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Interfacial permeation phenomena of hydrogen purification and carbon dioxide separation in a non-isothermal palladium membrane tube

机译:非等温钯膜管中氢气纯化与二氧化碳分离的界面渗透现象

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摘要

Hydrogen can be purified and carbon dioxide can be separated from their gas mixtures in a palladium (Pd) membrane tube. To figure out the hydrogen permeation characteristics in a non-isothermal Pd membrane tube, a numerical method is developed. The influence of the Reynolds numbers at the retentate and permeate sides, the temperatures of feed gas and sweep gas, and the H-2 concentration in the feed gas on the interfacial H-2 permeation and H-2 recovery are analyzed. The results indicate that the minimum H2 partial pressure difference and permeation rate along the membrane surface develops, as a consequence of competition between the membrane permeance and the H-2 partial pressure difference. A dimensionless mass transfer parameter (xi), which is a non-dimensional driving force ratio between H-2 diffusion in the gas phase and H-2 permeation across the membrane, is conducted to aid in illustrating the mass transfer characteristics along the membrane surface. The xi curve is insensitive to the Reynolds numbers, but depends significantly on interfacial temperature and H-2 inlet concentration. When the H-2 inlet concentration is low, all H-2 in the feed gas can be recovered and the minimum distribution no long appears. This also implies that all CO2 is separated. (C) 2016 Elsevier B.V. All rights reserved.
机译:可以纯化氢气,并可以在钯(Pd)膜管中从其气体混合物中分离出二氧化碳。为了找出非等温钯膜管中的氢渗透特性,开发了一种数值方法。分析了渗余物和渗透物侧的雷诺数,进料气和吹扫气的温度以及进料气中H-2的浓度对界面H-2渗透和H-2回收率的影响。结果表明,由于膜渗透率和H-2分压差之间的竞争,形成了沿膜表面的最小H2分压差和渗透率。进行无量纲的传质参数(xi)是气相中H-2扩散与跨膜的H-2渗透之间的无量纲驱动力比,以帮助说明沿膜表面的传质特性。 。 xi曲线对雷诺数不敏感,但在很大程度上取决于界面温度和H-2入口浓度。当H-2入口浓度低时,可以回收进料气中的所有H-2,并且不再出现最小分布。这也意味着所有的二氧化碳都被分离了。 (C)2016 Elsevier B.V.保留所有权利。

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