合成气
钴
选择性
材料科学
费托法
化学工程
纳米颗粒
碳氢化合物
碳化
热解
比表面积
催化作用
化学
多孔性
纳米技术
有机化学
吸附
复合材料
冶金
工程类
作者
Mingsheng Luo,Min Li,Baozhong Lü,Qinglong Liu,Zuoxing Di,Lin Guo
标识
DOI:10.1021/acsanm.1c00177
摘要
It is a significant challenge to prepare highly active and high-cobalt (Co) loading Fischer–Tropsch synthesis (FTS) catalysts for syngas conversion. Herein, a metal–organic framework named ZIF-67 was grown in situ on a CoAl layered-double-hydroxide (LDH) to obtain hierarchical LDH/ZIF-67 structures. Highly dispersed cobalt (Co)-embedded porous nanoplatelet (CoPNP) catalysts suitable for FTS were prepared by subsequent pyrolysis. High Co loading (over 50 wt % Co) was realized in CoPNP with suitable particle sizes and active Co dispersion. Remarkably, CoPNP showed a hierarchical architecture with a high specific surface area, and the porous channels could enhance syngas diffusion and hydrocarbon production, boosting the CO conversion and C5+ selectivity. Consequently, CoPNP revealed extraordinarily high activity in FTS with maximum 71.6% CO conversion and 70.2% C5+ long-chain hydrocarbon selectivity. The work reveals a methodology for the design and preparation of FTS catalysts with boosted performance and affords a promising pathway to design other FTS catalysts.
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