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Synthesis of an Ultra-Thin Palladium Membrane for Hydrogen Extraction

机译:氢萃取超薄钯膜的合成

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Based on the observation of the microstructure of palladium deposited on a porous stainless steel surface using an electroless process, we find that the palladium membrane is made of nanoparticles and its thickness is directly dependent on the size of the nanoparticles. The size of palladium nanoparticles can be effectively controlled by concentration of PdCl2 in the plating solution. The higher concentration of PdCl2 in the plating bath will result in a smaller size of palladium particles deposited on the substrate. The smaller the size of palladium nanoparticles is generated from the solution, the thinner the dense palladium membrane is built. The result obtained from hydrogen permeation through the ultra-thin palladium membrane having a thickness of 400 nm demonstrates that this ultra-thin membrane is solid and it can be used at the temperature of 550 °C and hydrogen pressure difference of 50 psi. These experimental results will allow optimizing the design of an ultra-thin palladium membrane for hydrogen extraction.
机译:基于对使用化学镀沉积在多孔不锈钢表面上的钯的微观结构的观察,我们发现钯膜是由纳米颗粒制成的,其厚度直接取决于纳米颗粒的尺寸。镀液中PdCl 2 的浓度可以有效地控制钯纳米粒子的尺寸。电镀液中较高浓度的PdCl 2 将导致沉积在基板上的钯颗粒尺寸减小。从溶液中产生的钯纳米粒子尺寸越小,致密的钯膜越薄。通过氢渗透穿过厚度为400nm的超薄钯膜而获得的结果表明,该超薄膜是固体,并且可以在550℃的温度和50psi的氢压差下使用。这些实验结果将允许优化用于氢气提取的超薄钯膜的设计。

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