Flue-gas denitration catalyst incapable of being deactivated by basic metallic oxides, preparation method thereof and applications thereof
A technology for denitrification catalysts and oxides, applied in the direction of physical/chemical process catalysts, chemical instruments and methods, separation methods, etc., can solve the problems of catalyst alkali metal oxide poisoning, etc., and achieve suitable production and high resistance to alkali metals Effects of oxide poisoning and avoidance of alkali metal oxide poisoning
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Embodiment 1
[0048] 1. Preparation of honeycomb flue gas denitration catalyst monomer
[0049] The weight percent of each material in the catalyst described in the present embodiment consists of: nanoscale anatase titanium dioxide 80%, V 2 o 5 1%, 12-tungstophosphoric acid 10%, glass fiber 5% and diatomaceous earth 4%.
[0050] The weight of the hydroxypropyl methylcellulose added in the preparation process and titanium dioxide, V 2 o 5 , 12-tungstophosphoric acid, the ratio of the total weight of glass fiber and diatomaceous earth is 0.02:1, the weight of the added ethylene glycol and titanium dioxide, V 2 o 5 , 12-tungstophosphoric acid, the total weight ratio of glass fiber and diatomaceous earth is 0.03:1.
[0051] The preparation method of this catalyst mainly comprises following four steps:
[0052] (1) Loading of active components
[0053] Dissolve oxalic acid in 600g of distilled water to prepare a 2mol / L oxalic acid solution, dissolve 38.61g (0.33mol) of ammonium metavanad...
Embodiment 2
[0067] This embodiment is the same as embodiment 1, the difference is:
[0068] (1) The weight percent of each substance in the catalyst described in this embodiment consists of: nano-scale anatase titanium dioxide 77.5%, V 2 o 5 1.5%, 12-tungstosilicate 13%, glass fiber 4% and diatomaceous earth 4%. The weight of methyl cellulose added in the preparation process and titanium dioxide, V 2 o 5 , 12-tungstosilicic acid, glass fiber, the ratio of the total weight of diatomaceous earth is 0.02:1, the weight of the ethylene glycol that adds and titanium dioxide, V 2 o 5 , 12-tungstophosphoric acid, glass fiber, and diatomaceous earth in a total weight ratio of 0.02:1.
[0069] (2) During the loading process of the active components, firstly bake at 400°C for 5h, then at 550°C for 6h.
[0070] (3) During the loading process of heteropoly acid, dry at 80°C for 32h, calcinate at 250°C for 12h, and then calcinate at 350°C for 8h.
[0071] (4) During the molding process of the c...
Embodiment 3
[0079] This embodiment is the same as embodiment 1, the difference is:
[0080] (1) The weight percent of each substance in the catalyst described in this embodiment consists of: 70% of nanoscale anatase titanium dioxide, V 2 o 5 3%, 12-molybdophosphoric acid 15%, glass fiber 7%, bentonite 5%. The weight of carboxymethyl cellulose added in the preparation process and titanium dioxide, V 2 o 5 , 12-tungstosilicic acid, glass fiber, the ratio of the total weight of diatomaceous earth is 0.01:1, the weight of the added glycerin and titanium dioxide, V 2 o 5 , 12-tungstophosphoric acid, glass fiber, and diatomaceous earth in a total weight ratio of 0.01:1.
[0081] (2) During the loading process of the active components, firstly bake at 300°C for 10h, then at 500°C for 8h.
[0082] (3) During the loading process of heteropoly acid, dry at 40°C for 48h, calcinate at 300°C for 8h, and then calcinate at 300°C for 6h.
[0083] (4) During the molding process of the catalyst, it...
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