Preparation method for polyisophthaloyl metaphenylene diamine nanofiltration membrane
A technology of polym-phenylene isophthalamide and nanofiltration membrane, applied in chemical instruments and methods, membrane technology, semi-permeable membrane separation, etc., can solve problems that have not been reported, achieve wide application prospects, avoid Flux attenuation problem, the effect of improving pure water flux
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Embodiment 1
[0017] (1) Preparation of the cross-linking solution, adding 0.1 g of trimesic tricarboxamide into 99.9 g of Isopar-G solvent, stirring and mixing evenly to obtain a cross-linking solution with a mass fraction of 0.1%.
[0018] (2) Configuration of graphene oxide solution, 1.5 g of processed graphene oxide nanosheets were dissolved in 98.5 g of Ispoar-G solvent, and ultrasonic treatment was used to disperse evenly to obtain a graphene oxide solution with a mass fraction of 1.5%.
[0019] (3) Spread the fully dry polym-phenylene isophthalamide nanofiltration membrane flatly on a glass plate, place it in the plate frame and tighten it, and pour the 0.1wt% triethylamine solution configured on its surface, Immerse for 5 minutes, pour off the remaining solution, and place it in a fume hood to dry in the shade. Then pour the prepared glutaraldehyde solution on the surface, soak for 15 minutes, remove excess solution with a silica gel roller, pour the graphene oxide solution on the s...
Embodiment 2
[0021] (1) Preparation of the cross-linking solution. Add 0.15 g of trimesic tricarboxamide to a mixed solution of dehydrated 85 g of n-hexane and 14.85 g of dichloromethane, stir and mix well to obtain a cross-linking solution with a mass fraction of 0.15%.
[0022] (2) Configuration of the graphene oxide solution, 0.1 g of the treated graphene oxide nanosheets was dissolved in 99.9 g of dichloromethane solvent, and ultrasonic treatment was used to disperse evenly to obtain a graphene oxide solution with a mass fraction of 0.1%.
[0023] (3) Spread the fully dried polym-phenylene isophthalamide nanofiltration membrane flatly on a glass plate, place it in a plate frame and tighten it, pour 0.2wt% potassium carbonate solution on its surface, and soak 1min, pour off the remaining solution, and place it in a fume hood to dry in the shade; then pour the prepared trimesoyl chloride (TMC) solution on the surface, soak for 2min, remove the excess solution with a silica gel roller, and...
Embodiment 3
[0025] (1) Preparation of the cross-linking solution, adding 0.3 g of trimesic tricarboxamide into 99.7 g of dehydrated n-hexane solvent, stirring and mixing evenly to obtain a cross-linking solution with a mass fraction of 0.3%.
[0026] (2) Configuration of the graphene oxide solution, 3 g of the treated graphene oxide nanosheets were dissolved in 97 g of dimethylacetamide solvent, and ultrasonic treatment was used to disperse evenly to obtain a graphene oxide solution with a mass fraction of 3%.
[0027] (3) Lay the fully dried polym-phenylene isophthalamide nanofiltration membrane flat on a glass plate, place it in a plate frame and tighten it, pour 0.3wt% potassium carbonate solution on its surface, and soak After 10 minutes, pour off the remaining solution and place it in a fume hood to dry in the shade. Then pour the prepared trimesoyl chloride (TMC) solution on the surface, soak for 10 minutes, remove excess solution with a silica gel roller, pour the graphene oxide so...
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