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Simulation of hydrogen production for mobile fuel cell applications via autothermal reforming of methane

机译:通过甲烷的自热重整模拟移动燃料电池应用中的制氢

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摘要

This paper presents a simulation of catalytic autothermal reforming (ATR) of methane (CH4) for hydrogen (H2) production. ATR is essentially an oxidative steam reforming, which combines the exothermic partial oxidation (PO) with the endothermic steam reforming (SR) under thermally neutral conditions. A model is developed using HYSYS 2004.1 to simulate the conversion behavior of the reformer. The model covers all aspects of major chemical kinetics and heat and mass transfer phenomena in the reformer. The ATR and preferential oxidation (PrOx) processes is modeled using conversion reactor, while the water gas shift (WGS) process is modeled using equilibrium reactor within HYSYS environment. The conditions used for high CH4 conversion and high H2 yield are at air to fuel ratio of 2.5 and water to fuel ratio of 1.5. Under this condition, CH4 conversion of 100% and H2 yield of 44% on wet basis can be achieved and the system efficiency is about 87.7%.
机译:本文介绍了甲烷(CH4)催化自热重整(ATR)用于生产氢气(H2)的模拟。 ATR本质上是一种氧化蒸汽重整,它在热中性条件下将放热部分氧化(PO)与吸热蒸汽重整(SR)结合在一起。使用HYSYS 2004.1开发了一个模型来模拟重整器的转化行为。该模型涵盖了重整器中主要化学动力学以及传热和传质现象的所有方面。使用转化反应器对ATR和优先氧化(PrOx)过程进行建模,而使用HYSYS环境中的平衡反应器对水煤气变换(WGS)过程进行建模。高CH4转化率和H2高产率的条件是空燃比为2.5,水燃比为1.5。在此条件下,可以实现CH4的100%转化率和H2的44%湿基产率,系统效率约为87.7%。

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