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Gas diffusion layer development using design of experiments for the optimization of a proton exchange membrane fuel cell performance

机译:利用实验设计开发气体扩散层,以优化质子交换膜燃料电池的性能

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Gas Diffusion Layer (GDL) was optimized to maximize the performance of a Proton Exchange Membrane Fuel Cell (PEMFC) using design of experiments (DoE). The fabrication of the GDLs consisted of using a non-woven carbon paper substrate, coated with a mixture (slurry) of Pureblack Carbon (PB), Vapor Grown Carbon Fiber (VGCF) and the polytetrafluoroethylene (PTFE), all dispersed in water containing Sodium Dodecyl Sulfate (SDS). The concentration of PB and the PTFE in the slurry was organized through the application of a 22 full factorial design of experiments, with the quantity of PB and the quantity of PTFE as the factors. For each GDLs a Membrane-Electrodes Assemblies (MEA) were fabricated using Catalyst Coated Nafion Membrane CCM, in a single cell PEMFC, then the polarization curve was evaluated using H-2/Air as well as H-2/O-2 at various relative humidity (RH) conditions. In addition, each GDLs were characterized by pore size distribution and contact angle using SEM, Goniometer and Hg Porosimeter. It was found that the optimized GDLs exhibited a power density of 487 mW/cm(2) (H-2/Air, 70 degrees C, 70% RH,) and 995 mW/cm(2) (H-2/O-2,70 degrees C, 100% RH) for the optimum composition of 73% PB and 34% PTFE. (C) 2018 Elsevier Ltd. All rights reserved.
机译:使用实验设计(DoE)对气体扩散层(GDL)进行了优化,以最大化质子交换膜燃料电池(PEMFC)的性能。 GDL的制造包括使用非织造碳纸基材,该基材涂有纯黑碳(PB),气相法碳纤维(VGCF)和聚四氟乙烯(PTFE)的混合物(浆液),均分散在含钠的水中十二烷基硫酸盐(SDS)。通过应用22种全因子设计实验来组织浆液中PB和PTFE的浓度,其中PB的量和PTFE的量为因素。对于每个GDL,在单电池PEMFC中使用催化剂涂覆的Nafion膜CCM制作膜-电极组件(MEA),然后使用H-2 / Air以及H-2 / O-2在不同的电池中评估极化曲线相对湿度(RH)条件。另外,使用SEM,测角计和Hg孔隙率计通过孔径分布和接触角来表征每种GDL。发现优化的GDL的功率密度为487 mW / cm(2)(H-2 /空气,70摄氏度,70%RH,)和995 mW / cm(2)(H-2 / O-最佳温度为73%PB和34%PTFE的2,70摄氏度(100%RH)。 (C)2018 Elsevier Ltd.保留所有权利。

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