Claims
- 1. A catalyst for decomposing nitrous oxide, comprising a support having supported thereon aluminum, magnesium and rhodium.
- 2. The catalyst for decomposing nitrous oxide as claimed in claim 1, wherein the support is at least one support selected from the group consisting of alumina, silica, zirconia, ceria, titania and tin oxide.
- 3. A catalyst for decomposing nitrous oxide, comprising an alumina support having supported thereon magnesium and rhodium.
- 4. The catalyst for decomposing nitrous oxide as claimed in claim 1 or 3, wherein aluminum is contained in an atomic ratio of 2 or more to magnesium.
- 5. The catalyst for decomposing nitrous oxide as claimed in claim 1 or 3, wherein at least a part of aluminum forms a spinel crystalline composite oxide with magnesium.
- 6. The catalyst for decomposing nitrous oxide as claimed in claim 1 or 3, wherein magnesium is contained in an amount of 0.1 to 20.0% by mass based on the catalyst as a whole.
- 7. The catalyst for decomposing nitrous oxide as claimed in claim 1 or 3, wherein rhodium is contained in an amount of 0.05 to 10% by mass based on the catalyst as a whole.
- 8. A catalyst for decomposing nitrous oxide, comprising a support having supported thereon rhodium, said support comprising a spinel crystalline composite oxide formed by magnesium and at least a part of aluminum.
- 9. The catalyst for decomposing nitrous oxide as claimed in claim 8, wherein aluminum is contained in an atomic ratio of 2 or more to magnesium.
- 10. The catalyst for decomposing nitrous oxide as claimed in claim 8, wherein magnesium is contained in an amount of 0.1 to 20.0% by mass based on the catalyst as a whole.
- 11. The catalyst for decomposing nitrous oxide as claimed in claim 8, wherein rhodium is contained in an amount of 0.05 to 10% by mass based on the catalyst as a whole.
- 12. A catalyst for decomposing nitrous oxide, comprising a support having supported thereon aluminum, rhodium and at least one metal selected from the group consisting of zinc, iron, manganese and nickel.
- 13. The catalyst for decomposing nitrous oxide as claimed in claim 12, wherein the support is at least one support selected from the group consisting of alumina, zirconia, ceria, titania and tin oxide.
- 14. A catalyst for decomposing nitrous oxide, comprising an alumina support having supported thereon rhodium and at least one metal selected from the group consisting of zinc, iron, manganese and nickel.
- 15. The catalyst for decomposing nitrous oxide as claimed in claim 12 or 14, wherein aluminum is contained in an atomic ratio of 2 or more to the at least one metal selected from the group consisting of zinc, iron, manganese and nickel.
- 16. The catalyst for decomposing nitrous oxide as claimed in claim 12 or 14, wherein at least a part of aluminum forms a spinel crystalline composite oxide with the at least one metal selected from the group consisting of zinc, iron, manganese and nickel.
- 17. The catalyst for decomposing nitrous oxide as claimed in claim 12 or 14, wherein the at least one metal selected from the group consisting of zinc, iron, manganese and nickel is contained in an amount of 0.1 to 40.0% by mass based on the catalyst as a whole.
- 18. The catalyst for decomposing nitrous oxide as claimed in claim 12 or 14, wherein rhodium is contained in an amount of 0.05 to 10% by mass based on the catalyst as a whole.
- 19. A catalyst for decomposing nitrous oxide, comprising a support having supported thereon rhodium, said support comprising a spinel crystalline composite oxide formed by at least a part of aluminum and at least one metal selected from the group consisting of zinc, iron, manganese and nickel.
- 20. The catalyst for decomposing nitrous oxide as claimed in claim 19, wherein aluminum is contained in an atomic ratio of 2 or more to the at least one metal selected from the group consisting of zinc, iron, manganese and nickel.
- 21. The catalyst for decomposing nitrous oxide as claimed in claim 19, wherein the at least one metal selected from the group consisting of zinc, iron, manganese and nickel is contained in an amount of 0.1 to 40.0% by mass based on the catalyst as a whole.
- 22. The catalyst for decomposing nitrous oxide as claimed in claim 19, wherein rhodium is contained in an amount of 0.05 to 10% by mass based on the catalyst as a whole.
- 23. The catalyst for decomposing nitrous oxide as claimed in claim 1, 3, 8, 12, 14 or 19, wherein the amount of NOx generated at the decomposition of nitrous oxide is 1 ppm or less.
