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首页> 外文期刊>Journal of Catalysis >Hydrogen-Deuterium Equilibration over Transition Metal Sulfide Catalysts: On the Synergetic effect in CoMo Catalysts
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Hydrogen-Deuterium Equilibration over Transition Metal Sulfide Catalysts: On the Synergetic effect in CoMo Catalysts

机译:过渡金属硫化物催化剂上的氢-氘平衡:在CoMo催化剂中的协同作用

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H_2-D_2 equilibration was used to study the synergetic effect between Co and Mo in carbon-supported CoMo sulfide catalysts. The reaction was carried out in a recirculation apparatus with continuous on-line analysis of all gas-phase components (H_2, D_2, HD, H_2S, D_2S, and HDS) by a mass spectrometer. The low reaction temperature (423 K) allowed for the first time a comparison to be made of the catalytic activity between Co sulfide particles in low-temperature sulfided (373 K) carbon-supported Co and those in standard sulfided (673 K) carbon-supported CoMo, which have similar ~(57)Co MES parameters. On the basis of the much higher activity of the bimetallic catalyst than of the monometallic catalysts (Co and Mo sulfide) it is concluded that the observed synergy is related neither to the effect of the high dispersion of the Co sulfide nor seemingly to spillover effects as put forward by the remote control model. The results indicate that the sulfur atoms that bridge between Co~(2+) and Mo~(4+) play a crucial role during the catalytic cycle. During the equilibration reaction also extensive exchange takes place between hydrogen (deuterium) atoms adsorbed on the sulfided phase and hydrogen atoms present at the carbon support surface. This spillover process is accelerated by admixture of H_2S, which most probably leads to an increase of terminal SH groups by dissociative H_2S adsorption. These SH groups are thought to form hydrogen bridges with the carbon support functional groups. Both H_2 H_2S compete for adsorption on the same coordinatively unsaturated sites. While heterolytic dissociation of H_2 is considered to lead to a hydride and a bridging SH group between Co and Mo, heterolytic dissociation of H_2S would lead to the formation of two SH groups, one bridging SH group and one terminal SH group active in forming hydrogen bridges with the support surface functional groups.
机译:利用H_2-D_2平衡研究了碳载CoMo硫化物催化剂中Co和Mo之间的协同作用。反应在再循环设备中进行,通过质谱仪连续在线分析所有气相组分(H_2,D_2,HD,H_2S,D_2S和HDS)。低的反应温度(423 K)首次使低温硫化(373 K)碳负载的Co中的硫化钴颗粒与标准硫化(673 K)碳的硫化钴颗粒之间的催化活性进行了比较。支持的CoMo,具有相似的〜(57)Co MES参数。基于双金属催化剂的活性比单金属催化剂(Co和Mo硫化物)高得多的结论,得出的结论是,所观察到的协同作用既与Co硫化物的高分散效果无关,也与溢出效应无关。由远程控制模型提出。结果表明,在Co〜(2+)和Mo〜(4+)之间架桥的硫原子在催化循环中起着至关重要的作用。在平衡反应期间,在硫化相上吸附的氢(氘)原子与碳载体表面上存在的氢原子之间也发生了广泛的交换。 H_2S的混合促进了这种溢出过程,这很可能导致离解的H_2S吸附增加了末端SH基团。这些SH基团被认为与碳载体官能团形成氢桥。两个H_2 H_2S竞争在相同配位不饱和位点上的吸附。尽管认为H_2的杂化解离会导致氢化物和Co和Mo之间的桥连SH基团,但H_2S的杂化解离会导致形成两个SH基团,一个桥连的SH基团和一个末端的SH基团在形成氢桥时起作用与支撑表面官能团。

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