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Localized Impedance Measurements along a Single Channel of a Solid Polymer Fuel Cell

机译:沿固体聚合物燃料电池单通道的局部阻抗测量

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摘要

A method is presented, for the first time, for measuring the localized electrochemical impedance spectroscopy response over a frequency range of 0.1 Hz to 10 kHz as a function of position in a solid polymer fuel cell. The highly idealized fuel cell on which the measurements were performed is composed of a single linear flow channel. Measurements have been made at both 0.8 and 0.6 V. A distribution of impedance characteristics is seen along the channel with evidence of mass transport effects that are not evident from localized dc measurements. The membrane conductivity does not vary with position at both potentials, as is expected from the fact that reactant gases are fully humidified. A time constant characteristic of convective transport within the flow channel dominates the low frequency response at low potentials. This response is caused by consumption of reactant upstream of the point at which the measurement is made.
机译:首次提出了一种方法,用于测量固体聚合物燃料电池中在0.1 Hz至10 kHz频率范围内的局部电化学阻抗谱响应,该响应是位置的函数。进行测量的高度理想化的燃料电池由单个线性流动通道组成。在0.8 V和0.6 V电压下都进行了测量。沿着通道看到了阻抗特性的分布,其中有传质效应的证据,这在局部dc测量中并不明显。膜电导率在两个电势处均不随位置而变化,这是由于反应气体被完全加湿的事实所预期。流动通道内对流输运的时间常数特性主导着低电位下的低频响应。该响应是由于测量点上游的反应物消耗引起的。

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