IP Library Granted Patent US 11,911,740
Granted Patent B2
US 11,911,740 · App. 16/336,099 · Granted Feb 27, 2024

Noxious gas purificant and its preparation and purification method thereof

Inventor: Liwei Huang (Hangzhou, CN)
B01J20/045B01D53/565B01D53/81B01D53/96B01J20/28016B01J20/28045B01J20/3078B01J20/3433B01J20/3458B01D2253/112B01D2257/404
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Quick Facts
Patent No.
US 11,911,740
App. No.
16/336,099
Granted
Feb 27, 2024
Kind
B2
Abstract

The invention relates to a noxious gas purificant and its preparation and purification method for removing nitrogen oxides from gas streams thereof. The preparing method is characterized in that: mixing, according to a predetermined ratio and a process, a salt of iron, manganese, cobalt, or copper, and a related derivative thereof, an alkali or alkaline substance and a related derivative thereof, water and a forming agent, so as to obtain a solid compound or mixture; drying and activating the solid compound or mixture to produce a solid product as the purificant; and introducing the purificant into a gas-solid reactor, and removing noxious gases in a gas stream by performing, in a preconfigured temperature and using the purificant, a gas-solid reaction on the harmful gases in the gas stream. The purificant can be recycled and reused.

Claims (10)

1. A preparation method for a noxious gas purificant for the removal of nitrogen oxides from a gas stream at a temperature ranging from 150 to 550° C., the preparation method comprising:

(1) mixing material U, material V and water in a mixing reactor,

wherein said material U is one compound selected from ferrous sulfate heptahydrate, cobalt sulfate heptahydrate, manganese sulfate tetrahydrate and copper sulfate pentahydrate, and said material V is a combination of sodium hydroxide and calcium oxide, at a mole ratio of about 1:1:3 (material U:sodium hydroxide:calcium oxide); or

wherein said material U is one compound selected from ferrous carbonate, manganese carbonate and basic copper carbonate, and said material V is a combination of potassium hydroxide and calcium carbonate, at a mole ratio of about 1:2:2:6 (material U:potassium hydroxide:calcium carbonate:water); or

wherein said material U is one of solutions (50% water) of ferrous chloride, ferric chloride, cobalt chloride, manganese chloride and copper chloride, and said material V is a combination of sodium hydroxide and calcium carbonate, at a mole ratio of 1:2:2 (material U:sodium hydroxide:calcium carbonate); or

wherein said material U is a combination of ferrous sulfate heptahydrate, cobalt sulfate heptahydrate, manganese sulfate tetrahydrate, copper sulfate pentahydrate, and said material V is potassium hydroxide, at a mole ratio of 1:1:1:1:8 (ferrous sulfate heptahydrate:cobalt sulfate heptahydrate:manganese sulfate tetrahydrate:copper sulfate pentahydrate:potassium hydroxide); and

(2) molding a reaction product of step (1) to a shape of honeycombs, plates, granules, or loading on a general-purpose catalyst carrier;

(3) drying the reaction product at a temperature above 40° C.;

(4) activating the reaction product at a temperature above 150° C. after step (3); and

wherein the composition of the purificant comprises at least one component of sulfate, chloride, and carbonate, and at least one component of Na, K, Li, Ca, Ba, and Mg.

Priority Claims (8)
CN 201610901763.2 · Oct 14, 2016 · national
CN 201610901765.1 · Oct 14, 2016 · national
CN 201610906056.2 · Oct 17, 2016 · national
CN 201610906058.1 · Oct 17, 2016 · national
CN 201610922408.3 · Oct 20, 2016 · national
CN 201610939180.9 · Oct 24, 2016 · national
CN 201710019937.7 · Jan 3, 2017 · national
CN 201710068265.9 · Feb 2, 2017 · national
Continuity (1)
Related Publication 20200179902A1 · Jun 11, 2020