- 24. A process for producing a catalyst for decomposing nitrous oxide described in claim 1, comprising the following three steps:
(1) a step of loading aluminum and magnesium on a support; (2) a step of calcining the support having supported thereon aluminum and magnesium obtained in the step (1); and (3) a step of loading rhodium on the calcined support obtained in the step (2) and then calcining the support.
- 25. A process for producing a catalyst for decomposing nitrous oxide described in claim 8, comprising the following three steps:
(1) a step of loading aluminum and magnesium on a support; (2) a step of calcining the support having supported thereon aluminum and magnesium obtained in the step (1); and (3) a step of loading rhodium on the calcined support obtained in the step (2) and then calcining the support.
- 26. The process for producing a catalyst for decomposing nitrous oxide as claimed in claim 24 or 25, wherein the support is at least one support selected from the group consisting of alumina, silica, zirconia, ceria, titania and tin oxide.
- 27. The process for producing a catalyst for decomposing nitrous oxide as claimed in claim 24 or 25, wherein aluminum is supported in an atomic ratio of 2 or more to magnesium.
- 28. The process for producing a catalyst for decomposing nitrous oxide as claimed in claim 24 or 25, wherein the amount of magnesium supported is from 0.1 to 20.0% by mass based on the catalyst as a whole.
- 29. The process for producing a catalyst for decomposing nitrous oxide as claimed in claim 24 or 25, wherein the amount of rhodium supported is from 0.05 to 10% by mass based on the catalyst as a whole.
- 30. A process for producing a catalyst for decomposing nitrous oxide described in claim 12, comprising the following three steps:
(1) a step of loading aluminum and at least one metal selected from the group consisting of zinc, iron, manganese and nickel on a support; (2) a step of calcining the support having supported thereon aluminum and at least one metal selected from the group consisting of zinc, iron, manganese and nickel, obtained in the step (1); and (3) a step of loading rhodium on the calcined support obtained in the step (2) and then calcining the support.
- 31. A process for producing a catalyst for decomposing nitrous oxide described in claim 19, comprising the following three steps:
(1) a step of loading aluminum and at least one metal selected from the group consisting of zinc, iron, manganese and nickel on a support; (2) a step of calcining the support having supported thereon aluminum and at least one metal selected from the group consisting of zinc, iron, manganese and nickel, obtained in the step (1); and (3) a step of loading rhodium on the calcined support obtained in the step (2) and then calcining the support.
- 32. The process for producing a catalyst for decomposing nitrous oxide as claimed in claim 30 or 31, wherein the support is at least one support selected from the group consisting of alumina, zirconia, ceria, titania and tin oxide.
- 33. The process for producing a catalyst for decomposing nitrous oxide as claimed in claim 30 or 31, wherein aluminum is supported in an atomic ratio of 2 or more to the at least one metal selected from the group consisting of zinc, iron, manganese and nickel.
- 34. The process for producing a catalyst for decomposing nitrous oxide as claimed in claim 30 or 31, wherein the amount supported of the at least one metal selected from the group consisting of zinc, iron, manganese and nickel is from 0.1 to 40.0% by mass based on the catalyst as a whole.
- 35. The process for producing a catalyst for decomposing nitrous oxide as claimed in claim 30 or 31, wherein the amount of rhodium supported is from 0.05 to 10% by mass based on the catalyst as a whole.
- 36. A process for producing a catalyst for decomposing nitrous oxide described in claim 3, comprising the following three steps:
(1) a step of loading magnesium on an alumina support; (2) a step of calcining the support having supported thereon magnesium obtained in the step (1); (3) a step of loading rhodium on the calcined support obtained in the step (2) and then calcining the support.
- 37. A process for producing a catalyst for decomposing nitrous oxide described in claim 8, comprising the following three steps:
(1) a step of loading magnesium on an alumina support; (2) a step of calcining the support having supported thereon magnesium obtained in the step (1); (3) a step of loading rhodium on the calcined support obtained in the step (2) and then calcining the support.
- 38. The process for producing a catalyst for decomposing nitrous oxide as claimed in claim 36 or 37, wherein the amount of magnesium supported is ½ or less in terms of the atomic ratio to aluminum.
- 39. The process for producing a catalyst for decomposing nitrous oxide as claimed in claim 36 or 37, wherein the amount of magnesium supported is from 0.1 to 20.0% by mass based on the catalyst as a whole.
- 40. The process for producing a catalyst for decomposing nitrous oxide as claimed in claim 36 or 37, wherein the amount of rhodium supported is from 0.05 to 10% by mass based on the catalyst as a whole.
