Magnetic iron-based composite oxide catalyst and preparation method thereof
A technology of composite oxides and catalysts, applied in the direction of metal/metal oxide/metal hydroxide catalysts, physical/chemical process catalysts, chemical instruments and methods, etc., can solve the limitations of large-scale industrial applications and immature preparation processes , Low temperature denitrification activity and other problems, to achieve the effect of reducing production cost, good medium and low temperature denitrification activity, and wide denitrification temperature window
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Embodiment 1
[0018] Step 1, dissolving ferrous sulfate and titanium sulfate in water to obtain a mixed solution, controlling the molar ratio of Fe:Ti to be 1:1, firstly continuing magnetic stirring for 1 hour at room temperature for mixing.
[0019] Step 2, then slowly drop the mixed solution into excess ammonia water for co-precipitation, the co-precipitation process is carried out under the mechanical seal and air isolation, until the pH value of the mixed solution precipitation is 9 to 10, the precipitation is complete, filtered and washed to obtain filter cake.
[0020] Step 3: Put the filter cake in a microwave test bench and microwave at 210W for 40 minutes, put the microwave-treated sample into a muffle furnace, and calcinate and activate it in air at 500°C for 5 hours to prepare a magnetic iron-based composite oxide catalyst.
[0021] Grinding and sieving the prepared magnetic iron-based composite oxide catalyst, and taking 40-60 meshes for use as magnetic iron-based composite oxid...
Embodiment 2
[0023] Step 1, dissolving ferrous sulfate and titanium sulfate in water to obtain a mixed solution, controlling the molar ratio of Fe:Ti to be 3:1, and firstly continuing magnetic stirring for 1 hour at room temperature for mixing.
[0024] Step 2, then slowly drop the mixed solution into excess ammonia water for co-precipitation, the co-precipitation process is carried out under the mechanical seal and air isolation, until the pH value of the mixed solution precipitation is 9 to 10, the precipitation is complete, filtered and washed to obtain filter cake.
[0025] Step 3: Put the filter cake in a microwave test bench and microwave at 210W for 40 minutes, put the microwave-treated sample into a muffle furnace, and calcinate and activate it in air at 500°C for 5 hours to prepare a magnetic iron-based composite oxide catalyst.
[0026] The prepared magnetic iron-based composite oxide catalyst was ground and sieved, and 40-60 meshes were taken for use as catalyst B. According to...
Embodiment 3
[0028] Step 1, dissolving ferrous sulfate and titanium sulfate in water to obtain a mixed solution, controlling the molar ratio of Fe:Ti to 1:0.1, and firstly continuing magnetic stirring for 1 hour at room temperature for mixing.
[0029] Step 2, then slowly drop the mixed solution into excess ammonia water for co-precipitation, the co-precipitation process is carried out under the mechanical seal and air isolation, until the pH value of the mixed solution precipitation is 9 to 10, the precipitation is complete, filtered and washed to obtain filter cake.
[0030] Step 3: Put the filter cake in a microwave test bench and microwave at 210W for 40 minutes, put the microwave-treated sample into a muffle furnace, and calcinate and activate it in air at 500°C for 5 hours to prepare a magnetic iron-based composite oxide catalyst.
[0031] Grinding and sieving the prepared magnetic iron-based composite oxide catalyst, and taking 40-60 meshes for use as magnetic iron-based composite oxi...
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