首页> 外文会议>International conference on nanochannels, microchannels and minichannels;ICNMM2011 >HOMOGENEOUS OXIDATION OF HYDROGEN IN CATALYTIC MINI/MICROCHANNELS
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HOMOGENEOUS OXIDATION OF HYDROGEN IN CATALYTIC MINI/MICROCHANNELS

机译:催化微型/微通道中氢的均相氧化

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Gas phase reaction effects in the catalytic oxidation of hy-drogen on platinum-coated minichannels and microchannels are investigated numerically in planar geometry. The main objec-tive of this work is to identify the relative importance of the gas phase and surface reactions under different operating conditions. A collocated finite-volume method is used to solve the governing equations. Detailed gas phase and surface reaction mechanisms along with a multi-component diffusion model are used. As the channel size is reduced, heat and radical losses to the walls can significantly alter the combustion behavior. While catalytic walls help in sustaining the gas phase reactions at very small length scales by reducing the heat losses to the walls owing to heat re-lease associated with the surface reactions, they may inhibit ho-mogeneous reactions by extracting radicals due to typically high absorption rates of such species at the walls. Thus, the radical chain mechanisms can be significantly altered by the presence of wall reactions, and the build-up of radical pools in the gas phase, which lead to homogeneous ignition, can be suppressed as a consequence. In the present study, the effects of two key parameters, i.e. channel height and the inlet mass flux on the in-teraction of gas phase and surface reactions will be explored. In each case, the limiting values beyond which the gas-phase reac-tions become relatively negligible compared to surface reactions will be identified for hydrogen/air mixtures.
机译:气相催化反应在铂涂层的微通道和微通道上的氢催化氧化中,在平面几何形状上进行了数值研究。这项工作的主要目的是确定在不同操作条件下气相和表面反应的相对重要性。并置有限体积方法用于求解控制方程。使用了详细的气相和表面反应机理以及多组分扩散模型。随着通道尺寸的减小,壁的热量和自由基损失会显着改变燃烧行为。尽管催化壁通过减少由于与表面反应相关的热释放而导致的壁热损失来帮助在很小的长度尺度上维持气相反应,但由于通常的高吸收性,它们可通过提取自由基来抑制均相反应墙壁上此类物种的比率。因此,自由基反应机理可以通过壁反应的存在而显着改变,并且因此可以抑制在气相中导致均匀点火的自由基池的建立。在本研究中,将探索两个关键参数,即通道高度和入口质量通量对气相和表面反应相互作用的影响。在每种情况下,对于氢气/空气混合物,将确定出极限值,与表面反应相比,气相反应的极限值可以忽略不计。

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