Copper-doping cerium oxide nano material of cyclic structure, and preparation method and application thereof
A nanomaterial and ring structure technology, applied in chemical instruments and methods, metal/metal oxide/metal hydroxide catalysts, chemical/physical processes, etc., can solve problems such as differences in catalytic performance of cerium oxide nanomaterials, and achieve Good mercury removal effect, improved activity and improved conversion ability
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Embodiment 1
[0026] Add 0.143g of cerium nitrate, 0.068g of cupric chloride and 0.5g of polyvinylpyrrolidone into 30mL of deionized water, stir magnetically for 10min until it is completely dissolved, then add 2.196g of urea into the reaction solution, stir for 30min, and add the mixture to In a hydrothermal reactor. Put the reaction kettle into an oven and keep the temperature at 150°C for 10h. Then the obtained mixed solution was washed three times with deionized water and twice with ethanol, dried in an oven at 60° C. for 10 hours, and finally calcined in a muffle furnace at 500° C. for 4 hours to obtain a ring-shaped nanomaterial of copper-doped cerium oxide.
Embodiment 2
[0028] Add 0.143g of cerium nitrate, 0.097g of copper nitrate and 0.5g of polyvinylpyrrolidone into 30mL of deionized water, stir magnetically for 10min until it is completely dissolved, then add 2.196g of urea into the reaction solution, stir for 30min, and add the mixture to the hydrothermal in the reactor. Put the reaction kettle into an oven and keep the temperature at 150°C for 10h. Then the obtained mixed solution was washed three times with deionized water and twice with ethanol, dried in an oven at 60° C. for 10 hours, and finally calcined in a muffle furnace at 500° C. for 4 hours to obtain a ring-shaped nanomaterial of copper-doped cerium oxide.
Embodiment 3
[0030] Under the condition of 200°C, the material prepared in Example 1 was used as the catalyst treatment concentration of 75 μg / m 3 Hg 0 Steam, the space velocity is 150000h -1 , at N 2 Under the condition of carrier gas, after feeding 4% oxygen, the mercury removal effect can reach more than 98.5%.
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