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Low-Cost and Durable Bipolar Plates for Proton Exchange Membrane Electrolyzers

机译:质子交换膜电解槽的低成本耐用双极板

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摘要

Cost reduction and high efficiency are the mayor challenges for sustainable H2 production via proton exchange membrane (PEM) electrolysis. Titanium-based components such as bipolar plates (BPP) have the largest contribution to the capital cost. This work proposes the use of stainless steel BPPs coated with Nb and Ti by magnetron sputtering physical vapor deposition (PVD) and vacuum plasma spraying (VPS), respectively. The physical properties of the coatings are thoroughly characterized by scanning electron, atomic force microscopies (SEM, AFM); and X-ray diffraction, photoelectron spectroscopies (XRD, XPS). The Ti coating (50 μm) protects the stainless steel substrate against corrosion, while a 50-fold thinner layer of Nb decreases the contact resistance by almost one order of magnitude. The Nb/Ti-coated stainless steel bipolar BPPs endure the harsh environment of the anode for more than 1000 h of operation under nominal conditions, showing a potential use in PEM electrolyzers for large-scale H2 production from renewables.
机译:降低成本和提高效率是通过质子交换膜(PEM)电解可持续生产H2的主要挑战。双极板(BPP)等钛基组件对资本成本的贡献最大。这项工作提出使用分别通过磁控溅射物理气相沉积(PVD)和真空等离子体喷涂(VPS)涂覆Nb和Ti的不锈钢BPP。涂层的物理性能通过扫描电子,原子力显微镜(SEM,AFM)来彻底表征。和X射线衍射,光电子能谱(XRD,XPS)。钛涂层(50μm)可保护不锈钢基材免受腐蚀,而50倍的Nb薄层则将接触电阻降低了近一个数量级。在标称条件下,Nb / Ti涂层不锈钢双极BPP能够在阳极的严酷环境下运行1000 h以上,显示出在PEM电解槽中可用于可再生能源大规模生产H2的潜在用途。

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