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Further Investigation into the Formation of Alcohol during Fischer Tropsch Synthesis on Fe-based Catalysts

机译:进一步调查FISCHER Tropsch合成在Fe基催化剂中形成醇的形成

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The Fischer Tropsch (FT) synthesis is a complex polymerization reaction characterized by competing intermediates reaction steps. The various termination steps may result in the formation of different product classes, such as olefins, paraffins, alcohols, etc. While high synthesis gas conversion is important; a high selectivity is much desirable, which may result in.improved economics. This mechanistic study further elaborates on the elementary reaction steps for the formation of product compounds in the Fischer-Tropsch synthesis. The effect of space velocity on the products distribution, particularly on the formation of oxygen containing organic product compounds was investigated. The reactions were carried out at industrially relevant conditions on Fe-based catalyst promoted with Cu, K and alumina. The resulting catalyst precursor was characterized using TPR, XRD, BET and SEM/EDX. The alcohol/hydrocarbon ratio remains fairly constant at very high space velocity (i.e. low conversion) where secondary reactions become insignificant. This implied primary formation of alcohols in the Fischer-Tropsch synthesis.
机译:Fischer Tropsch(FT)合成是一种复合聚合反应,其特征在于竞争中间体反应步骤。各种终止步骤可能导致不同产品类别的形成,例如烯烃,石蜡,醇等。虽然高合成气体转化是重要的;高选择性是非常理想的,这可能导致可见的经济学。该机械研究进一步详细阐述了在费城 - 托合成中形成产品化合物的基本反应步骤。研究了空间速度对产物分布的影响,特别是在含氧有机产物化合物的形成上。在工业上相关的反应在用Cu,K和氧化铝促进的Fe基催化剂上进行。使用TPR,XRD,BET和SEM / EDX的特征在于所得催化剂前体。醇/烃比在非常高的空速(即低转化率)处保持相当恒定,其中二次反应变得微不足道。这种暗示在Fischer-Tropsch合成中醇的主要形成。

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