Catalyst for cement kiln gas denitration and preparation method thereof

A cement kiln and catalyst technology, applied in chemical instruments and methods, physical/chemical process catalysts, separation methods, etc., can solve the problems of low denitrification temperature, complicated preparation, expensive price, etc., and achieve good thermal stability and excellent preparation process Simple, low-cost effect

Active Publication Date: 2014-06-11
NANJING UNIV OF TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Among them, the patent (CN102500358B) uses oxides of cerium, vanadium, copper, cobalt, etc. The tube is expensive, the preparation is too complicated, and there is a highly toxic substance vanadium in the active component, which is easy to cause secondary pollution
Patent (CN103240081A) prepared TiO 2 -SiO 2 Manganese-based denitration catalyst as a carrier, the catalyst is suitable for low temperature environment aft

Method used

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  • Catalyst for cement kiln gas denitration and preparation method thereof
  • Catalyst for cement kiln gas denitration and preparation method thereof
  • Catalyst for cement kiln gas denitration and preparation method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0030] (1) Preparation of titanium cerium zirconium tungsten composite sulfate precursor sol

[0031]Measure 3.37g of tetrabutyl titanate, dissolve it in a mixed aqueous solution of 1.69g of absolute ethanol and 1.69g of glacial acetic acid, stir and mix to prepare a titanium sol. Then, with the molar ratio of Ti / Ce / Zr / W as 1:2:1:1, weigh 8.60g of cerium nitrate, 3.19g of zirconium oxychloride, and 3.19g of ammonium metatungstate respectively, and dissolve them in mass In the nitric acid solution with a concentration of 10%, the obtained solution was added to the titanium sol, after stirring for 10 minutes, 9.21 g of 10% sulfuric acid solution was added, and the stirring was continued until a stable titanium, zirconium, cerium and tungsten composite sulfate precursor sol was obtained;

[0032] (2) Preparation of Al-Si-Ti mixed oxide carrier precursor

[0033] With the molar ratio of Al / Si / Ti as 1:1:1, weigh 38.15g of bollite, 31.45g of diatomite, and 41.85g of titanium dioxid...

Embodiment 2

[0041] (1) Preparation of titanium cerium zirconium tungsten composite sulfate precursor sol

[0042] Measure 0.52 g of tetrabutyl titanate, dissolve it in a mixed aqueous solution of 0.52 g of absolute ethanol and 0.52 g of glacial acetic acid, stir and mix to prepare a titanium sol. Then, with the molar ratio of Ti / Ce / Zr / W as 1:10:0.1:5, weigh 6.67g of cerium nitrate, 0.05g of zirconium oxychloride, and 1.97g of ammonium metatungstate, and dissolve them in mass In the sulfuric acid solution with a concentration of 5%, the obtained solution was added to the titanium sol, after stirring for 30 minutes, 4.45g of 5% sulfuric acid solution was added, and the stirring was continued until a stable titanium, zirconium, cerium and tungsten composite sulfate precursor sol was obtained;

[0043] (2) Preparation of Al-Si-Ti mixed oxide carrier precursor

[0044] With the molar ratio of Al / Si / Ti as 1:2:0.1, weigh 40.66g of boehmite, 67.08g of diatomite, and 4.46g of titanium dioxide, an...

Embodiment 3

[0052] (1) Preparation of titanium cerium zirconium tungsten composite sulfate precursor sol

[0053] Measure 0.54 g of tetrabutyl titanate, dissolve it in a mixed aqueous solution of 0.54 g of absolute ethanol and 0.27 g of glacial acetic acid, stir and mix to prepare a titanium sol. Then, with the molar ratio of Ti / Ce / Zr / W as 1:0.1:10:0.1, weigh 0.07g of cerium nitrate, 5.14g of zirconium oxychloride, and 0.41g of ammonium metatungstate, and dissolve them in mass A hydrochloric acid solution with a concentration of 15%, the obtained solution is added to the titanium sol, after stirring for 15 minutes, 5.4g of 15% sulfuric acid solution is added, and the stirring is continued until a stable titanium, zirconium, cerium and tungsten composite sulfate precursor sol is obtained;

[0054] (2) Preparation of Al-Si-Ti mixed oxide carrier precursor

[0055] With the molar ratio of Al / Si / Ti as 1:0.1:100, weigh 0.91g of boehmite, 0.08g of diatomite, and 99.3g of titanium dioxide, and ...

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PUM

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Abstract

The invention relates to a catalyst for cement kiln gas denitration and a preparation method thereof. The catalyst is characterized in that cerium zirconium titanium tungsten composite sulfate is utilized as catalyst active components, one or more of iron, copper, molybdenum or lanthanum oxide is utilized as a cocatalyst, and an aluminum silicon titanium mixing oxide is utilized as a carrier. The preparation method comprises the steps of uniformly stirring a cerium zirconium titanium tungsten composite sulfate precursor, acid alumina gel, pseudo-boehmite, kieselguhr, titanium dioxide and an organic addition agent together, mixing, aging and carrying out extrusion molding on the mixture, and drying and roasting to obtain the integral catalyst. The catalyst provided by the invention has the advantages that the NOx removing efficiency is high, an active temperature window is wide, the catalytic denitration efficiency can achieve 90% above in the range of 280-430 DEG C, and the highest activity can achieve 99.7%; the catalyst has the strong alkali-resisting metal and alkaline earth poisoning capacity and has the high wear-resisting property; the components of the catalyst are non-poisonous and thus the catalyst has an environment-friendly effect; the mechanical strength is high, the preparation technology is simple, the cost is low, and the catalyst is particularly suitable for removing of high dust, high alkali metal and NOx in high alkaline earth smoke of a cement kiln.

Description

technical field [0001] The invention relates to a catalyst for flue gas denitrification of cement kilns and a preparation method thereof, which belongs to the field of environmental protection catalytic materials and air pollution control, and is especially suitable for denitrification treatment of flue gas with high dust, high alkali metal and high alkaline earth metal content in cement kilns . Background technique [0002] Nitrogen oxides (NO x ) is one of the chief culprits of smog, acid rain, photochemical smog and greenhouse effect. my country is the world's largest NO x Emitting country, 2013 NO x Emissions reached 22.4 million tons, NO x Treatment (flue gas denitrification) has become the focus of the country's "Twelfth Five-Year Plan" air pollution control. Cement plant as the second largest NO x Emissions from stationary sources, whose flue gas denitrification becomes NO x The top priority of emission reduction. Selective Catalytic Reduction (SCR) denitrific...

Claims

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Application Information

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IPC IPC(8): B01J27/053B01J27/055B01D53/90B01D53/56
Inventor 沈岳松付伟良祝社民纵宇浩
Owner NANJING UNIV OF TECH
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