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首页> 外文期刊>Angewandte Chemie >Inverted Fuel Cell: Room-Temperature Hydrogen Separation from an Exhaust Gas by Using a Commercial Short-Circuited PEM Fuel Cell without Applying any Electrical Voltage
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Inverted Fuel Cell: Room-Temperature Hydrogen Separation from an Exhaust Gas by Using a Commercial Short-Circuited PEM Fuel Cell without Applying any Electrical Voltage

机译:倒置燃料电池:使用商用短路PEM燃料电池在不施加任何电压的情况下从废气中进行室温氢气分离

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摘要

A short-circuited PEM fuel cell with a Nafion membrane has been evaluated in the room-temperature separation of hydrogen from exhaust gas streams. The separated hydrogen can be recovered or consumed in an in situ olefin hydrogenation when the fuel cell is operated as catalytic membrane reactor. Without applying an outer electrical voltage, there is a continuous hydrogen flux from the higher to the lower hydrogen partial pressure side through the Nafion membrane. On the feed side of the Nafion membrane, hydrogen is catalytically split into protons and electrons by the Pt/C electrocatalyst. The protons diffuse through the Nafion membrane, the electrons follow the short-circuit between the two brass current collectors. On the cathode side, protons and electrons recombine, and hydrogen is released.
机译:在室温下从废气流中分离氢气时,已经对带有Nafion膜的PEM短路燃料电池进行了评估。当燃料电池作为催化膜反应器运行时,分离出的氢可在原位烯烃氢化中回收或消耗。在不施加外部电压的情况下,存在通过Nafion膜从较高氢分压到较低氢分压的连续氢通量。在Nafion膜的进料侧,氢通过Pt / C电催化剂催化分解为质子和电子。质子通过Nafion膜扩散,电子跟随两个黄铜集电器之间的短路。在阴极侧,质子和电子复合,并释放出氢。

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