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Effect of activation method on Fe FTS catalysts: investigation at the site level using SSITKA

机译:活化方法对Fe FTS催化剂的影响:使用SSITKA在现场进行研究

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Proper activation of Fe catalysts is an important step in determining their activity for the Fischer-Tropsch synthesis (FTS). The results of this study reveal for the first time the effect of activation and time on stream (TOS) on intrinsic site activity and concentration of surface intermediates during CO hydrogenation (methanation) on an Fe FTS catalyst. The catalyst was activated under identical conditions but with differentn pretreatment gases: CO ([CO]), H_2([H]), or syngas ([S]). Lifetime (tau_M) and concentration of methane surface intermediates (N_M) were measured in situ using isotopic tracing (SSITAK) of CO hydrogenation under methanation conditions (H_2:CO = 10: 1, T = 280 deg C, P = 1.8 atm). Fe phases after activation were found by XRD to be Fe~0 + Fe_3O_4 for [H] and Fe carbides + Fe_3O_4 for both [CO] and [S]. Reaction and SSITAK results showed that the rate and abundance of surface intermediates on the [H]-pretreated catalyst developed with TOS, reaching a maximum at ca. 1 h, and then declined to steady-state values at 21 h, still significantly higher than for the other pretreated samples. Activity was shown by SSITKA to be primarily determined by the number of active intermediates (related to the number of surface sites). Measures (1/tau_M) of the intrinsic site activity on the differently activated catalyst samples were not significantly different, suggesting that the active sites were all identical. Given the similarity in the activity of the sites and the increase in the concentration of active sites (and rate) of [H] and [CO] during the initial reaction period, it can be concluded that the active sites are probably on a (partially?) carburized Fe surface.
机译:Fe催化剂的正确活化是确定其费-托合成(FTS)活性的重要步骤。这项研究的结果首次揭示了活化和时间流(TOS)对Fe FTS催化剂在CO加氢(甲烷化)过程中固有位点活性和表面中间体浓度的影响。在相同的条件下,但用不同的预处理气体(CO([CO]),H_2([H])或合成气([S]))活化催化剂。在甲烷化条件下(H_2:CO = 10:1,T = 280℃,P = 1.8 atm),使用CO氢化的同位素示踪(SSITAK)原位测量寿命(tau_M)和甲烷表面中间体的浓度(N_M)。 XRD发现活化后的Fe相对于[H]为Fe〜0 + Fe_3O_4,对于[CO]和[S]均为Fe碳化物+ Fe_3O_4。反应和SSITAK结果表明,用TOS开发的[H]预处理催化剂上的表面中间体的速率和丰度达到最大值。 1 h,然后在21 h下降到稳态值,仍然显着高于其他预处理样品。 SSITKA显示活性主要取决于活性中间体的数量(与表面部位的数量有关)。不同活化的催化剂样品上固有位点活性的测量值(1 / tau_M)没有显着差异,表明活性位点完全相同。假设在初始反应期间,位点活性相似且[H]和[CO]的活性位点浓度(和速率)增加,则可以得出结论,这些活性位点可能位于(部分?)渗碳铁表面。

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