Scr flue gas denitrification catalyst and preparation method based on tio2 carrier promoted by sulfate radical
A technology of denitration catalyst and sulfate radical, which is applied in chemical instruments and methods, physical/chemical process catalysts, separation methods, etc., can solve the problems of low denitrification activity of the catalyst, weak acid sites on the surface of the carrier, and narrow activation temperature window. Achieve superior catalytic activity, strong oxidation-reduction performance, and more acidic sites
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Embodiment 1
[0025] (1) Nano 5O 4 2- / TiO 2 Preparation of carrier: measure 8.93g of nano-TiO 2 , placed in 100mL of sulfuric acid solution with a concentration of 0.1mol / L, and soaked for 24h under stirring; filter the above materials, dry them in an ordinary blast drying oven at 110°C for 10h, and roast them in a muffle furnace at 500°C (The heating rate is programmed to be 3°C / min, and the holding time is 3h), that is, to obtain nano-SO 4 2- / TiO 2 carrier.
[0026] Measure cerium nitrate, ammonium metavanadate and ammonium tungstate that mass ratio is 5.61: 1: 9.72, concrete operation is:
[0027] (2) Auxiliary CeO 2 Loading: According to the equal-volume impregnation method, measure 0.505g of cerium nitrate and dissolve it in 8.93g of deionized water. 4 2- / TiO 2 The carrier was added to the above-mentioned cerium nitrate solution, ultrasonically treated for 1 h and left to stand for 2 h; then the above-mentioned material was dried at 110 °C for 3 h in an ordinary blast dryi...
Embodiment 2
[0031] (1) Nano-SO 4 2- / TiO 2 Preparation of carrier: measure 8.9g of nano-TiO 2 , placed in 100mL of sulfuric acid solution with a concentration of 0.15mol / L, soaked for 24h under stirring; filtered the above materials, dried in an ordinary blast drying oven at 110°C for 10h, and roasted in a muffle furnace at 500°C (The heating rate is programmed to be 3°C / min, and the holding time is 3h), that is, to obtain nano-SO 4 2- / TiO 2 carrier.
[0032] Measure cerium nitrate, ammonium metavanadate and ammonium tungstate that mass ratio is 5.85: 1: 5.89, concrete operation is:
[0033] (2) Auxiliary CeO 2 Loading: According to the equal-volume impregnation method, measure 0.76g of cerium nitrate and dissolve it in 8.9g of deionized water. 4 2- / TiO 2 The carrier was added to the above-mentioned cerium nitrate solution, ultrasonically treated for 1 h and left to stand for 2 h; then the above-mentioned material was dried at 110 °C for 3 h in an ordinary blast drying oven, a...
Embodiment 3
[0037] (1) Nano-SO 4 2- / TiO 2 Preparation of carrier: Measure 8.88g of nano-TiO 2 , placed in 133.2 mL of sulfuric acid solution with a concentration of 0.05 mol / L, and soaked for 24 hours under stirring; the above materials were filtered, dried at 110°C for 10 hours in an ordinary blast drying oven, and dried at 500°C in a muffle furnace. Roasting (programmed temperature increase rate is 3°C / min, holding time is 3h), that is, to obtain nano-SO 4 2- / TiO 2 carrier.
[0038] Measure cerium nitrate, ammonium metavanadate and ammonium tungstate that mass ratio is 8.08: 1: 3.51, concrete operation is:
[0039] (2) Auxiliary CeO 2 Loading: According to the equal-volume impregnation method, measure 1.26g of cerium nitrate and dissolve it in 8.88g of deionized water. 4 2- / TiO 2 The carrier was added to the above-mentioned cerium nitrate solution, ultrasonically treated for 1 h and left to stand for 2 h; then the above-mentioned material was dried at 110 °C for 3 h in an o...
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