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Novel intensified catalytic nano-structured nickel-zirconia supported palladium based membrane for high temperature hydrogen production from biomass generated syngas

机译:新型强化催化纳米结构镍-氧化锆负载钯基膜,用于从生物质产生的合成气中高温制氢

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This Paper is directed on the improvement of the hydrogen permeability of palladium based membranes and their mechanical, chemical and thermal properties by using sandwich type composition based on Nano-Structured supports which at the end of this work demonstrated positive results. It is a new line of research to improve the performance of palladium membranes for hydrogen production and purification. In this study, a novel supported hydrogen selective membrane module was developed which is mechanically, thermally and chemically stable in order to separate hydrogen from syngas. The perfor-mance of the sandwiched membrane was evaluated and compared with commercial membrane of the same composition and thickness using hydrogen-nitrogen mixtures followed by the utilization of a syngas. It was shown that the sandwiched membrane had better hydrogen fluxes, good mechanical properties and high chemical stability during 15 days of testing with no failures detected. It also showed a good thermal stability where stable hydrogen concentrations obtained at different temperatures.
机译:本文旨在通过使用基于纳米结构支撑物的夹心型组合物来改善钯基膜的氢渗透性及其机械,化学和热性能,该研究在最后证明了积极的结果。这是一条新的研究路线,旨在提高用于氢气生产和纯化的钯膜的性能。在这项研究中,开发了一种新型的负载型氢选择性膜组件,该组件在机械,热和化学方面均稳定,以便从合成气中分离出氢气。评价夹层膜的性能,并使用氢-氮混合物,然后利用合成气,与相同组成和厚度的商业膜进行比较。结果表明,夹层膜在15天的测试中具有更好的氢通量,良好的机械性能和较高的化学稳定性,未发现任何故障。它还显示出良好的热稳定性,其中在不同温度下获得稳定的氢浓度。

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