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首页> 外文期刊>Catalysis science & technology >Role of mesopores in Co/ZSM-5 for the direct synthesis of liquid fuel by Fischer-Tropsch synthesis
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Role of mesopores in Co/ZSM-5 for the direct synthesis of liquid fuel by Fischer-Tropsch synthesis

机译:中孔的作用在公司/ ZSM-5直接通过费托合成液体燃料合成

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摘要

In a complex reaction system, in which gas, liquid, and solid catalysts work together, understanding the impact of mass transfer that varies with the catalyst pore structure is very challenging but also essential to designing selective catalysts. We investigated the effect of mesopores introduced into bi-functional Co/ZSM5 catalysts on the direct production of liquid fuel by low-temperature Fischer-Tropsch synthesis (FTS). The influence of mesopores on the textural properties, Co dispersion, zeolite crystallinity, the density of acid sites, and the resulting FTS performance was studied in detail. The presence of mesopores facilitated the dispersion of Co nanoparticles and the regulation of acidity, affording high CO conversion and a moderate degree of isomerization. In addition, close proximity between FTS active sites and acid functionalized sites could be achieved by the introduction of mesopores. However, the relationship between the structural parameter and liquid fuel productivity suggested that the mesopores did not reduce the mass transfer resistance of the reactants and intermediates during the FTS reaction.
机译:在一个复杂的反应体系中,天然气,液体和固体催化剂一起工作,理解质量传递的影响随催化剂孔隙结构非常具有挑战性的而且设计也非常重要有选择性的催化剂。中孔的引入bi-functional有限公司/ ZSM5催化剂的直接生产液体燃料低温费托合成(FTS)。结构属性,公司分散,沸石结晶度、酸密度的网站,详细结果FTS性能进行了研究。中孔的存在促进了有限公司纳米粒子的分散和监管酸度,提供高公司转换和温和的异构化程度。FTS活性之间的近距离站点和酸功能化可以通过网站中孔的引入。结构参数和之间的关系液体燃料效率建议中孔不会降低传质反应物和产物的直流电阻在罚球的反应。

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