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Operation Conditions Optimization of Hydrogen Production by Propane Autothermal Reforming for PEMFC Application

机译:PEMFC应用丙烷自热重整制氢工艺条件优化

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摘要

Autothermal reforming (ATR) is one of the leading methods for hydrogen production from hydrocarbons. Liquefied petroleum gas, with propane as the main component, is a promising fuel for on-board hydrogen producing systems in fuel cell vehicles and for domestic fuel cell power generation devices. In this article, propane ATR process is studied and operation conditions are optimized with PRO/ Ⅱ~ ® from SIMSCI for proton exchange membrane fuel cell application. In the ATR system including water gas shift and preferential oxidation, heat in the hot streams and cold streams is controlled to be in balance. Different operation conditions are studied and drawn in contour plots. The region for ATR reforming with the highest efficiency can thus be identified. One operation point was chosen with the following process parameters: feed temperature for the ATR reactor is 425℃, steam to carbon ratio S/C is 2.08, air stoichiometry is 0.256. Thermal efficiency for the integrated system is calculated to be as high as 84.0 % with 38.27 % H_2 and 3.2μl·L~(-1) CO in the product gas.
机译:自热重整(ATR)是从碳氢化合物生产氢的主要方法之一。以丙烷为主要成分的液化石油气是一种有前途的燃料,可用于燃料电池汽车的车载制氢系统以及家用燃料电池发电设备。本文研究了丙烷ATR工艺,并使用SIMSCI的PRO /Ⅱ〜®优化了质子交换膜燃料电池应用的操作条件。在包括水煤气变换和优先氧化的ATR系统中,热流和冷流中的热量被控制为平衡。研究了不同的运行条件,并绘制了等高线图。因此,可以识别出效率最高的ATR重整区域。选择一个操作点,其工艺参数如下:ATR反应器的进料温度为425℃,蒸汽碳比S / C为2.08,空气化学计量为0.256。集成系统的热效率经计算高达84.0%,其中产物气中的H.为38.27%,CO为3.2μl·L〜(-1)。

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