IP Library Granted Patent US 10,898,881
Granted Patent B2
US 10,898,881 · App. 16/081,525 · Granted Jan 26, 2021

Catalyst for metal mercury oxidation reactions and nitrogen oxide reduction reactions, and exhaust gas purification method

Inventors: Shinpei Kaneda (Yokohama, JP); Naomi Imada (Yokohama, JP); Yasuyoshi Kato (Yokohama, JP)
Assignee: MITSUBISHI POWER, LTD.
B01J27/199B01D53/86B01D53/8628B01D53/8665B01J37/04F01N3/10B01D2255/2045B01D2255/20707B01D2255/20723B01D2255/20769B01D2255/20776B01D2255/70B01D2257/302B01D2257/402B01D2257/404B01D2257/602B01J2523/23B01J2523/47B01J2523/55B01J2523/68B01J2523/69
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Quick Facts
Patent No.
US 10,898,881
App. No.
16/081,525
Granted
Jan 26, 2021
Kind
B2
Abstract

A catalyst for oxidation reaction of metallic mercury and reduction reaction of nitrogen oxide, comprising an oxide of titanium, an oxide of molybdenum, an oxide of vanadium, an oxide of phosphorus and gypsum is obtained by kneading titanium dioxide, ammonium molybdate, ammonium metavanadate, phosphoric acid, gypsum dihydrate and water using a kneader to obtain a paste, applying the paste to a metal lath substrate, and then drying and calcining the resultant.

Claims (18)

1. A catalyst for oxidation reaction of metallic mercury and reduction reaction of nitrogen oxide, the catalyst comprising:

an oxide of titanium,

an oxide of molybdenum and/or tungsten,

an oxide of vanadium,

an oxide of phosphorus, and

gypsum obtained by burning a gypsum dihydrate,

wherein the amount of the gypsum contained in the catalyst is 1/99 to 40/60 in terms of dry based mass of the gypsum dihydrate with respect to the mass of the oxide of titanium.

2. A method for exhaust gas purification, comprising bringing an exhaust gas containing metallic mercury, nitrogen oxide and sulfur dioxide in contact with the catalyst according to claim 1 to accelerate oxidation reaction of metallic mercury and reduction reaction of nitrogen oxide and to suppress oxidation reaction of sulfur dioxide.

3. A catalyst for oxidation reaction of metallic mercury and reduction reaction of nitrogen oxide, the catalyst comprising:

an oxide of titanium,

an oxide of molybdenum and/or tungsten,

an oxide of vanadium,

an oxide of phosphorus, and

gypsum,

wherein the catalyst is obtained by burning an object comprising a raw material of an oxide of titanium, a raw material of an oxide of molybdenum and/or tungsten, a raw material of an oxide of vanadium, a raw material of an oxide of phosphorus and gypsum dihydrate to remove hydrated water contained in the gypsum dihydrate.

4. The catalyst described in claim 3 , wherein the amount of the gypsum contained in the catalyst is 1/99 to 40/60 in terms of dry-based mass of the gypsum dihydrate with respect to the mass of the oxide of titanium.

5. The catalyst described in claim 3 , wherein the total amount of a molybdenum element and a tungsten element contained in the catalyst is 1.5 to 13 moles with respect to 100 moles of a titanium element, the amount of a vanadium element contained in the catalyst is 0.1 to 13 moles with respect to 100 moles of the titanium element, and the amount of a phosphorus element contained in the catalyst is 50 to 150 moles with respect to the total amount, 100 moles, of the molybdenum element, the tungsten element and the vanadium element.

6. A method for exhaust gas purification, comprising bringing an exhaust gas containing metallic mercury, nitrogen oxide and sulfur dioxide in contact with the catalyst according to claim 3 to accelerate oxidation reaction of metallic mercury and reduction reaction of nitrogen oxide and to suppress oxidation reaction of sulfur dioxide.

Assignments (2)
CHANGE OF NAME Recorded Sep 21, 2020
From: MITSUBISHI HITACHI POWER SYSTEMS, LTD.
To: MITSUBISHI POWER, LTD.
Reel/Frame 053838/0787 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 31, 2018
From: KANEDA, SHINPEI; IMADA, NAOMI; KATO, YASUYOSHI
To: MITSUBISHI HITACHI POWER SYSTEMS, LTD.
Reel/Frame 046767/0380 →
Priority Claims (1)
JP 2016-040213 · Mar 2, 2016 · national
Continuity (1)
Related Publication 20190015821A1 · Jan 17, 2019