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Methane and Methanol Steam Reforming in a Membrane Reactor for Efficient Hydrogen Production and Continuous Fuel Cell Operation

机译:膜反应器中的甲烷和甲醇蒸汽重整,可高效制氢和燃料电池连续运行

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Our goal in this paper is the description and analysis of new findings and results on membrane reactors and catalytic reactors/heterogeneous processors for the steam reforming reactions of methane, natural gas, and methanol for use in power generation systems and fuel cells. The current communication continues this research by giving emphasis in the so-called “Improved Reaction” and “Reforming-Fuel Cell” systems. We examine the use of methane/methanol based gases (hydrogen generating feedstocks) as sources for Power/Electricity generation via Fuel Cell Technology (i.e., SOFCs). The work focuses on the analysis of methane steam reforming data from two types of reactors. The membrane based reformer and the conventional catalytic plug flow reformer. It was found that the membrane reformer offers higher yields of hydrogen than the plug flow reformer. The same is true for the methane conversions and the CO2 yields. It is expected that the integration of the membrane reformer into the fuel cell network will offer an improved design for this process operation.
机译:本文的目标是描述和分析用于发电系统和燃料电池的甲烷,天然气和甲醇的蒸汽重整反应的膜反应器和催化反应器/多相处理器的新发现和结果。当前的通讯通过强调所谓的“改进的反应”和“重整燃料电池”系统来继续这项研究。我们研究了使用甲烷/甲醇基气体(产生氢气的原料)作为通过燃料电池技术(即SOFC)发电/发电的来源。这项工作着重于分析来自两种类型反应器的甲烷蒸汽重整数据。基于膜的重整器和常规的催化活塞流重整器。发现膜重整器比活塞流重整器提供更高的氢气产率。甲烷转化率和CO2产量也是如此。预期将膜重整器集成到燃料电池网络中将为该工艺操作提供改进的设计。

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