A sulfur-resistant catalytic combustion catalyst and its preparation method
A catalytic combustion and catalyst technology, applied in the direction of combustion methods, physical/chemical process catalysts, molecular sieve catalysts, etc., can solve the problems of catalyst activity decline, uneven coating, easy to fall off, etc., to improve catalytic combustion activity and catalytic efficiency. , the effect of high combustion efficiency
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Embodiment 1
[0023] Embodiment 1: The sulfur-resistant catalytic combustion catalyst of the present embodiment is made from the composition of the following weight percentage: 94.7% of the carrier, 0.3% of the active component, and the balance is a co-catalyst; wherein the carrier is Ti-MCM-41, The active components are Pt and PtS 2 , the cocatalyst is MnO 2 ; By weight percentage, the content of Ti in the Ti-MCM-41 molecular sieve is 5%, and the content of Si is 95%;
[0024] A preparation method of a sulfur-resistant catalytic combustion catalyst, the specific steps are as follows:
[0025] (1) Preparation of mesoporous carrier: mix sodium silicate and template evenly to make solution A, adjust pH value to 7 with sulfuric acid solution, add TiCl 4 Aqueous solution, hydrothermal reaction to obtain a precipitate, the precipitate is filtered, washed, dried, and roasted to obtain a catalyst mesoporous carrier, that is, Ti-MCM-41 molecular sieve; wherein the mass ratio of sodium silicate an...
Embodiment 2
[0029] Embodiment 2: The sulfur-resistant catalytic combustion catalyst of this embodiment is made from the composition of the following weight percentage: 93.1% of the carrier, 0.4% of the active component, and the balance is a co-catalyst; wherein the carrier is Ti-MCM-41, the activity The components are Pt and PtS 2 , the cocatalyst is Co 2 o 3 ; By weight percentage, the content of Ti in the Ti-MCM-41 molecular sieve is 2%, and the content of Si is 98%;
[0030] A preparation method of a sulfur-resistant catalytic combustion catalyst, the specific steps are as follows:
[0031] (1) Preparation of mesoporous carrier: mix sodium silicate and template evenly to make solution A, adjust pH value to 8 with sulfuric acid solution, add TiCl 4Aqueous solution, hydrothermal reaction to obtain a precipitate, the precipitate is filtered, washed, dried, and roasted to obtain a catalyst mesoporous carrier, that is, Ti-MCM-41 molecular sieve; wherein the mass ratio of sodium silicate ...
Embodiment 3
[0035] Embodiment 3: The sulfur-resistant catalytic combustion catalyst of this embodiment is made from the composition in the following percentages by weight: 95.2% of the carrier, 0.35% of the active component, and the balance is a co-catalyst; wherein the carrier is Ti-MCM-41, the activity The components are Pt and PtS 2 , the cocatalyst is CeO 2 ; By weight percentage, the content of Ti in the described Ti-MCM-41 molecular sieve is 8%, and the content of Si is 92%;
[0036] A preparation method of a sulfur-resistant catalytic combustion catalyst, the specific steps are as follows:
[0037] (1) Preparation of mesoporous carrier: mix sodium silicate and template evenly to make solution A, adjust pH value to 9 with sulfuric acid solution, add TiCl 4 Aqueous solution, hydrothermal reaction to obtain a precipitate, the precipitate is filtered, washed, dried, and roasted to obtain a catalyst mesoporous carrier, that is, Ti-MCM-41 molecular sieve; wherein the mass ratio of sodi...
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