- 41. A process for producing a catalyst for decomposing nitrous oxide described in claim 14, comprising the following three steps:
(1) a step of loading at least one metal selected from the group consisting of zinc, iron, manganese and nickel on an alumina support; (2) a step of calcining the support having supported thereon at least one metal selected from the group consisting of zinc, iron, manganese and nickel, obtained in the step (1); (3) a step of loading rhodium on the calcined support obtained in the step (2) and then calcining the support.
- 42. A process for producing a catalyst for decomposing nitrous oxide described in claim 19, comprising the following three steps:
(1) a step of loading at least one metal selected from the group consisting of zinc, iron, manganese and nickel on an alumina support; (2) a step of calcining the support having supported thereon at least one metal selected from the group consisting of zinc, iron, manganese and nickel, obtained in the step (1); (3) a step of loading rhodium on the calcined support obtained in the step (2) and then calcining the support.
- 43. The process for producing a catalyst for decomposing nitrous oxide as claimed in claim 41 or 42, wherein the amount supported of at least one metal selected from the group consisting of zinc, iron, manganese and nickel is ½ or less in terms of the atomic ratio to aluminum.
- 44. The process for producing a catalyst for decomposing nitrous oxide as claimed in claim 41 or 42, wherein the amount supported of the at least one metal selected from the group consisting of zinc, iron, manganese and nickel is from 0.1 to 40.0% by mass based on the catalyst as a whole.
- 45. The process for producing a catalyst for decomposing nitrous oxide as claimed in claim 41 or 42, wherein the amount of rhodium supported is from 0.05 to 10% by mass based on the catalyst as a whole.
- 46. A process for producing a catalyst for decomposing nitrous oxide described in claim 8, comprising the following three steps:
(1) a step of neutralization-precipitating an aluminum salt and a magnesium salt; (2) a step of calcining the precipitate obtained in the step (1); and (3) a step of loading rhodium on the calcined material obtained in the step (2) and then calcining the material.
- 47. The process for producing a catalyst for decomposing nitrous oxide as claimed in claim 46, wherein aluminum is contained in an atomic ratio of 2 or more to magnesium.
- 48. The process for producing a catalyst for decomposing nitrous oxide as claimed in claim 46, wherein magnesium is contained in an amount of 0.1 to 20.0% by mass based on the catalyst as a whole.
- 49. The process for producing a catalyst for decomposing nitrous oxide as claimed in claim 46, wherein the amount of rhodium supported is from 0.05 to 10% by mass based on the catalyst as a whole.
- 50. A process for producing a catalyst for decomposing nitrous oxide described in claim 19, comprising the following three steps:
(1) a step of neutralization-precipitating an aluminum salt and at least one metal salt selected from the group consisting of zinc, iron, manganese and nickel; (2) a step of calcining the precipitate obtained in the step (1); and (3) a step of loading rhodium on the calcined material obtained in the step (2) and then calcining the material.
- 51. The process for producing a catalyst for decomposing nitrous oxide as claimed in claim 50, wherein aluminum is contained in an atomic ratio of 2 or more to the at least one metal selected from the group consisting of zinc, iron, manganese and nickel.
- 52. The process for producing a catalyst for decomposing nitrous oxide as claimed in claim 50, wherein at least one metal selected from the group consisting of zinc, iron, manganese and nickel is contained in an amount of 0.1 to 40.0% by mass based on the catalyst as a whole.
- 53. The process for producing a catalyst for decomposing nitrous oxide as claimed in claim 50, wherein the amount of rhodium supported is from 0.05 to 10% by mass based on the catalyst as a whole.
- 54. A process for producing a catalyst for decomposing nitrous oxide described in claim 3, comprising the following three steps:
(1) a step of mixing alumina and/or aluminum hydroxide with magnesium oxide, magnesium hydroxide and/or magnesium salt; (2) a step of calcining the mixture obtained in the step (1); and (3) a step of loading rhodium on the calcined material obtained in the step (2) and then calcining the material.
- 55. A process for producing a catalyst for decomposing nitrous oxide described in claim 8, comprising the following three steps:
(1) a step of mixing alumina and/or aluminum hydroxide with magnesium oxide, magnesium hydroxide and/or magnesium salt; (2) a step of calcining the mixture obtained in the step (1); and (3) a step of loading rhodium on the calcined material obtained in the step (2) and then calcining the material.
- 56. The process for producing a catalyst for decomposing nitrous oxide as claimed in claim 54 or 55, wherein aluminum is contained in an atomic ratio of 2 or more to magnesium.
- 57. The process for producing a catalyst for decomposing nitrous oxide as claimed in claim 54 or 55, wherein magnesium is contained in an amount of 0.1 to 20.0% by mass based on the catalyst as a whole.
