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Hydrogen Production on an Ethanol Dehydrogenation Reactor Coupled to a Conventional PEMFC

机译:乙醇脱氢反应器与常规PEMFC偶联制氢

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On board hydrogen storage has become a key factor for the technical viability of fuel cell driven electric or hybrid vehicles. In this work we present results of a system which comprises an ethanol dehydrogenation catalytic unit coupled to a conventional proton exchange membrane fuel cell (PEMFC). Ethanol is first dehydrogenated over a Cu/ZrO_2 catalyst bed, and then the gas effluent is trapped in a simple cold condenser enabling a gas current rich in H_2 to feed a PEMFC. Chronoamperometry (at a cell potential of 700 mV) showed apparent stability of the cell performance at about 300 mA cm~(-2) (with H_2 produced from ethanol reaction) whilst at 550 mA cm~(-2) with pure H_2. Maximum cell power density of our integrated system achieved almost 70% of the performance of the cell powered with pure H_2.
机译:车载氢存储已经成为燃料电池驱动的电动或混合动力汽车技术可行性的关键因素。在这项工作中,我们介绍了一个系统的结果,该系统包括与常规质子交换膜燃料电池(PEMFC)相连的乙醇脱氢催化单元。乙醇首先在Cu / ZrO_2催化剂床上脱氢,然后将废气排放到简单的冷冷凝器中,从而使富含H_2的气流能够输送给PEMFC。计时电流法(在700 mV的电池电势下)显示了在约300 mA cm〜(-2)(由乙醇反应产生的H_2)下电池性能的明显稳定性,而在纯的H_2下在550mA cm〜(-2)的情况下。我们集成系统的最大电池功率密度几乎达到了纯H_2电池性能的70%。

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