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Preparation method of high-strength and antioxidant rare-earth-based smoke denitration catalyst

A denitrification catalyst, high-strength technology, applied in the field of anti-oxidation flue gas denitrification catalyst preparation, rare earth-based high-strength, rare earth transition metal oxide honeycomb ceramic denitrification catalyst, can solve frequent equipment maintenance, difficult catalyst treatment, easy cracking and wear and other issues, to achieve the effect of strengthening physical strength, long chemical and mechanical life, and reducing environmental pressure

Active Publication Date: 2014-12-17
山东信义汽车配件制造有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

It causes the problem of difficult catalyst disposal, which brings huge environmental pressure to the owner
At the same time, vanadium pentoxide has a higher oxidation rate, which converts sulfur dioxide into sulfur trioxide, so that sulfur trioxide and ammonia gas are combined to produce ammonium sulfate, which will cause corrosion and blockage of equipment, resulting in frequent maintenance of equipment and affecting production.
In addition, the carrier used in this type of denitration catalyst is made of titanium dioxide, which is easy to crack, wear and collapse during production and application.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0046] (1) First prepare the active ingredient: Add 50 liters of water into the dissolving tank, add 8kg of monoethanolamine into the dissolving tank, then add 10kg of citric acid into the dissolving tank, when the temperature reaches 45°C, Add 10kg of cerium nitrate and 10kg of lanthanum nitrate into the dissolving tank, stir for 15 minutes, then add 25kg of ammonium metatungstate into the dissolving tank, and raise the temperature to 85°C until completely dissolved to obtain an active solution ;

[0047] (2), mixing process:

[0048] One-time mixing: first add 340kg of titanium dioxide and 40kg of montmorillonite powder into the mixer and dry mix evenly; then add 2kg of stearic acid, 6kg of lactic acid, 210 liters of water and 40-liters of ammonia into the mixer in sequence for uniform mixing;

[0049] Secondary mixing: add 90kg of titanium dioxide and 15 liters of water into the mixer for uniform mixing;

[0050] Mixing three times: Add 135 kg of titanium dioxide and 6 l...

Embodiment 2

[0059] (1) First prepare the active ingredient: Add 70 liters of water into the dissolving tank, add 12kg of monoethanolamine into the dissolving tank, then add 20kg of citric acid into the dissolving tank, when the temperature reaches 55°C, Add 20kg of cerium nitrate and 20kg of lanthanum nitrate into the dissolving tank, stir for 25 minutes, then add 35kg of ammonium metatungstate into the dissolving tank, and raise the temperature to 95°C until completely dissolved to obtain an active solution ;

[0060] (2), mixing process:

[0061] One-time mixing: first add 365kg of titanium dioxide and 60kg of montmorillonite powder into the mixer and dry mix evenly; then add 3kg of stearic acid, 7kg of lactic acid, 250 liters of water and 50 liters of ammonia into the mixer in sequence mix evenly;

[0062] Secondary mixing: add 120kg of titanium dioxide and 20 liters of water into the mixer for uniform mixing;

[0063] Mixing three times: Add 150 kg of titanium dioxide and 10 liters...

Embodiment 3

[0072] A preparation method of a rare earth-based high-strength, anti-oxidation flue gas denitrification catalyst, using titanium dioxide and montmorillonite as carriers, ammonium metatungstate, cerium nitrate and lanthanum nitrate as active components, accompanied by auxiliary materials, through mixing , aged, kneaded, shaped, dried, and roasted.

[0073] The carrier components are: titanium dioxide, montmorillonite;

[0074] The active components are: ammonium metatungstate, cerium nitrate and lanthanum nitrate;

[0075] Other excipients include: ammonia, lactic acid, citric acid, stearic acid, glass fiber, wood pulp, hydroxypropylmethylcellulose, polyethylene oxide, monoethanolamine, and water.

[0076] The preliminary preparation of raw materials is carried out in the following steps:

[0077] 1. Weigh 594.5kg of titanium dioxide by weight (divided into three parts: 354.5kg, 105kg, 135kg), and 50kg of montmorillonite powder by weight;

[0078] ②. Preparation...

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Abstract

The invention discloses a preparation method of a high-strength and antioxidant rare-earth-based smoke denitration catalyst. The preparation method of the high-strength and antioxidant rare-earth-based smoke denitration catalyst comprises the following steps: by taking titanium dioxide and montmorillonite as carriers and ammonium metatungstate, cerous nitrate and lanthanum nitrate as active components, mixing, ageing, kneading, forming, drying and roasting with the accompanying of auxiliary materials. The auxiliary materials comprise ammonia water, lactic acid, citric acid, stearic acid, glass fiber, wood pulp, hydroxypropyl methyl cellulose, polyoxyethylene, monoethanolamine and water. The product prepared by the method is separated under a high SO2 smoke condition, nitric oxide in the smoke can be decomposed; meanwhile, the purpose of removing mercury and dioxin can be achieved. According to the preparation method of the high-strength and antioxidant rare-earth-based smoke denitration catalyst, the rare earth elements, namely cerium and lanthanum are used as the active components, so that the addition amount of vanadium is reduced, the toxicity of the product is reduced or the product is non-toxic product, the pressure of the post treatment of the product is reduced; the environmental protection pressure is reduced; the product is environmentally friendly; the product can be widely used in the field of thermal power plants, glass factories and chemical plants.

Description

technical field [0001] The invention relates to a rare earth transition metal oxide honeycomb ceramic denitrification catalyst in the technical field of environmental protection, in particular to a preparation method of a rare earth-based high-strength, oxidation-resistant flue gas denitrification catalyst. The product prepared by the method is especially suitable for dust purification in thermal power plants, glass factories, chemical plants and other fields. Background technique [0002] Nitrogen oxides (NOx) are one of the pollution sources that cause air pollution. It not only damages various human organs, but even causes cancer. [0003] For flue gas denitrification, the most mature technology in the world is SCR denitrification technology. SCR denitrification technology refers to the use of honeycomb ceramics as a carrier, with vanadium pentoxide as an active component, and the NOx in the flue gas and the reducing agent (NH 3 ) undergoes a reduction reaction to ge...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B01J23/30B01D53/86B01D53/56B01D53/64B01D53/70
Inventor 延晓峰杜德亮王庆庆
Owner 山东信义汽车配件制造有限公司
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