- 58. The process for producing a catalyst for decomposing nitrous oxide as claimed in claim 54 or 55, wherein the amount of rhodium supported is from 0.05 to 10% by mass based on the catalyst as a whole.
- 59. A process for producing a catalyst for decomposing nitrous oxide described in claim 14, comprising the following three steps:
(1) a step of mixing alumina and/or aluminum hydroxide with an oxide, a hydroxide and/or a metal salt of at least one metal selected from the group consisting of zinc, iron, manganese and nickel; (2) a step of calcining the mixture obtained in the step (1); and (3) a step of loading rhodium on the calcined material obtained in the step (2) and then calcining the material.
- 60. A process for producing a catalyst for decomposing nitrous oxide described in claim 19, comprising the following three steps:
(1) a step of mixing alumina and/or aluminum hydroxide with an oxide, a hydroxide and/or a metal salt of at least one metal selected from the group consisting of zinc, iron, manganese and nickel; (2) a step of calcining the mixture obtained in the step (1); and (3) a step of loading rhodium on the calcined material obtained in the step (2) and then calcining the material.
- 61. The process for producing a catalyst for decomposing nitrous oxide as claimed in claim 59 or 60, wherein aluminum is contained in an atomic ratio of 2 or more to the at least one metal selected from the group consisting of zinc, iron, manganese and nickel.
- 62. The process for producing a catalyst for decomposing nitrous oxide as claimed in claim 59 or 60, wherein the at least one metal selected from the group consisting of zinc, iron, manganese and nickel is contained in an amount of 0.1 to 40.0% by mass based on the catalyst as a whole.
- 63. The process for producing a catalyst for decomposing nitrous oxide as claimed in claim 59 or 60, wherein the amount of rhodium supported is from 0.05 to 10% by mass based on the catalyst as a whole.
- 64. The process for producing a catalyst for decomposing nitrous oxide as claimed in claim 24, 25, 30, 31, 36, 37, 41, 42, 46, 50, 54, 55, 59 or 60 , wherein the calcining temperature in the step (2) is from 400 to 900° C.
- 65. The process for producing a catalyst for decomposing nitrous oxide as claimed in claim 24, 25, 30, 31, 36, 37, 41, 42, 46, 50, 54, 55, 59 or 60, wherein the calcining temperature in the step (3) is from 200 to 500° C.
- 66. The process for producing a catalyst for decomposing nitrous oxide as claimed in claim 24, 25, 30, 31, 36, 37, 41, 42, 46, 50, 54, 55, 59 or 60, wherein a reduction treatment step is performed after the step (3).
- 67. The process for producing a catalyst for decomposing nitrous oxide as claimed in claim 66, wherein the reduction treatment step is hydrogen reduction treatment step.
- 68. The process for producing a catalyst for decomposing nitrous oxide as claimed in claim 67, wherein the hydrogen reduction treatment temperature is from 400 to 900° C.
- 69. A method for decomposing nitrous oxide, comprising contacting the catalyst for decomposing nitrous oxide described in any one of claims 1 to 23 with a gas containing nitrous oxide.
- 70. The method for decomposing nitrous oxide as claimed in claim 69, wherein the contacting temperature is from 200 to 600° C.
- 71. The method for decomposing nitrous oxide as claimed in claim 69, wherein the gas decomposed is nitrous oxide contained in an anesthetic gas and the concentration of nitrous oxide is 70% or less.
- 72. The method for decomposing nitrous oxide as claimed in claim 69, wherein the gas decomposed is nitrous oxide contained in an exhaust gas discharged from factories or incineration facilities and the concentration of nitrous oxide is 10% or less.
- 73. The method for decomposing nitrous oxide as claimed in claim 69, wherein the amount of NOx generated at the decomposition of nitrous oxide is 1 ppm or less.
Priority Claims (2)
Number |
Date |
Country |
Kind |
2000-272615 |
Sep 2000 |
JP |
|
2001-180165 |
Jun 2001 |
JP |
|
CROSS REFERENCE TO THE RELATED APPLICATIONS
[0001] This is an application based on the prescription of 35 U.S.C. Section 111(a) with claiming the benefit of filing date of U.S. Provisional applications Ser. No. 60/241,748 filed Oct. 20, 2000 under the provision of 35 U.S.C. 111(b), pursuant to 35 U.S.C. Section 119(e)(1).
Provisional Applications (1)
|
Number |
Date |
Country |
|
60241748 |
Oct 2000 |
US |