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Higher Hydrocarbon Production through Oxidative Coupling of Methane Combined with Hydrogenation of Carbon Oxides

机译:通过甲烷的氧化偶联结合碳氧化物的加氢来生产更高的烃

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摘要

In the production of higher hydrocarbons, combining oxidative coupling of methane (OCM) with hydrogenation of the formed carbon oxides in a separate reactor provides an alternative to the currently applied methane conversion to syngas followed by Fischer-Tropsch synthesis. The effects of CH4:O-2 feed ratio in the OCM reactor and partial pressures of H-2 or/and H2O in the hydrogenation reactor were analyzed to maximize production of C2+ hydrocarbons and reduce COx formation. The highest C2+ yield was achieved with low CH4: O-2 feed ratio for OCM and removal of the formed water before entering the hydrogenation reactor.
机译:在高级烃的生产中,将甲烷的氧化偶联(OCM)与在单独的反应器中形成的碳氢化合物的加氢相结合提供了一种替代当前应用的将甲烷转化为合成气,然后进行费托合成的方法。分析了OCM反应器中CH4:O-2进料比和加氢反应器中H-2或/和H2O的分压的影响,以最大程度地生产C2 +碳氢化合物并减少COx的形成。对于OCM,CH4:O-2的进料比低,并在进入氢化反应器之前除去生成的水,可以实现最高的C2 +收率。

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