High-activity vanadium-free denitration catalyst, preparation method and application thereof
A denitrification catalyst and high activity technology, which is applied in the field of flue gas purification, can solve the problems of limiting the practical application range of the catalyst, the specific surface area cannot exceed, and the denitrification performance of the catalyst has not been investigated, so as to solve biological toxicity, increase the specific surface area, and improve denitrification efficiency effect
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Embodiment 1
[0019] 1. Preparation of silica-modified titania support:
[0020] Dissolve 0.075mol of titanyl sulfate and 16g of acidic silica sol (25%) in 100ml of deionized water, stir and disperse evenly to form a mixed solution; add ammonia water (25%) to the above mixed solution under continuous stirring, and adjust the pH of the mixed solution to 9 After aging for 10 hours, the above mixture was filtered with suction, and the filtered product was washed until the filtrate pH=7; the filtered product was dried at 80°C for 12 hours, and then calcined at 550°C for 3 hours to obtain a silica-modified titanium dioxide carrier.
[0021] 2. Impregnation load of active ingredients and additives:
[0022] Dissolve 0.025mol of ferrous sulfate heptahydrate, 0.003mol of cerium nitrate hexahydrate and 0.0017mol of niobium oxalate in 100ml of deionized water, fully stir and disperse to form a mixed solution; add 10g of silicon dioxide modified titanium dioxide carrier to the above mixed solution, 80...
Embodiment 2
[0028]1. Preparation of silica-modified titania support:
[0029] Dissolve 0.01mol of titanium tetrachloride and 8g of acidic silica sol (25%) in 100ml of deionized water, stir and disperse evenly to form a mixed solution; add ammonia water (20%) to the above mixed solution under continuous stirring, and adjust the pH of the mixed solution = 8. After aging for 3 hours, filter the mixture with suction, wash and filter the product until the pH of the filtrate is 7; dry the filter product at 100°C for 8 hours, and then calcinate at 500°C for 3 hours to obtain a silica-modified titania carrier.
[0030] 2. Impregnation load of active ingredients and additives:
[0031] Dissolve 0.01mol ferric chloride hexahydrate, 0.01mol cerium nitrate hexahydrate and 0.0006mol ammonium metatungstate in 100ml deionized water, stir and disperse fully to form a mixed solution; add 10g of silica-modified titanium dioxide carrier to the above mixed solution , stirred and evaporated to dryness at 90°...
Embodiment 3
[0037] 1. Preparation of silica-modified titania support:
[0038] Dissolve 0.087mol tetrabutyl titanate and 12g acidic silica sol (25%) in 100ml deionized water, stir and disperse evenly to form a mixed solution; add ammonia water (18%) to the above mixed solution under continuous stirring to adjust the pH of the mixed solution =10; after aging for 2 hours, the above mixed solution was suction-filtered, and the filtered product was washed until the filtrate pH=7; the filtered product was dried at 110°C for 6 hours, and then calcined at 600°C for 3 hours to obtain a silica-modified titania carrier.
[0039] 2. Impregnation load of active ingredients and additives:
[0040] Dissolve 0.02mol ferric nitrate nonahydrate, 0.012mol cerium chloride hexahydrate and 0.001mol ammonium heptamolybdate in 100ml deionized water, stir and disperse fully to form a mixed solution; add 10g of silica-modified titanium dioxide carrier to the above mixed solution , stirred and evaporated to dryne...
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