IP Library Granted Patent US 11,547,987
Granted Patent B2
US 11,547,987 · App. 16/698,602 · Granted Jan 10, 2023

Structured catalyst for oxidation for exhaust gas purification, method for producing same, automobile exhaust gas treatment device, catalytic molding, and gas purification method

Inventors: Takao Masuda (Sapporo, JP); Yuta Nakasaka (Sapporo, JP); Takuya Yoshikawa (Sapporo, JP); Sadahiro Kato (Tokyo, JP); Masayuki Fukushima (Tokyo, JP); Hiroko Takahashi (Tokyo, JP); Yuichiro Banba (Tokyo, JP); Kaori Sekine (Tokyo, JP)
Assignee: FURUKAWA ELECTRIC CO., LTD.
B01J29/14B01D53/944B01J29/085B01J29/16B01J29/405B01J29/46B01J29/48B01J29/655B01J29/68B01J29/69B01J29/7084B01J29/7669B01J29/7869B01J35/006B01J35/0013B01J35/0066B01J35/04B01J37/0018B01J37/0205B01J37/0211B01J37/10B01J37/18F01N3/2828B01D2255/2042B01D2255/2063B01D2255/2073B01D2255/2092B01D2255/20738B01D2255/20746B01D2255/20753B01D2255/20761B01D2255/402B01D2255/9155B01J2229/14B01J2229/186F01N2330/06F01N2330/30F01N2370/04F01N2510/063
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Quick Facts
Patent No.
US 11,547,987
App. No.
16/698,602
Granted
Jan 10, 2023
Kind
B2
Abstract

The structured catalyst for oxidation for exhaust gas purification includes a support having a porous structure constituted by a zeolite-type compound, and at least one type of oxidation catalyst that is present in the support and selected from the group consisting of metal and metal oxide, the support having channels that communicate with each other, and the oxidation catalyst being present in at least the channels of the support.

Claims (22)

1. A structured catalyst for oxidation for exhaust gas purification, comprising:

a support of a porous structure composed of a zeolite-type compound; and

at least one oxidation catalyst present in the support and selected from the group consisting of metals and metal oxides, wherein

the support has channels that communicate with each other, and

the oxidation catalyst is present at least in the channels of the support,

wherein the metal oxides contain at least one perovskite-type oxide,

the channels have any one of a one-dimensional pore, a two-dimensional pore, and a three-dimensional pore defined by a framework of the zeolite-type compound and an enlarged pore portion that has a diameter different from any of the one-dimensional pore, the two-dimensional pore, and the three-dimensional pore,

the oxidation catalyst is present at least in the enlarged pore portion, the oxidation catalyst is made of at least one type of oxidation catalytic nanoparticles selected from the group consisting of metal nanoparticles and metal oxide nanoparticles, and

an average particle size of the oxidation catalytic nanoparticles is greater than an average inner diameter of the channels.

2. The structured catalyst for oxidation for exhaust gas purification according to claim 1 ; wherein the enlarged pore portion causes a plurality of pores constituting any one of the one-dimensional pore, the two-dimensional pore, and the three-dimensional pore to communicate with each other.

3. The structured catalyst for oxidation for exhaust gas purification according to claim 1 , wherein

the average particle size of the oxidation catalytic nanoparticles is less than or equal to an inner diameter of the enlarged pore portion.

4. The structured catalyst for oxidation for exhaust gas purification according to claim 3 , wherein the oxidation catalytic nanoparticles are made of at least one type of metal selected from the group consisting of cobalt, iron, copper, silver, manganese, nickel, chromium, tin, zinc, titanium, and platinum, and oxides of the metals.

5. The structured catalyst for oxidation for exhaust gas purification according to claim 3 , wherein the content of the metal element (M) of the oxidation catalytic nanoparticles is from 0.5 to 2.5 mass % with respect to the oxidation catalyst.

6. The structured catalyst for oxidation for exhaust gas purification according to claim 3 , wherein an average particle size of the metal oxide nanoparticles is from 0.1 nm to 50 nm.

7. The structured catalyst for oxidation for exhaust gas purification according to claim 3 , wherein the ratio of the average particle size of the metal oxide nanoparticles to the average inner diameter of the channels is from 0.06 to 500.

8. The structured catalyst for oxidation for exhaust gas purification according to claim 3 , wherein the average particle size of the metal nanoparticles is from 0.08 nm to 30 nm.

9. The structured catalyst for oxidation for exhaust gas purification according to claim 3 , wherein the ratio of the average particle size of the metal nanoparticles to the average inner diameter of the channels is from 0.05 to 300.

10. The structured catalyst for oxidation for exhaust gas purification according to claim 1 , further comprising at least another one functional substance held on an outer surface of the support.

11. The structured catalyst for oxidation for exhaust gas purification according to claim 10 , wherein the content of the at least one oxidation catalyst present in the support is greater than that of at least the other one functional substance held on the outer surface of the support.

12. An automobile exhaust gas treatment device comprising the structured catalyst for oxidation for exhaust gas purification described in claim 1 .

13. A catalytic molding comprising a honeycomb substrate and the structured catalyst for oxidation for exhaust gas purification described in claim 1 on a surface of the honeycomb substrate.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 2, 2021
From: MASUDA, TAKAO; NAKASAKA, YUTA; YOSHIKAWA, TAKUYA; KATO, SADAHIRO; FUKUSHIMA, MASAYUKI; TAKAHASHI, HIROKO; BANBA, YUICHIRO; SEKINE, KAORI
To: FURUKAWA ELECTRIC CO., LTD.
Reel/Frame 057058/0802 →
Priority Claims (3)
JP JP2017-108615 · May 31, 2017 · national
JP JP2017-108616 · May 31, 2017 · national
JP JP2017-108617 · May 31, 2017 · national
Continuity (2)
Continuation PCTJP2018021084 · May 31, 2018
Related Publication 20200114339A1 · Apr 16, 2020
Cited By (2)
US 12,208,375 US 12,654,158