Preparation of a porous graphene-loaded weak-light photocatalyst-nanosilver composite antiviral powder
A porous graphene, low-light technology, applied in disinfection, disinfectants, botanical equipment and methods, etc., can solve problems such as poor persistence and low data on the killing rate of infectious viruses, and expand the application field and scope. , the effect of high sterilization and antivirus efficiency, high sterilization rate and virus killing rate
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Embodiment 1
[0026] Preparation of highly dispersed nano-graphene microsheet slurry: 3g of expanded graphite was added to 992.4g of aqueous solution, and 3g of dispersant CTAB, 0.1g of defoamer DELTA-FC1501, 0.5g of wetting In the aqueous solution of agent TEGO245, stir and mix, emulsifier pre-disperse. Then grind and disperse in a sand mill, the filling rate of zirconium beads is 70%, the diameter of zirconium beads is 0.3mm, and the grinding line speed is 12m / s. Under the synergistic effect of 1g intercalation agent PVP, dispersant and grinding shear force, Prepare a nano-graphene microsheet slurry with a diameter of about 5 microns and a thickness of ≤10 layers.
[0027] Preparation of zinc oxide weak-light photocatalyst slurry: Add 20g of zinc nitrate to 72.8g of ethanol and stir, then add 0.2g of n-butyl titanate, 3g of acetylacetone, 3g of ethylenediaminetetraacetic acid, 1g of citric acid, and use ammonia water Adjust the pH to 8, quickly stir at 80°C to form a transparent sol, pre...
Embodiment 2
[0031] Preparation of highly dispersed nano-graphene microsheet slurry: 5g of expanded graphite was added to 992.4g of aqueous solution, and while stirring, 5g of dispersant CTAB, 0.15g of defoamer DELTA-FC1503, 0.6g of wetting In the aqueous solution of agent TEGOwet280, stir and mix well, and pre-disperse with an emulsifier. Carry out sand mill to grind and disperse then, zirconium bead filling rate is 75%, and the diameter of zirconium bead selection is 0.3mm, and grinding line speed 12m / s, in 2g intercalation agent dodecylbenzene sulfonic acid, dispersant and grinding shear Under the synergistic action of forces, a nano-graphene microsheet slurry with a diameter of about 3 microns and a thickness of ≤10 layers is made.
[0032] Preparation of zinc oxide weak-light photocatalyst slurry: Add 30g zinc oxalate to 60g ethanol and stir, then add 0.5g titanium tetrachloride, 4g acetylacetone, 4g ethylenediaminetetraacetic acid, 1.5g citric acid, adjust with ammonia water pH to 9...
Embodiment 3
[0036] Preparation of highly dispersed nanographene microsheet slurry: Add 8g of expanded graphite to 983g of aqueous solution, and add 8g of dispersant CTAB, 0.2g of defoamer DELTA-FC1522, and 0.8g of wetting agent while stirring In the aqueous solution of TEGO wet280, stir and mix well, and pre-disperse with an emulsifier. Carry out sand mill to grind and disperse then, zirconium bead filling rate is 80%, and zirconium bead is selected to be that diameter is 0.3mm, and grinding line speed 12m / s, in the synergy of 3g intercalation agent ferric chloride, dispersant and grinding shearing force Under the action, a nano-graphene microsheet slurry with a diameter of about 2 microns and a thickness of ≤10 layers is made.
[0037] Preparation of zinc oxide weak-light photocatalyst slurry: 40g zinc stearate was added to 47.2g ethanol and stirred, then 0.8g isopropyl titanate, 5g acetylacetone, 5g ethylenediaminetetraacetic acid, 2g citric acid were added successively, Adjust the pH ...
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