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Co-Generation of C2 Hydrocarbons and Synthesis Gases from Methane and Carbon Dioxide: a Thermodynamic Analysis

机译:由甲烷和二氧化碳共同生成C2烃和合成气的热力学分析

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This paper deals with thermodynamic chemical equilibrium analysis using the method of direct minimization of Gibbs free energy for all possible CH4 and CO2 reactions. The effects of CO2/CH4 feed ratio,reaction temperature,and system pressure on equilibrium composition,conversion,selectivity and yield were studied. In addition,carbon and no carbon formation regions were also considered at various reaction temperatures and CO2/CH4 feed ratios in the reaction system at equilibrium. It was found that the reaction temperature above 1100 K and CO2/CH4 ratio=1 were favourable for synthesis gas production with H2/CO ratio unity,while carbon dioxide oxidative coupling of methane (CO2 OCM) reaction to produce ethane and ethylene is less favourable thermodynamically. Numerical results indicated that the no carbon formation region was at temperatures above 1000 K and CO2/CH4 ratio larger than 1.
机译:本文使用直接最小化所有可能的CH4和CO2反应的吉布斯自由能的方法进行热力学化学平衡分析。研究了CO2 / CH4进料比,反应温度和体系压力对平衡组成,转化率,选择性和产率的影响。另外,在各种反应温度和平衡的反应体系中CO2 / CH4进料比下也考虑了碳和无碳形成区域。结果表明,反应温度高于1100 K且CO2 / CH4 = 1有利于H2 / CO比为1的合成气生产,而甲烷(CO2 OCM)反应产生乙烷和乙烯的二氧化碳氧化偶联反应不利热力学的。数值结果表明,在高于1000 K的温度和CO2 / CH4比大于1的情况下,无碳形成区域。

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