Recent advances in Fischer-Tropsch synthesis using cobalt-based catalysts: a review on supports, promoters, and reactors

Z. Gholami, Z. Tišler, Vlastimil Rubáš
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引用次数: 70

Abstract

ABSTRACT Fischer–Tropsch (FT) process is a promising method for producing liquid fuels and other valuable chemicals through CO hydrogenation. The catalyst activity and product selectivity can be strongly affected by different parameters such as support and promoters. The physicochemical and textural properties of the support affect the metal–support interaction, crystallite size, metal dispersion, mass transfer of reactants/products, mechanical strength, and thermal stability of the catalyst. Promoters can also be used as structural, textural, electronic modifier, stabilizers, and catalyst-poison-resistant, which can improve the catalytic performance. According to the parameters mentioned above, this paper reviews the brief history of the FT process, the effect of different supports and promoters on the catalytic performance of cobalt-based catalysts. In addition to the catalyst properties, the reactor must also be designed appropriately to handle the heat of this highly exothermic reaction. The reactor types have also been reviewed and compared as a crucial part of the catalytic reactions. Graphical Abstract
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钴基催化剂在费托合成中的最新进展:载体、促进剂和反应器的综述
费托法(FT)是一种很有前途的利用CO加氢生产液体燃料和其他有价化学品的方法。载体和促进剂等参数对催化剂活性和产物选择性有较大影响。载体的物理化学和结构性质影响着金属-载体的相互作用、晶粒大小、金属分散、反应物/产物的传质、机械强度和催化剂的热稳定性。促进剂还可以作为结构、织构、电子改性剂、稳定剂和耐催化毒性剂,提高催化性能。根据上述参数,本文回顾了FT工艺的简史,以及不同载体和促进剂对钴基催化剂催化性能的影响。除了催化剂的性能外,反应器还必须经过适当的设计,以处理这种高度放热反应的热量。作为催化反应的重要组成部分,对反应器类型进行了综述和比较。图形抽象
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