Carbon nanotube-graphene catalyst for synthesizing diethyl carbonate, and preparation method thereof
A technology of diethyl carbonate and carbon nanotubes, applied in the field of gas-phase catalytic synthesis of diethyl carbonate, can solve the problems of poor catalyst stability, equipment corrosion, low catalyst activity, etc., and achieve the effect of stable activity
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Embodiment 1
[0014] First, bake 2 g of dried graphite oxide in a muffle furnace at 900°C for 1 h to obtain expanded graphite; then dope copper on the expanded graphite, that is, immerse the expanded graphite in 40 ml of an aqueous solution of 1 mol / L ammonium carbonate. CuCl 2 Add 10ml of 0.5g aqueous solution dropwise into the above solution, stir, stand still, filter, dry, roast for 1 hour and grind into 2.3g of fine powder; finally put the above fine powder into a chemical vapor deposition furnace, pass through carbon The source gas was methane, and a composite of copper-doped carbon nanotubes and graphene was obtained by chemical vapor deposition, and then 3 g of copper-containing carbon nanotubes and graphene were added to 50 mL of PdCl 2 Immersed in methanol solution for 4h, rotary steamed and molded to obtain 3g of copper palladium carbon nanotube-graphene catalyst.
Embodiment 2
[0016] Under the situation that the preparation condition of catalyst is exactly the same as embodiment 1, only change the copper source in the preparation method into Cu(NO 3 ) 2 copper salt to obtain 3 g of catalyst.
Embodiment 3
[0018] Under the situation that the preparation condition of catalyzer is completely identical with embodiment 1, only change the copper source in the preparation method into Cu(CH 3 COO) 2 ·H 2 0 copper salt to obtain catalyst 3g.
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Abstract
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Application Information
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