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Aluminate cement/graphite conductive composite bipolar plate for proton exchange membrane fuel cells

机译:用于质子交换膜燃料电池的铝酸盐水泥/石墨导电复合双极板

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摘要

Aluminate cement/graphite conductive composite bipolar plate for proton exchange membrane fuel cells (PEMFC) was prepared by mold pressing at room temperature. The effect of size of graphite particles on the conductivity and the flexural strength of composite bipolar plate were discussed. Resistance to acid corrosion, thermal property and pore size distribution of this composite bipolar plate were also investigated in this paper. The experiment results show that the conductivity and the flexural strength of this composite bipolar plate can be improved by choosing uniform size graphite as conductive fillers. The corrosion current is about 10~(-4.5) A cm~(-2) from polarization curves of this composite bipolar plate, which shows that this composite bipolar plate is acid corrosion-resistant. Al and Ca ions may leach from this composite bipolar plate after 1M H_2SO_4 acid corrosion. But Al and Ca ions leaching from this composite bipolar plate are only a little percentage of the total Al and Ca ions content in the composite bipolar plate after acid corrosion at 30℃. This composite bipolar plate is also thermally stable from room temperature to 400℃. The large amount of pore in this composite bipolar plate is gel capillary pores because of the hydration and solidification of aluminate cement, which make it possess humidifying function during the PEMFC operating.
机译:通过在室温下模压制备用于质子交换膜燃料电池的铝酸盐水泥/石墨导电复合双极板(PEMFC)。讨论了石墨颗粒尺寸对复合双极板电导率和抗弯强度的影响。本文还研究了这种复合双极板的耐酸腐蚀性能,热性能和孔径分布。实验结果表明,通过选择均一尺寸的石墨作为导电填料可以提高复合双极板的导电性和抗弯强度。从该复合双极板的极化曲线来看,腐蚀电流约为10〜(-4.5)cm〜(-2),表明该复合双极板具有耐酸腐蚀性能。 1M H_2SO_4酸腐蚀后,铝和钙离子可能会从该复合双极板中浸出。但是从复合双极板中浸出的Al和Ca离子仅占复合双极板在30℃酸腐蚀后Al和Ca离子总量的一小部分。该复合双极板在室温至400℃时也具有热稳定性。由于铝酸盐水泥的水化和固化,该复合双极板中的大量孔为凝胶毛细孔,这使其在PEMFC操作期间具有加湿功能。

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