Antibacterial mildew-proof polyvinyl alcohol composition, biaxially oriented polyvinyl alcohol film and preparation method thereof
A polyvinyl alcohol, antibacterial and anti-mold technology, applied in the direction of chemical instruments and methods, synthetic resin layered products, layered products, etc., can solve the problems of easy pollution of film biaxially stretched polyvinyl alcohol film, etc., and achieve good industrial application Foreground, high tensile strength, good effect of antibacterial and mildew resistance
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[0030] According to a preferred embodiment of the present invention, the preparation method of the guanidinium salt composite antibacterial agent comprises the following steps:
[0031] a, the aqueous solution of guanidinium salt polymer is contacted with the aqueous solution of zinc salt and / or copper salt, forms transparent liquid mixture;
[0032] b. mixing the liquid mixture obtained in step a with the latex solution crosslinked by radiation, and then adding an anti-migration agent to obtain a mixture;
[0033] c, the mixture obtained in step b is spray-dried to obtain a solid powder, which is then mixed with a dispersant to obtain the guanidinium salt composite antibacterial agent;
[0034]Wherein, the latex is preferably at least one of styrene-butadiene latex, carboxylated styrene-butadiene latex, nitrile latex, carboxylated nitrile latex, acrylate latex, ethylene vinyl acetate latex, silicone rubber latex and styrene-butadiene pyridine latex; more It is preferably sty...
preparation example 1
[0067]a. Dissolve 1000.0 g of polyhexamethyleneguanidine hydrochloride in water to prepare an aqueous solution with a mass concentration of 20%; prepare 50.0 g of zinc sulfate to prepare an aqueous solution with a mass concentration of 25%. 125.0 g of styrene-butadiene latex solution was directly used after radiation crosslinking, and the concentration was 40%. b. Add the prepared guanidinium salt polymer aqueous solution into the container containing the zinc-containing and copper-containing aqueous solutions, and stir while adding until uniformly mixed to form a transparent liquid mixture. c. Add the liquid mixture in step (b) into the latex solution, and stir while adding until the mixture is uniform. Then, 5.0 g of anti-migration agent was added to the mixture. d, the mixture obtained in step (c) is dried by a spray dryer to obtain a solid powder; the obtained solid powder is transferred to a high-speed stirrer, and 5.0 g of fumed silica is added as a dispersant, and afte...
preparation example 2
[0069] a. Dissolve 1000.0 g of polyhexamethylene guanidine propionate in water to make an aqueous solution with a mass concentration of 40%; prepare 100.0 g of zinc acetate to make an aqueous solution with a mass concentration of 15%. 150.0g of nitrile latex solution was directly used after radiation crosslinking, and the concentration was 30%. b. Add the prepared guanidinium salt polymer aqueous solution into the container containing the zinc-containing aqueous solution, and stir while adding until uniformly mixed to form a transparent liquid mixture. c. Add the liquid mixture in step (b) into the latex solution, and stir while adding until the mixture is uniform. Then, 5.0 g of anti-migration agent was added to the mixture. d, the mixture obtained in step (c) is dried by a spray dryer to obtain a solid powder; the obtained solid powder is transferred to a high-speed stirrer, and 15.0 g of nano-calcium carbonate is added as a dispersant, and after high-speed mixing and dispe...
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