Porous membrane for flow battery and its preparation and application
A liquid flow battery and porous membrane technology, which is applied in the field of porous membrane and its preparation and application, can solve the problems of difficult balance between selectivity and proton conductivity, and achieve improved selectivity and proton conductivity, adjustable pore structure, and low cost. cheap effect
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Embodiment 1
[0031] Dissolve 8 grams of polyethersulfone and 4 grams of polyvinylpyrrolidone in 20 mL of DMAC, stir for 8 hours, spread the polymer solution on a glass plate, and then quickly put it into a constant temperature with a water vapor humidity of 100% and a temperature of 50 °C. In a constant humidity chamber, cure for 10 minutes to form a porous film with a film thickness of 130 μm. Soak the prepared membrane in 3M sulfuric acid solution of 1.5M pentavalent vanadium for 48 hours. From figure 1 It can be seen that a porous separation membrane with a hierarchical pore structure was obtained.
[0032] The all-vanadium redox flow battery is assembled by using the prepared porous composite membrane, wherein the catalytic layer is activated carbon felt, the bipolar plate is graphite plate, and the effective area of the membrane is 6cm -2 , the positive and negative electrolyte volumes are 30mL, and the vanadium ion concentration is 1.50mol L -1 , H 2 SO 4 The concentration is ...
Embodiment 2
[0034] Similar to Example 1, the porous composite membrane was prepared by replacing polyethersulfone with polyacrylonitrile. The assembled flow battery has a current efficiency of 89% and an energy efficiency of 76%.
Embodiment 3
[0036] Similar to Example 1, the polyvinylpyrrolidone was replaced by silicon oxide to prepare a porous composite membrane. The assembled flow battery has a current efficiency of 91% and an energy efficiency of 78.5%.
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