A polymer conductive porous film
A polymer and porous membrane technology, applied in the field of polymer separation membrane preparation, can solve the problems of high brittleness and high preparation cost, and achieve the effects of poor structural stability, not easy to agglomerate, and good permeability.
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Embodiment 1
[0021] Ultrasonic dispersion of 6g of nano-carbon black particles in 188g of water at 25°C for 1h, with ultrasonic power of 100w, then high-speed stirring for 1h at a stirring speed of 800r / min, adding 6g of polyvinyl alcohol into it, and fully stirring at 90°C for 2h , with a stirring speed of 300r / min to obtain a uniform dynamic membrane casting liquid; rinse the ultra-high molecular weight polyethylene hollow fiber membrane with water for 10 minutes; use the dynamic membrane casting liquid as the liquid to be filtered, and use the ultra-high molecular weight polyethylene hollow fiber membrane As a filter material, under the operating pressure of 0.1MPa, at 70°C, the dead-end external pressure deposition mode was adopted, and the continuous operation was performed for 15 minutes to obtain a dynamic composite membrane. After natural air drying, the polymer conductive porous membrane was obtained.
[0022] Through comparative testing, the water flux of the ultra-high molecular ...
Embodiment 2
[0024] Ultrasonic dispersion of 8g of nano-carbon black particles in 184g of water at 25°C for 1h, with ultrasonic power of 150w, then high-speed stirring for 1h at a stirring speed of 1000r / min, adding 8g of polyvinyl alcohol, and fully stirring at 90°C for 2h , with a stirring speed of 400r / min to obtain a uniform dynamic membrane casting liquid; rinse the ultra-high molecular weight polyethylene hollow fiber membrane with water for 10 minutes; use the dynamic membrane casting liquid as the liquid to be filtered, and use the ultra-high molecular weight polyethylene hollow fiber membrane As a filter material, under the operating pressure of 0.2MPa, at a temperature of 60°C, adopt the cross-flow external pressure deposition mode, and run continuously for 45 minutes to obtain a dynamic composite membrane. After natural air drying, the polymer conductive porous membrane is obtained.
[0025] After testing, the water flux of the obtained membrane is 98.3L / (m 2 .h), the bubble poi...
Embodiment 3
[0027]Ultrasonic dispersion of 14g of nano-carbon black particles in 180g of water at 25°C for 2h, with ultrasonic power of 100w, then high-speed stirring for 2h, stirring speed of 1000r / min, adding 6g of polyoxyethylene, and fully stirring at 80°C for 2h , the stirring speed is 500r / min, to obtain a uniform dynamic membrane casting solution; the polyvinylidene fluoride flat membrane is washed with water for 10 minutes; the dynamic membrane casting solution is used as the liquid to be filtered, and the polyvinylidene fluoride flat membrane is used as the filter material. Under an operating pressure of 0.1 MPa, at a temperature of 80° C., using a cross-flow pressurized deposition mode, and continuously operating for 30 minutes, the obtained dynamic composite membrane was naturally air-dried to obtain the polymer conductive porous membrane.
[0028] By comparison, the water flux of the flat polyvinylidene fluoride membrane without a dynamic membrane coating is 350.1L / (m 2 .h), t...
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