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Perspectives on the effect of sulfur on the hydrocarbonaceous overlayer on iron Fischer-Tropsch catalysts

机译:硫磺对铁离丘菌催化剂硫磺覆盖物硫的透视图

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摘要

Fischer-Tropsch synthesis (FTS) is commonly viewed as an alternative approach to the production of diesel fuels via sources independent of crude oil. The adaptability of the FTS process allows for the selective production of shorter chain C-2 to C-6 hydrocarbons and has the potential to be a legitimate source of useable chemical feed-stocks with high value to the chemical manufacturing industry. Interestingly, although recognised as a poison in most catalytic systems, small amounts of sulfur in iron-based FTS catalysts has been demonstrated to promote catalyst reducibility and activity towards shorter chain hydrocarbons. However, it is not known what impact sulfur has on the formation of hydrocarbonaceous surface species that have been proposed to play a pivotal role in the mediation of reactants during iron FTS. Here we apply ambient pressure CO hydrogenation at 623 K on a selection of sulfur promoted iron FTS catalysts to investigate the effect of sulfur content on hydrocarbonaceous species formation. For the first time, we report the application of inelastic neutron scattering to quantify the presence of hydrocarbonaceous species under the presence of sulfur promotion. In combination with temperature programmed oxidation, X-ray diffraction, and Raman spectroscopy, we observe how low sulfur loadings ( < 700 ppm) perturb carbon and hydrogen retention levels. The results indicate that the presence and nature of the hydrocarbonaceous overlayer is sensitive to sulfur loading, with the reported loss in catalytic activity at high loadings correlating with the attenuation of hydrocarbonaceous surface species.
机译:Fischer-Tropsch合成(FTS)通常被视为通过独立于原油的来源生产柴油燃料的替代方法。 FTS工艺的适应性允许选择性生产短链C-2至C-6烃,并具有具有高价值对化学制造业的可用化学饲料股的合法来源。有趣的是,尽管在大多数催化系统中被认为是毒药,但已经证明了铁基FTS催化剂中的少量硫以促进催化剂的还原性和缩短链环烃的活性。然而,不知道硫对烃类表面物种的形成是什么,已经提出在铁FTS期间在反应物中的中介中发挥枢转作用。在这里,我们在623k施加硫促进的铁FTS催化剂的环境压力CO氢化,研究硫含量对烃类物种形成的影响。我们首次报告了非弹性中子散射的应用,以在硫促进的存在下量化烃类物种的存在。结合温度编程氧化,X射线衍射和拉曼光谱,观察硫含量(<700ppm)的腐扰碳和氢保留水平。结果表明,烃类覆盖层的存在和性质对硫负载敏感,具有与烃表面物种衰减相关的高载荷的催化活性损失。

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