Preparation and application of visible light responding CuAl2O4-graphene photocatalyst
A photocatalyst, graphene technology, applied in the preparation of organic compounds, the preparation of hydroxyl compounds, catalysts for physical/chemical processes, etc., can solve the problems of limiting photocatalytic activity, low photocatalytic efficiency, reducing specific surface area, etc. Photocatalytic activity, cheap reagents, reduced effect of recombination
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[0020] The present invention responds to a kind of visible light CuAl 2 o 4 -The preparation method of graphene photocatalyst, comprises the following steps:
[0021] (1) Weigh a certain amount of copper nitrate and aluminum nitrate and dissolve them in deionized water, add polyethylene glycol (PEG-4000) as a dispersant, adjust the pH of the solution with 25% ammonia water, stir, and let stand.
[0022] (2) Prepare graphite oxide from graphite powder.
[0023] (3) with CuAl 2 o 4 To measure the quality of graphite oxide, different proportions of graphite oxide were ultrasonically dispersed in reducing alcohol.
[0024] (4) After mixing the reaction system in step (1) with the suspension prepared in step (3), transfer it to a hydrothermal reaction kettle for hydrothermal reaction.
[0025] (5) Pour the product in step (4) into a vacuum filtration device for suction filtration, wash with deionized water, vacuum dry, grind and roast to obtain nano-CuAl 2 o 4 - Graphene pho...
Embodiment 1
[0035] CuAl prepared under optimal conditions with 1% graphite oxide 2 o 4 - Graphene photocatalyst, when the amount of photocatalyst is 0.5g / L, the degradation rate of methyl orange with a concentration of 25mg / L is 85.26% after 60min, continuous hydrogen production is 6h, and the average hydrogen production rate is 3.1mmol / gcat·h. Under the same conditions, the degradation rate of the control experiment in the dark is less than 5%, and there is no hydrogen production effect. The blank experiment without catalyst has almost no degradation and hydrogen production effect after 60 minutes of light irradiation.
[0036] Preparation method embodiment 2
[0037] CuAl prepared under optimum conditions with an amount of 2% graphite oxide 2 o 4 - Graphene photocatalyst, when the amount of photocatalyst is 0.8g / L, the degradation rate of methyl orange with a concentration of 25mg / L reaches 98.25% after 60min, continuous hydrogen production for 6h, and the average hydrogen productio...
Embodiment 3
[0039] CuAl prepared under optimal conditions with an amount of 3% graphite oxide 2 o 4 - Graphene photocatalyst, when the concentration is 1.0g / L, the degradation rate of methyl orange with a concentration of 25mg / L is 95.52% after 60min, continuous hydrogen production for 6h, and the average hydrogen production rate is 4.7mmol / gcat·h. Under the same conditions, the degradation rate of the control experiment in the dark is less than 7%, and there is no hydrogen production effect. There is almost no degradation and hydrogen production effect in the blank experiment without catalyst after 60 minutes of light irradiation.
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