Claims
- 1. Ultrafine particulates of white zinc oxide having a high degree of whiteness and a reduced average particle diameter of about 15 nm to about 55 nm as measured by the BET-one point method and which have an L value of about 90 or more as measured by a Hunter color-difference meter.
- 2. The ultrafine particulates of white zinc oxide having a high degree of whiteness as claimed in claim 1, wherein said ultrafine particulates have a tetrapod- or needle-shaped particle configuration.
- 3. A process for producing ultrafine particulates of white zinc oxide having a high degree of whiteness, comprising oxidizing zinc vapor with an oxidizing gas in a reactor, wherein a zinc vapor-containing gas has a temperature of about 950° C. or more at a nozzle of the reactor for discharging the zinc vapor-containing gas and the oxidizing gas has a temperature of about 900° C. or more at a nozzle of the reactor for discharging the oxidizing gas.
- 4. The process for producing ultrafine particulates of white zinc oxide having a high degree of whiteness as claimed in claim 3, wherein the amount of the oxidizing gas discharged into the reactor is about 1.2 times or more and about 150 times or less than a theoretical amount of the oxidizing gas required for oxidizing the zinc vapor.
- 5. The process for producing ultrafine particulates of white zinc oxide having a high degree of whiteness according to claim 3 or 4, wherein the oxidizing gas discharged into the reactor has a composition composed of about 10% by volume or more and 100% by volume or less of oxygen and 0% by volume or more and about 90% by volume or less of steam provided that the sum of oxygen and steam is about 10% by volume or more and 100% by volume or less.
- 6. The process for producing ultrafine particulates of white zinc oxide having a high degree of whiteness according to claim 3, wherein a residence time of the gas passing the reactor is about 0.1 second or less as expressed in standard temperature and pressure (0° C. and 1 atm (760 mmHg)).
- 7. The process for producing ultrafine particulates of white zinc oxide having a high degree of whiteness according to claim 3, wherein a cooling gas is blown against an effluent gas immediately after an outlet of the reactor to maintain an average temperature of the effluent gas immediately after the outlet of the reactor at about 100° C. or more and about 450° C. or less.
- 8. The process for producing ultrafine particulates of white zinc oxide having a high degree of whiteness according to claim 3, wherein a heater is provided downstream of a zinc vaporizer so that the temperature of the gas obtaining zinc vapor at the nozzle for discharging it is maintained at about 950° C. or more.
- 9. The process for producing ultrafine particulates of white zinc oxide having a high degree of whiteness according to any one of claims 3-7, wherein the heater and the zinc vaporizer are made of a dense silicon carbide ceramic.
Priority Claims (1)
Number |
Date |
Country |
Kind |
11-238873 |
Aug 1999 |
JP |
|
CROSS REFERENCE TO RELATED APPLICATIONS
This application is based on the provisions of 35 U.S.C. Article 111(a) with claiming the benefit of filing date of U.S. provisional application Serial No. 60/215,071 filed on Jun. 30, 2000 under the provisions of 35 U.S.C. 111(b), pursuant to 35 U.S.C. Article 119(e) (1).
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
5560871 |
Yoshimaru et al. |
Oct 1996 |
A |
5582771 |
Yoshimaru |
Dec 1996 |
A |
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Non-Patent Literature Citations (2)
Entry |
“Formation of Needle-like Zinc Oxide Particles and the Analysis of Particle Morphology”, Osamu Sakurai et al., Bulletin of Chemical Society of Japan, (1984), pp. 837-842.* |
“Measuring Methods for the specific surface area of fine ceramic powders by gas absorption using the BET method” JIS R 1626-1996. |
Provisional Applications (1)
|
Number |
Date |
Country |
|
60/215071 |
Jun 2000 |
US |