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Hydrogen Diffusion Transfer through an Asymmetric Three-Layer Vanadium Membrane

机译:通过不对称三层钒膜传递氢气扩散

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摘要

Hydrogen diffusion transfer through a three-layer membrane has been studied within the framework of the lattice model under the Bragg. Williams approximation. A set of equations describing hydrogen transfer through a vanadium membrane coated with thin palladium layers has been derived taking into account the interactions of hydrogen atoms in the membrane layers. The obtained equations have been solved using the Mathcad-14 software package. It has been shown that the interaction between hydrogen atoms has a significant influence on hydrogen permeability at near-atmospheric pressures. It has been found that the permeability of the vanadium membrane is markedly higher than that of a palladium one at the same thickness. The effect of asymmetric vanadium membrane embrittlement has been shown to depend on the location of palladium layers with different thicknesses. The embrittlement of the vanadium membrane begins at higher pressures, when a thicker palladium layer is located at the inlet. It has been revealed that, for asymmetric membranes, the value of the diffusion flux of hydrogen atoms may depend on the transfer direction. At the same membrane thickness, the permeability of the asymmetric membrane is actually equal to that of a symmetrical membrane, provided that a thicker palladium layer is located at the inlet. At the opposite orientation, of the permeability of the asymmetric membrane is lower than that of the symmetric one.
机译:通过三层膜的氢气扩散转移已经在布拉格下的晶格模型的框架内研究。威廉姆斯近似。考虑了膜层中的氢原子的相互作用,已经得出了一组通过涂覆有薄钯层的钒膜传递的等式。使用Mathcad-14软件包解决了所获得的方程。已经表明,氢原子之间的相互作用对近大气压的氢渗透产生了显着影响。已经发现,钒膜的渗透率明显高于相同厚度的钯。已经证明了不对称钒膜脆化的效果取决于具有不同厚度的钯层的位置。当较厚的钯层位于入口处时,钒膜的脆化在较高的压力下开始。已经揭示了,对于不对称膜,氢原子的扩散通量的值可能取决于转移方向。在相同的膜厚,不对称膜的渗透性实际上等于对称膜的渗透性,条件是较厚的钯层位于入口处。在相反的方向上,不对称膜的渗透性低于对称的渗透性。

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  • 来源
    《Colloid journal》 |2017年第4期|共7页
  • 作者

    Ugrozov V. V.;

  • 作者单位

    Financial Univ Govt Russian Federat Dept Data Anal Decis Making Theory &

    Financial Te Moscow 123995 Russia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 胶体;
  • 关键词

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