催化作用
微乳液
炭黑
材料科学
化学工程
碳纤维
化学
一氧化碳
催化剂载体
过程(计算)
无机化学
钴
工作(物理)
活性炭
作者
Faeze Tari,Sebastian Hertle,Hongguang Wang,Peter van Aken,Elias Klemm,Yvonne Traa
出处
期刊:
[Elsevier BV]
日期:2026-07-24
卷期号:218: 207108-207108
标识
DOI:10.1016/j.apcato.2026.207108
摘要
To improve the selectivity of selective hydrogenation catalysts without the use of toxic and unstable modifiers, either the substrate-to-Pd ratio can be increased, or Pd nanoparticles can be sintered into aggregates. Unfortunately, these measures are at the expense of activity. In this study, carbon black and activated carbon are used as supports for the Pd nanoparticles to investigate if the trade-off can be shifted to higher activities. Pd species were distributed on these supports by two synthesis protocols: thermo-destabilization of microemulsions and incipient wetness impregnation with a sintering step at 623 K. The results of the long-term catalytic hydrogenation of 3-hexyn-1-ol over these catalysts showed that for both catalyst types, a high enough substrate-to-Pd ratio increases the selectivity of the cis-hexenol product. However, the kinetic behavior of the obtained catalysts differed, such that the Pd/acetylene black catalysts showed kinetic results comparable to those of the Lindlar catalyst, serving as a benchmark. Also, changing the particle size from 4.5 to 1.5 nm revealed the structure-activity relationships. For the Pd/activated carbon catalysts, the microemulsion-prepared catalyst showed proper kinetic behavior at relatively higher substrate-to-Pd ratios, but the impregnated catalyst exhibited lower rates with a lower selectivity for the cis-hexenol product.
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