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Experimental and Numerical Study of the effect of Gas-shrouded Plasma Spraying on Cathode Coating of Alkaline Electrolysis Cells

机译:气体包覆等离子体喷涂对碱性电解池阴极涂层影响的实验与数值研究

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摘要

Dual layer electrode coating for alkaline water electrolysis was prepared by plasma spraying. For improving performance this work aims at reducing the oxide in electrode coating. Regarding the necessity of obtaining high specific area, atmospheric plasma spray was employed under protection of argon which was used as shrouding gas. Composite cathode was established on Ni-coated perforated steel sheet with crushed and gas atomized Nickel-based alloy powders. The dual-layer structure was a composite of 5 layers of NiAl at the bottom and 10 layers of NiAlMo as the top layer. Microstructure and morphology were studied by scanning electron microscope (SEM). Element content was estimated by energy dispersive X-ray spectrometer (EDS). Enthalpy probe was introduced for measuring plasma temperature and velocity as well as gas composition. Numerical calculation was carried out with same condition for better understanding the shrouding effect. The results showed moderate protection by using of arranged gas shrouding. Overall the dual layer region, Oxygen was decreased by 0.3% from 3.46% to 3.15%. With gas shrouding coating exhibited similar element contents as coating sprayed by VPS. However, no obvious difference was observed in microstructure and morphology with or without gas shrouding.
机译:通过等离子喷涂制备用于碱性水电解的双层电极涂层。为了提高性能,这项工作旨在减少电极涂层中的氧化物。关于获得高比表面积的必要性,在用作保护气体的氩气保护下采用大气等离子体喷雾。在镀有镍的多孔钢板上建立了复合阴极,该复合阴极具有破碎的和气雾化的镍基合金粉末。双层结构是在底部的5层NiAl和在顶层的10层NiAlMo的复合物。通过扫描电子显微镜(SEM)研究了组织和形态。元素含量通过能量色散X射线光谱仪(EDS)估算。引入焓探针以测量血浆温度和速度以及气体成分。在相同条件下进行了数值计算,以更好地理解覆盖效果。结果表明,通过使用有序气体保护罩,可以起到中等保护作用。总体而言,双层区域的氧气从3.46%下降到3.15%,下降了0.3%。使用气体覆盖涂层时,其元素含量与VPS喷涂的涂层相似。然而,在有或没有气体覆盖的情况下,在微观结构和形态上都没有观察到明显的差异。

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    Liu Taikai; Ansar Asif;

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  • 年度 2016
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