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Effects of loading and synthesis method of titania-supported cobalt catalysts for Fischer-Tropsch synthesis

机译:二氧化钛负载的钴催化剂的负载量和合成方法对费托合成的影响

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Because of their high activity and selectivity to C_(5+) hydrocarbons in the Fischer-Tropsch, process, titania-supported cobalt catalysts have received great interest from industrial and academic, institutions. Here, we report on three catalyst preparation procedures, incipient wetness impregnation (1WI), deposition precipitation using urea hydrolysis (DPU) or ammonia evaporation (DPA) to prepare, Co/TiO2 catalysts with 4-24 wt.% Co. The results reveal a strong impact of the catalyst preparation, procedure on dispersion and distribution of cobalt over the titania surface. IWl led to clustered cobalt, oxide particles of ~10nm, while for the DPA catalysts, similarly sized nanoparticles were found to be, well-distributed over the support surface. Co/TiO2 catalysts prepared by DPU showed the presence of, ~2nm supported cobalt oxide particles beside large unsupported particles. Catalytic tests under, industrially relevant conditions show that the DPA catalysts displayed a superior activity and C_(5+), selectivity for the entire cobalt loading range studied.
机译:由于其在费-托法中对C_(5+)烃的高活性和选择性,二氧化钛负载的钴催化剂受到了工业和学术机构的极大兴趣。在这里,我们报告了三种催化剂的制备方法:初湿浸渍(1WI),使用尿素水解(DPU)或氨气蒸发(DPA)进行沉积沉淀以制备具有4-24 wt%Co的Co / TiO2催化剂。结果显示催化剂制备,工艺对二氧化钛表面钴的分散和分布的强烈影响。 IW1导致聚集的钴氧化物颗粒约10nm,而对于DPA催化剂,发现大小相似的纳米颗粒分布在载体表面上。 DPU制备的Co / TiO2催化剂显示,在大的未负载颗粒旁边,存在〜2nm负载的氧化钴颗粒。在工业上相关条件下的催化测试表明,DPA催化剂在整个研究的钴负载范围内均显示出优异的活性和C_(5+)和选择性。

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