Claims
- 1. Regenerator for regenerative combustion burner;wherein said regenerative combustion burner being fired with alternately and repeatedly operations of heat storage by the passage of high-temperature flue gas in a fixed time and heating of combustion air by passage of the combustion air in a next fixed time, wherein said regenerator being made of the materials each comprising alumina as a main ingredient, and wherein said regenerator being used under the condition that the flue gas includes metal dust; which regenerator is characterized by the fact that the alumina purities in the materials for the regenerator are lowered in the order, the high-temperature, medium-temperature and low-temperature parts of the regenerator.
- 2. Regenerator according to claim 1, wherein the porosity of said high-temperature part is lower than that of the medium-temperature part.
- 3. Regenerator for regenerative combustion burner;wherein said regenerative combustion burner being fired with alternately and repeatedly operations of heat storage by the passage of high-temperature flue gas in a fixed time and heating of combustion air by passage of the combustion air in a next fixed time, wherein said regenerator being made of the materials each comprising alumina as a main ingredient, and wherein said regenerator being used under the condition that the flue gas includes metal dust; which regenerator is characterized by the fact that the alumina purity in the material for the high-temperature part of the regenerator where the flue gas is exceeding 1200° C. is not less than 98%, that for the medium-temperature part of the regenerator where the flue gas is exceeding 1100° C. and not higher than 1200° C. is 95%, and the material for the low-temperature part of the regenerator where the flue gas is not higher than 1100° C. is cordierite.
- 4. Regenerator according to claim 3, wherein the porosity in the high-temperature part is not more than 20%, and the porosity in the medium temperature part is not more than 50%.
- 5. Regenerator for regenerative combustion burner;wherein said regenerative combustion burner being fired with alternately and repeatedly operations of heat storage by the passage of high-temperature flue gas in a fixed time and heating of combustion air by passage of the combustion air in a next fixed time, wherein said regenerator being made of the materials each comprising alumina as a main ingredient, and wherein said regenerator being used under the condition that the flue gas includes no metal dust; which regenerator is characterized by the fact that the alumina purity in the material for the high-temperature part of the regenerator where the flue gas is exceeding 1300° C. is not less than 95%, and the material for the low-temperature part of the regenerator where the flue gas is not higher than 1300° C. is cordierite.
- 6. Regenerator according to claim 5, wherein the porosity in the high-temperature part is not more than 20%.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2000-278580 |
Sep 2000 |
JP |
|
Parent Case Info
This application is a U.S. National Phase Application under 35 USC 371 of International Application PCT/JP01/07890 (not published in English) filed Sep. 11, 2001.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/JP01/07890 |
|
WO |
00 |
Publishing Document |
Publishing Date |
Country |
Kind |
WO02/23113 |
3/21/2002 |
WO |
A |
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Number |
Name |
Date |
Kind |
5515909 |
Tanaka |
May 1996 |
A |
5520534 |
Nakagawa et al. |
May 1996 |
A |
5992504 |
Kumazawa et al. |
Nov 1999 |
A |
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0 687 879 |
Dec 1995 |
EP |
0 724 126 |
Jul 1996 |
EP |
0 939 289 |
Sep 1999 |
EP |
11-30491 |
Feb 1999 |
JP |