IP Library Granted Patent US 9,358,524
Granted Patent B2
US 9,358,524 · App. 14/376,953 · Granted Jun 7, 2016

Catalyst structure for treating exhaust gas

Inventors: Yuki Nagao (Ageo, JP); Yunosuke Nakahara (Ageo, JP); Yasunori Imada (Ageo, JP); Ohki Houshito (Ageo, JP); Noriaki Iwata (Ageo, JP); Shinichi Tosa (Wako, JP); Syouji Inose (Wako, JP); Masanori Hashimoto (Wako, JP); Tomohiro Ikeda (Wako, JP)
Assignees: Honda Motor Co., Ltd.; Mitsui Mining & Smelting Co., Ltd.
B01J23/10B01D53/9445B01J23/002B01J23/63B01J23/83B01J23/894B01J35/002B01J35/1066B01J35/1076B01J35/1095B01J37/0244B01D2255/20B01D2255/2045B01D2255/9205B01J23/44B01J27/1806B01J35/0006B01J35/04B01J2523/00F01N2510/06Y02T10/22
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Quick Facts
Patent No.
US 9,358,524
App. No.
14/376,953
Granted
Jun 7, 2016
Kind
B2
Abstract

Provided is a novel catalyst structure capable of maintaining gas diffusivity to a deep part of a catalyst layer even under condition of a high gas flow rate. Proposed is a catalyst structure, which has a porous apatite catalyst layer containing an oxide (hereinafter referred to as “apatite”) whose crystalline structure belongs to an apatite type, and in which, in logarithmic differentiation void volume distribution measured by a mercury intrusion porosimeter, a peak top is present within a void volume diameter range of 100 nm to 1000 nm.

Claims (20)

1. A catalyst structure, which has a porous apatite catalyst layer containing an oxide having a crystalline structure of apatite type, and in which,

in logarithmic differentiation void volume distribution measured by a mercury intrusion porosimeter, a peak top is present within a void volume diameter range of 100 nm to 1000 nm.

2. The catalyst structure according to claim 1 , wherein a catalyst layer has equal to or more than two layers on a surface of a substrate, and an outermost surface layer of the layers which is equal to or more than two is the apatite catalyst layer.

3. The catalyst structure according to claim 2 ,

wherein the catalyst structure contains alumina, and

a ratio of a content of the apatite to a content of the alumina, both of which are contained in the same layer, is equal to or more than 1.

4. The catalyst structure according to claim 2 , wherein the apatite catalyst layer contains no ceria/zirconia composite oxide.

5. The catalyst structure according to claim 2 , wherein the apatite catalyst layer contains a catalyst active component whose content is 0.01 to 1.5 mass parts with respect to 100 mass parts of an amount of the apatite contained in the catalyst structure, and wherein the catalyst active component is a metal having catalyst activity for the apatite catalyst layer.

6. The catalyst structure according to claim 5 , wherein the catalyst active component includes palladium, platinum, rhodium, gold, silver, ruthenium, iridium, nickel, cerium, cobalt, copper, osmium, or strontium.

7. The catalyst structure according to claim 1 ,

wherein the catalyst structure contains alumina, and

a ratio of a content of the apatite to a content of the alumina, both of which are contained in the same layer, is equal to or more than 1.

8. The catalyst structure according to claim 7 , wherein the apatite catalyst layer contains no ceria/zirconia composite oxide.

9. The catalyst structure according to claim 7 , wherein the apatite catalyst layer contains a catalyst active component whose content is 0.01 to 1.5 mass parts with respect to 100 mass parts of an amount of the apatite contained in the catalyst structure, and wherein the catalyst active component is a metal having catalyst activity for the apatite catalyst layer.

10. The catalyst structure according to claim 9 , wherein the catalyst active component includes palladium, platinum, rhodium, gold, silver, ruthenium, iridium, nickel, cerium, cobalt, copper, osmium, or strontium.

11. The catalyst structure according to claim 1 , wherein the apatite catalyst layer contains no ceria/zirconia composite oxide.

12. The catalyst structure according to claim 11 , wherein the apatite catalyst layer contains a catalyst active component whose content is 0.01 to 1.5 mass parts with respect to 100 mass parts of an amount of the apatite contained in the catalyst structure, and wherein the catalyst active component is a metal having catalyst activity for the apatite catalyst layer.

13. The catalyst structure according to claim 12 , wherein the catalyst active component includes palladium, platinum, rhodium, gold, silver, ruthenium, iridium, nickel, cerium, cobalt, copper, osmium, or strontium.

14. The catalyst structure according to claim 1 , wherein the apatite catalyst layer contains a catalyst active component whose content is 0.01 to 1.5 mass parts with respect to 100 mass parts of an amount of the apatite contained in the catalyst structure, and wherein the catalyst active component is a metal having catalyst activity for the apatite catalyst layer.

15. The catalyst structure according to claim 14 , wherein the catalyst active component includes palladium, platinum, rhodium, gold, silver, ruthenium, iridium, nickel, cerium, cobalt, copper, osmium, or strontium.

Assignments (2)
CHANGE OF NAME Recorded Mar 31, 2026
From: MITSUI MINING AND SMELTING COMPANY, LIMITED
To: MITSUI KINZOKU COMPANY, LIMITED
Reel/Frame 075357/0342 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 6, 2014
From: NAGAO, YUKI; NAKAHARA, YUNOSUKE; IMADA, YASUNORI; HOUSHITO, OHKI; IWATA, NORIAKI; TOSA, SHINICHI; INOSE, SYOUJI; HASHIMOTO, MASANORI; IKEDA, TOMOHIRO
To: HONDA MOTOR CO., LTD.; MITSUI MINING & SMELTING CO., LTD.
Reel/Frame 033476/0350 →
Priority Claims (1)
JP 2012-023864 · Feb 7, 2012 · national
Continuity (1)
Related Publication 20140371058A1 · Dec 18, 2014