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Experimental Study on Anode and Cathode Pressure Difference Control and Effects in a Proton Exchange Membrane Fuel Cell System

机译:质子交换膜燃料电池系统阳极和阴极压差控制及作用的实验研究

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摘要

In a proton exchange membrane fuel cell (PEMFC) system, controlling the pressure balance between the anode and the cathode reactants is very important, especially for transient processes involving big load changes. Unreasonable pressure following the control may lead to pressure imbalance, which may result in damage to the thin membranes inside the fuel cell stack. A pressure difference control method for maintaining the pressure difference on both sides of the membrane within a reasonable scope is proposed in this paper. This method is also applied in an actual PEMFC system for pressure-balance control. In the experiments involving a 14.4 kW PEMFC system with 100 A current jumps, the pressure difference between the anode hydrogen and cathode air could be controlled within allowable values. The results reveal that the proposed method can be used to control the anode inlet pressure more simply and rapidly following the cathode pressure changes, which could be more effective for membrane protection.
机译:在质子交换膜燃料电池(PEMFC)系统中,控制阳极和阴极反应物之间的压力平衡非常重要,特别是对于涉及大负荷变化的瞬态过程而言。控制后不合理的压力可能导致压力不平衡,从而可能损坏燃料电池堆内部的薄膜。提出了一种将膜两侧压力差保持在合理范围内的压力差控制方法。该方法还应用于实际的PEMFC系统中以进行压力平衡控制。在涉及一个具有100 A电流跳变的14.4 kW PEMFC系统的实验中,可以将阳极氢和阴极空气之间的压力差控制在允许值内。结果表明,所提出的方法可用于随着阴极压力的变化而更简单,快速地控制阳极入口压力,这对于膜保护可能更为有效。

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