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Dual-Bed Catalytic System for Direct Conversion of Methane to Liquid Hydrocarbons

机译:将甲烷直接转化为液态烃的双床催化系统

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摘要

一个双床的催化系统为甲烷的直接变换被建议到液烃。在这个系统,甲烷在第一个阶段被变换成甲烷(OCM ) 的氧化联合由有在支持 La 的 MgO 上的氧的选择催化氧化的产品催化剂。第二张床, HZSM-5 沸石催化剂包括,被用于 OCM 轻质烃产品的 oligomerization 到液烃。温度的效果(650 ¨ C 800 ??) ,甲烷到氧比率(4 ¨ C 10 ) ,并且这个过程上的 HZSM-5 沸石催化剂的 SiO2/Al2O3 比率被学习。在更高的反应温度,有 HZSM-5 的可观的 dealumination,并且因此,它的催化表演被减少。在第二张床上的 HZSM-5 的酸味为导致液烃的形成的 oligomerization 反应负责。oligomerization 地点的活动被 SiO2/Al2O3 比率不含糊地影响。在酸味和 HZSM-5 的活动之间的关系借助于 TPD-NH3 技术被学习。在氧集中的上升不为 C5+ 选择是有益的,在的地方导致积炭的形成氧化物(CO+CO2 ) 的中间的烃类产品的燃烧反应产品比 oligomerization 反应更主导。双床的催化系统为直接把甲烷变换成液体燃料是高度潜在的。给词调音:双床;HZSM-5;oligomerization;酸味;
机译:A dual-bed catalytic system is proposed for the direct conversion of methane to liquid hydrocarbons. In this system, methane is converted in the first stage to oxidative coupling of methane (OCM) products by selective catalytic oxidation with oxygen over La-supported MgO catalyst. The second bed, comprising of the HZSM-5 zeolite catalyst, is used for the oligomerization of OCM light hydrocarbon products to liquid hydrocarbons. The effects of temperature (650-800 ℃), methane to oxygen ratio (4-10), and SiO2/Al2O3 ratio of the HZSM-5 zeolite catalyst on the process are studied. At higher reaction temperatures, there is considerable dealumination of HZSM-5, and thus its catalytic performance is reduced. The acidity of HZSM-5 in the second bed is responsible for the oligomerization reaction that leads to the formation of liquid hydrocarbons. The activities of the oligomerization sites were unequivocally affected by the SiO2/Al2O3 ratio. The relation between the acidity and the activity of HZSM-5 is studied by means of TPD-NH3 techniques. The rise in oxygen concentration is not beneficial for the C5+ selectivity, where the combustion reaction of intermediate hydrocarbon products that leads to the formation of carbon oxide (CO+CO2) products is more dominant than the oligomerization reaction. The dual-bed catalytic system is highly potential for directly converting methane to liquid fuels.

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