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A modelling approach on the impact of an oxide layer on the hydrogen permeation through iron membranes in the Devanathan-Stachurski cell

机译:氧化层氧化层对甲丹坦 - Stachurski细胞铁膜氢渗透的影响

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摘要

The diffusion and trapping of hydrogen in iron alloys is commonly studied using the Devanathan-Stachurski cell. In this cell, the hydrogen flux through a metal membrane is studied. At the exit side of the membrane, an oxide layer is commonly developed and stabilized as a consequence of the anodic polarization imposed. The process of hydrogen diffusion through the oxide layer and its consecutive oxidation is not fully understood yet. In this paper, we propose a modelling approach that provides additional insights in this process. In particular, we highlight the impact that the presence of the oxide layer can have on the overall hydrogen transport throughout the metal membrane. Moreover, we highlight the complexity of this mechanism and discuss the possible reactions taking place in and at this interface. As a conclusion a possible alternative process to explain the findings is proposed. (C) 2018 Elsevier Ltd. All rights reserved.
机译:通常使用Devanathan-Stachurski细胞研究铁合金中氢的扩散和诱捕。 在该电池中,研究了通过金属膜的氢通量。 在膜的出口侧,由于施加的阳极偏振,通常开发和稳定氧化物层。 尚未完全理解通过氧化物层和其连续氧化的氢气扩散的过程。 在本文中,我们提出了一种在这个过程中提供额外见解的建模方法。 特别是,我们突出了氧化物层的存在在整个金属膜上的整个氢输送的影响。 此外,我们突出了这种机制的复杂性,并讨论了在该界面中进行的可能反应。 作为结论,提出了解释调查结果的可能替代过程。 (c)2018年elestvier有限公司保留所有权利。

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