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Estimating limit conversion for methane steam reforming in a palladium membrane reactor using countercurrent sweep gas

机译:估算使用逆流吹扫气在钯膜反应器中甲烷蒸汽重整的极限转化率

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摘要

Generally speaking, conversion increases with increasing reactor length to approach a certain value: so-called limit conversion. Limit conversion for a membrane reactor with a cocurrent sweep gas has been studied extensively. However, characteristics of limit conversion for the countercurrent, which are examined in this study, remain unclear. First, conversions of MRs with different reactor lengths were calculated using a conventional mode of integrating differential equations. Results confirmed that limit conversion is not always 100%, even for the countercurrent. Long MRs were found to have a pseudo-constant state inside, characterized by an extremely low apparent reaction rate and permeation rate. Secondly, a novel approach to estimate limit conversion was developed: reaction equilibrium constants and hydrogen partial pressure balance between both sides were applied not for the end of the reactor but for the pseudo-constant state. This new approach suggests that limit conversion for the countercurrent depends on the reaction temperature, feed-side and permeation-side pressures, feed-gas composition, and the sweep rate. It is fundamentally independent of reaction kinetic equations and hydrogen permeation-rate properties. Copyright © 2009 Curtin University of Technology and John Wiley & Sons, Ltd.
机译:一般而言,转化率随着反应堆长度的增加而增加,达到一定值:所谓的极限转化。对于具有并流吹扫气的膜反应器的极限转化已经进行了广泛的研究。然而,这项研究中所研究的逆流极限转换特性仍不清楚。首先,使用积分微分方程的常规模式计算具有不同反应堆长度的MR的转化率。结果证实,即使逆流,极限转换也不总是100%。发现长MR在内部具有伪恒定状态,其特征在于表观反应速率和渗透速率极低。其次,开发了一种估算极限转化率的新方法:反应平衡常数和两侧之间的氢分压平衡不应用于反应器末端,而是应用于拟恒定状态。这种新方法表明,逆流的极限转化率取决于反应温度,进料侧和渗透侧的压力,进料气体组成和吹扫速率。它基本上独立于反应动力学方程式和氢渗透速率特性。版权所有©2009科廷科技大学和John Wiley&Sons,Ltd.

著录项

  • 来源
    《Asia-Pacific Journal of Chemical Engineering》 |2010年第1期|p.48-59|共12页
  • 作者单位

    Research Institute for Innovation in Sustainable Chemistry, National Institute of Advanced Industrial Science and Technology (AIST), Central 5, Tsukuba 305-8565, Japan;

    Research Institute for Innovation in Sustainable Chemistry, National Institute of Advanced Industrial Science and Technology (AIST), Central 5, Tsukuba 305-8565, Japan;

    Institute for Membrane Technology, ITM-CNR, c/o The University of Calabria, cubo 17/C, Via Pietro Bucci, 87030 Rende CS, Italy;

    Institute for Membrane Technology, ITM-CNR, c/o The University of Calabria, cubo 17/C, Via Pietro Bucci, 87030 Rende CS, Italy|Department of Chemical Engineering and Materials, The University of Calabria, cubo 44/A, Via Pietro Bucci, 87030 Rende CS, Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    membrane reactor; hydrogen permeable membranes; mathematical modeling; methane steam reforming; countercurrent; limit conversion;

    机译:膜反应器;透氢膜;数学模型;甲烷蒸汽重整;逆流;极限转化;

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