首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Synthesis of CNT-supported cobalt nanoparticle catalysts using a microemulsion technique: Role of nanoparticle size on reducibility, activity and selectivity in Fischer-Tropsch reactions
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Synthesis of CNT-supported cobalt nanoparticle catalysts using a microemulsion technique: Role of nanoparticle size on reducibility, activity and selectivity in Fischer-Tropsch reactions

机译:使用微乳液技术合成CNT负载的钴纳米颗粒催化剂:费托反应中纳米颗粒尺寸对还原性,活性和选择性的作用

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摘要

The influence of cobalt particle size on catalyst performance in Fischer-Tropsch synthesis (FTS) has been investigated using inert carbon nanotube (CNT)-supported catalysts. The catalysts were produced by the core reverse micelle reactions with cobalt particles of various sizes (3-10 nm). It has been shown that particle size is proportional to the water-to-surfactant ratio (3-10) used for the catalyst preparation. Very narrow particle size distributions have been produced by the microemulsion technique and at relatively high loading (Co 10 wt%). Selectivity and activity were found to be dependant on cobalt particle size. The FTS rate increases from 0.36 to 0.44 g HC/g_(cat)./h and the C_(5+) selectivity increases from 89 to 92.5 wt% with increasing the average cobalt particle size from 2-3 to 9-10 nm, respectively. According to TEM analysis, small Co particles (2-6 nm) are mostly confined inside the CNTs where influence of its electron deficiency in the inside surface has changed the commonly expected catalyst's structure-sensitive results. Finally, the CNT-supported cobalt nanoparticles synthesized by the proposed microemulsion technique increased the CO conversion by 15% compared to those prepared by incipient wetness impregnation.
机译:已使用惰性碳纳米管(CNT)负载的催化剂研究了钴粒度对费-托合成(FTS)中催化剂性能的影响。催化剂是通过核心逆胶束反应与各种尺寸(3-10 nm)的钴颗粒反应制得的。已经表明,粒度与用于催化剂制备的水与表面活性剂之比(3-10)成比例。通过微乳化技术已经在非常高的负载量(Co 10 wt%)下产生了非常窄的粒度分布。发现选择性和活性取决于钴的粒径。随着钴的平均粒径从2-3 nm增加到9 nm至10 nm,FTS速率从0.36 g HC / g_(cat)./ h增加到C_(5+)选择性从89 wt%增加到92.5 wt%,分别。根据TEM分析,小的Co粒子(2-6 nm)主要限制在CNT内部,其中内表面电子缺乏的影响改变了人们通常期望的催化剂的结构敏感结果。最后,与通过初期湿法浸渍制备的那些相比,通过拟议的微乳液技术合成的CNT负载的钴纳米颗粒将CO转化率提高了15%。

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