Han Chun, Liu Jing, Li Le, Peng Zeyu, Wu Luyao, Hao Jiarong, Huang Wei
State Key Laboratory of Clean and Efficient Coal Utilization, Taiyuan University of Technology, Taiyuan 030024, China.
Department of Chemistry and Chemical Engineering, Shanxi Polytechnic College, Taiyuan 030032, China.
Molecules. 2024 Oct 13;29(20):4855. doi: 10.3390/molecules29204855.
Higher alcohol synthesis through the Fischer-Tropsch (F-T) process was considered a promising route for the efficient utilization of fossil resources could be achieved. The CuCo catalysts were proven to be efficient candidates and attracted much interest. Great efforts have been made to investigate the active sites and mechanisms of CuCo catalysts. However, the industrialized application of CuCo catalysts in this process was still hindered. The poor stability of this catalyst was one of the main reasons. This short review summarized the recent development of active sites on the CuCo catalysts for higher alcohol synthesis, including CuCo alloy particles, CuCo core-shell particles, and unsaturated particles. The complex active sites and their continual changes during the reaction led to the poor stability of the catalysts. The effect of active sites on catalytic performance was discussed. Furthermore, the key factors in fabricating stable CuCo catalysts were proposed. Finally, reasonable proposals were proposed for designing efficient and stable CuCo catalysts in higher alcohol synthesis.
通过费托(F-T)工艺实现更高的醇类合成被认为是有效利用化石资源的一条有前景的途径。铜钴催化剂被证明是有效的候选催化剂,并引起了广泛关注。人们已经做出了巨大努力来研究铜钴催化剂的活性位点和作用机制。然而,铜钴催化剂在该工艺中的工业化应用仍然受到阻碍。这种催化剂稳定性差是主要原因之一。这篇简短的综述总结了用于更高醇类合成的铜钴催化剂活性位点的最新进展,包括铜钴合金颗粒、铜钴核壳颗粒和不饱和颗粒。复杂的活性位点及其在反应过程中的持续变化导致了催化剂稳定性差。讨论了活性位点对催化性能的影响。此外,还提出了制备稳定铜钴催化剂的关键因素。最后,针对在更高醇类合成中设计高效稳定的铜钴催化剂提出了合理建议。