首页> 外文会议>4th International Conference on Fuel Cell Science, Engineering, and Technology 2006 pt.B >LOW TEMPERATURE DIRECT PROPANE POLYMER ELOCTROLYTE MEMBRANE FUEL CELL (DPFC)
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LOW TEMPERATURE DIRECT PROPANE POLYMER ELOCTROLYTE MEMBRANE FUEL CELL (DPFC)

机译:低温直接丙烷聚合物电解质膜燃料电池(DPFC)

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The low-temperature Direct Propane Polymer Electrolyte Membrane Fuel Cell (DPFC) based on low-cost modified membranes was demonstrated for the first time. The propane is fed into the fuel cell directly without the need for reforming. A PBI membrane doped with acid and a Nafionv 117 membrane modified or non-modified with silicotungstic acid were used as the polymer membranes. The anode was based on Pt, Pt-Ru or Pt/CrO3 electro catalysts and the cathode was based on a Pt electro catalyst. For non-optimized fuel cells based on H2SO4 doped PBI membranes and Pt/CrO3 anode, the open circuit potential was 1.0 Volt and the current density at 0.40 Volt was 118 mA.cm-2 at 95oC. For fuel cells based on Nafionv 117 membranes modified with silicotungstic acid and on Pt/CrO3, the open-circuit voltage was 0.98 Volt and the current density at 0.40 Volt was 108 mA.cm-2 while fuel cells based on non-modified Nafionv 117 membranes exhibited an open-circuit voltage of 0.8 Volt and the current density at 0.40 Volt was 42 mAxm-2. It was also shown that propane fuel cells using anodes based on Pt-Ru/C anode (42 mW.cm-2) exhibit a similar maximum power density to that exhibited by fuel cells based on Pt-CrO3/C-anode (46 mW.cm-2), while DPFC using a Pt/C-based anode exhibited lower maximum power density (18 mW.cm-2) than fuel cells based on the Pt-CrO3/C anode (46 mW.cm-2).
机译:首次展示了基于低成本改性膜的低温直接丙烷聚合物电解质膜燃料电池(DPFC)。丙烷无需重整即可直接供入燃料电池。掺杂有酸的PBI膜和用硅钨酸改性或未改性的Nafionv 117膜被用作聚合物膜。阳极基于Pt,Pt-Ru或Pt / CrO3电催化剂,阴极基于Pt电催化剂。对于基于H2SO4掺杂的PBI膜和Pt / CrO3阳极的非优化燃料电池,在95oC下的开路电势为1.0伏,0.40伏的电流密度为118 mA.cm-2。对于基于用硅钨酸改性的Nafionv 117膜和Pt / CrO3的燃料电池,开路电压为0.98伏,0.40伏的电流密度为108 mA.cm-2,而基于未改性的Nafionv 117的燃料电池膜的开路电压为0.8伏,0.40伏的电流密度为42 mAxm-2。还显示,使用基于Pt-Ru / C阳极的阳极(42 mW.cm-2)的丙烷燃料电池具有与基于Pt-CrO3 / C阳极的燃料电池(46 mW)相似的最大功率密度。 (cm-2),而使用基于Pt / C的阳极的DPFC的最大功率密度(18 mW.cm-2)低于基于Pt-CrO3 / C阳极的燃料电池(46 mW.cm-2)。

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