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Fischer-Tropsch synthesis: Using deuterium tracer coupled with kinetic approach to study the kinetic isotopic effects of iron, cobalt and ruthenium catalysts

机译:Fischer-Tropsch合成:使用氘跟筛耦合与动力学方法研究铁,钴和钌催化剂的动力学同位素作用

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Deuterium tracer studies coupled with kinetic approach were developed to accurately determine the kinetic isotopic effects (KIE) for the CO hydrogenation and the formations of CO2, CH4 and light hydrocarbons (C-2 -C-4) over iron, cobalt and ruthenium catalysts. Pronounced inverse kinetic isotope effects (IKIE) = 0.64-0.66) over the Fe and Co catalysts and a moderate IKIE (k(CH4)/k(CD4) = similar to 0.8) on the Ru catalysts for the CO hydrogenation were obtained under typical FTS conditions. The IKIE was also found in CH4 formation, but the Co and Ru catalysts showed stronger IKIE than the Fe catalysts k(CH4)/k(CD4) = 0.6 vs 0.87). Regardless of catalyst type, only a minor normal KIE for the CO2 formation was obtained (kCO(2), H H/kCO2 D(similar to)1.1). The IKIE was found on various light 1-olefins and n-paraffin hydrocarbons as well. All the IKIEs can be explained by thermodynamic and kinetic isotope effects. The results suggested that deuterium was involved in quasi-equilibrated and hydrogenation steps that determined KIE. However, the Fe, Co and Ru catalysts showed different deuterium isotopic effect for the hydrocarbon selectivity. Deuterium promoted chain growth, thus lowered CH4 and light hydrocarbons selectivities and enhanced C5+, selectivity on both the Fe and Co catalysts; while it enhanced the hydrogenation rate to the low hydrocarbons and suppressed the formation of heavier hydrocarbons on the Ru catalysts.
机译:开发出与动力学方法相结合的氘示踪剂研究以精确地确定CO氢化的动力学同位素效应(KIE)以及在铁,钴和钌催化剂上的CO 2,CH 4和轻质烃(C-2-C-4)的形成。在典型的RU催化剂上,在Fe和Co催化剂上,在Fe和Co催化剂和中等IKIE(K(CH4)/ K(CD4)=类似于0.8)的中等IKIE(K(CH4)/ K(CD4)=类似于0.8)的典型逆动力学同位素效应FTS条件。 IKIE也被发现在CH 4形成中,但CO和RU催化剂比Fe催化剂K(CH 4)/ K(CD4)= 0.6 Vs 0.87)显示出更强的Ikie。无论催化剂型如何,获得了CO 2形成的次要正常KIE(KCO(2),H H / KCO2 D(类似于)1.1)。在各种光1-烯烃和N-石蜡碳氢化合物上发现了Ikie。所有Ikies都可以通过热力学和动力学同位素效应来解释。结果表明,氘涉及确定kie的准平衡和氢化步骤。然而,Fe,Co和Ru催化剂显示出用于烃选择性的不同氘同位素作用。氘促进链生长,从而降低CH4和轻质烃选择性和增强的C5 +,对Fe和Co催化剂的选择性;虽然它增强了低烃的氢化速率,并抑制了Ru催化剂上的较重烃的形成。

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