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Partial Oxidation Of Methane In A Reverse Flow Porous Media Reactor. Water Admixing Optimization

机译:逆流多孔介质反应器中甲烷的部分氧化。水混合优化

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The influence of the addition of steam on methane-air partial oxidation in a reverse flow porous media reactor is investigated numerically. The model is validated via comparison with the experimental data obtained without steam addition. The model of chemical kinetics includes 6- component overall model and GRI 3.0 gas phase methane oxidation kinetics. It is shown that hydrogen concentration in the product gas may be increased by 0.5-1% and the methane-to-hydrogen conversion ratio by 10-15% by means of adding steam to a working mixture. The optimum equivalence ratio remains the same as in the water free case. Steam concentration which maximizes H_2 is in the range of 5-10%; steam concentration which maximizes the conversion ratio is in the range of 20-50%. The role of the thermal insulation of the reactor and of the working gas preheating in this aspect is shown quantitatively. The results may be utilized for design of porous media reactors and process optimization.
机译:数值研究了在逆流多孔介质反应器中添加蒸汽对甲烷-空气部分氧化的影响。通过与未添加蒸汽的实验数据进行比较,验证了该模型。化学动力学模型包括6组分总体模型和GRI 3.0气相甲烷氧化动力学模型。结果表明,通过向工作混合物中加入蒸汽,可以使产物气体中的氢浓度提高0.5-1%,并使甲烷-氢的转化率提高10-15%。最佳当量比与无水情况下相同。使H_2最大化的蒸汽浓度在5-10%的范围内;使转化率最大化的蒸汽浓度在20-50%的范围内。在这方面,反应器的绝热和工作气体预热的作用在数量上得以体现。该结果可用于多孔介质反应器的设计和工艺优化。

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