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Temperature-dependent gas accumulation in polymer electrolyte membrane electrolyzer porous transport layers

机译:聚合物电解质膜电解槽多孔传输层中与温度相关的气体积累

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We investigate the temperature-dependent gas saturation in the porous transport layer (PTL), and the subsequent impact of this gas saturation on the mass transport overpotential of a polymer electrolyte membrane (PEM) electrolyzer. Via in operando neutron imaging of a PEM electrolyzer, we observe that increasing the operating temperature results in a) the reduction of gas saturation in the PTL (particularly near the catalyst layer (CL)-PTL interface) and b) the promotion of uniform gas distributions near the CL-PTL interface. Via two-dimensional computational fluid dynamics modelling of the PEM electrolyzer, we observe that increasing the operating temperature results in a) the reduction of dissolved oxygen concentrations and b) the promotion of uniform dissolved oxygen concentrations near the CL-PTL interface. Therefore, we attribute our observation of lower and more uniform gas saturation to correspondingly lower and more uniform gas evolution rates that would accompany the dissolved oxygen concentrations predicted by our model. Increasing the operating temperature leads to lower mass transport overpotentials, which we attribute to the combined effects of lower and more uniform gas saturations and lower dissolved oxygen concentrations near the CL-PTL interface. Based on this work, we recommend higher operating temperatures for optimal water and oxygen transport in the PTL.
机译:我们研究了多孔传输层(PTL)中随温度变化的气体饱和度,以及该气体饱和度对聚合物电解质膜(PEM)电解器的质量传输超电势的后续影响。通过PEM电解器的操作中子成像,我们观察到提高工作温度会导致a)PTL中气体饱和度的降低(尤其是在催化剂层(CL)-PTL界面附近)和b)均匀气体的促进分布在CL-PTL接口附近。通过PEM电解器的二维计算流体动力学建模,我们观察到提高工作温度会导致a)降低溶解氧浓度,b)促进CL-PTL界面附近均匀的溶解氧浓度。因此,我们将对气体饱和度较低且更均匀的观察结果归因于与模型预测的溶解氧浓度相伴的气体相对较低且更均匀的析出速率。操作温度的升高导致质量传递的超电势降低,这归因于CL-PTL界面附近较低且更均匀的气体饱和度和较低溶解氧浓度的综合作用。基于这项工作,我们建议更高的工作温度,以在PTL中实现最佳的水和氧气传输。

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