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Intermediate Product Regulation in Tandem Solid Catalysts with Multimodal Porosity for High-Yield Synthetic Fuel Production

机译:串联固体催化剂中的中间产品调节,具有多峰孔隙率,用于高产合成燃料生产

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Tandem catalysis is an attractive strategy to intensify chemical technologies. However, simultaneous control over the individual and concerted catalyst performances poses a challenge. We demonstrate that enhanced pore transport within a Co/Al2O3 Fischer-Tropsch (FT) catalyst with hierarchical porosity enables its tandem integration with a Pt/ZSM-5 zeolitic hydrotreating catalyst in a spatially distant fashion that allows for catalyst-specific temperature adjustment. Nevertheless, this system resembles the case of close active-site proximity by mitigating secondary reactions of primary FT a-olefin products. This approach enables the combination of in situ dewaxing with a minimum production of gaseous hydrocarbons (18 wt %) and an up to twofold higher (50 wt %) selectivity to middle distillates compared to tandem pairs based on benchmark mesoporous FT catalysts. An overall 80 % selectivity to liquid hydrocarbons from syngas is attained in one step, attesting to the potential of this strategy for increasing the carbon efficiency in intensified gas-to-liquid technologies.
机译:串联催化是加强化学技术的一种有吸引力的策略。然而,对个人和协调催化剂表演的同时控制造成挑战。我们证明,具有等级孔隙率的CO / Al2O3 Fischer-Tropsch(FT)催化剂内的增强孔隙输送能够以空间的遥远方式与Pt / ZSM-5沸石加氢处理催化剂的串联整合,其允许催化剂特异性的温度调节。然而,该系统可以通过减轻原发性Ft A-烯烃产品的二次反应来静置的静止接近的情况。与基于基于基准的介孔FT催化剂相比,这种方法能够通过最小的气态烃(18wt%)和最高馏分(50wt%)选择性的最低产生的原位脱蜡组合。在一步中实现了从合成气中的液体烃的总体80%选择性,证明了这种策略的潜力,以提高加强气到液技术中的碳效率。

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