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首页> 外文期刊>International journal of hydrogen energy >Optimization of components and assembling in a PEM electrolyzer stack
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Optimization of components and assembling in a PEM electrolyzer stack

机译:优化PEM电解槽堆栈中的组件和组装

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An optimization study of components and assembling characteristics for a proton exchange membrane (PEM) short stack electrolyzer (3 cells of 100 cm~2 geometrical area) was carried out. The electrochemical properties were investigated by polarization, impedance spectroscopy and chrono-potentiometric measurements. A decrease of the ohmic contact resistance between the bipolar plates and the electrode backing layer was obtained by using an appropriate thickness for the gas diffusion layers/current collectors as well as by an optimization of stack compression. The amount of H2 produced was ~90 1 h~(-1) at 60 A (600 mA cm~(-2)) and 75 ~°C under 300 W of applied electrical power. No significant leakage or gas recombination was observed. The stack electrical efficiency was 75% and 88%, at 60 A and 75 ~°C, with respect to the low and high heating value of hydrogen, respectively.
机译:对质子交换膜(PEM)短堆电解槽(3个100 cm〜2几何面积的电解槽)的组成和组装特性进行了优化研究。通过极化,阻抗谱和计时电位法研究了电化学性能。通过为气体扩散层/集电器使用适当的厚度以及通过优化堆叠压缩来获得双极板和电极背衬层之间的欧姆接触电阻的减小。在300 W施加电功率下,在60 A(600 mA cm〜(-2))和75°C下产生的H2量约为90 1 h〜(-1)。没有观察到明显的泄漏或气体复合。相对于氢的低和高热值,在60 A和75°C时,堆的电效率分别为75%和88%。

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