Liquid cathode fuel battery
A fuel cell and cathode technology, applied in fuel cells, battery electrodes, circuits, etc., can solve the problems of low energy density and achieve the effects of increasing volume energy density, good heat dissipation function, and improving kinetics
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Embodiment 1
[0052] Battery adopts the structure of Fig. 1, cathode fuel 8 is 20% ammonium perchlorate and 5% sulfuric acid mixed solution (weight ratio, hereinafter the same), and anode fuel 9 is by 10% sodium borohydride, 10% hydroxide Sodium mixture. Diaphragm 1 is made of Nafion 112, cathode plate 6 and anode plate 7 are made of highly conductive graphite material, and the apparent area of the electrode plate is 25cm 2 . The cathode catalyst layer 2 is composed of a conductive carbon cloth loaded with a noble metal catalyst, and the anode catalyst layer 3 is also composed of a catalyst-loaded conductive carbon cloth. Only one side of the carbon cloth is coated with catalyst (that is, the catalytic layer, which is in direct contact with Nafion), and the other side is a diffusion layer (cathode diffusion layer 4, anode diffusion layer 5). The use of gasket 10 prevents fuel from leaking. The cathode and the anode are respectively led out by wires and connected to the variable resistan...
Embodiment 2
[0055] The catholyte consists of 10% magnesium perchlorate and 10% sulfuric acid without auxiliary agents. There is no catalyst on the graphite rod. The resulting open circuit voltage and short circuit current are 0.56V and 35mA / cm 2 .
Embodiment 3
[0057] The catholyte is composed of 10% magnesium perchlorate and 10% sulfuric acid, and contains 3% sodium molybdate as an auxiliary agent. There is no catalyst on the graphite rod. The resulting open circuit voltage and short circuit current were 0.58V and 43mA / cm 2 .
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