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Surface Exchange Model for MIEC Membrane in Transient Stage

机译:MIEC膜在过渡阶段的表面交换模型

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摘要

Mixed Ionic and Electronic Conductors (MIECs) are promising membrane materials for oxygen separation from air at high temperature. The transient stage is critical due to the stress induced by the chemical and thermal strain. To predict this strain, the oxygen activity field through the membrane has to be known. While the diffusion is well described by the Wagner theory, no consensus has yet emerged regarding the surface exchange models proposed in the literature. Furthermore, these models describe the stationary state, and cannot be extended to the transient stage. A new macroscopic surface exchange model is proposed. This model takes into account the association/dissociation of oxygen and the high energetic cost of oxygen reduction/oxidation thanks to the balance of a transient species only present at the membrane surface. This model reproduces stationary and transient states.
机译:混合离子和电子导体(MIEC)是用于在高温下从空气中分离氧气的有前途的膜材料。由于化学和热应变引起的应力,过渡阶段至关重要。为了预测该应变,必须知道穿过膜的氧气活性场。尽管瓦格纳理论很好地描述了扩散,但有关文献中提出的表面交换模型尚未达成共识。此外,这些模型描述了稳态,并且不能扩展到过渡阶段。提出了一种新的宏观表面交换模型。该模型考虑了氧气的缔合/离解和氧气还原/氧化的高能成本,这归因于仅存在于膜表面的瞬态物质的平衡。该模型再现了稳态和瞬态。

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  • 来源
    《Solid state ionic devices 10》|2014年|243-249|共7页
  • 会议地点 Cancun(MX)
  • 作者单位

    Univ. Orleans, PRISME EA 4229, Orleans 45000, France;

    Univ. Orleans, PRISME EA 4229, Orleans 45000, France;

    SPCTS, CNRS, ENSCI, Univ. Limoges, CEC, Limoges 87000, France;

    SPCTS, CNRS, ENSCI, Univ. Limoges, CEC, Limoges 87000, France;

    SPCTS, CNRS, ENSCI, Univ. Limoges, CEC, Limoges 87000, France;

    Air Liquide CRCD, Jouy en Josas 78350, France;

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  • 正文语种 eng
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