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t10 DSK Electrodes for the Cathodic Reduction of Oxygen
V11 Ion Exchange Membranes in HydrogenOxygen Fuel Cells
13 Description of a FuelCell Power Pack Operating
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90 per cent acid electrolyte activity ammonia anode area contact basic electrolyte C0ST calculated carbon dioxide catalyst cathode Chem chemical concentration cell concentration polarization conductivity constant current density decrease diffusion DSK electrodes effect elec electrical electrochemical oxidation energy equation ethane experimental experiments flow rate formaldehyde formate formic acid fuel cell fuel cell system gases half-cell hydrocarbons hydrogen hydrogen-oxygen hydroxide increase isobutane isopropanol layer load factor mass transport matrix measured membrane metal methanol mixtures mole molten carbonate nickel nitrogen obtained ohm-cm2 ohmic open-circuit oxidation oxygen electrode oxygen ion parameters payout performance platinized porous carbon platinum polarization curves pore porous carbon electrodes porous electrode potassium hydroxide potential power pack propane reactant reaction reactivity Research resistance ratio shown in Figure sintered sodium solution sq cm storage batteries studies sulfuric acid surface temperature tests theoretical thickness tion transference number trode trolyte voltage Winsel