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An Experimental Investigation Of Electro-osmotic Drag Coefficients In A Polymer Electrolyte Membrane Fuel Cell

机译:聚合物电解质膜燃料电池电渗阻力系数的实验研究

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Through the use of a water balance experiment, the electro-osmotic drag coefficients of Nafion 115 were obtained under several conditions (as a function of water content and thermodynamics conditions). For the cases when the anode was fully hydrated (corresponding to water content λ ≈ 14 in the adjacent membrane) and the cathode suffered from drying when dry air was supplied (λ ≈ 2), the electro-osmotic drag coefficients varied from 0.82 (±0.06) to 0.50 (±0.03) H_2O/H~+ when the current density varied from 0.4 to 1.0 A cm~(-2) (95% confidence level). When the current density increased, the electro-osmotic drag coefficient decreased. When the water content at the anode increased from λ ≈ 5 to λ ≈ 14, the cathode was supplied with dry air (λ ≈ 2), and the fuel cell discharged constant current density at 0.6 A cm~(-2), the electro-osmotic drag coefficient increased from 0.44 (±0.06) to 0.68 (±0.06) H_2O/H~+ (95% confidence level). Higher relative humidity gas leads to a higher electro-osmotic drag coefficient at constant current density.
机译:通过水平衡实验,在几种条件下(与水含量和热力学条件有关)获得了Nafion 115的电渗阻力系数。对于阳极完全水合的情况(对应于相邻膜中的水含量λ≈14),而在供应干燥空气时阴极干燥(λ≈2),电渗阻力系数从0.82(±当电流密度从0.4到1.0 A cm〜(-2)(95%置信度)变化时,H_2O / H〜+为0.06)至0.50(±0.03)H_2 +。当电流密度增加时,电渗阻力系数降低。当阳极处的水含量从λ≈5增加到λ≈14时,将为阴极提供干燥空气(λ≈2),并且燃料电池以0.6 A cm〜(-2)的恒定电流密度放电,渗透阻力系数从0.44(±0.06)增加到0.68(±0.06)H_2O / H〜+(95%置信度)。在恒定电流密度下,较高的相对湿度气体会导致较高的电渗阻力系数。

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