Method for preparing grapheme-polyvinyl chloride nano composite resin through in situ suspension polymerization
A technology of suspension polymerization and polyvinyl chloride, which is applied in the field of in-situ suspension polymerization to prepare graphene-polyvinyl chloride nanocomposites, which can solve the problems of long process, unindustrialization, and low yield, and achieve the effect of performance improvement
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Embodiment 1
[0028] Put 1.25g graphene oxide into 1500g pure water, add 14g polyvinyl alcohol solution with a concentration of 5% and 8g hydroxymethyl cellulose solution with a concentration of 4.6%, and use ultrasound with a power of 500W and a frequency of 20KHz. The dispersion and homogenization treatment was carried out for 60 minutes, and a treatment temperature of 70° C. was required to be maintained during the treatment to obtain a graphene oxide dispersion. Then add the graphene oxide dispersion into a 10L stainless steel autoclave, add 4000g of pure water, 0.5g of low alcoholysis polyvinyl alcohol LL-02, 5g of ammonium bicarbonate, close the lid of the kettle, and raise the temperature to 57°C. Use a metering pump to pump 5g of EHP (diisooctyl peroxydicarbonate), CNP (cumyl peroxyneodecanoate) initiator compound water emulsion, and 2500g of vinyl chloride monomer into the reactor. The pressure in the reaction kettle will be maintained at about 0.85MPa. After the reaction pressure ...
Embodiment 2
[0030] Put 2.5g of graphene oxide into 1500g of pure water, add 17g of 5% polyvinyl alcohol solution and 9g of 4.6% hydroxymethyl cellulose solution at the same time, and use ultrasound with a power of 1000W and a frequency of 25KHz. The dispersion and homogenization treatment was carried out for 60 minutes, and a treatment temperature of 70° C. was required to be maintained during the treatment to obtain a graphene oxide dispersion. Then add the graphene oxide dispersion into a 10L stainless steel autoclave, add 4000g of pure water, 0.5g of low alcoholysis polyvinyl alcohol LL-02, 5g of ammonium bicarbonate, close the lid of the kettle, and raise the temperature to 57°C. Use a metering pump to pump 5g of EHP, CNP initiator compound water emulsion, and 2500g of vinyl chloride monomer into the reactor. The pressure in the reaction kettle will be maintained at about 0.85MPa. After the reaction pressure gradually drops below 0.75MPa, 8g of hydrazine hydrate is pumped in, and the ...
Embodiment 3
[0032]Put 3.8g of graphene oxide into 1500g of pure water, and at the same time add 18g of 5% polyvinyl alcohol solution and 10g of 4.6% hydroxymethyl cellulose solution, using ultrasound with a power of 1000W and a frequency of 35KHz The dispersion and homogenization treatment was carried out for 100 minutes, and a treatment temperature of 70° C. was required to be maintained during the treatment to obtain a graphene oxide dispersion. Then add the graphene oxide dispersion into a 10L stainless steel autoclave, add 4000g of pure water, 0.5g of low alcoholysis polyvinyl alcohol LL-02, 5g of ammonium bicarbonate, close the lid of the kettle, and raise the temperature to 57°C. Use a metering pump to pump 5g of EHP, CNP initiator compound water emulsion, and 2500g of vinyl chloride monomer into the reactor. The pressure in the reaction kettle will be maintained at about 0.85MPa. After the reaction pressure gradually drops below 0.75MPa, 13g of hydrazine hydrate is pumped in, and t...
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