of about 5 m/sec or more.
- 5. The process of producing titanium oxide as claimed in claim 1, wherein the titanium tetrachloride-containing gas and the oxidizing gas are supplied to generate turbulence or spiral vortex in the reaction tube.
- 6. The process of producing titanium oxide as claimed in claim 1, wherein the titanium tetrachloride-containing gas and the oxidizing gas are supplied into a reaction tube through a coaxial parallel flow nozzle and the inner tube of said coaxial parallel flow nozzle has an inside diameter of 50 mm or less.
- 7. The process of producing titanium oxide as claimed in claim 2, wherein the titanium tetrachloride-containing gas and the oxidizing gas are supplied into the reaction tube through a coaxial parallel flow nozzle and the inner tube of said coaxial parallel flow nozzle has an inside diameter of about 50 mm or less.
- 8. The process of producing titanium oxide as claimed in claims 1, wherein the titanium tetrachloride-containing gas contains from about 10 to 100% of titanium tetrachloride.
- 9. The process of producing titanium oxide as claimed in claim 1, wherein the titanium tetrachloride-containing gas and the oxidizing gas are each preheated at a temperature of about 800° C. or more.
- 10. A titanium oxide having a BET specific surface area of from about 3 m2/g to about 200 m2/g and a diameter corresponding to 90% of the particle size cumulative distribution on a weight basis as termed D90 diameter, of about 2.2 μm or less.
- 11. A titanium oxide having a BET specific surface area of from about 3 m2/g to about 200 m2/g and a distribution constant n according to the following Rosin-Rammler formula of about 1.7 or more:
- 12. A titanium oxide produced by the process described in claim 1.
- 13. A titanium oxide composition comprising at least one titanium oxide selected from the titanium oxides of claim 10.
- 14. A titanium oxide composition comprising at least one titanium oxide selected from the titanium oxides of claim 11.
- 15. A titanium oxide composition comprising at least one titanium oxide selected from the titanium oxides of claim 12.
Priority Claims (1)
Number |
Date |
Country |
Kind |
HEI11-243539 |
Aug 1999 |
JP |
|
CROSS REFERENCE TO THE RELATED APPLICATIONS
[0001] This is an application based on the prescription of 35 U.S.C. Article 111(a) with claiming the benefit of filing date of U.S. provisional application Serial No. 60/153,957 filed on Sep. 15, 1999 under the provision of 35 U.S.C. 111(b), pursuant to 35 U.S.C. Article 119(e) (1).
Provisional Applications (1)
|
Number |
Date |
Country |
|
60153957 |
Sep 1999 |
US |
Divisions (1)
|
Number |
Date |
Country |
Parent |
09650740 |
Aug 2000 |
US |
Child |
10307406 |
Dec 2002 |
US |