Design of novel hierarchical cage active particles and zeolite for the direct conversion of syngas to gasoline fuel†

IF 2.7 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Yulan Zhang and Xizhu Lin
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Abstract

Although the direct conversion of syngas to gasoline fuel offers a promising route to produce liquid fuel from non-petroleum carbon resources, it remains a great challenge owing to low target product selectivity and poor catalyst stability. Hence, we designed a bifunctional catalyst consisting of SiO2-coated novel hierarchical porous cage active particles and hierarchical porous zeolite, which provided a C5–C11 hydrocarbon selectivity of 63.5 wt%, and the yield reached 99.3% in C5+ hydrocarbons, with an aromatic content of 25.7% at 280 °C. Particularly, this value is within the range of the restricted aromatic content. As the reaction temperature was elevated to 310 °C, zeolite-24 presented an excellent aromatic selectivity of 64.4% in liquid hydrocarbons. This is mainly because the zeolite provides higher acidity at a rather high reaction temperature, facilitating the formation of hydrocarbons in the liquid phase, which were predominantly aromatics rather than i-C5+. Besides aromatics, a high i-C5+ content of 77.4% in liquid hydrocarbons was obtained at 280 °C over FeZ-16. At the given condition, the synthesized hybrid catalysts were beneficial for the production of gasoline fuels consisting of aromatics and i-C5+. Particularly, 280 °C offered optimum selectivity to i-C5+, and 310 °C was suitable for the formation of aromatics. This work provides a strategy for the design and preparation of novel and efficient catalysts for gasoline production.

Abstract Image

设计新型分层笼状活性颗粒和沸石,用于将合成气直接转化为汽油燃料
尽管将合成气直接转化为汽油燃料为利用非石油碳资源生产液体燃料提供了一条前景广阔的途径,但由于目标产物选择性低和催化剂稳定性差,它仍然是一个巨大的挑战。因此,我们设计了一种由二氧化硅包覆的新型分层多孔笼状活性颗粒和分层多孔沸石组成的双功能催化剂,该催化剂在 280 oC 时对 C5-C11 碳氢化合物的选择性为 63.5 wt%,对芳烃含量为 25.7% 的 C5+ 碳氢化合物的选择性达到 99.3%。尤其是,这一含量在受限制的芳烃含量范围内。当反应温度升高到 310 oC 时,沸石-24 在液态烃中的芳烃选择性达到 64.4%。这主要是因为沸石在相当高的反应温度下具有较高的酸度,有利于在液相中形成芳烃而不是 i-C5+ 的碳氢化合物。除芳烃外,FeZ-16 在 280 o 时,液态烃中 i-C5+ 的含量高达 77.4%。在给定条件下,合成的混合催化剂有利于生产由芳烃和 i-C5+ 组成的汽油燃料。特别是,280 摄氏度对应于 i-C5+ 的最佳选择性,而 310 摄氏度则适合于芳烃的形成。它为设计和制备新型高效催化剂提供了一种策略。
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来源期刊
New Journal of Chemistry
New Journal of Chemistry 化学-化学综合
CiteScore
5.30
自引率
6.10%
发文量
1832
审稿时长
2 months
期刊介绍: A journal for new directions in chemistry
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